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PSB155-7IRC

Description
DC-DC Regulated Power Supply Module, 1 Output, Hybrid,
CategoryPower/power management    The power supply circuit   
File Size221KB,13 Pages
ManufacturerBel
Websitehttp://www.belfuse.com
Download Datasheet Parametric View All

PSB155-7IRC Overview

DC-DC Regulated Power Supply Module, 1 Output, Hybrid,

PSB155-7IRC Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerBel
Reach Compliance Codeunknown
ECCN codeEAR99
Analog Integrated Circuits - Other TypesDC-DC REGULATED POWER SUPPLY MODULE
Maximum input voltage80 V
Minimum input voltage19 V
Nominal input voltage40 V
JESD-30 codeR-MDMA-D7
JESD-609 codee0
Number of functions1
Output times1
Number of terminals7
Maximum operating temperature71 °C
Minimum operating temperature-25 °C
Maximum output voltage16.2 V
Minimum output voltage
Nominal output voltage15 V
Package body materialMETAL
Package shapeRECTANGULAR
Package formMICROELECTRONIC ASSEMBLY
Peak Reflow Temperature (Celsius)NOT SPECIFIED
Certification statusNot Qualified
surface mountNO
technologyHYBRID
Temperature levelCOMMERCIAL EXTENDED
Terminal surfaceTin/Lead (Sn/Pb)
Terminal formSOLDER LUG
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
Maximum total power output180 W
Fine-tuning/adjustable outputYES
PSB Series Extended Data Sheet
Positive Switching Regulator (Industrial)
Input voltage up to 80 V DC
Single output of 5.1 to 36 V DC
No input to output isolation
High efficiency up to 96%
Wide input voltage range
• Low input to output differential voltage
Very good dynamic properties
Input undervoltage lock-out
External output voltage adjustment and inhibit
32
1.3"
69
2.7"
106
4.2"
2 temperature ranges
Continuous no-load and short-circuit proof
No derating
Safety according to IEC/EN 60950
Summary
The PSB series of positive switching regulators is designed
as power supply modules for electronic systems. Their ma-
jor advantages include a high level of efficiency that re-
mains virtually constant over the entire input range, high
reliability, low ripple and excellent dynamic response. Mod-
ules with input voltages up to 80 V are specially designed
for secondary switched and battery driven applications. The
case design allows operation at nominal load up to 71°C
without additional cooling.
Model Selection and Key Data
Table 1: Type survey
Output
voltage
V
o nom
[V]
5.1
5.1
12
15
24
36
1
2
Output
current
I
o nom
[A]
7
6
5
5
5
5
Input
voltage range
V
i
[V]
1
7 – 40
8 – 80
15 – 80
19 – 80
29 – 80
42 – 80
Input
voltage
V
i nom
[V]
20
40
40
40
50
60
Efficiency
2
Type
designation
PSB 5A7-7iR
PSB 5A6-7iR
PSB 125-7iR
PSB 155-7iR
PSB 245-7iR
PSB 365-7iR
Options
h
min
[%]
h
typ
[%]
83
79
89
90
93
95
84
81
90
92
95
96
-9, L, P, C
Superseded
old type
(phased-out)
PSR 57-7
PSR 55-7
PSR 124-7
PSR 154-7
PSR 244-7
PSR 364-7
See:
Electrical Input Data:
D
V
io min
(min. differential voltage
V
i
V
o
).
Efficiency at
V
i nom
and
I
o nom
.
Non standard input/output configurations or special custom adaptions are available on request.
See also:
Commercial Information: Inquiry Form for Customized Power Supply.
Table of Contents
Page
Page
Electromagnetic Compatibility (EMC) .............................. 7
Immunity to Environmental Conditions ............................ 8
Mechanical Data .............................................................. 9
Safety and Installation Instructions ................................ 10
Description of Options ................................................... 11
Accessories ................................................................... 12
EC Declaration of Conformity ........................................ 13
Summary .......................................................................... 1
Model Selection and Key Data ........................................ 1
Part Number Description ................................................. 2
Functional Description ..................................................... 2
Electrical Input Data ......................................................... 3
Electrical Output Data ...................................................... 4
Auxiliary Functions ........................................................... 6
REV. OCT 17, 2003
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