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INSTALLING, OPERATING, AND MAINTAINING INSTALLING, OPERATING, AND MAINTAINING INSTALLING, OPERATING, AND MAINTAINING INSTALLING, OPERATING, AND MAINTAINING MODEL D1086/D280 5 AMP GENERATOR FIELD CONTROL WITH ‘S’ SHAPE PATTERN GENERATOR INSTRUCTION MANUAL # 910-1252-003...
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INSTALLING, OPERATING AND MAINTAINING THE MODEL D1086/D280 5 AMP GENERATOR FIELD CONTROL WITH ‘S’ SHAPE PATTERN GENERATOR REVISION: 2.1 OCTOBER 2003...
TABLE OF CONTENTS INTRODUCTION ...................................4 SAFETY .......................................5 WARRANTY ....................................5 Q.C. TESTING.....................................5 STORAGE....................................6 SECTION TWO ....................................7 GENERAL DESCRIPTION................................7 INTRODUCTION..................................7 CONTROL SPECIFICATIONS..............................7 Speed Settings:..................................7 Acceleration and Deceleration Rates and Configuration: ......................8 ‘S’ Shape Curve Knee Settings ..............................8 Dead Zone Time Delay ................................9 SECTION THREE ..................................10 INSTALLATION INSTRUCTIONS ............................10 INTRODUCTION..................................10...
Thank you for purchasing an IPC Automation elevator control. At IPC we are committed to designing and manufacturing high quality controls that meet or exceed our customers needs. This manual provides the information you will need in order to properly install, operate and troubleshoot the Model D1086 5 Amp Generator Field Control with ‘S’...
This Statement of Warranty covers all new equipment. The D1086/D280 Generator Field Control with ‘S’ Shape Pattern Generator has been designed as a standard product to meet the general criteria for providing an ‘S’ shape reference signal to be used in conjunction with a solid state generator field control for controlling Motor Generators for Elevator use.
STORAGE Should it become necessary to store the control for any length of time, please keep the following precautions in mind to ensure the proper operation of the control. " Store the control in a clean, dry (non-corrosive) location that is protected from sudden temperature changes, high levels of moisture, shock and vibration.
GENERAL DESCRIPTION INTRODUCTION The Model D1086/D280 Generator Field Control, in its typical operating mode, varies the Generator field voltage in proportion to an input command signal. Adjustment potentiometers are provided for adjusting six contact-selectable speed setpoints (including high speed), two acceleration rates and three deceleration rates.
Acceleration and Deceleration Rates and Configuration: The D1086/D280 ‘S’ Shape Curve Board is factory preset with the J1 jumper in the 1-2 position. This configuration provides two Acceleration rates (ACC1, ACC2) and three Deceleration rates (DCC1, DCC2, and DCC3). Figure One Moving the jumper to the 2-3 position changes the ACC2 potentiometer to a fourth Deceleration pot.
Dead Zone Time Delay The Dead Zone Time Delay allows the control reference output signal at TB2-9 to ramp to zero-speed during the interval between the drop out of the Run input direction signal, and the engagement of the mechanical brake.
SECTION THREE INSTALLATION INSTRUCTIONS INTRODUCTION The following section contains hook-up notes and drawings for the model D1086/D280 Generator Field Control with ‘S’ Shape Curve. The hook-up notes refer to the hook-up diagram supplied as part of this manual. THE D1086/D280 SHOULD BE INSTALLED, ADJUSTED AND SERVICED BY QUALIFIED ELECTRICAL MAINTENANCE PERSONNEL WHO ARE FAMILIAR WITH THE CONSTRUCTION AND OPERATION OF ALL EQUIPMENT IN THE ELEVATOR SYSTEM.
D280 board to run in the UP direction. SUPPLY VOLTAGE Connect a 208 to 230 Volt 50/60Hz Single Phase AC line to L1 and L2 of TB1 on the D1086 Board (bottom Board). Internal 5 Amp fusing is provided on the D1086 board.
FEEDBACK CONNECTION Connect a jumper from “-“ to “FB” on TB1 of the D1086 (bottom) board. Failure to install this jumper will cause the control to produce full output voltage when any speed is selected.