Bench Test Procedure for Hydraulic Piston Pumps {5070} Caterpillar


Bench Test Procedure for Hydraulic Piston Pumps {5070}

Usage:

325D L A3R
Excavator
312E (S/N: GAC1-UP)
314F (S/N: RAF1-UP)
318C (S/N: FAA1-UP; GPA1-UP; BTG1-UP; DAH1-UP; MDY1-UP)
319C (S/N: KGL1-UP)
320C (S/N: BEA1-UP; EGA1-UP; GLA1-UP; ANB1-UP; BGB1-UP; MAB1-UP; PAB1-UP; AMC1-UP; BDC1-UP; HBC1-UP; MAC1-UP; PAC1-UP; GAD1-UP; BDE1-UP; DBG1-UP; JTG1-UP; SAH1-UP; AXK1-UP; BKK1-UP; BBL1-UP; EGL1-UP; JPL1-UP; CLM1-UP; BCN1-UP; SBN1-UP; BER1-UP; BPR1-UP; TBR1-UP; RAW1-UP; BRX1-UP; BMZ1-UP; CLZ1-UP)
320D (S/N: JZA1-UP; ZGB1-UP; HJC1-UP; JPD1-UP; MZD1-UP; DHE1-UP; MDE1-UP; TAE1-UP; A6F1-UP; A8F1-UP; A9F1-UP; BZF1-UP; KGF1-UP; KTF1-UP; KZF1-UP; MGG1-UP; MCH1-UP; TDH1-UP; DHK1-UP; FXK1-UP; XCK1-UP; FAL1-UP; GKL1-UP; KLM1-UP; PCM1-UP; KHN1-UP; SPN1-UP; WBN1-UP; BZP1-UP; GDP1-UP; YDS1-UP; EJT1-UP; SRT1-UP; GMX1-UP; PCX1-UP; PHX1-UP; CXY1-UP; EBY1-UP; JFZ1-UP; JGZ1-UP)
320D2 (S/N: GBA1-UP; LMA1-UP; YEA1-UP; XBB1-UP; ZBD1-UP; PFE1-UP; TMF1-UP; DGH1-UP; NBH1-UP; ZBH1-UP; YBJ1-UP; FKK1-UP; XAK1-UP; EAL1-UP; DFM1-UP; HDM1-UP; JFM1-UP; DNP1-UP; KHR1-UP; ZCS1-UP; NBT1-UP)
320E (S/N: REE1-UP; SXE1-UP; DFG1-UP; TNJ1-UP; LAK1-UP; WBK1-UP; PNL1-UP; LHN1-UP; AWS1-UP; KLT1-UP; MEW1-UP; SHX1-UP; TEX1-UP; TFX1-UP; NAZ1-UP)
320F (S/N: ZRC1-UP; NHD1-UP; WJJ1-UP; YBM1-UP; TET1-UP; REW1-UP; SFX1-UP)
321C (S/N: MCF1-UP; KCR1-UP)
321D (S/N: TXA1-UP; PBD1-UP; MPG1-UP; NAS1-UP; MDT1-UP; KBZ1-UP)
322C (S/N: DAA1-UP; FED1-UP; BPH1-UP; M2H1-UP; BKJ1-UP; BFK1-UP; HEK1-UP; BYL1-UP; BKM1-UP; CAM1-UP; BLP1-UP; BGR1-UP; C3R1-UP; EMR1-UP; LAR1-UP; MAR1-UP; CBY1-UP)
323D (S/N: RAC1-UP; SDC1-UP; WGC1-UP; CYD1-UP; SED1-UP; YSD1-UP; NDE1-UP; PBE1-UP; WNE1-UP; GTF1-UP; NZF1-UP; ZMF1-UP; CWG1-UP; JLG1-UP; LFL1-UP; BYM1-UP; PBM1-UP; NES1-UP; DKW1-UP)
323D2 (S/N: KCE1-UP; JEG1-UP; XBK1-UP; HCM1-UP; GYN1-UP; PJP1-UP; YCR1-UP; JEX1-UP; KBX1-UP)
323E (S/N: RAP1-UP; YRP1-UP; TDW1-UP)
323F (S/N: FA21-UP; PLB1-UP; YEC1-UP; XCF1-UP; YEJ1-UP; LMK1-UP; MDL1-UP)
324D (S/N: LAB1-UP; EJC1-UP; MND1-UP; T2D1-UP; JJG1-UP; TRH1-UP; BTK1-UP; GPK1-UP; SYM1-UP; TSN1-UP; DFP1-UP; JZR1-UP; JAT1-UP; PYT1-UP; CJX1-UP)
324E (S/N: KTE1-UP; TLF1-UP; LDG1-UP; PNW1-UP; JCZ1-UP)
325C (S/N: CRB1-UP; JLC1-UP; S2C1-UP; BTD1-UP; JLD1-UP; BFE1-UP; DTF1-UP; AMH1-UP; CSJ1-UP; M2K1-UP; G1L1-UP; BMM1-UP; S3M1-UP; Y4P1-UP; BKW1-UP)
325D (S/N: GPB1-UP; NAC1-UP; PKE1-UP; KDG1-UP; C4H1-UP; C7K1-UP; ERK1-UP; RJK1-UP; LAL1-UP; MCL1-UP; PAL1-UP; C9M1-UP; AZP1-UP; A3R1-UP; GBR1-UP; SCR1-UP; T2S1-UP; CYW1-UP)
325F (S/N: XAA1-UP; YCA1-UP)
326D (S/N: PJM1-UP)
326D2 (S/N: JFL1-UP; MGW1-UP; NBX1-UP; KGY1-UP)
326F (S/N: TPG1-UP; HCJ1-UP; SGK1-UP; XFK1-UP; WGL1-UP; TMR1-UP)
328D (S/N: SWF1-UP; GTN1-UP; MKR1-UP; RMX1-UP)
329D (S/N: MNB1-UP; XDB1-UP; BFC1-UP; CZF1-UP; JHJ1-UP; RSK1-UP; WDK1-UP; TZL1-UP; TPM1-UP; WLT1-UP; YFW1-UP; SCY1-UP; TAY1-UP; DTZ1-UP)
329D2 (S/N: RGA1-UP; KJB1-UP; SHJ1-UP; TMJ1-UP; WDT1-UP)
329E (S/N: RLD1-UP; ZCD1-UP; WJK1-UP; TST1-UP; PLW1-UP; RDX1-UP; PTY1-UP)
329F (S/N: YHA1-UP; GKK1-UP; ERL1-UP; RCN1-UP; ZNN1-UP)
330D2 (S/N: ZBF1-UP)
330F (S/N: WBA1-UP; LBN1-UP)
335F (S/N: KNE1-UP; FEP1-UP; JJR1-UP)
Forest Machine
320D FM (S/N: GKS1-UP; BWW1-UP; EAX1-UP; CYZ1-UP)
320D2 FM (S/N: BW21-UP; CY21-UP)
324D FM (S/N: JGK1-UP; JKR1-UP; JLS1-UP)
325D FM (S/N: C8L1-UP)
538 (S/N: KBJ1-UP; GMY1-UP)
548 (S/N: WRA1-UP; SFZ1-UP)
558 (S/N: F5G1-UP; F5L1-UP; RHS1-UP)
Material Handler
M325D L MH (S/N: ETE1-UP)
M325D MH (S/N: GE81-UP; EDF1-UP; KAY1-UP)
Mobile Hydraulic Power Unit
323D MHPU (S/N: DCJ1-UP; L5Z1-UP)
324D MHPU (S/N: KJR1-UP)
325C MHPU (S/N: MSG1-UP)
325D MHPU (S/N: C3N1-UP; H3N1-UP)
329D MHPU (S/N: J9D1-UP; L5G1-UP; L5H1-UP)
329E MHPU (S/N: K2L1-UP)
Wheeled Excavator
M325C (S/N: XJA1-UP; PAN1-UP)

