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DCHBA2 Datasheet(PDF) 5 Page - Wall Industries,Inc. |
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DCHBA2 Datasheet(HTML) 5 Page - Wall Industries,Inc. |
5 / 7 page Rev C DCHBA2 SERIES 2 Watts Medical Isolated DC/DC Power Converter Non-Regulated Single & Dual Outputs 10/20/2015 Wall Industries, Inc. • 37 Industrial Drive, Exeter, NH 03833 • Tel: 603-778-2300 • Toll Free: 888-597-9255 • Fax 603-778-9797 website: www.wallindustries.com • e-mail: sales@wallindustries.com Page 5 of 7 TEST CONFIGURATIONS All specifications are based on 25°C, Nominal Input Voltage, and Maximum Output Current unless otherwise noted. We reserve the right to change specifications based on technological advances. DC Power Supply: offers a wide voltage and current range precisely. Current Meter (A): Accuracy 200µA~200mA 4 ranges ±(0.2% rdg + 2 digits) 2000mA~20A 2 ranges ±(0.3% rdg + 2 digits) Voltage Meter (V): Accuracy ±(0.3% rdg + 4 digits) Load: At Full Load Wires: The resistance of the wires must be small. 1. Input Voltage Range: Narrow input voltage range (±10%); Wide input voltage range (2:1 and 4:1) Ex: Narrow input voltage range (±10%) 5VDC nominal input 4.5~5.5VDC 12VDC nominal input 10.8~13.2VDC 24VDC nominal input 21.6~26.4VDC Wide input voltage range 2:1 5VDC nominal input 4.5~9VDC 12VDC nominal input 9~18VDC 24VDC nominal input 18~36VDC 48VDC nominal input 36~75VDC Wide input voltage range 4:1 (W) 24VDC nominal input 9~36VDC 48VDC nominal input 18~75VDC 2. Input Power: Pin=Vin x Iin Vin: Input voltage Iin: Input current 3. Output Power: Pout=Vout x Iout Vout: Output Voltage Iout: Output Current 4. Efficiency: Efficiency= Pout Pin x100% Pout: Output Power Pin: Input Power 5. Voltage Accuracy: |Vout-Vout(Nominal)| x100% Vout: Output Voltage Vout Vout (nominal): Nominal output voltage 6. Line Regulation: (1) Wide input voltage range and regulated output voltage series | Vout(LL)-Vout(HL) | x100% LL: Low Line Input Voltage Vout(LL) HL: High Line Input Voltage (2) Narrow input voltage range (±10%) and unregulated output voltage series Line Regulation= | ΔVout | ΔVin ΔVout= Vin(+10%)-Vin(- 10%) x 100% Vin(Nominal) Vout(+10%): Output Voltage at Vin=1.1 x Vin(nominal) & Full Load Vout(-10%): Output Voltage at Vin= 0.9 x Vin(nominal) & Full Load Vout: Output Voltage at Vin= Vin(nominal) & Full Load |
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