Electrical Specifications. Input undervoltage shutdown/startup. 37 Vdc shutdown 93% (target for -04Y variant) Overtemperature protection (Open frame)

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Transcription:

POWER Preliminary Data Sheet ADC100M Series 100 Amp PSA Main DC/DC Converter Total Power: 100 W, 180 W (1.0 V @ 100 A) (1.8 V @ 100 A) Input Voltage: 40-60 Vdc Single Output Versions: 0.6-1.2 V 1.6-2.0 V SPECIAL FEATURES 100 Amp continuous current PSA compliant Up to 93% efficient Low ripple and noise Data center 48 Vdc input range Open frame optimized for air cooling Surface mount termination Fixed switching frequency High capacitive load capability Pre-bias startup capability High reliability RoHS 6 compliant UL94 V-0 materials Two year warranty (consult factory for extended terms) SAFETY EN60950 UL/CSA60950 CE Electrical Specifications Input Input voltage Input surge Input undervoltage shutdown/startup Efficiency I/O insulation I/O isolation Output Output voltage Output voltage adjustment Output current maximum Noise and ripple Overtemperature protection (Open frame) Overvoltage protection method/ovp operation Overcurrent protection method/ocp operation Control 40 to 60 Vdc 80 V for 10 msec 39 Vdc startup 37 Vdc shutdown 93% (target for -04Y variant) Operational insulation 500 Vdc 1.0 V nominal (-04X variant) 1.8 V nominal (-04Y variant) 0.6 V to 1.2 V (-04X variant) 1.6 V to 2.0 V (-04Y variant) 1.0 V at 100 Amps (-04X variant) 1.8 V at 100 Amps (-04Y variant) 1% Vout 120 C hot spot Non-latching protection 120% of nominal Vout Latching protection 115% of max Iout Non-latching protection Enable Negative enable Control Remote sense Columbus communication Switching frequency AVSBus commands supported SVID control supported Provided All control provided for up to 5 satellite stamps supported TBD

Ordering Information Model Number Input Voltage Output Voltage Output Current Structure ADC100M-04X 40-60 Vdc 1.0 Vdc 100 A Open frame, surface mount ADC100M-04Y 40-60 Vdc 1.8 Vdc 100 A Open frame,surface mount ADC = Artesyn Direct Conversion X = 1.0 V output version 100 = 100 A rated Y = 1.8 V output version 04 = 40-60 Vin Environmental Specifications Storage temperature -40 to +105 C Ambient operating temperature -40 to +85 C Baseplate operating temperature -40 to +100 C (no power derating) MTBF 500 k hours at 40 C, 70% load, nominal input Termination Descriptions Pin 1-18 Functions Pad # Pin Name Pin Function Pad # Pin Name Pin Function 1A1 +IN Positive Input voltage supply connection 2B1 No connection Pad present, no connection made 1A2 PWM_Y PWM input Y connection 2B5 VCC Secondary side Auxiliary voltage supply 1A3 VDD Primary Auxiliary voltage supply 2C1 No connection Pad present, no connection made 1A4 PWM_X PWM input X connection 2C5 No connection Pad present, no connection made 1A5 +IN Positive input voltage supply connection 2D1 GND Secondary side ground connection 1B1 -IN Primary side ground connection 2D2 VOUT Positive output voltage connection 1B5 -IN Primary side ground connection 2D3 No connection Pad present, no connection made 2A1 No connection Pad present, no connection made 2D4 VOUT Positive output voltage connection 2A5 No connection Pad present, no connection made 2D5 GND Secondary side ground connection