Introduction

Table 1
Revision  Summary of Changes in REHS3650 
21  Added new Excavator serial number prefix FEB to document. 
20  Added new Excavator serial number prefixes F5G, SFZ, and WRA to document. 
19  Added new Excavator serial number prefix FA2 to document. 
18  Added new Excavator serial number prefixes YEC and ZBF to document. 
Added Blank Specifications Table to document.

© 2017 Caterpillar All Rights Reserved. This guideline is for the use of Cat dealers only. Unauthorized use of this document or the proprietary processes therein without permission may be violation of intellectual property law. Information contained in this document is considered Caterpillar: Confidential Yellow.

This Special Instruction includes test procedures for piston pumps. This Special Instruction also provides specifications. The technician should have a good understanding of hydraulic piston pumps. The technician should be educated in the operation of the hydraulic test bench. The test benches in this document are available through the Caterpillar Service Tool Division. Gather all necessary tooling before you need to hook up the pump. Some of the required tooling appears in a table at the end of this document. There are many possible variations of tooling that could be used. Not every possible variation can be listed.

For technical questions when using this document, work with your Dealer Technical Communicator (TC).

To report suspected errors, inaccuracies, or suggestions regarding the document, submit a form for feedback in the Service Information System (SIS Web) interface.

Canceled Part Numbers and Replaced Part Numbers

This document may not include all Canceled part numbers and replaced part numbers. Use NPR on SIS for information about Canceled part numbers and replaced part numbers. NPR will provide the current part numbers for replaced parts.

Safety



Illustration 1g02139237

------ WARNING! ------

Personal injury or death can result from improperly checking for a leak.

Always use a board or cardboard when checking for a leak. Escaping air or fluid under pressure, even a pin-hole size leak, can penetrate body tissue causing serious injury, and possible death.

If fluid is injected into your skin, it must be treated immediately by a doctor familiar with this type of injury.


------ WARNING! ------

Hot oil and hot components can cause personal injury. Do not allow hot oil or hot components to contact skin.


------ WARNING! ------

Pump test pressures in this guideline may exceed the normal operating range of the hydraulic test hoses utilized when connecting the tested pump to the test bench. However, the order of magnitude of these pressures is significantly below the burst strength of the Caterpillar "XT6" product.

High pressure oil can escape through improperly assembled hoses and fittings. High pressure oil can also escape through poorly maintained hoses and fittings. High pressure oil may also leak through hose that has become damaged over the life of the hose due to the pressure levels that occur during test bench operation.

Personal injury or death can result from improper hose & fitting inspection or improper hose replacement procedures. Escaping fluid under pressure can penetrate body tissue causing serious injury, and possible death.

