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VIBAMD-IL Datasheet(PDF) 9 Page - Vicor Corporation |
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VIBAMD-IL Datasheet(HTML) 9 Page - Vicor Corporation |
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9 / 10 page ![]() VI-HAM™, VE-HAM™ Rev 2.7 Page 9 of 10 08/2017 VxHAMxL Safety Notes Each HAM, HAMD or BAMD module must be preceded by a safety agency recognized fast-blow 10A 3AG fuse. The HAM is not isolated from the line – either input or output; a line isolation transformer must be used when making scope measurements. HAMs do not provide input to output isolation. Differential probes should be used when probing the input and output simultaneously to avoid destructive ground loops. Protective Features Over Temperature Shut Down The HAM is designed to shut down when the temperature of the baseplate exceeds 90°C. Do not operate the HAM above its maximum operating temperature of 85°C. Short Circuit Protection The HAM contains output short circuit protection. Operation of this function does not clear the input fuse and the output will resume normal operation after removal of the fault. A short period of time may be required to allow for cooling of an internal temperature sensor. Output Over Voltage Protection The HAM contains output over voltage protection. In the event the output voltage exceeds approximately 420VDC, the boost will decrease to maintain 420VDC on the output. When the peak of the AC line exceeds 420V (approximately 293VAC) the boost will have been reduced to zero and the E/O line will be pulled low shutting down the converters. Beyond this the protection circuit will be enabled and the output voltage will decrease. Storage Vicor products, when not installed in customer units, should be stored in ESD safe packaging in accordance with ANSI/ESD S20.20, “Protection of Electrical and Electronic Parts, Assemblies and Equipment” and should be maintained in a temperature controlled factory/ warehouse environment not exposed to outside elements controlled between the temperature ranges of 15°C and 38°C. Humidity shall not be condensing, no minimum humidity when stored in an ESD compliant package. +.030 (0,76) -.000 (0) .01 (12,7) (5,08) MIN Product ID this surface FULL R 5 6 7 8 9 4 3 2 1 0.040 (1,0) Dia (7) places 0.080 (2,0) Dia. 0.30 ±.015 (7,6) ±(0,38) 1.80 (45,7) (106,7) 0.20 (3,0) (116,8) (7,6) Min Aluminum Base (61,0) (44,5) 0.15 (3,8) 2.10 (53,3) 0.40 (10,2) .35 ±.015 (8,9) ±(0,38) 1.40 (35,6) 1.00 (25,4) 0.70 (17,8) 3.60 0.50 (12,7) Pin # 1 2 3 4 5 6 7 8 9 HAM L1 GATE IN GATE OUT L2/N +OUT P/OK E/O A/S –OUT HAMD +IN GATE IN GATE OUT –IN +OUT P/OK E/O A/S –OUT BAMD +IN GATE IN GATE OUT –IN +OUT N/C N/C A/S –OUT (2) places HAM Mechanical Drawing HAM 4.60 (91,4) 0.15 (3,8) 0.12 4.20 0.50 0.30 2.40 1.75 (7,36) MAX 0.29 +.030 (0,76) -.000 (0) .01 (12,7) (5,08) MIN Product ID this surface FULL R 5 6 7 8 9 4 3 2 1 0.040 (1,0) Dia (7) places 0.080 (2,0) Dia. 0.30 ±.015 (7,6) ±(0,38) 1.80 (45,7) (106,7) 0.20 (3,0) (116,8) (7,6) Min Aluminum Base (61,0) (44,5) 0.15 (3,8) 2.10 (53,3) 0.40 (10,2) .35 ±.015 (8,9) ±(0,38) 1.40 (35,6) 1.00 (25,4) 0.70 (17,8) 3.60 0.50 (12,7) Pin # 1 2 3 4 5 6 7 8 9 HAM L1 GATE IN GATE OUT L2/N +OUT P/OK E/O A/S –OUT HAMD +IN GATE IN GATE OUT –IN +OUT P/OK E/O A/S –OUT BAMD +IN GATE IN GATE OUT –IN +OUT N/C N/C A/S –OUT (2) places HAM Mechanical Drawing HAM 4.60 (91,4) 0.15 (3,8) 0.12 4.20 0.50 0.30 2.40 1.75 (7,36) MAX 0.29 +.030 (0,76) -.000 (0) .01 (12,7) (5,08) MIN Product ID this surface FULL R 5 6 7 8 9 4 3 2 1 0.040 (1,0) Dia (7) places 0.080 (2,0) Dia. 0.30 ±.015 (7,6) ±(0,38) 1.80 (45,7) (106,7) 0.20 (3,0) (116,8) (7,6) Min Aluminum Base (61,0) (44,5) 0.15 (3,8) 2.10 (53,3) 0.40 (10,2) .35 ±.015 (8,9) ±(0,38) 1.40 (35,6) 1.00 (25,4) 0.70 (17,8) 3.60 0.50 (12,7) Pin # 1 2 3 4 5 6 7 8 9 HAM L1 GATE IN GATE OUT L2/N +OUT P/OK E/O A/S –OUT HAMD +IN GATE IN GATE OUT –IN +OUT P/OK E/O A/S –OUT BAMD +IN GATE IN GATE OUT –IN +OUT N/C N/C A/S –OUT (2) places HAM Mechanical Drawing HAM 4.60 (91,4) 0.15 (3,8) 0.12 4.20 0.50 0.30 2.40 1.75 (7,36) MAX 0.29 Figure 13 — HAM / HAMD / BAMD Module Outline Mechanical Drawing Note: Mounting a High Boost HAM and Maxi, Mini or Micro DC-DC converter to the same heat sink will require the use of custom length standoffs or a step in the heat sink mounting surface. This is due to a mechanical stack up difference between the HAM and Maxi, Mini, and Micro converters that leads to incompatible baseplate height above the PCB. |
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