Signal Location Identification A B C D E F G H J K L M N P R 1 N/A N/A N/A 2 N/A N/A N/A PFAULT _IN# VSR MON PUC DTO PUCDTI PWM1Y PWM2Y PWM3Y PWM4Y PWM5Y N/A N/A N/A N/A 1 PUCCS PUCCK PWM1X PWM2X PWM3X PWM4X PWM5X N/A N/A N/A N/A 2 3 -IN -IN N/A TMP5 CSP5 CSN5 GND GND GND GND PWM6X PWM6Y START5 GND GND 3 4 -IN -IN N/A TMP3 CSP3 CSN3 GND GND GND GND FAULT# START6 START3 GND GND 4 5 -IN -IN N/A TMP2 CSP2 CSN2 GND GND GND GND VR_RDY VREG START2 GND GND 5 6 -IN -IN N/A TMP4 CSP4 CSN4 GND GND GND GND EN VCTRL START4 GND GND 6 7 N/A N/A N/A TMP6 CSP6 CSN6 SALERT SDA 8 N/A N/A N/A TMN +S -S SADDR SCL SVDAT/ AVSAMDAT SVCLK/ AVSCLK VR_HOT# SV_ALRT/ AVSSDAT VCCIO_ OK PAD_ ALERT# N/A N/A N/A N/A 7 N/A N/A N/A N/A 8 A B C D E F G H J K L M N P R 1. The areas for 0 V connection through the center line of the module. 2. The relative groupadg of similar signals (by color in the grid-matrix above). 3. The groupadg of -In and GND pads. 4. The grid above does NOT include the power connections. Signal Pin Assignments Pad # Pad Name Pad Function Pad # Pad Name Pad Function A1 N/A No Pad present A4 N/C (-In) Pad present, N/C, Thermal via B1 N/A No Pad present B4 N/C (-In) Pad present, N/C, Thermal via C1 N/A No Pad present C4 N/A No Pad present D1 PFAULT_IN# Primary side fault indicator D4 TMP3 Temperature sense Satellite 3 E1 PUCDTO Primary side microcontroller data output E4 CSP3 Current sense +ve Satellite 3 F1 PUCDTI Primary side microcontroller data input F4 CSN3 Current sense -ve Satellite 3 G1 PWM1Y PWM signal for Satellite 1 G4 GND Secondary side ground H1 PWM2Y PWM signal for Satellite 2 H4 GND Secondary side ground J1 PWM3Y PWM signal for Satellite 3 J4 GND Secondary side ground K1 PWM4Y PWM signal for Satellite 4 K4 GND Secondary side ground L1 PWM5Y PWM signal for Satellite 5 L4 FAULT# Programable fault indicator M1 N/A No Pad present M4 START6 Start for Satellite 6 N1 N/A No Pad present N4 START3 Start for Satellite 3 P1 N/A No Pad present P4 GND Secondary side ground R1 N/A No Pad present R4 GND Secondary side ground A2 N/A No Pad present A5 N/C (-In) Pad present, N/C, Thermal via B2 N/A No Pad present B5 N/C (-In) Pad present, N/C, Thermal via C2 N/A No Pad present C5 N/A No Pad present D2 VSRMON Feed-forward sensor input D5 TMP2 Temperature sense Satellite 2 E2 PUCCS Primary side microcontroller chip-select E5 CSP2 Current sense +ve Satellite 2 F2 PUCCK Primary side u-controller clk F5 CSN2 Current sense -ve Satellite 2 G2 PWM1X PWM signal for Satellite 1 G5 GND Secondary side ground H2 PWM2X PWM signal for Satellite 2 H5 GND Secondary side ground J2 PWM3X PWM signal for Satellite 3 J5 GND Secondary side ground K2 PWM4X PWM signal for Satellite 4 K5 GND Secondary side ground L2 PWM5X PWM signal for Satellite 5 L5 VR_RDY Voltage regulator ready signal M2 N/A No Pad present M5 VREG Optional regulator input N2 N/A No Pad present N5 START2 Start for Satellite 3

