IS210AEBIH3BEC
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Product Details
Brand Name | GE | Place of Origin | China | |
Model Number | IS210AEBIH3BEC |
Product Description
Brand: GE
Type:IS210AEBIH3BEC
Origin: the United States
Warranty: 365 days
Colour: new/used
Shipping method: Courier delivery
Module of PLC, DCS, ESD system card, the card is a vibration monitoring system, steam turbine control system module, the advantages of the gas generator spare parts brand: Allen Bradley, BentlyNevada, ABB, Emerson Ovation, Honeywell DCS, Rockwell ICS Triplex, FOXBORO, Schneider PLC, GE Fanuc, Motorola, HIMA, TRICONEX, Prosoft etc. Various kinds of imported industrial parts of our products are widely used in metallurgy, petroleum, glass, aluminum manufacturing, petrochemical industry, coal mine, papermaking, printing, textile printing and dyeing, mechanical, electronic manufacturing, automobile manufacturing, plastic machinery, electric power, water conservancy, water treatment/environmental protection, boiler heating, energy, power transmission and distribution and so on.
The response time for DINP1, DINP2, and DINP3 is less than 1 ms. DINP4 has a response time of less than 100 μs. NOTE For fastest response to an input, configure the drive to respond when the input optoisolator is turned on (current starts flowing in the photo diode). Response time is cut approximately in half.
DEFAULT INPUT FUNCTIONS The list below describes the factory default functions for each of these inputs. A logic input hardware is active when current is flowing through its photo diode. Inactive logic input hardware is open circuited (has no photo diode current). The active control logic polarity of each input can be set by the corresponding DInpXPol NV Parameter. In other words, depending on the state of DinpXPol, a given hardware input driven active, will activate or not activate a drive control function. DINP1 (ENABLE) Input 1: The ENABLE control function mapped to this input enables/disables the drive and resets the latched drive faults. With default logic polarity (DInp1Pol = Normal), the drive can enable when input 1 is activated (current flowing in the photo diode) and will be disabled when open circuited. This input will disable a drive independent of any other parameters. Successful enabling requires no drive faults and SWEnable, SynqNet drive enable active as appropriate. Setting this input to the inactive state clears any latched drive faults. DINP2 (INHIBIT+) Input 2: The INHIBIT+ control function mapped to this input prevents further motion in the clockwise shaft motion direction when activated by current flowing in the photo diode. This input has no effect on motion in the counterclockwise direction. This function can be turned on or off by setting EnhibitCW. DInp2Pol sets the control logic active polarity for this hardware input. This input is useful for a clockwise over travel limit switch. Broken wire “failsafe” over travel limit switch operation requires that DInp1Pol be set to Invert by the user to change the factory default. NOTE: For S200 drives with the SynqNet option, the base drive INHIBIT+ function is turned off by EnhibitCW = Off. Over travel limit switch inputs must be wired directly to J13 on the SynqNet option card. DINP3 (INHIBIT-)
Input 3: This input operates symmetrically to DINP2 with the INHIBIT- control function preventing further motion in the counter-clockwise shaft motion direction. This function can be turned on or off by setting EnInhibitCCW. DInp3Pol sets the control logic polarity. DINP4 (DIRECTION) Input 4: This input is the direction input when the drive is in Position Mode with the PosCmdSrc set to Step & Direction. Open circuit/no LED current positively increments the position command/motor goes CW. Set up time for direction is 100 μs. Minimum pulse width is 200 μs. Refer to DInp4. 6.7.1.2. DRIVING THE GENERAL PURPOSE INPUTS Sinking Logic For compatibility with sinking outputs, the DINP COM terminal is connected to the positive terminal of a power source (4.0 to 30 VDC). The input (DINP1-4) is connected to the sinking logic output of the field device as shown in the diagram below
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