Thoroughly inspect all testing hoses, fittings, and quick disconnects prior to any testing operation. Check the assembly date tag or hose assembly log date for a hose life indicator. Replace all Test Bench hoses at a minimum of every 2 years or earlier if the hose or fittings appear to be damaged.


Summary

This procedure is specific to the type of pump and the type of control. This procedure should be used with the Test Specifications and Test Bench Tooling at the end of this Special Instruction.

Note: The paper copy of this Special Instruction may not be the newest version. Go to the Service Information System (SIS) in order to view the latest version.

References

Table 2
References 
Media Number  Title 
REHS1761  "Required Tooling for Bench Testing Hydraulic Components" 
SEBF8810  "Hydraulic Pump, Motor, and Cylinder Bench Test Procedure Reference Manual" 
SEHS8892  "Operating Instructions for Caterpillar 1U-9400 Series Hydraulic Test Center" 
NEHS0563  "Tool Operating Manual for 9U-5000 Series Hydraulic Test Bench" 

Connections for the Caterpillar Hydraulic Test Center



Illustration 2g01063311
Connections for the Test Center
(1) Flow control for discharge
(2) "F3" flow meter inlet
(3) "F4" flow meter inlet
(4) Oil supply from the auxiliary pump
(5) "F3" outlet for the flow meter with flow limiter
(6) Oil supply
(7) Load sensing pressure
(8) Signal pressure
(9) "F4" outlet for the flow meter
(10) Return to tank
(11) Connections for case drain
(12) Oil supply


Illustration 3g01063312
Control and Gauges for the Test Center
(13) Meter for speed and torque
(14) Gauge for signal pressure
(15) Control for signal pressure
(16) Pressure gauge for auxiliary pump
(17) Auxiliary pump flow
(18) "F3" discharge pressure gauge
(19) "F3" discharge flow
(20) "F4" discharge pressure gauge
(21) "F4" discharge flow
(22) Auxiliary pump flow control
(23) "F3" margin pressure
(24) "F3" Load control for discharge pressure
(25) "F4" Load control for discharge pressure

Connections for the Caterpillar Hydraulic Test Bench



Illustration 4g01063314
Connections for the Test Bench
(26) "Flow meter 1" loop and "Flow meter 2" loop
(27) Oil Supply


Illustration 5g01063315
Connections for the Test Bench
(28) "Flow meter 2" loop
(29) "Flow meter 1" loop
(30) "Flow meter 2" outlet
(31) Signal pressure line
(32) "Flow meter 2" inlet
(33) Auxiliary pump oil supply
(34) "Flow meter 1" inlet
(35) "Flow meter 1" inlet


Illustration 6g01063316
Control and Gauges for the Test Bench
(36) Auxiliary pump pressure
(37) Signal pressure
(38) Control for signal pressure
(39) "Flow meter 1" discharge pressure
(40) Control for auxiliary pump pressure
(41) "Flow meter 2" discharge pressure
(42) Auxiliary pump flow control
(43) "Flow meter 2" discharge flow
(44) Discharge flow for auxiliary pump
(45) "Flow meter 1" discharge flow
(46) "Flow meter 1" load control
(47) Speed and direction control
(48) "Flow meter 2" load control

Port Locations



Illustration 7g01115839
Typical port locations and adjustments.


Illustration 8g01414997
Typical port locations and adjustments. Aux pump and OCS pump may or may not be present.
(49) Ps1 Pressure Port for Power Shift
(50) A1 Discharge Port
(51) A2 Discharge Port
(52) A5 Discharge Port for the Aux Pump
(53) Pi Pressure Port for Power Shift
(54) Pn1 Pressure Port for Negative Flow Control
(55a) Adjustment Screw for Torque Control on Drive Pump
(55b) Adjustment Screw for Torque Control on Driven Pump
(56) S5 Suction Port for the Aux Pump
(57) S1 Suction Port
(58a) Adjustment Screw for Maximum Angle on Drive Pump
(58b) Adjustment Screw for Maximum Angle on Driven Pump
(59) Ps2 Pressure Port for Power Shift
(60) Pn2 Pressure Port for Negative Flow Control
(61) Dr1 Case Drain Port
(62) Electrical Connector for Solenoid
(63) Aux Pump (Aux pump may not be present)
(64a) A3 Discharge Port for the Pilot Pump
(64b) A4 Discharge Port for the OCS Pump
(65) Pilot and OCS Pump (OCS pump may not be present)
(66a) S4 Suction Port for the OCS Pump
(66b) S3 Suction Port for the Pilot Pump
(67a) Adjustment screw for Minimum Angle on Driven Pump
(67b) Adjustment screw for Minimum Angle on Drive Pump
(68a) Adjustment location for Negative Flow Control on Driven Pump
(68b) Adjustment location for Negative Flow Control on Drive Pump

Pump Setup



Illustration 9g03425520
Hydraulic schematic
The aux pump, OCS pump, and the associated ports may or may not be present depending on part number.

  1. Mount the pump with the suction port (57) downward. Use an adapter to connect the pump to the test bench oil supply.

  2. Connect suction port (57) to the test bench oil supply. Connect the suction port for the pilot pump (66b) to the test bench oil supply. Connect the discharge port for pilot pump (64a) according to Illustration 9. The use of a 120-9181 Valve Body, a 4C-4014 Relief Valve, a 8T-0856 Pressure Gauge,, and a 8T-0454 Flow Meter will be required to perform the test procedure.

