Industrial and process control, distributed power, medical, ATE, communications,
defense, and aerospace.
For details on proper operation please refer to the:
Design Guide & Applications Manual for Maxi, Mini, Micro Family.
Absolute Maximum Ratings
Parameter
+IN to –IN voltage
PC to –IN voltage
PR to –IN voltage
SC to -OUT voltage
-Sense to -OUT voltage
Isolation voltage
IN to OUT
IN to base
OUT to base
Operating Temperature
Storage Temperature
Pin soldering temperature
Mounting torque
Rating
-0.5 to +53
-0.5 to +7.0
-0.5 to +7.0
-0.5 to +1.5
1.0
3000
1500
500
-55 to +100
-65 to +125
500 (260)
750 (390)
5 (0.57)
Unit
V
DC
V
DC
V
DC
V
DC
V
DC
V
RMS
V
RMS
V
RMS
°C
°C
°F (°C)
°F (°C)
in-lbs (N-m)
Test voltage
Test voltage
Test voltage
M-Grade
M-Grade
<5 sec; wave solder
<7 sec; hand solder
6 each
Notes
Product Overview
These DC-DC converter modules use advanced
power processing, control and packaging
technologies to provide the performance,
flexibility, reliability and cost effectiveness of a
mature power component.
High frequency ZCS/ZVS switching provides
high power density with low noise and
high efficiency.
*Derate power to 75% for 9-10V
IN
Part Numbering
e.g. V28B24T150BL2
28B
Product Type
V
= Standard
S
= Enhanced
efficiency
(avail. ≤12
V
OUT
only)
Output Voltage
3 V3
= 3.3 V
5
= 5V
8
= 8V
12
= 12 V
15
= 15 V
24
= 24 V
28
= 28 V
36
= 36 V
48
= 48 V
Product Grade Temperatures (°C)
Grade
Operating
Storage
C
=
- 20 to +100
- 40 to +125
T
=
- 40 to +100
- 40 to +125
H
=
- 40 to +100
- 55 to +125
M
=
- 55 to +100
- 65 to +125
B
Output Power
V
OUT
P
OUT
3.3 V
5V
12 V
15 V
24 V
28 V
36 V
48 V
75
W
75
W
125
W
150
W
150
W
150
W
150W
150
W
Pin Style
Finish
Blank:
Short
Tin/Lead
L:
Long
Tin/Lead
S:
Short ModuMate Gold
N:
Long ModuMate
Gold
F:
Short RoHS
Gold
G:
Long RoHS
Gold
K:
Extra Long RoHS Gold
Baseplate
Blank:
Slotted
2:
Threaded
3:
Through-hole
28V Wide Mini Family
Page 1 of 11
Rev 2.4
06/2017
vicorpower.com
800 927.9474
28V Wide Input
Module Family Electrical Characteristics
Electrical characteristics apply over the full operating range of input voltage, output load (resistive) and baseplate temperature, unless otherwise specified.
All temperatures refer to the operating temperature at the center of the baseplate.
MODULE INPUT SPECIFICATIONS
Parameter
Operating input voltage
Input surge withstand
Undervoltage turn-on
Undervoltage turn-off
Overvoltage turn-off/on
Disabled input current
7.37
36.3
8.73
7.64
37.8
12.0
39.6
14.0
Min
9
Typ
24
Max
36
50
8.95
Unit
V
DC
V
DC
V
DC
V
DC
V
DC
Notes
From 9 to 10V input available power is reduced to
75% of max rating.
<100ms
mA
PC pin low
MODULE OUTPUT SPECIFICATIONS
Parameter
Output voltage setpoint
Line regulation
Temperature regulation
Power sharing accuracy
Programming range
10
±0.02
±0.002
±2
Min
Typ
Max
±1
±0.20
±0.005
±5
110
Unit
%
%
%/°C
%
%
Notes
Of nominal output voltage. Nominal input; full load; 25°C
Low line to high line; full load
Over operating temperature range
10 to 100% of full load
Of nominal output voltage. For trimming below 90%
of nominal, a minimum load of 10% of maximum
rated power may be required.
Externally applied
Externally applied
Externally applied
Externally applied
Externally applied
Externally applied
Externally applied
Externally applied
+OUT to –OUT, +Sense to –OUT — Absolute Maximum Ratings
3.3V
5V
12V
15V
24V
28V
36V
48V
-0.5 to 4.7
-0.5 to 7.0
-0.5 to 16.1
-0.5 to 20.0
-0.5 to 31.7
-0.5 to 36.9
-0.5 to 47.1
-0.5 to 62.9
V
DC
V
DC
V
DC
V
DC
V
DC
V
DC
V
DC
V
DC
Note:
The permissible load current must never be exceeded during normal, abnormal or test conditions. For additional output related application
information, please refer to output connections on page 6.
