PSF-100-C [CUI]
Chassis Mount Power Supply, 27.6/27.6 Vdc, 3.65/1.725 A, 100 W;![PSF-100-C](http://pdffile.icpdf.com/pdf2/p00292/img/icpdf/PSF-100-D-CN_1769883_icpdf.jpg)
型号: | PSF-100-C |
厂家: | ![]() |
描述: | Chassis Mount Power Supply, 27.6/27.6 Vdc, 3.65/1.725 A, 100 W 输入元件 输出元件 |
文件: | 总7页 (文件大小:1326K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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date 12/12/2014
page 1 of 7
SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
FEATURES
• up to 100 W continuous power
• universal input (90~264 Vac)
• built-in constant current limit circuitry
• alarm signal for AC OK and battery low
• short circuit, over load, over voltage, brown-out,
battery low, and battery polarity protections
• withstand 2G vibration test
• efficiency up to 87%
output
voltage
output
otput
powr2
max
ripple
efficiency
MODEL
current1
and noise3
max
max
typ
(Vdc)
(A)
(W)
(mVp-p)
(%)
Vo1
Vo2
13.8
13.8
7.3
2.875
100
150
PSF-100-A
PSF-100-B
PSF-100-C
PSF-100-D
100
00
100
100
86
85
87
85
Vo1
Vo2
Vo3
13.8
13.8
5
62
2.87
3
100
150
100
Vo1
Vo2
27.6
27.6
35
1.725
100
150
Vo1
Vo2
Vo3
27.6
27.
3.1
1.5
3
100
150
100
Notes:
1. Vo2 battery discharge current must not epower.
2. Maximum total combined power (rated po
3. At 20 MHz bandwidth using a 12” sted pterminated with a 47 µF and 0.1 µF parallel capacitors.
PART NUMBER KEY
PSF-100 - X - XXX
Base Number
Chassis
“blank” = open frame
CNF = enclosed
Output Voltage
A = 13.8 Vdc, 13.8 Vdc
B = 13.8 Vdc, 13.8 Vdc, 5 Vdc
C = 27.6 Vdc, 27.6 Vdc
D = 27.6 Vdc, 27.6 Vdc, 5 Vdc
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date 12/12/2014 page 2 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
INPUT
parameter
conditions/description
min
typ
max
units
90
127
264
373
voltage
surge voltage
frequency
for maximum of 5 seconds
300
63
47
at 115 Vac
at 230 Vac
2.0
1.2
A
current
at 115 Vac, cold start
at 230 Vac, cold start
35
70
A
A
inrush current
leakage current
at 264 Vac
1
mA
OUTPUT
parameter
conditions/description
mi
yp
max
units
low line to high line, at rated load
Vo1, Vo3
line regulation
load regulation
±0.5
%
10% to 100% rated load
Vo1
Vo3
±0.5
±1.5
%
%
Vo1
Vo3
±2
±3
%
%
voltage accuracy
hold-up time
at 115 Vac, full load
at 230 Vac, full load
8
50
ms
ms
setup time
at 115/230 Vac, full load, cold start
at 115/230 Vac, full load
Vo1
800
ms
ms
rise time
50
adjustability
±10
%
temperature coefficient
Vo1, 0°C~50°C
±0.03
%/°C
PSF-100-A, PSF-100-C
PSF-100-B, P00-D
TTL open collector output
lay contact output
AC OK
PSF-100-
PSF-100
<1V ±3%
<22 V ±3%
battery low
PROTECTIONS
parameter
conditions/ion
min
typ
max
units
over voltage protection
Vo1, latch off mode
115
150
%
auto recover, hiccup mode
Vo1, Vo3
2
over current protection
battery cut off
110
100
%
%
PSF-100-A, PSF-100-B
PSF-100-C, PSF-100-D
9.5
19
10
20
10.5
21
Vdc
Vdc
SAFETY & COMPLIANCE
parameter
conditions/description
min
typ
max
units
input to output
input to ground
output to ground
3,000
1,500
500
Vac
Vac
Vac
oltage
tance
vals
input to output at 500 Vdc
UL 60950-1, EN 60950-1
100
MΩ
EN 55022, EN 61000-6-(1,3), EN 61000-3-(2,3),
EN 55024, EN 50204, EN 61204-3, EN 61000-4-(2, 3, 4, 5, 6, 8, 11)
EMI/
PSF-100-A, PSF-100-B as per MIL-HDBK-217F
PSF-100-C, PSF-100-D as per MIL-HDBK-217F
103,400
92,100
hrs
hrs
MTBF
RoHS
2011/65/EU
Note:
1. The power supply is considered a component which will be installed into a final equipment. The final equipment must be re-confirmed that it still meets EMC directives.