    Connect the suction port for the OCS pump (if equipped) (66a) to the test bench oil supply. Connect the discharge port for the OCS pump (64b) to the test bench reservoir.

    Connect the suction port for the aux pump (if equipped) (56) to the test bench oil supply. Connect the discharge port for the aux pump (52) to the test bench reservoir.

  3. Connect discharge ports (50) and (51) to the flow meter inlets on the test bench. Connect flow meter outlets from the test bench back to tank.

  4. Fill the pump case with oil. Pour oil directly into case drain port (61) until the case is completelyfull.

  5. Purge all air from the suction line. Loosen the suction hose at the pump until oil leaks from the connection. Tighten the suction hose.

  6. Install the flow meter to case drain port (61).

  7. Connect one end of the hose to the outlet of the flow meter and route the other end of the hose back to the tank.

  8. Connect a power supply to the electrical connector for solenoid (62). The power supply should be capable of delivering 0 mA to 1.5 A with an infinite setting in that range.

    Note: NOTE: When performing Step 3 of the Test Procedure, be sure to plumb the pump correctly by connecting PS1 to PS2 using a pressure gauge.

1U-6392 Pressure Reducing Valve

If a signal pressure greater than the test bench's capability is required, the use of a pressure reducing valve is necessary. The pressure reducing valve will use the pump's discharge to produce a signal less than the discharge pressure for use as a control pressure.

Connect one flow meter outlet from the test bench to port for inlet pressure (74). Connect port for outlet pressure (72) to the control port in need of signal pressure. Connect outlet port to tank (70) to bench reservoir.

Use the gauge port for outlet pressure (73) to adjust the outlet signal pressure using the adjustment screw for outlet pressure (69). Adjust the outlet pressure to the value needed for the control application.



Illustration 10g03425385
1U-6392 Pressure Reducing Valve


Illustration 11g03425386
1U-6392 Pressure Reducing Valve


Illustration 12g03425387
1U-6392 Pressure Reducing Valve Schematic
(69) Adjustment screw for the outlet pressure
(70) Outlet port to tank
(71) Gauge port for the inlet pressure
(72) Port for the outlet pressure
(73) Gauge port for the outlet pressure
(74) Port for the inlet pressure

Test Procedure

The hydraulic oil in the test bench should meet a contamination rating of ISO 16/13 or better. The oil in the test bench should be one of the following.

  • SAE 10W at 50 °C (122 °F) or

  • Mobil DTE-11 at 46 °C (115 °F)


Illustration 13g01257351
Torque control curve for steps 3a and 4a.
(P) Discharge Pressure
(Q) Discharge Flow


Illustration 14g01257709
Negative flow characteristics for steps 5a and 5b
(Q) Discharge flow
(R) Negative flow control pressure

  1. Start rotating the pump according to Step 1 of the Test Specifications. Listen for abnormal noise. Verify that all connections are not leaking. Check for leaks around shaft seals and control valves.

    Run the pump for at least 5 minutes in order to raise the temperature of the oil and purge the system of air.

  2. Slowly increase the pump rotation and the discharge pressure according to Step 2 of the Test Specifications. If equipped, verify the flow out of the pilot and OCS pump (65). If equipped, verify the flow out of the aux pump (52). Adjust 4C-4014 Relief Valve to the pilot pump discharge pressure in step 2 of the Test Specifications. If the main pump's maximum flow is not within specifications, adjust the adjustment screws for maximum angle (58a) and (58b). Loosen the locknut and turn the adjustment screws for maximum angle (58a) and (58b) counter-clockwise in order to increase the flow until the actual discharge flow is within specifications. Loosen the locknut and turn the adjustment screws for the maximum angle (58a) and (58b) clockwise in order to decrease the flow until the actual discharge flow is within specifications.


    Illustration 15g03426023
    Hydraulic schematic

  3. The following step will verify the destroke point and the first stage of the torque control. Before the following step can be performed, refer to Illustration 15 for the plumbing arrangement.

    1. Rotate the pump. Adjust the current input according to Step 3a of the Test Specifications. Read the power shift pressure at 8T-0856 Pressure Gauge. If the pressure is not correct, adjust the current to the solenoid until the pressure is correct. Load both pumps' discharge ports to the values in Step 3a of the Test Specifications. Verify that the values for the pump discharge ports are equal. Adjust the first stage of the torque control if the flow rates are not within specifications. Loosen the large locknut on the adjustment screws for torque control (55a) and (55b) in order to adjust the torque control. Turn the sleeve clockwise in order to increase flow. Turn the sleeve counterclockwise in order to decrease flow. Adjust the sleeve until flow equals the specifications in Step 3a of the Test Specifications.

  4. The following step will verify the second stage of torque control.

    1. Load the pump according to Step 4a of the Test Specifications. Verify that the flow from the discharge ports is equal. If the flow rates are not within specifications, adjust the second stage of the torque control. Loosen the small locknut on the adjustment screws for torque control (55a) and (55b) in order to adjust the torque control. Turn the set screw clockwise in order to increase flow. Turn the set screw counterclockwise in order to decrease flow. Adjust the set screw until flow equals the specifications in Step 4a of the Test Specifications.


