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  • GE IS215VCMIH2B VME Communication Interface Card
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  • GE IS215VCMIH2B VME Communication Interface Card

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    GE IS215VCMIH2B VME Communication Interface Card

    • ¥22587.14
      ¥23548.25
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    Weight:2.870KG
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Description

GE IS215VCMIH2B VME Communication Interface Card


GE IS215VCMIH2B VME Communication Interface Card

Part Number IS215VCMIH2B Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI Function Module Availability In StockIS215VCMIH2B is a VME Communication Interface Card manufactured by General Electric as part of the Mark VI Series used in gas turbine control systems. The VME Bus Master Controller (VCMI) board serves as the communication interface between the controller and the I/O boards as well as the communication interface to the IONet system control network. 

The VCMI also serves as the VME bus master in the control and I/O racks, managing the IDs for all of the boards in the rack and their related terminal boards. Through the J301 backplane connector, the VCMI card receives analog and digital feedback on power status. The VCMI board is available in two versions: VCMIH1 and VCMIH2. The board has four-port connections on the front faceplate. Three IONet connectors and one serial port are included. 

Three LED indicators are located above each IONet connector. "TX," "RX," and "CD" are the labels on them. The board also contains four LEDs labeled 1,2,4, and 8 as well as LED indications labeled Run/Fail/Status (positioned above a push-button reset switch). The faceplate is connected to the main board using screws. FEATURES OF IS215VCMIH2B BOARD TYPE: 6U high VME board with 0.787-inch width PROCESSOR: TMS320C32 is a 32-bit digital signal processor by Texas Instruments. MEMORY 32 Kbytes of dual-port memory in a 32-bit transmission configuration 256k x 32 SRAM 512k x 8-VCMIH B; 4096K x 8-VCMIH C flash memory COMMUNICATION H1 version - 10 Mbits/sec, one IONet 10Base2 Ethernet port, BNC connector H2 version - Three IONet 10Base2 Ethernet ports, BNC connections, 10 Mbits/sec TRANSFERS OF VME BUS BLOCKS: 1 RS-232C serial port with a D-style plug connector and a 9600 baud rate (only) FRAME RATE (FR): TMR 20 ms, 80 ms application dependent 10 ms (100 Hz) for simplex 40 ms (25 Hz) for TMR 20 ms, 80 ms DIAGNOSTICS: Internal power supply buses of +5 V, 12 V, 15 V, and 28 V are monitored and alarmed. 

Except for the 28 V supplies, which are set at 5.5 percent, the alarm settings are customizable and commonly set at 3.5 percent. Three simplex system setups using the VCMI with local and distant I/O. Each I/O rack has its own VCMI board, and many I/O racks can be connected to IONet. A second IONet port on the VCMI can be used as a parallel IONet to boost data throughput for applications that demand low latency. A tiny system, all of the I/O is put in the VME control rack, eliminating the need for any remote I/O racks. The VCMI features three IONet ports, with one for each of the three channels (R, S, and T). 

The larger system with distant I/O racks in the second scenario. Although many I/O racks are supported by one IONet, only one rack is displayed here. Regarding I/O boards and points, all I/O channels (R, S, and T) are the same. There are three standard heights for VMEbus cards: 3U, 6U, and 9U. Transition modules may be put on the back side of the backplane in 6U and 9U systems. Transition modules only communicate with the VMEbus module on the side of the backplane opposite of them using the user-defined pins of the J0, J2, and J3 connectors, not with VMEbus. Various power supplies (5V, +/ 12V, 3.3V, 48V), placed locally or remotely, are available. The fantray unit makes it possible to keep an eye on variables including voltages, currents, fan speed, and temperature. 

Instructions and warnings related to the operation of the product:

The following specifications must be strictly observed:

 The technical specifications and typical applications of the product system must be strictly observed.

 PERSONNEL TRAINING: Only trained personnel may install, operate, maintain or repair the product system. These personnel must be instructed on the

Hazardous area conditions must be instructed and explained to these personnel.

 Unauthorised modifications: No modifications or structural changes may be made to the product system.

 Maintenance Responsibility: It must be ensured that the product system is only used under appropriate conditions and in a condition that is fully fit for purpose.

 Working environment: The user must fulfil the specified environmental conditions:

Safety regulations

The following safety regulations must be fully observed when (maintenance) work is carried out on the product system:

1 Disconnect completely.

2 Secure to prevent reconnection.

3 Confirm that the installation has been completed.

4 Perform grounding and short-circuiting.


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