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
<5sec; wave solder
<7sec; 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.
Part Numbering
e.g. V24B12T200BL2
24B
Product Grade Temperatures (°C)
Grade
Operating
Storage
E
= –10 to +100 –20 to +125
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
P
OUT
100W, 150W
150W, 200W
200W
200W
150W, 200W, 250W
150W, 200W
150W, 200W, 250W
150W, 200W, 250W
150W, 200W
150W, 200W, 250W
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
Product Type
V
= Standard
S
= Enhanced
efficiency
(avail. ≤12
V
OUT
only)
Output Voltage
3V3
= 3.3V
5
= 5V
6.5
= 6.5V
8
=
8V
12
= 12V
15
= 15V
24
= 24V
28
= 28V
36
= 36V
48
= 48V
V
OUT
3.3V
5V
6.5V
8V
12V
15V
24V
28V
36V
48V
Note:
Product images may not highlight current product markings.
24V Mini Family
Page 1 of 15
Rev 5.4
07/2019
24V 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
14.8
36.3
17.5
15.3
37.8
39.6
4.0
Min
18
Typ
24
Max
36
50
17.9
Unit
V
DC
V
DC
V
DC
V
DC
V
DC
V
DC
PC pin low
<100ms
Notes
Module Output Specifications
Parameter
Output voltage set point
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 – 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
Externally applied
Externally applied
+OUT to –OUT, +Sense to –OUT — Absolute Maximum Ratings
3.3V
5V
6.5V
8V
12V
15V
24V
28V
36V
48V
–0.5 to 4.7
–0.5 to 7.0
–0.5 to 9.1
–0.5 to 10.9
–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
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 10.
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
24V Mini Family
Page 2 of 15
Rev 5.4
07/2019
24V 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 Figure 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
V
AVG
MΩ
Volts
mA
Ω
Volts
modules
25°C
Minimum pulse width: 20ns
Without PR buffer amplifier
UV, OV, OT, module fault. See Figures 3 and 5
See Figure 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 Figure 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 Figures 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.
24V Mini Family
Page 3 of 15
Rev 5.4
07/2019
24V Input
Module-Specific Operating Specifications
3.3
V
OUT
, 150W (e.g. S24B3V3C150BL, V24B3V3C150BL)
Parameter
Efficiency
S24B3V3C150BL (enhanced efficiency)
V24B3V3C150BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
84.0
80.0
4.14
Typ
86.5
81.4
160
4.3
5
±0.02
52.3
52.3
Max
Unit
%
200
4.46
6
±0.2
45.45
61.5
61.5
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
46.4
31.8
3.3
V
OUT
, 100W (e.g. S24B3V3C100BL, V24B3V3C100BL)
Parameter
Efficiency
S24B3V3C100BL (enhanced efficiency)
V24B3V3C100BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
83.5
80.4
4.14
Typ
85.1
81.4
71
4.3
2.5
±0.02
34.8
34.8
Max
Unit
%
89
4.46
3
±0.2
30.3
41
41
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
30.9
21.2
5
V
OUT
, 200W (e.g. S24B5C200BL, V24B5C200BL)
Parameter
Efficiency
S24B5C200BL (enhanced efficiency)
V24B5C200BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
85.9
80.5
6.07
Typ
87.0
84.9
95
6.3
5.1
±0.02
52
52
Max
Unit
%
119
6.53
5.5
±0.45
40
54.5
62
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
40.8
28
5
V
OUT
, 150W (e.g. S24B5C150BL, V24B5C150BL)
Parameter
Efficiency
S24B5C150BL (enhanced efficiency)
V24B5C150BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
86.0
83.5
6.03
Typ
87.2
84.8
50
6.25
3.7
±0.02
34.5
34.5
Max
Unit
Notes
%
63
6.47
4.5
±0.2
30
40.5
40.5
mV
Volts
Watts
%
Amps
Amps
Amps
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
30.6
5
24V Mini Family
Page 4 of 15
Rev 5.4
07/2019
24V Input
Module-Specific Operating Specifications (Cont.)