    Illustration 16g03426127
    Hydraulic schematic

  5. The following steps will verify the Negative Flow Control. Before these steps can be performed, refer to Illustration 16 for proper connections.

    1. Load both discharge ports to the values in Step 5a of the Test Specifications. Load the pilot pump discharge port (64a) according to Step 5a of the Test Specifications. The shims for the negative flow control will need to be adjusted if the flow is not within the specifications. Remove the plate (68a) and (68b) in order to adjust the shims for the negative flow control. Adjust the shims until the flow is correct.

    2. Verify the discharge pressure. Adjust the flow control pressure according to Step 5b of the Test Specifications. If the flow rate is incorrect, adjust the adjustment screw for minimum angle (67a) and (67b). Turn the screw clockwise in order to increase the flow. Turn the set screw counterclockwise in order to decrease the flow.


    Illustration 17g03426145
    Hydraulic schematic

    ------ WARNING! ------

    Pump test pressures in this guideline may exceed the normal operating range of the hydraulic test hoses utilized when connecting the tested pump to the test bench. However, the order of magnitude of these pressures is significantly below the burst strength of the Caterpillar XT6 product.

    High pressure oil can escape through improperly assembled hoses and fittings. High pressure oil can also escape through poorly maintained hoses and fittings. High pressure oil may also leak through hose that has become damaged over the life of the hose due to the pressure levels that occur during test bench operation.

    Personal injury or death can result during adjustment of the high pressure relief valve if recommended hose maintenance practices are not followed. Escaping fluid under pressure can penetrate body tissue causing serious injury, and possible death.

    Adjustment of the high pressure cut or pressure override valve shall only be performed when the pump is operating at a zero discharge pressure condition. Continuation of the pump test procedure can be resumed when this high pressure adjustment is completed.


  6. The following step will verify the cross sensing. Before this step can be performed, refer to Illustration 17 for proper connections. Only connect pilot pump oil to one pump's negative flow control port at a time. Vent the other pump's negative flow control port to the atmosphere. After testing the cross sensing function on one pump, relocate the pilot pump oil to the other pump's negative flow control port. Repeat the test.

    1. Apply current to the electrical connector for solenoid (62). Adjust the current in order to adjust power shift pressure. Use pilot pump to apply pressure to one pump's negative flow control pressure port according to Step 6a of the Test Specifications. Load the discharge ports. The discharge flow will decrease on the pump at high pressure. The other pump's flow will remain constant.

------ WARNING! ------

Hot oil and hot components can cause personal injury. Do not allow hot oil or hot components to contact skin.


Reduce RPM and all pressures to zero. Remove the component from the test bench. Drain the oil from the pump. Plug all of the ports.

Test Specifications

Table 3
Part Number  ____________________ 
Pump Rotation:  ____________________ 
Step  3a  4a  5a  5b  6a 
Pump RPM  ___________  ___________  ___________  ___________  ___________  ___________  ___________ 
Drive Pump Flow lpm (gpm)(1)  ___________  ___________  ___________  ___________  ___________  ___________   
Driven Pump Flow lpm (gpm)(1)  ___________  ___________  ___________  ___________  ___________  ___________  ___________ 
Drive Pump Discharge Pressure kPa (PSI)    ___________  ___________  ___________  ___________  ___________  ___________ 
Driven Pump Discharge Pressure kPa (PSI)    ___________  ___________  ___________  ___________  ___________  ___________ 
Pilot Pump Flow lpm (gpm)    ___________  ___________  ___________  ___________  ___________  ___________ 
Pilot Pump Discharge Pressure kPa (PSI)    ___________  ___________  ___________  ___________  ___________  ___________ 
Flow Control Pressure kPa (PSI)          ___________  ___________  ___________ 
Power shift Pressure kPa (PSI)      ___________  ___________      ___________ 
Current Input mA      ___________  ___________      ___________ 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 4
173-3381 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 5
194-8300 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  51 (13.5)  92.5 (24.4)  75 (19.8)  36 (9.5)  23 (6.1)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  51 (13.5)  92.5 (24.4)  75 (19.8)  36 (9.5)  23 (6.1)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input Amps      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 6
200-3343 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  64 (16.5)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  91.5 (24) 
Driven Pump Flow lpm (gpm)(1)  64 (16.5)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  17.5 (4.6) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  4900 (710) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      790 (115) 
Current Input mA      400  400      320 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 7
200-3366 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 8
200-3369 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 9
200-3376 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  55.6 (14.7)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  55.6 (14.7)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Aux Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
Aux Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 10
200-3377 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)  17.5 (4.6) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Aux Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
Aux Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 11
200-3379 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Aux Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
Aux Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 12
200-3414 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 13
204-2773 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 14
215-9991 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Aux Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
Aux Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 15
244-5326 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  51.5 (13.6)  92.5 (24.4)  75 (19.8)  36 (9.5)  23 (6.1)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  51.5 (13.6)  92.5 (24.4)  75 (19.8)  36 (9.5)  23 (6.1)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140(455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 16
244-8477 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow (if equipped) lpm (gpm)    10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8)  10.5 (2.8) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 17
244-8479 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  115 (30.4)  101 (26.7)  56.5 (14.9)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4)  13 (3.4) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 18
244-8481 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    35 (9.2)  35 (9.2)  35 (9.2)  35 (9.2)  35 (9.2)  35 (9.2) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 19
244-8483 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  55.5 (14.67)  100 (26.4)  84 (22.2)  40.5 (10.7)  27.5 (7.3)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  15700 (2277)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140 (455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 20
247-8780 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)   
Driven Pump Flow lpm (gpm)(1)  60 (15.8)  107.5 (28.4)  88.5 (23.4)  49 (12.9)  29.5 (7.8)  15 (4.0)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  34300 (4975) 
Driven Pump Discharge Pressure kPa (PSI)    9800 (1421)  17640 (2558)  29400 (4264)  6900 (1000)  6900 (1000)  3920 (568) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
OCS Pump Flow lpm (gpm)    25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7)  25.5 (6.7) 
OCS Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3140(455)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1270 (184)  1270 (184)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 21
256-0072 
Canceled Replaced by 272-6959 