Signal Pin Assignments - Continued Pin # Pin Name Termination Pin Function Pin # Pin Name Pin Function P2 N/A No Pad present P5 GND Secondary side ground R2 N/A No Pad present R5 GND Secondary side ground A3 N/C (-In) Pad present, N/C, Thermal via A6 N/C (-Vin) Pad present, N/C, Thermal via B3 N/C (-In) Pad present, N/C, Thermal via B6 N/C (-Vin) Pad present, N/C, Thermal via C3 N/A No Pad present C6 N/A No Pad present D3 TMP5 Temperature sense Satellite 5 D6 TMP4 Temperature sense Satellite 4 E3 CSP5 Current sense +ve Satellite 5 E6 CSP4 Current sense +ve Satellite 4 F3 CSN5 Current sense -ve Satellite 5 F6 CSN4 Current sense -ve Satellite 4 G3 GND Secondary side ground G6 GND Secondary side ground H3 GND Secondary side ground H6 GND Secondary side ground J3 GND Secondary side ground J6 GND Secondary side ground K3 GND Secondary side ground K6 GND Secondary side ground L3 PWM6X PWM signal for Satellite 6 L6 EN Enable Pad M3 PWM6Y PWM signal for Satellite 6 M6 VCTRL Controller supply voltage N3 START5 Start for Satellite 5 N6 START4 Start for Satellite 4 P3 GND Secondary side ground P6 GND Secondary side ground R3 GND Secondary side ground R6 GND Secondary side ground A7 N/A No Pad present A8 N/A No Pad present B7 N/A No Pad present B8 N/A No Pad present C7 N/A No Pad present C8 N/A No Pad present D7 TMP6 Temperature sense Satellite 6 D8 TMN Temp sense -ve common for TMN of all Satellites. E7 CSP6 Current sense +ve Satellite 6 E8 +S Remote sense +ve F7 CSN6 Current sense -ve Satellite 6 F8 -S Remote sense -ve G7 SALERT PMBus Alert G8 SADDR PMBus address setting H7 SDA PMBus data H8 SCL PMBus clock J7 SVDAT / AVSMDAT SVID data / AVS MData J8 SVCLK / AVSCLK SVID clock / AVS clock K7 VR_HOT# SVI VR hot K8 L7 VCCIO_OK VCC fault shutdown immediate unit shutdown SVALRT / AVSSDAT SVID alert / AVS SData L8 PAD_ALERT# SVI Pad Alert # M7 N/A No Pad present M8 N/A No Pad present N7 N/A No Pad present N8 N/A No Pad present P7 N/A No Pad present P8 N/A No Pad present R7 N/A No Pad present R8 N/A No Pad present 1. VSRMON; should have a local pull down resistor (perhaps in parallell with a capacitor) to GND, also connected to Vin via a resistor in non-isolated applications. 2. All CSP* and CSN*; As an option it should be possible to mount a capacitor between the CSxP and the CSxN pads. If not used CSxP should be shorted to CSxN and then to Vout. 3. PM_ADDR; Should have a local pull-down resistor to GND 4. VDAT and SVCLK; Should have a local pull-up resistor to 5V

Mechanical Outline, Pin Locations and Dimensions

PSA Standard Product Envelop Definition Module Address Settings Resistor_down (on the Host board) Resistor_up (inside the Main unit) PMBus Address Resistor Series Pin Function Resistor Series Pin Name B8 E12 OPEN E12 10,000 B4 E12 220,000 E12 10,000 B2 E12 120,000 E12 10,000 B0 E12 82,000 E12 10,000 E8 E24 62,000 E12 10,000 E4 E96 48,700 E12 10,000 E2 E12 39,000 E12 10,000 E0 E12 33,000 E12 10,000 D8 E48 27,400 E12 10,000 D4 E48 23,700 E12 10,000 D2 E96 20,500 E12 10,000 D0 E48 17,800 E12 10,000 C8 E96 15,800 E12 10,000 C4 E96 13,700 E12 10,000 C2 E48 12,100 E12 10,000 C0 E96 10,700 E12 10,000 WORLDWIDE OFFICES Americas 2900 S.Diablo Way Tempe, AZ 85282 USA +1 888 412 7832 Europe (UK) Barberry House, 4 Harbour Bldgs, Waterfront West, Brierly Hill West Midlands, DY5 1LX United Kingdom +44 (0) 1384 842 211 Asia (HK) 14/F, Lu Plaza 2 Wing Yip Street Kwun Tong, Kowloon Hong Kong +852 2176 3333 www.artesyn.com Artesyn Embedded Technologies, Artesyn and the Artesyn Embedded Technologies logo are trademarks and service marks of Artesyn Embedded Technologies, Inc. All other names and logos referred to are trade names, trademarks, or registered trademarks of their respective owners. Specifications are subject to change without notice. 2018 Artesyn Embedded Technologies, Inc. All rights reserved. For full legal terms and conditions, please visit www.artesyn.com/legal. For more information: www.artesyn.com/power For support: productsupport.ep@artesyn.com ADC100M DS 06Mar2018