JW100F Lineage Power, JW100F Datasheet

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JW100F

Manufacturer Part Number
JW100F
Description
Manufacturer
Lineage Power
Datasheet

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Data Sheet
April 2008
The JW050F, JW075F, JW100F, and JW150F Power Modules
use advanced, surface-mount technology and deliver high-
quality, efficient, and compact dc-dc conversion.
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Description
The JW050F, JW075F, JW100F, and JW150F Power Modules are dc-dc converters that operate over an input
voltage range of 36 Vdc to 75 Vdc and provide a precisely regulated dc output. The outputs are fully isolated
from the inputs, allowing versatile polarity configurations and grounding connections. The modules have maxi-
mum power ratings from 33 W to 99 W at a typical full-load efficiency of 80%.
The sealed modules offer a metal baseplate for excellent thermal performance. Threaded-through holes are pro-
vided to allow easy mounting or addition of a heat sink for high-temperature applications. The standard feature set
includes remote sensing, output trim, and remote on/off for convenient flexibility in distributed power applications.
dc-dc Converters; 36 to 75 Vdc Input, 3.3 Vdc Output; 33 W to 99 W
Distributed power architectures
Workstations
Computer equipment
Communications equipment
Heat sinks available for extended operation
Choice of remote on/off logic configuration
JW050F, JW075F, JW100F, JW150F Power Modules:
Features
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* UL is a registered trademark of Underwriters Laboratories, Inc.
† CSA is a registered trademark of Canadian Standards Assn.
‡ This product is intended for integration into end-use equipment.
All the required procedures for CE marking of end-use equip-
ment should be followed. (The CE mark is placed on selected
products.)
Small size: 61.0 mm x 57.9 mm x 12.7 mm
(2.40 in. x 2.28 in. x 0.50 in.)
High power density
High efficiency: 80% typical
Low output noise
Constant frequency
Industry-standard pinout
Metal baseplate
2:1 input voltage range
Overtemperature protection (66 W and 99 W only)
Overcurrent and overvoltage protection
Remote sense
Remote on/off
Adjustable output voltage: 60% to 110% of V
Case ground pin
ISO9001 Certified manufacturing facilities
UL* 1950 Recognized, CSA
Certified, and VDE 0805 (EN60950, IEC950)
Licensed
CE mark meets 73/23/EEC and 93/68/EEC
directives
C22.2 No. 950-95
O, nom

Related parts for JW100F

JW100F Summary of contents

Page 1

... Description The JW050F, JW075F, JW100F, and JW150F Power Modules are dc-dc converters that operate over an input voltage range of 36 Vdc to 75 Vdc and provide a precisely regulated dc output. The outputs are fully isolated from the inputs, allowing versatile polarity configurations and grounding connections. The modules have maxi- mum power ratings from typical full-load efficiency of 80% ...

Page 2

... Parameter Input Voltage: Continuous: JW050F, JW075F JW100F, JW150F Transient (100 ms; JW100F, JW150F only) I/O Isolation Voltage (for 1 minute) Operating Case Temperature (See Thermal Considerations section.) Storage Temperature Electrical Specifications Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature conditions ...

Page 3

... All All All All JW050F JW075F JW100F JW150F JW050F I O, cli JW075F I O, cli JW100F I O, cli JW150F I O, cli = 250 mV) All JW050F JW075F JW100F JW150F All = 25 °C; tested : O, max All All : O, max All All Min Typ Max 3.25 3.3 3.35 3.20 — 3.40 O — — ...

Page 4

... Max V 0 — 1.2 on/off I — — 1.0 on/off V — — 15 on/off I — — 50 on/off — — — — — 0.5 — 60 — 110 V 4.0* — 5.0* O, clamp T — 105 — C Lineage Power Unit pF M¾ Unit hr. g (oz.) Unit µ nom V °C ...

Page 5

... INPUT VOLTAGE, V Figure 2. Typical JW075F Input Characteristics at Room Temperature Lineage Power 3.0 2.5 2.0 1.5 1.0 0.5 0 (V) I 8-1446 (C) Figure 3. Typical JW100F Input Characteristics at 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 (V) I 8-1447 (C) Figure 4. Typical JW150F Input Characteristics ...

Page 6

... OUTPUT CURRENT, I Figure 6. Typical JW075F Output Characteristics at Room Temperature 6 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 (A) O 8-2159 (C) Figure 7. Typical JW100F Output Characteristics at 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 (A) O 8-1451 (C) Figure 8. Typical JW150F Output Characteristics at April 2008 OUTPUT CURRENT, I (A) O Room Temperature 5 10 ...

Page 7

... Figure 10. Typical JW075F Converter Efficiency vs. Output Current at Room Temperature Lineage Power 82 81.5 81 80 77 (A) O 8-1454 (C) Figure 11. Typical JW100F Converter Efficiency vs (A) O 8-1455 (C) Figure 12 ...