Table 22
256-0087 
Canceled Replaced by 272-6957 

Table 23
256-0092 
Canceled Replaced by 272-6955 

Table 24
272-6955 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  55.6 (14.7)  100 (26.6)  78 (20.6)  40 (10.6)  27.5 (7.2)  15 (4)   
Driven Pump Flow lpm (gpm)(1)  55.6 (14.7)  100 (26.6)  78 (20.6)  40 (10.6)  27.5 (7.2)  15 (4)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000  30000 (4351)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000  30000 (4351)  7000 (1015)  7000 (1015)  4000 (580) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (569)  3920 (569)  3920 (569)  3920 (569)  3920 (569)  3920 (569) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (569)  3920 (569) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 25
272-6957 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  59.7 (15.7)  107.5 (28.3)  90 (23.7)  55.5 (14.6)  29.5 (7.8)  15 (4)   
Driven Pump Flow lpm (gpm)(1)  59.7 (15.7)  107.5 (28.3)  90 (23.7)  55.5 (14.6)  29.5 (7.8)  15 (4)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  2000 (2900)  30000 (4351)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  2000 (2900)  30000 (4351)  7000 (1015)  7000 (1015)  4000 (580) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (569)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 26
272-6959 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  98.5 (25.9)  61.5 (16.3)  28.5 (7.5)  15 (4)   
Driven Pump Flow lpm (gpm)(1)  64 (16.9)  115 (30.4)  98.5 (25.9)  61.5 (16.3)  28.5 (7.5)  15 (4)  19 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  2000 (2900)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  2000 (2900)  29992 (4350)  7000 (1015)  7000 (1015)  4000 (580) 
Pilot Pump Flow lpm (gpm)    17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5)  17 (4.5) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (569)  3920 (569)  3920 (569)  3920 (569)  3920 (569)  3920 (569) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 27
339-0512 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  58.8 (15.5)  105(27.6)  80 (21.1)  42.5 (11.2)  28.5 (7.5)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  58.8 (15.5)  105(27.6)  80 (21.1)  42.5 (11.2)  28.5 (7.5)  15 (3.9)  20.5 (5.4) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.8 (1.8)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 28
339-0513 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  63 (16.6)  113.5(29.9)  90 (23.7)  58.5 (15.4)  27.5 (7.2)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  63 (16.6)  113.5(29.9)  90 (23.7)  58.5 (15.4)  27.5 (7.2)  15 (3.9)  20 (5.3) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  20000 (2900)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    14000 (1450)  20000 (2900)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)    12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)  3920 (568)  3920 (568)  4100 (595)  4100 (595)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 29
339-0514 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  67.5 (17.8)  121.5 (32)  98.5 (25.9)  70 (18.4)  30(7.9)  15.0 (3.9)   
Driven Pump Flow lpm (gpm)(1)  67.5 (17.8)  121.5 (32)  98.5 (25.9)  70 (18.4)  30 (7.9)  15.0 (3.9)  20 (5.3) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  2200 (3190)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  2200 (3190)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)    12.2 (3.2)  12.2 (3.2)        12.2 (3.2) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (568)           
Flow Control Pressure kPa (PSI)          3200 (568)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 30
371-5210 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  58.8 (15.5)  105(27.6)  80 (21.1)  42.5 (11.2)  28.5 (7.5)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  58.8 (15.5)  105(27.6)  80 (21.1)  42.5 (11.2)  28.5 (7.5)  15 (3.9)  20.5 (5.4) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.8 (1.8)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2)  12.2 (3.2) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 31
376-8862 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  56 (14.7)  100 (26.3)  78 (20.5)  40 (10.5)  27.5(7.2)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  56 (14.7)  100 (26.3)  78 (20.5)  40 (10.5)  27.5(7.2)  15 (3.9)  20 (5.3) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  10.1 (2.7)  18 (4.7)  18 (4.7)  18 (4.7)  18 (4.7)  18 (4.7)  18 (4.7) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 32
394-7450 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  69 (18)  125 (33)  100 (26)  61 (16)  31 (8)  17 (4.4)   
Driven Pump Flow lpm (gpm)(1)  69 (18)  125 (33)  100 (26)  61 (16)  31 (8)  17 (4.4)  22 (5.9) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  19000 (2755)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  19000 (2755)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  7 (1.8)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (190)  1300 (190)      2400 (348) 
