IND065BHV Hornet: Non-Isolated DC-DC Voltage Regulator Modules 12Vdc input 32Vdc to 54Vdc output 65W Max Power Vin+ Vout+ VIN VOUT PGOOD MODULE Applications Cin TRIM Co RTrim Industrial Equipment ON/OFF Control Boards SIG GND Test Equipment GND GND Electrical Features 12V (20%) Input voltage M echSmanall icsize:al Fe 27.9 maturems x 11.4 mm x 8.5 mm (1.1 in x 0.45 in x 0.335 in) Output voltage programmable from 32Vdc to 54Vdc via external resistor Operating range: -40C to 85C ambient Remote On/Off for optional external control Fixed switching frequency Output overcurrent protection (non-latching) Process and Safety Qualified for 1000h High Temperature Operating Bias, 1000h 85RH/85C Temperature, Humidity and Bias, 700 cycle -40 to 125C thermal cycling ANSI/UL* 62368-1 and CAN/CSA C22.2 No. 62368-1 Recognized, DIN VDE 0868-1/A11:2017 (EN62368-1:2014/A11:2017) ISO** 9001 and ISO 14001 certified manufacturing facilities Compliant to RoHS Directive 2011/65/EU and amended Directive (EU) 2015/863 Compliant to REACH Directive (EC) No 1907/2006 Compatible in a Pb-free or SnPb reflow environment. Suitable for aqueous clean. Suitable for conformal coating with dip and vapor deposition. Conformal coating can provide the protection to meet Salt Fog Test per IEC 60068-2-52 (Severity 3) and Mixed Gas Flow test per Telcordia GR-3108 Outdoor Levels. 3 year warranty Output Output Device Code Input Voltage On/Off Logic Comcode Voltage Current (Max.) Negative 1600102910A IND065BHV 9.6 14.4Vdc 32 54Vdc 2A( 32V) Thermal Performance Full rated output with natural convection up to 72C at 32Vout and up to 49C at 54Vout.. Thermal curves for 3 voltages below. 3.0 1.5 1.5 Current (A) vs. Ambient Temp. (C) 2.5 NC Current (A) vs. Ambient Temp. (C) NC 2.0 1.0 1.0 1.0m/s 0.5m/s 32Vout (200LFM) 1.0m/s (100LFM) (200LFM) NC 0.5m/s 1.5 2.0m/s (100LFM) (400LFM) 2.0m/s 1.0m/s (400LFM) 1.0 (200LFM) 0.5 0.5 3.0m/s 54Vout 0.5m/s 48Vout (600LFM) 3.0m/s (100LFM) 0.5 (600LFM) Current (A) vs. Ambient Temp. (C) 2.0m/s (400LFM) 0.0 0.0 0.0 55 60 65 70 75 80 85 55 60 65 70 75 80 85 45 50 55 60 65 70 75 80 85 May 13, 2021 2017 General Electric Company. All rights reserved. Page 1 Heat Transfer via Conduction The module can also be used in a sealed environment with cooling via conduction from the modules top surface through a gap pad material to a cold wall, as shown below. The output current derating versus cold wall temperature, when using a thermal pad and a gap filler is shown below. Thermal pad: Bergquist P/N: GP2500S20 Gap filler: Bergquist P/N: GF2000 Figure 1. Output Current versus Cold Wall Temperature V =12V. IN May 13, 2021 2017 General Electric Company. All rights reserved. Page 2