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  • GE IS210SAMBH1A - ACOUSTIC MONITORING BOARD
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  • GE IS210SAMBH1A - ACOUSTIC MONITORING BOARD

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    IS210SAMBH1A - ACOUSTIC MONITORING BOARD
    • ¥11000.00
      ¥34670.00
      ¥11000.00
      ¥11000.00
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    Weight:3.600KG
    • Quantity:
    • (Inventory: 33)
Description
IS210SAMBH1A - ACOUSTIC MONITORING BOARD

GE IS210SAMBH1A - ACOUSTIC MONITORING BOARD

Part Number IS210SAMBH1A Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI Function Module Availability In StockThe IS210SAMBH1A developed by General Electric is a SAMBH assembly printed Circuit Board that was created for their Speedtronic Mark VI line that is used to operate various turbines. It has been designed as a small Circuit Board with a metal base and sides. It is populated with four tan colored female terminals with forty-eight small pin holes across the surface that connect with wiring harnesses that have a forty-eight pin male terminal. 

This allows the board to communicate and work with the other Circuit Boards in your system. Additionally it has six green components with twelve openings in each section that are used to attach various kinds of wires to the Circuit Board. There is a small silver flat headed screw that you loosen to input the wires and tighten down to secure the wire into place and each port in the green components is labeled with a number in the front faceplate. Additionally, there is a black strip of metal that has a diagram for the TB Layout along with two diagrams for jumper settings.Module manufactured by General Electric as part of the Mark VI/VIe Series used in gas turbine sppedtronic control systems

Technical data

Electrical connection parameters

Number and type of input terminals: Usually there are several input terminals, the number of which may vary between 10 and 30, depending on the model. The input terminal types are compatible with a wide range of signal interfaces, e.g. analogue signal inputs for common industrial sensor signals such as 0-10V voltage signals, 4-20mA current signals, etc.; digital signal inputs for switching signals at TTL (Transistor Transistor Logic) or CMOS (Complementary Metal Oxide Semiconductor) levels, etc.

Number and type of output terminals: The number of output terminals matches the number of input terminals or is set according to the specific requirements of the protection function, also in the range of 10 - 30. Output terminals are mainly used for connecting protection devices and controllers, and the types include digital signal terminals capable of outputting sufficient driving capacity (e.g. output currents up to tens of milliamps, used for driving relays) and analogue signal output terminals (used for connecting some protection devices that require analogue signal control).

Terminal spacing and current rating: The terminals are spaced in accordance with industry standards, generally between 5mm - 10mm, to facilitate wiring and prevent short circuits. The rated current of each terminal varies according to the designed use, for general signal transmission terminals, the rated current may be within a few amperes, while for some terminals connected to high-power protection devices, the rated current may reach 10A - 20A.

Signal Processing Parameters

Signal Transmission Speed: High-speed signal transmission, up to several megabits per second (Mbps) for digital signals, ensures timely transmission of sensor signals to protective devices and controllers for fast protection response. For analogue signals, the transmission bandwidth can meet the frequency range of common industrial sensor signals, for example, the bandwidth can reach tens of kilohertz (kHz) to hundreds of kilohertz, to ensure the accurate transmission of analogue signals.

Signal isolation and filtering: with signal isolation function, can isolate the electrical interference between the input and output signals, isolation voltage can reach thousands of volts (kV). At the same time, some high-frequency interference signals and noise signals are filtered, the filtering effect can make the noise ratio of the signal reduced to a certain degree, such as reducing the noise signal strength to the original signal below 1% - 5%.

Physical Parameters

Dimensions: The external dimensions are generally designed according to the installation space and system layout, the length may be between 20cm - 40cm, the width between 10cm - 20cm and the thickness between 3cm - 8cm, which is easy to be installed in the control cabinet or the protective compartment of the equipment.

Weight: Typically between 1kg - 3kg, the lighter weight allows for easy installation and movement without overburdening the mounting structure.

Environmental parameters

Operating Temperature Range: Can work in a wide range of temperatures, generally - 20 ℃ - + 60 ℃, can adapt to different industrial site temperature conditions.

Humidity range: Relative humidity range is typically 10% - 90% (non-condensing), ensuring normal operation in different humidity environments.

Application Areas

Power system equipment protection: In the protection system of power equipment such as generators, transformers, high-voltage switchgear, etc., it is used as the core protection terminal board to connect various sensors such as temperature, current, pressure, etc. with protection relays. For example, when the generator stator winding temperature is too high, the signal transmitted through the terminal board triggers the temperature protection relay, so that the generator can be withdrawn from operation to avoid equipment damage.

Industrial automation key equipment protection: It plays a role in the protection system of key equipment of industrial automation production lines (such as large motors, robot controllers, high-precision processing equipment, etc.). For example, in the protection of the robot arm motor of the automobile manufacturing production line, it receives the motor's current and temperature signals, and once the signals are abnormal, it stops the motor from running in time through the connected protection device, preventing the motor from burning out and guaranteeing the normal operation of the production line.

Equipment protection in energy management system: In the protection system of energy production, conversion and distribution equipment (e.g. solar inverters, wind turbine converters, etc.), it is used to connect equipment status monitoring sensors and protection devices. For example, in the solar photovoltaic power generation system, when the internal temperature or current of the inverter is abnormal, the protection mechanism is activated by the signal transmitted through the terminal board to protect the inverter from damage and ensure the stable operation of the energy system.


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