Current Input mA      420  420      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 33
397-3680 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  58 (15.3)  105 (27.6)  76 (20)  40 (10.5)  27.5(7.2)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  58 (15.3)  105 (27.6)  76 (20)  40 (10.5)  27.5(7.2)  15 (3.9)  20 (5.3) 
Drive Pump Discharge Pressure kPa (PSI)    8000 (1160)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    8000 (1160)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.7 (1.7)  12 (3.1)  12 (3.1)  12 (3.1)  12 (3.1)  12 (3.1)  12 (3.1) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568)  3920 (568) 
Flow Control Pressure kPa (PSI)          3200 (464)  3920 (568)  3920 (568) 
Power shift Pressure kPa (PSI)      1300 (189)  1300 (189)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 34
397-3681 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  67 (17)  121 (32)  97 (25)  56 (14)  27 (7)  15 (3)   
Driven Pump Flow lpm (gpm)(1)  67 (17)  121 (32)  97 (25)  56 (14)  27 (7)  15 (3)  20 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.7 (1.7)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (465)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (190)  1300 (190)      2400 (350) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 35
422-1294 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  67 (17)  121 (32)  97 (25)  56 (14)  27 (7)  15 (3)   
Driven Pump Flow lpm (gpm)(1)  67 (17)  121 (32)  97 (25)  56 (14)  27 (7)  15 (3)  20 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.7 (1.7)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (465)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (190)  1300 (190)      2400 (350) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 36
422-1296 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  69 (18)  124 (32)  99 (26)  61 (16)  30 (7)  16 (4)  55 (14) 
Driven Pump Flow lpm (gpm)(1)  69 (18)  124 (32)  99 (26)  61 (16)  30 (7)  16 (4)  22.5 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  19000 (2755)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5075) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  19000 (2755)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.4 (1.6)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (465)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (190)  1300 (190)      2400 (350) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 37
436-6669 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  58 (15)  105 (27)  80 (21)  42 (11)  28 (7)  15 (4)   
Driven Pump Flow lpm (gpm)(1)  58 (15)  105 (27)  80 (21)  42 (11)  28 (7)  15 (4)  20 (5) 
Drive Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    10000 (1450)  17000 (2465)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.4 (1.6)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3)  11.5 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (465)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (188)  1300 (188)      2400 (348) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 38
438-1293 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  69 (18)  125 (33)  92 (24)  52 (13)  34 (9)  18 (4)   
Driven Pump Flow lpm (gpm)(1)  69 (18)  125 (33)  92 (24)  52 (13)  34 (9)  18 (4)  23 (6) 
Drive Pump Discharge Pressure kPa (PSI)    8000 (1160)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    8000 (1160)  18000 (2610)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.7 (1.7)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3) 
Pilot Pump Discharge Pressure kPa (PSI)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3200 (465)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1300 (190)  1300 (190)      2400 (350) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Table 39
457-0235 
Pump Rotation:  CW 
Step  3a  4a  5a  5b  6a 
Pump RPM  500  900  900  900  900  900  900 
Drive Pump Flow lpm (gpm)(1)  58 (15)  105 (27)  71 (18)  30 (7.9)  30 (7.9)  15 (3.9)   
Driven Pump Flow lpm (gpm)(1)  58 (15)  105 (27)  71 (18)  30 (7.9)  30 (7.9)  15 (3.9)  20 (5.2) 
Drive Pump Discharge Pressure kPa (PSI)    5000 (725)  14000 (2030)  30000 (4350)  7000 (1015)  7000 (1015)  35000 (5076) 
Driven Pump Discharge Pressure kPa (PSI)    5000 (725)  14000 (2030)  30000 (4350)  7000 (1015)  7000 (1015)  5000 (725) 
Pilot Pump Flow lpm (gpm)  6.7 (1.7)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3)  12 (3) 
Pilot Pump Discharge Pressure kPa (PSI)    3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570)  3920 (570) 
Flow Control Pressure kPa (PSI)          3000 (435)  3920 (570)  3920 (570) 
Power shift Pressure kPa (PSI)      1500 (218)  1500 (218)      2400 (350) 
Current Input mA      400  400      540 
(1) The flow difference between the pumps should be less than 1 LPM (.26 gpm).

