HW012A0P1-S Lineage Power, HW012A0P1-S Datasheet
HW012A0P1-S
Specifications of HW012A0P1-S
Related parts for HW012A0P1-S
HW012A0P1-S Summary of contents
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Data Sheet June 26, 2009 HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A RoHS Compliant Applications Distributed Power Architectures n Wireless Networks n Access and Optical Network Equipment n Enterprise ...
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... Refer to the fuse manufacturer’s data sheet for further information. Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A ...
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... IO HW006A6A1 IO HW012A0P1 IO, lim HW012A0M1 IO, lim HW012A0Y1 IO, lim HW010A0G1 IO, lim HW010A0F1 IO, lim HW006A6A1 IO, lim HW012A0P1 IO, s/c HW012A0M1 IO, s/c HW012A0Y1 IO, s/c HW010A0G1 IO, s/c HW010A0F1 IO, s/c HW006A6A1 IO, s/c HW012A0P1 h HW012A0M1 h HW012A0Y1 h HW010A0G1 h HW010A0F1 h HW006A6A1 h All fSW HW012A0P1 h HW012A0M1 h HW012A0Y1 h HW010A0G1 h HW010A0F1 h HW006A6A1 h Min Typ ...
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... Isolation Resistance Isolation Voltage General Specifications Parameter Calculated MTBF (IO = 80% of IO, max °C) RIN (Reliability Infomation Notebook) Method Weight Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Device All All All ...
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... HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A . Device All All All All All All All All All ALL HW012A0P1 HW012A0M1 HW012A0Y1 HW010A0G1 HW010A0F1 HW006A6A1 All All All Symbol Min Typ Max Unit Ion/off — ...
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... Data Sheet June 26, 2009 Characteristic Curves The following figures provide typical characteristics curves for the HW012A0P1 (VO = 1.2 V) module at room temperature ( °C). 0.7 0.6 0.5 0.4 0 0.2 0 0.15A INPUT VOLTAGE, V (V) I Figure 1. Input Voltage and Current Characteristics 36V 48V OUTPUT CURRENT Figure 2. ...
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... OUTPUT CURRENT Figure 8. Converter Efficiency vs. Output Current. TIME µs/div) Figure 9. Output Ripple Voltage (IO = IO, max). Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Figure 10. Transient Response to Step Decrease 36V 48V 75V ...
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... OUTPUT CURRENT Figure 14. Converter Efficiency vs. Output Current. TIME µs/div) Figure 15. Output Ripple Voltage (IO = IO, max). Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Figure 16. Transient Response to Step Decrease in = 36V = 48V = 75V ...
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... OUTPUT CURRENT Figure 20. Converter Efficiency vs. Output Current. TIME µs/div) Figure 21. Output Ripple Voltage (IO = IO, max). Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Figure 22. Transient Response to Step Decrease (A) Figure 23. Transient Response to Step Increase in Load Figure 24. Start-up from Remote On/Off (IO = IO, max). TIME, t (100 µ ...
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... OUTPUT CURRENT, I Figure 26. Converter Efficiency vs. Output Current. TIME µs/div) Figure 27. Output Ripple Voltage (IO = IO, max). Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Figure 28. Transient Response to Step Decrease in = 36V = 48V = 75V ...
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... OUTPUT CURRENT Figure 32. Converter Efficiency vs. Output Current. TIME µs/div) Figure 33. Output Ripple Voltage (IO = IO, max). Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Figure 34. Transient Response to Step Decrease (A) Figure 35. Transient Response to Step Increase in Load Figure 36. Start-up from Remote On/Off (IO = IO, max). TIME, t (100 µ ...
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... V V – I(+) I(-) Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Safety Considerations For safety-agency approval of the system in which the power module is used, the power module must be installed in com- CURRENT pliance with the spacing and separation requirements of the PROBE end-use safety agency standard, i ...
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... I V (–) I Figure 40. Remote On/Off Implementation. Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A Output Voltage Set-Point Adjustment (Trim) Output voltage trim allows the user to increase or decrease the output voltage set point of a module. This is accom- plished by connecting an external resistor between the TRIM pin and either the VO(+) or VO(– ...
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... R --------------------------------------------------- - = trim-up 8 ⎩ 27.175kΩ trim-up Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A V (+) I ON/OFF V (– LOAD Figure 42. Circuit Configuration to Increase The amount of power delivered by the module is defined as the voltage at the output terminals multiplied by the output current ...
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... At input voltages below the input undervoltage lockout limit, the module operation is disabled. The module will begin to operate at an input voltage above the undervoltage lockout turn-on threshold. Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A 15 ...
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... VIN = output current and a maximum ambient temperature of 75 °C. Solution Given: VIN = 48V °C Determine airflow (v) (Use Figure 44.): v = 0.5 m/s (100 ft./min.) Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A ...
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... June 26, 2009 Thermal Considerations (continued) Figure 47. Derating Curves for HW012A0Y1 ( Transverse Orientation ( Vdc). Figure 48. Derating Curves for HW012A0P1 ( Transverse Orientation ( Vdc). Layout Considerations Copper paths must not be routed beneath the power module. For additional layout guidelines, refer to the FLTR100V10 or FLTR100V20 data sheet ...
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... Pb-free solder pot is 270°C max. Not all RoHS-compliant through-hole products can be processed with paste-through-hole Pb or Pb-free reflow process. If additional information is needed, please consult with your Lineage Power representative for more details. Surface Mount Information Pick and Place Area Although the module weight is minimized by using open- frame construction, the modules have a relatively large mass compared to conventional surface-mount components ...
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... Use of Moisture/Reflow Sensitive Surface Mount Devices). Moisture barrier bags (MBB) with desiccant are required for MSL ratings greater. These sealed pack- Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A ages should not be broken until time of use. Once the origi- nal package is broken, the floor life of the product at conditions of < ...
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... Top View Side View compliance Bottom View Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A 47.2 (1.86) 29.5 (1 ...
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... Outline Diagram for Through-Hole Module Dimensions are in millimeters and (inches). Tolerances: x.x mm ± 0.5 mm (x.xx in. ± 0.02 in.) [unless otherwise indicated] x.xx mm ± 0.25 mm (x.xxx in. ± 0.010 in.) Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A 21 ...
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... NOTES: 1. FOR CGA SURFACE MOUNT PIN USE THE FOLLOWING PAD Lineage Power HW006/010/012 Series Power Modules; dc-dc Converters 36-75 Vdc Input; 1.2 Vdc to 5 Vdc Output; 6.6A to 12A 0.022" DIA VIA 0.032" DIA SOLDER MASK OPENING 4 PLACES FOR OUTPUT PINS 2 PLACES FOR INPUT PINS 0.025" ...
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... Device Code Comcodes HW012A0P1 108965591 HW012A0M1 108968389 HW012A0Y1 108968405 HW010A0G1 108968421 HW010A0F1 108965625 HW010A0F1Z CC109107141 HW006A6A1 108968363 HW006A6A1Z CC109107133 HW012A0P1-S 108965617 HW012A0P1-SZ 109100360 HW012A0M1-S 108968371 HW012A0M1-SZ CC109101805 HW012A0Y1-S 108968397 HW012A0Y1-SZ 109100377 HW010A0G1-S 108968413 HW010A0F1-S 108967985 HW010A0F1-SZ 108995214 HW006A6A1-S 108968355 HW006A6A-S CC109142155 ...