THERMAL RESISTANCE AND CAPACITY
Parameter
Baseplate to sink; flat, greased surface
Baseplate to sink; thermal pad (P/N 20264)
Baseplate to ambient
Baseplate to ambient; 1000LFM
Thermal capacity
Min
Typ
0.16
0.14
8.0
1.9
83
Max
Unit
°C/Watt
°C/Watt
°C/Watt
°C/Watt
Watt-sec/°C
28V Wide Mini Family
Page 2 of 11
Rev 2.4
06/2017
vicorpower.com
800 927.9474
28V Wide Input
Module Family Electrical Characteristics (Cont.)
MODULE CONTROL SPECIFICATIONS
Parameter
Min
Typ
Max
Unit
Notes
Primary Side (PC = Primary Control; PR = Parallel)
PC bias voltage
current limit
PC module disable
PC module enable delay
PC module alarm
PC resistance
PR emitter amplitude
PR emitter current
PR receiver impedance
PR receiver threshold
PR drive capability
Secondary Side (SC = Secondary Control)
SC bandgap voltage
SC resistance
SC capacitance
SC module alarm
1.21
990
1.23
1000
0.033
0
1.25
1010
V
DC
Ω
µF
V
DC
With open trim; referenced to –Sense. See Fig. 7
Referenced to –Sense
0.9
5.7
150
375
2.4
500
2.5
625
2.6
12
1.0
5.9
5.50
1.5
2.3
5.75
2.1
2.6
4
6.00
3.0
2.9
7
0.5
1.1
6.1
V
DC
mA
V
DC
ms
Vavg
MΩ
Volts
mA
Ω
Volts
modules
25°C
Minimum pulse width: 20ns
Without PR buffer amplifier
UV, OV, OT, module fault. See Figs. 3 and 5
See Fig. 3, converter off or fault mode
PR load >30Ω, <30pF
PC current = 1.0mA
PC voltage = 5.5V
During normal operation
Switch must be able to sink
≥4mA.
See Fig. 2
MODULE GENERAL SPECIFICATIONS
Parameter
Remote sense (total drop)
Isolation test voltage (IN to OUT)*
Isolation test voltage (IN to base)*
Isolation test voltage (OUT to base)*
Isolation resistance
Weight (E, C, T grade)
Weight (H, M grade)
3.1
(89.3)
3.5
(99.6)
100
3000
1500
500
10
3.5
(100.3)
3.9
(110.6)
115
cURus, cTÜVus, CE
3.9
(111.3)
4.3
(121.6)
Min
Typ
Max
0.5
Unit
V
DC
V
RMS
V
RMS
V
RMS
MΩ
ounces
(grams)
ounces
(grams)
°C
See Figs. 3 and 5. Do not operate coverter >100°C.
UL60950-1, EN60950-1, CSA60950-1, IEC60950-1.
With appropriate fuse in series with the +Input
Notes
0.25V per leg (sense leads must be connected to
respective, output terminals)
Complies with reinforced insulation requirements
Complies with basic insulation requirements
Complies with operational insulation requirements
IN to OUT, IN to baseplate, OUT to baseplate
Temperature limiting
Agency approvals
* Isolation test voltage, 1 minute or less.
Note:
Specifications are subject to change without notice.
28V Wide Mini Family
Page 3 of 11
Rev 2.4
06/2017
vicorpower.com
800 927.9474
28V Wide Input
MODULE SPECIFIC OPERATING SPECIFICATIONS
3.3
V
OUT
, 75W (e.g. S28B3V3C75BL, V28B3V3C75BL)
Parameter
Efficiency
S28B3V3C75BL (enhanced efficiency)
V28B3V3C75BL (standard efficiency)
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
78.0
76.7
4.14
Typ
83.0
77.7
60
4.3
5.2
±0.02
26.1
26.1
Max
Unit
%
75
4.46
5.8
±0.2
22.73
30.7
30.7
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 17.05A max.
Output voltage 95% of nominal
Output voltage <250mV
0
23.1
15.8
5
V
OUT
, 75W (e.g. S28B5C75BL, V28B5C75BL)
Parameter
Efficiency
S28B5C75BL (enhanced efficiency)
V28B5C75BL (standard efficiency)
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
75.0
71.8
6.03
Typ
79.0
73.3
252
6.25
5.8
±0.02
17.3
17.3
Max
Unit
%
315
6.47
6.5
±0.2
15
20.3
20.3
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 11.25A max.
Output voltage 95% of nominal
Output voltage <250mV
0
15.3
10.5
12
V
OUT
, 125W (e.g. S28B12C125BL, V28B12C125BL)
Parameter
Efficiency
S28B12C125BL (enhanced efficiency)
V28B12C125BL (standard efficiency)
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
83.0
79.3
13.7
Typ
85.0
80.8
290
14.3
8.2
±0.02
12.0
12.0
Max
Unit
%
363
14.9
9.4
±0.2
10.4
14.1
14.1
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 7.8A max.
Output voltage 95% of nominal
Output voltage <250mV
0
10.6
7.3
15
V
OUT
, 150W (e.g. V28B15C150BL)
Parameter
Efficiency
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
82.5
17.1
Typ
83.9
328
17.8
6.8
±0.02
11.5
11.5
Max
410
18.5
7.8
±0.2
10
13.5
13.5
Unit
%
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 7.5A max.