Test Bench Tooling

Table 40
Part Number  173-3381  194-8300  200-3343  200-3366  200-3369  200-3376  200-3377  200-3379 
Drive Adapter  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456 
A1 and A2 Split Flange  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766 
A1 and A2 Flange Adapter  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439 
A3  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR 
A4  7/8 -14 STOR  7/8 -14 STOR 
A5  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 
S1 4-Bolt Flange  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867 
S3  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 
S4  1 1/16 -12 STOR  1 1/16 -12 STOR 
S5  1 5/8 -12 STOR  1 5/8 -12 STOR  1 5/8-12 STOR 
Pi  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Dr1  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 

Table 41
Part Number  200-3414  204-2773  215-9991  244-5326  244-8477  244-8479  244-8481  244-8483 
Drive Adapter  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456 
A1 and A2 Split Flange  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766 
A1 and A2 Flange Adapter  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439 
A3  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR 
A4  7/8 -14 STOR  7/8 -14 STOR  7/8 -14 STOR  7/8 -14 STOR  7/8 -14 STOR 
A5  1 1/16 -12 STOR 
S1 4-Bolt Flange  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867 
S3  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 
S4  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 
S5  1 5/8 -12 STOR 
Pi  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Dr1  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 

Table 42
Part Number  247-8780  256-0072  256-0087  256-0092  272-6955  272-6957  272-6959  339-0512 
Drive Adapter  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456 
A1 and A2 Split Flange  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766 
A1 and A2 Flange Adapter  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U7439 
A3  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR 
A4  7/8 -14 STOR  7/8 -14 STOR     
A5 
S1 4-Bolt Flange  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867 
S3  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 
S4 
S5 
Pi  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18STOR  9/16 -18 STOR 
Pn1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Ps2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Dr1  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR 

Table 43
Part Number  339-0513  339-0514  371-5210  376-8862  394-7450  397-3680  397-3681  422-1294 
Drive Adapter  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456  131-6456 
A1 and A2 Split Flange  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766  1P-5766 
A1 and A2 Flange Adapter  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439  9U-7439 
A3  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4 -16 STOR  3/4-16 STOR  3/4-16 STOR 
A4 
A5 
S1 4-Bolt Flange  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867  1U-9867 
S3  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1-1/16-12 STOR  1-1/16-12 STOR 
S4 
S5 
Pi  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Pn1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16-18 STOR  9/16-18 STOR 
Pn2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16-18 STOR  9/16-18 STOR 
Ps1  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16-18 STOR  9/16-18 STOR 
Ps2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR 
Dr1  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 -12 STOR  1 1/16 - 12 STOR  1 1/16 - 12 STOR 

Table 44
Part Number  422-1296  436-6669  438-1293  457-0235         
Drive Adapter  131-6456  131-6456  131-6456  131-6456         
A1 and A2 Split Flange  1P-5766  1P-5766  1P-5766  1P-5766         
A1 and A2 Flange Adapter  9U-7439  9U-7439  9U-7439  9U-7439         
A3  3/4-16 STOR  3/4-16 STOR  3/4-16 STOR  3/4-16 STOR         
A4         
A5         
S1 4-Bolt Flange  1U-9867  1U-9867  1U-9867  1U-9867         
S3  1-1/16-12 STOR  1-1/16-12 STOR  1-1/16-12 STOR  1-1/16-12 STOR         
S4         
S5         
Pi  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR         
Pn1  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR         
Pn2  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR         
Ps1  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR  9/16-18 STOR         
Ps2  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR  9/16 -18 STOR         
Dr1  1 1/16 - 12 STOR  1 1/16 - 12 STOR  1 1/16 - 12 STOR  1 1/16 - 12 STOR         

Caterpillar Information System:

773E and 777D Off-Highway Truck/Tractor Object Detection System (Two Cameras) General Information
586C LRC Site Prep Tractor Engine Oil Level - Check
980M Tier 3, 982M Tier 3 and 980L Tier 3 Wheel Loader Power Train Final Drive, Brake and Wheel - Remove
AP655F Asphalt Paver Diesel Exhaust Fluid Filter - Clean/Replace
12M Series 3 Motor Grader Safety Messages
773E and 777D Off-Highway Truck/Tractor Object Detection System (Two Cameras) System Components
773E and 777D Off-Highway Truck/Tractor Object Detection System (Two Cameras) Safety
CB36B Asphalt Compactor and CB34B, CB34B XW and CC34B Vibratory Utility Compactors Machine Systems Motor Support (Vibratory)
CB36B Asphalt Compactor and CB34B, CB34B XW and CC34B Vibratory Utility Compactors Machine Systems Motor Support (Vibratory)
C7.1 Industrial Engine Battery - Replace
CB36B Asphalt Compactor and CB34B, CB34B XW and CC34B Vibratory Utility Compactors Machine Systems Motor Support (Vibratory)
773E and 777D Off-Highway Truck/Tractor Object Detection System (Two Cameras) Display Module - Replace
980M Tier 3, 982M Tier 3 and 980L Tier 3 Wheel Loader Power Train Final Drive, Brake and Wheel - Install
980M Tier 3, 982M Tier 3 and 980L Tier 3 Wheel Loader Power Train Oscillating Axle (Rear) - Remove
980M Tier 3, 982M Tier 3 and 980L Tier 3 Wheel Loader Power Train Oscillating Axle (Rear) - Install
586C LRC Site Prep Tractor Engine Oil and Filter - Change
988K XE Wheel Loader Machine Systems Boom - Remove and Install
Cat® Fleet Onboard v3.x Object Detection Sensor - Clean/Inspect
Cat® Fleet Onboard v3.x Camera - Clean
2013/11/14 New Engine Front Cover Used On Certain Applications Equipped With C13 Machine Engines {1151, 1162, 1206}
2013/08/28 A New Rear Access Ladder Group is Now Used on the 785C Off-Highway Truck {7254}
Cat® Fleet Onboard v3.x Washing System - Check
MH3049 Material Handler TA2 Technical Inspection{7000} MH3049 Material Handler TA2 Technical Inspection{7000}
Instructions For Installing The Bracket Assembly For The Steering Cylinder on Certain 16M Motor Graders{0679, 4305, 4313, 5225} Instructions For Installing The Bracket Assembly For The Steering Cylinder on Certain 16M Motor Graders{0679, 4305, 4313, 5225}
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