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date 12/12/2014 page 3 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
ENVIRONMENTAL
parameter
conditions/description
min
-20
-40
20
typ
max
70
units
operating temperature
storage temperature
operating humidity
storage humidity
see derating curve
85
non-condensing
non-condensing
90
10
90
at 10~500 Hz, 10 min per cycle for 60 minutes
each test along the X, Y, and Z axis
vibration
2
G
DERATING CURVES
Load vs. Temperature
Lad vs. Input Vtage
(at 25°C)
All other models
100
100
80
PSF-100-B-CNF & PSF-100-D-CNF
80
60
50
40
60
Safe operating area
20
0
20
0
-20
-10
0
10
20
30
40
50
60
70
90
95
100
105
110
115
120
264
Ambient Temperature (°C)
Input Voltage (Vac) 60 Hz
MECHANICAL
parameter
conditions/descriptin
min
typ
max
units
open frame: 1x 95 x 31
enclosed: 5 x 37.
mm
mm
dimensions
weight
open fra
enclose
0.34
0.47
kg
kg
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date 12/12/2014 page 4 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
MECHANICAL DRAWING
OPEN FRAME
units: mm
CN1 Pin Connections
CN2 Pin Connections
Function
PIN
1
Function
AC/L
PIN
PSF-100-A, PSF-100-C3
AC OK
2
AC/N
1
2
3
FG ⏚
BAT LOW
4
-Vo1
PSF-100-A: (13.8 V/20 mA)
PSF-100-C: (27.6 V/20 mA)
3
5
+Vo1
PSF-100-B, PSF-100-D4
6
+Vo2 (+ BAT)
-Vo2 (- BAT)
+Vo3 (+5 V)
1 2
3 4
71
82
AC OK
BAT LOW
CNF
units: mm
CN1 Pin Connections
CN
PIN
1
Function
AC/L
PIN
PSF-100
AC OK
2
AC/N
1
2
3
FG ⏚
BAT LOW
4
-Vo1
PSF-10A: (13.8 V/20 mA)
PSF-0-C: (27.6 V/20 mA)
3
5
+1
100-B, PSF-100-D4
6
+V(+ BAT)
-2 (- BAT
+Vo3 5 V)
1 2
3 4
71
82
AC OK
BAT LOW
Notes:
1. To protect product damage do not connect the GND port with -BAT port.
2. PSF-100-B and PSF-100-D only.
3. For PSF-100-A & PSF-100-C, CN2 mates with JST XHP-3 or equivalent
and JST SXH-001 T-P0.6 or equivalent.
4. For PSF-100-B & PSF-100-D, CN2 mates with JST XHP-4 or equivalent
and JST SXH-001 T-P0.6 or equivalent.
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date 12/12/2014 page 5 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
BATTERY CHARGING SPECIFICATIONS
Block Diagram
Alarm Circuit for
PSF-100-A & PSF-100-C
Alarm Circuit for
PSF-100-B & PSF-100-D
y
PSF-100-A & PSF-100-C
Alarm Signal for AOK and Battery Low
Function
AC OK
Desction
Alarm Output
The signal ilow when the wer
suppturns on
Low
(0.3 V max. at 30 mA)
is high hen the power
pply turnoff
High/open
(external voltage < 50 V)
w when the voltage of
tery is below:
-A), 22 V (PSF-100-C)
Low
(0.3 V max. at 30 mA)
Battery
Low
This high when the voltage of
the battery is above:
12 V (PSF-100-A), 22 V (PSF-100-C)
High/open
(external voltage < 50 V)
Notes:
1arm sigis sent out throh “AC OK” and “Battery Low” pins.
2. An external age sourcs required for this function. The maximum applied voltage is 50 V and the maximum sink current is 30 mA.
Internal Circuit of AC OK and Battery Low
PSF-100-A:
PSF-100-C:
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date 12/12/2014 page 6 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
BATTERY CHARGING SPECIFICATIONS (CONTINUED)
PSF-100-B & PSF-100-D
Alarm Signal for AC OK and Battery Low
Function
AC OK
Description
Alarm Output
The signal is low when the power
supply turns on
Low or short
The signal is high when the power
supply turns off
High/open
(external voltage < 30 V)
The signal is low when the voltage of
the battery is below:
Low or short
12 V (PSF-100-B), 22 V (PSF-100-D)
Battery
Low
The signal is high when the voltage of
the battery is above:
High/open
(external volte < 30 V
12 V (PSF-100-B), 22 V (PSF-100-D)
Notes:
1. Alarm signal is sent out through “AC OK” and “Battery Low” pins (relay contact type).
2. An external voltage source is required for this function. The maximum applied vol0 V and the aximum sink current is 1 A.
Internal Circuit of AC OK and Bttery Low
Notes:
1. All specifications measured at 25°C, 230Vac input voltage, and rated power unless otherwise noted.
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date 12/12/2014 page 7 of 7
CUI Inc │ SERIES: PSF-100 │ DESCRIPTION: AC-DC POWER SUPPLY
REVISION HISTORY
rev.
description
date
1.0
initial release
11/25/2013
12/12/014
1.01
updated datasheet
The revision history provided is for informational purposes only and is believed to be accurate.
Headquarters
20050 SW 112th Ave.
Tualatin, OR 97062
800.275.4899
Fax 503.612.2383
cui.com
techsupport@cui.com
CUI offers a two (2) year limited warranty. Complete warranty information is listed on our website.
CUI reserves the right to make changes to the product at any time without notice. Information provided by CUI is believed to be accurate and reliable. However, no responsibility is
assumed by CUI for its use, nor for any infringements of patents or other rights of third parties which may result from its use.
CUI products are not authorized or warranted for use as critical components in equipment that requires an extremely high level of reliability. A critical component is any component of a
life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.
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