Output voltage 95% of nominal
Output voltage <250mV
0
10.2
7
28V Wide Mini Family
Page 4 of 11
Rev 2.4
06/2017
vicorpower.com
800 927.9474
28V Wide Input
MODULE SPECIFIC OPERATING SPECIFICATIONS (CONT.)
24
V
OUT
, 150W (e.g. V28B24C150BL)
Parameter
Efficiency
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
78.5
27.1
Typ
81.0
448
28.1
8.9
±0.02
7.19
7.19
Max
560
29.1
10.5
±0.2
6.25
9.2
9.2
Unit
%
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 4.69A max.
Output voltage 95% of nominal
Output voltage <250mV
0
6.37
4.37
28
V
OUT
, 150W (e.g. V28B28C150BL)
Parameter
Efficiency
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
79.4
31.5
Typ
80.9
360
32.7
9.6
±0.02
6.16
6.16
Max
450
33.9
10.9
±0.2
5.36
7.24
7.24
Unit
%
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 4.02A max.
Output voltage 95% of nominal
Output voltage <250mV
0
5.46
3.75
36
V
OUT
, 150W (e.g. V28B36C150BL)
Parameter
Efficiency
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
78.8
40.4
Typ
79.8
320
41.9
9
±0.02
4.8
4.8
Max
400
43.4
10
±0.2
4.17
5.63
5.63
Unit
%
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
No load
No load to full load; nominal input
For Vin 9 - 10V, load current 3.13A max.
Output voltage 95% of nominal
Output voltage <250mV
0
4.25
2.91
48
V
OUT
, 150W (e.g. V28B48C150BL)
Parameter
Efficiency
Ripple and noise
Output OVP setpoint
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
80.5
53.7
Typ
81.8
320
55.7
5.6
±0.02
3.6
3.6
Max
400
57.7
14
±0.2
3.13
4.23
4.23
Unit
%
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; full load; 25°C
p-p; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
What should I pay attention to when writing some parameters into the LM3S1R21's FLASH?1 Saved address space: Is it considered to be placed in the last block of the FLASH space?2 Should global interrup...
[i=s] This post was last edited by jameswangsynnex on 2015-3-3 19:59 [/i] This article introduces the development of a 116GHz~218GHz broadband high-gain low-noise amplifier. "By using microwave broadb...
I am currently recruiting technical service engineers for a US-based company that makes in-vehicle network testing tools. I have just entered this industry and would like to ask how much a person who ...
Today a friend asked me about DIY emergency lights, so I posted a separate post to explain it.Event page: https://www.eeworld.com.cn/zhuanti/20100816Maxim/index.html08.16-09.16 During this stage, we h...
introduction
1 The significance of using RTOS on MSP430
It is understandable that it is meaningless to use RTOS on MSP430. Because the hardware resources of MSP430 are limited (for exampl...[Details]
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
Sailing is gaining more and more attention. How to use modern technology to assist training and improve competition results is particularly important. Considering the real-time data collection in t...[Details]
1. Proposal of
reconfigurable
measurement and control system
The measurement and control system generally refers to a system based on
computers
to realize data acquisition a...[Details]
Analysis of the three core aspects of digital TV transmission standards
According to the differences in regionality, transmission method and modulation method, the transmission method needs to...[Details]
A stepper motor is an electromagnetic mechanical device that converts an electrical pulse signal into an angular displacement or a linear displacement. The stability and reliability of a stepper mo...[Details]
introduction
At present, the research on micron and nanotechnology is very active, which has led to the rapid development of microtechnology and micro-mechanical electronic system (MEMS) t...[Details]
a. Keep the battery clean, wipe off the spilled electrolyte, contaminated dirt and dust in time; keep the poles and terminal clamps clean and in good contact, and apply vaseline or butter to preven...[Details]
introduction
Belt drive is a common transmission device used in industrial production. Its commonly used speed detection device is a photoelectric encoder installed at the rotating end of th...[Details]
1. Introduction
Modern modular machine tools are equipped with a large number of electronic devices to meet the requirements of processing accuracy, processing speed, etc. If the conventional ...[Details]
1. Electromagnetic compatibility design
Electromagnetic compatibility refers to the ability of electronic equipment to work in a coordinated and effective manner in various electromagnetic env...[Details]
Modern communication equipment, portable electronic products, laptops, electric vehicles, small satellites, etc. generally use batteries as power sources and are widely used. However, the batteries...[Details]
0 Introduction
In microwave, radar, radio and television, and communication systems, the problem of coupling RF power is often encountered. A directional coupler is a directional power divide...[Details]
When programming in C and assembly, there are interface issues between variables and functions in C and assembly.
Variables defined in a C program are put into the .bss area after being compile...[Details]
1 Introduction
At present, with the growing calls for environmental protection and energy conservation, new types of transportation that are pollution-free and have diversified energy configur...[Details]