6.5
V
OUT
, 200W (e.g. S24B6V5C200BL, V24B6V5C200BL)
Parameter
Efficiency
S24B6V5C200BL (enhanced efficiency)
V24B6V5C200BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
84.5
83.2
7.7
Typ
87.5
84.6
182
8.0
5.3
±0.02
35.4
35.4
Max
Unit
%
230
8.3
6.2
±0.2
30.8
41.5
41.5
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
31.4
21.5
8
V
OUT
, 200W (e.g. S24B8C200BL, V24B8C200BL)
Parameter
Efficiency
S24B8C200BL (enhanced efficiency)
V24B8C200BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
87.0
85.0
9.36
Typ
89.0
86.4
310
9.7
5
±0.02
28.8
28.8
Max
Unit
%
390
10.1
6
±0.2
25
33.8
33.8
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
25.5
17.5
12
V
OUT
, 250W (e.g. S24B12C250BL, V24B12C250BL)
Parameter
Efficiency
S24B12C250BL (enhanced efficiency)
V24B12C250BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
87.0
86.0
13.8
Typ
89.0
87.4
172
14.3
6.5
±0.02
24.0
24.0
Max
Unit
%
215
14.8
7.6
±0.2
20.8
28.1
28.1
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% 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
Output voltage 95% of nominal
Output voltage <250mV
0
21.3
14.6
12
V
OUT
, 200W (e.g. S24B12C200BL, V24B12C200BL)
Parameter
Efficiency
S24B12C200BL (enhanced efficiency)
V24B12C200BL (standard efficiency)
Ripple and noise
Output OVP set point
Dissipation, standby
Load regulation
Load current
Current limit
Short circuit current
Min
87.0
87.0
13.8
Typ
90.0
88.0
360
14.4
4.6
±0.02
19.2
19.2
Max
Unit
%
450
15
7.4
±0.2
16.67
22.6
22.6
mV
Volts
Watts
%
Amps
Amps
Amps
Notes
Nominal input; 75% load; 25°C
P-P; Nominal input; full load; 20MHz bandwidth
25°C; recycle input voltage or PC to restart (>100ms off)
AC servo motor control based on STSPIN32F01, using MA730's 14-bit magnetic encoder as position feedback2, cascade control of position loop + speed loop + current loop3, using SVPWM vector control algo...
Designing a wide input DC/DC converter for smart lock applications : https://training.eeworld.com.cn/course/5268This video discusses the unique challenges of powering a smart lock with a wireless inte...
When the program executes to read_pcm();, the earphone has sound. Actually, read_pcm(); reads the value of vs1053 register. What's the problem? int main(void) { u16 i=0; delay_init(); //delay function...
[font=Microsoft YaHei][size=4]Notes on "RT-Thread Kernel Implementation and Application Development Practical Guide"[hr][/size][/font][url=home.php?mod=space&uid=73808][font=Microsoft YaHei][size=4]@d...
NUCLEO-G431RB Review
ADC (oversampling)
Document Description
According to the document, the oversampling in this chip achieves a higher SNR by averaging the value of each sampling , which can reach 16...
I have always wondered whether I can use malloc in 51 and what preparations are needed to use malloc. Later, I saw the memory pool initialization function and checked the information. The memory sp...[Details]
Previously, Honor officially announced that the Honor 30 series new product launch conference will be held on April 15. Xiong Junmin, Vice President (Product) of Honor Business Department, also confi...[Details]
On November 16, Xiangshui County held a high-quality development project groundbreaking event. A total of 6 projects were started with a total investment of 2.1 billion yuan, involving new energy, new...[Details]
This article focuses on the process of using MAX 274 to implement a low-pass filter in an electric power parameter measurement device.
In the power parameter measurement device, the power parameters ...[Details]
By Jim Turley “One of the keys to happiness is a bad memory.” – Rita Mae Brown A few years ago, you designed a nice microcontroller-based system, it sold well, and thousands of products are alrea...[Details]
We can predict that if we use a probe with a ground lead to measure a signal from a low source terminal resistance source, we will observe artificial ringing and overshoot. Figures 3.6 and 3.7 allow ...[Details]
Contents The invention relates to an air mass flow meter, which consists of a pipeline and a sensor module installed in the pipeline. Background of the Invention Such air mass flow meters are known...[Details]
In order to thoroughly implement the spirit of General Secretary Xi Jinping's important speech at the 70th Anniversary of the China Council for the Promotion of International Trade and the Global Trad...[Details]
I want to convert the PLC ladder diagram into an STL program, but how can I prevent the STL program from being restored to a LAD program?
A: ---------A relatively simple method is that a...[Details]
On August 14, the fourth "Core Power Beijing" Zhongguancun IC Industry Forum - Investment Forum was held in Beijing. At the forum, Chen Datong, Chairman of the Investment Committee of Puhua Capital, ...[Details]
1 Introduction
PLC (Programmable Controller) is a control device specially designed for industrial automatic control. It has been widely used in the field of industrial automation. Its cha...[Details]
The comparison method compares the surface roughness sample block with the measured surface based on vision and touch, and determines which value the measured surface roughness is equivalent to, or m...[Details]
At present, many buildings in China still generally use dry-type transformers with low-voltage cable distribution boxes to achieve decentralized power supply, which brings a lot of inconvenience to...[Details]
ST offers a broad range of integrated circuit products for vehicle passenger safety applications, including airbags, anti-lock brake systems, traction control, electronic power steering and suspe...[Details]
Abstract: AT90S1200 is a RISC microcontroller launched by ATMEL. It combines the advantages of PIC and 8051 microcontrollers with its own Flash technology. This article introduces the applicatio...[Details]