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G2PW2V560PSRT005 Datasheet(PDF) 4 Page - Bel Fuse Inc. |
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G2PW2V560PSRT005 Datasheet(HTML) 4 Page - Bel Fuse Inc. |
4 / 8 page ©2006 Bel Fuse Inc. Specifications subject to change without notice. 11.06 POWER PRODUCTS PISCES II DC/DC CONVERTERS G2PW2V560 48V Input – 2.5VDC – 60A Output Bel Power Inc. 155 Flanders Road, Westborough, MA 01581 • Tel 508-870-9775 • Fax 508-870-9796 • www.belpower.com page 4 Application Notes CoolConverter™ Bel Power’s Proprietary CoolConverter™ • Patented single-stage power conversion architecture, control and magnetic design allow unprecedented power density and efficiency in an isolated power supply. Protection and Control Valid Input Voltage Range The converter measures the input voltage and will not allow operation outside of the input voltage specification. As shown by the graphs, hysteresis is added to both the high and low voltage to prevent the converter from turning on and off repeatedly when the voltage is held near either voltage extreme. At low line, this assures the maximum input current is not exceeded; at high line, this assures the semiconductor devices in the converter are not damaged by excessive voltage stress. ON/OFF Logic Option The ON/OFF control logic can be either Negative (standard) or Positive to enable the converter. For Negative logic, the ON/OFF pin is brought to below 1.0V with respect to the –INPUT pin to enable the converter. The pull-down must be able to sink 100µA. For Positive logic, the ON/OFF pin is brought to greater than 4.0V with respect to the –INPUT pin and be limited to less than 10V. To request the Positive logic version, add the suffix (P) to the standard part number. The ON/OFF pin has a built-in pull-up resistor of approximately 100k Ω to +5V. Output Over Voltage Protection The output voltage is constantly monitored by the microprocessor with a redundant secondary-side measurement circuit that both shuts down the duty cycle and triggers the microprocessor to shut down. If the output voltage exceeds the over voltage specification, the microprocessor will latch the converter off. To turn the converter on required either cycling the ON/OFF pin or power to the converter. This advanced feature prevents the converter from damaging the load if there is a converter failure or application error. If non- latching is required, consult factory. • An advanced microcontroller reduces parts count while adding features, performance and flexibility in the design. • Low common-mode noise results from lower capacitance in the transformer from balanced winding design. Under Voltage Hysteresis 6 5 4 3 2 1 0 30 34 37 Input Voltage (V) 36 32 33 35 31 Over Voltage Hysteresis 6 5 4 3 2 1 0 76.5 78.5 80.5 Input Voltage (V) 79.5 77.5 78 80 79 77 |
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