Page 8

... Figure 16. Typical Start-Up from Remote On/Off April 2008 3.3 V 7.5 A TIME, t (50 µs/div) Step Decrease in Load from 50% to 25% of Full Load at Room Temperature and 48 V Input (Waveform Averaged to Eliminate Ripple Component.) TIME ms/div) JW150F1 max Lineage Power 8-2001 (C) 8-1458 (C) ...

Page 9

... Note: Use a 1.0 µF ceramic capacitor and a 10 µF aluminum or tantalum capacitor. Scope measurement should be made using a BNC socket. Position the load between 51 mm and in. and 3 in.) from the module. Figure 18. Peak-to-Peak Output Noise Measurement Test Setup Lineage Power SUPPLY µ ...

Page 10

... For negative logic, short ON/OFF pin For positive logic, leave ON/OFF pin open on/off ON/OFF V on/off SENSE(+) V (+) I SENSE(–) V (–) I Figure 20. Remote On/Off Implementation April 2008 ). The on/off generated by on/off = µA. (–). I V (+) O LOAD V (–) O 8-720 (C).c Lineage Power ...

Page 11

... I O CONTACT RESISTANCE Figure 21. Effective Circuit Configuration for Single-Module Remote-Sense Operation Lineage Power 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 accomplished by connecting an external resistor between the TRIM pin and either the SENSE(+) or SENSE(– ...

Page 12

... Heat is removed by conduc- tion, convection, and radiation to the surrounding 8-715 (C).b environment. Proper cooling can be verified by mea- suring the case temperature. Peak temperature (T occurs at the position indicated in Figure 26. April 2008 CHANGE IN OUTPUT VOLTAGE (•%) Voltage Lineage Power 10 8-2090 ( ...

Page 13

... The use of Figure 31 is shown in the following example. MEASURE CASE TEMPERATURE HERE Example What is the minimum airflow necessary for a JW100F operating at V (+) O maximum ambient temperature of 40 °C? Solution Given: V (– ...

Page 14

... Output Current OUTPUT CURRENT, I Figure 29. JW100F Power Dissipation vs. Output Current 14 14 (continued) 30 (continued Figure 30. JW150F Power Dissipation vs. ...

Page 15

... IN. HEAT SINK 1/2 IN. HEAT SINK θ ca 1/4 IN. HEAT SINK NO HEAT SINK θ ca Use Figure 32 to determine air velocity for the 1/2 inch heat sink. The minimum airflow necessary for the JW100F module is 1.1 m/s (220 ft./min.). 2.0 2.5 3.0 (400) (500) (600) Custom Heat Sinks 8-1153 (C) A more detailed model can be used to determine the required thermal resistance of a heat sink to provide necessary cooling ...

Page 16

... For assistance with designing for EMC compliance, please refer to the FLTR100V10 data sheet (DS98-152EPS). Layout Considerations Copper paths must not be routed beneath the power module mounting inserts. For additional layout guide- lines, refer to the FLTR100V10 data sheet (DS98-152EPS). April 2008 Lineage Power ...

Page 17

... Side View 12.70 ± 0.5 (0.500 ± 0.020) 5.1 (0.20) MIN Bottom View 5.1 (0.20) 50.8 25.40 (2.00) (1.000) 35.56 (1.400) * Side label includes Lineage name, product designation, safety agency markings, input/output voltage and current ratings, and bar code. Lineage Power 57.9 (2.28) MAX 61.0 (2.40) MAX SIDE LABEL* 1.02 (0.040) DIA SOLDER-PLATED BRASS, 7 PLACES 12.7 (0.50) V (–) V (– ...

Page 18

... Negative 99 W Negative 33 W Positive 49.5 W Positive 66 W Positive 99 W Positive April 2008 35.56 (1.400) 25.40 (1.000) 61.0 17.78 (2.40) 10.16 (0.700) MAX (0.400) MOUNTING INSERTS Device Comcode Code JW050F1 107253171 JW075F1 107431256 JW100F1 107253189 JW150F1 107361461 JW050F 107309775 JW075F 107477374 JW100F 107309791 JW150F 107018962 Lineage Power 8-1945 (C).c ...

Page 19

... Dimensions are in millimeters and (inches). 1/4 IN. 1/2 IN. 1 IN. 61 (2.4) 1 1/2 IN. 57.9 (2.28) Figure 34. Longitudinal Heat Sink Lineage Power 61 (2.4) D000-c.cvs Figure 35. Transverse Heat Sink Comcode 407243989 407243997 407244706 407244714 407244722 407244730 ...

Page 20

... Lineage Power reserves the right to make changes to the produc t(s) or information contained herein without notice. No liability is ass umed as a res ult of their use or applic ation. No rights under any patent acc ompany the sale of any oduct information. ...

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