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EN61000-3-2 Datasheet(PDF) 4 Page - General Semiconductor |
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EN61000-3-2 Datasheet(HTML) 4 Page - General Semiconductor |
4 / 7 page GE Energy CAR2512FP series rectifier Input: 90Vac to 264Vac; Output: 12 Vdc @ 208A; 3.3Vdc or 5 Vdc @ 1A July 18, 2012 ©2012 General Electric Company. All rights reserved. Page 4 EMC Parameter Criteria Standard Level Test AC input Conducted emissions EN55022, FCC Docket 20780 part 15, subpart J EN61000-3-2 A* 0.15 – 30MHz 0 – 2 KHz Radiated emissions EN55022 A* 30 – 10000MHz Voltage dips EN61000-4-11 A -30%, 10ms B -60%, 100ms B -100%, 5sec Voltage surge EN61000-4-5 A 4kV, 1.2/50µs, common mode A 2kV, 1.2/50µs, differential mode immunity Fast transients EN61000-4-4 B 5/50ns, 2kV (common mode) Enclosure immunity Conducted RF fields EN61000-4-6 A 130dBµV, 0.15-80MHz, 80% AM Radiated RF fields EN61000-4-3 A 10V/m, 80-1000MHz, 80% AM ENV 50140 A ESD EN61000-4-2 B 4kV contact, 8kV air * Note: Contact the factory for a recommended external EMI filter to meet Class B emissions Status and Control Some functions have two means of monitor/control; A signal level that represents the analog value being measured or controlled, or, reading/writing via the i2C port the measured value or the control command. Unless otherwise noted, control via the signals pins is ‘active’ so long that a firmware based command is not initiated. Once firmware initiates a command that is also represented on a signal pin, the firmware takes over and replaces the hardware based control signal. Firmware control is maintained until bias power to the processor is interrupted. Once bias power is removed the processor resets and the analog signal pin control is ‘active’ until firmware takes over control. Details of analog controls are provided in this data sheet under Signal Definitions. GE Energy will provide separate application notes on the I2C protocol. Contact your local GE Energy representative for details. Signal Definitions All signals and outputs are referenced to Output return. These include ‘Vstb return’ and ‘Signal return’. Input Signals Voltage programming (Vprog): An analog voltage on this signal can vary the output voltage ± 10% from 10.8Vdc to 13.2Vdc. The equation of this signal is: Vout = 10.8 + (Vprog * 0.96) 0 < Vprog < 2.5 If 2.5 < Vprog < 3, the output is 13.2V. If Vprog is > 3V or left open the programming signal is ignored and the unit output is set at the setpoint of 12Vdc. Load share (Ishare): This is a single wire analog signal that is generated and acted upon automatically by power supplies connected in parallel. The Ishare pins should be tied together for power supplies if active current share among the power supplies is desired. No resistors or capacitors should get connected to this pin. Remote ON/OFF: Controls the presence of the main 12Vdc output voltage. This is an open collector, TTL level control signal. This signal needs to be pulled HI externally through a resistor. Maximum collector voltage is 12Vdc and the maximum sink current is 1mA. A Logic 1 (TTL HI level) turns ON the 12Vdc output, while a Logic 0 (TTL LO level) turns OFF the 12Vdc output. A turn OFF command either through this signal (Remote ON/OFF) or firmware commanded would turn OFF the 12V output. Enable: This is a short signal pin that controls the presence of the 12Vdc main output. This pin should be connected to ‘output return’ on the system side of the output connector. The purpose of this pin is to ensure that the output turns ON after engagement of the power blades and turns OFF prior to disengagement of the power blades. Write protect (WP): This signal protects the contents of the EEPROM from accidental over writing. When left open the EEPROM is write protected. A LO (TTL compatible) permits writing to the EEPROM. This signal is pulled HI internally by the power supply. |
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Similar Description - EN61000-3-2 |
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