VRBH-03H180 [BEL]
9 VDC â 36 VDC Input;型号: | VRBH-03H180 |
厂家: | BEL FUSE INC. |
描述: | 9 VDC â 36 VDC Input |
文件: | 总12页 (文件大小:1016K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
The Bel xRBH-03Hxx0 is a part of the low cost non-isolated DC/DC
power converter series providing up to 3 A output current. Optional
lead forming provides a vertical mount product for minimal footprint or
a surface mount option for a very low profile. The output is closely
regulated and the efficiency of 3.3 VDC output is typically 88% at full
load. Typical features include remote on/off, input under voltage
lockout, over current protection and short circuit protection.
9 VDC – 36 VDC Input
1.2 VDC – 5.0 VDC /3 A Output
Non-Isolated
Remote On/Off
High Efficiency
Input Under Voltage Lockout
High Power Density
OCP/SCP
•
•
•
•
•
•
•
•
•
•
•
Excellent Thermal Performance
Low Cost
Class II, Category 2, Isolated DC/DC Converter (refer to IPC-9592B)
Networking
Computers and Peripherals
Telecommunications
•
•
•
2
xRBH-03Hxx0 Series
PART
PART
OUTPUT
VOLTAGE
INPUT
VOLTAGE
MAX. OUTPUT
CURRENT
MAX. OUTPUT
POWER
TYPICAL
EFFICIENCY
NUMBER
SURFACE
MOUNT
NUMBER
VERTICAL
MOUNT
5.0 V
3.3 V
2.5 V
1.8 V
1.5 V
1.2 V
9.0 V - 36 V
9.0 V - 36 V
9.0 V - 36 V
9.0 V - 36 V
9.0 V - 28 V
9.0 V - 28 V
3 A
3 A
3 A
3 A
3 A
3 A
15 W
10 W
7.5 W
5.4 W
4.5 W
3.6 W
89%
87%
84%
82%
80%
78%
SRBH-03H500
SRBH-03H330
SRBH-03H250
SRBH-03H180
SRBH-03H150
SRBH-03H120
VRBH-03H500
VRBH-03H330
VRBH-03H250
VRBH-03H180
VRBH-03H150
VRBH-03H120
NOTE: 1. Add “0” suffix at the end of the model number to indicate “Tube Packaging”, and “R” for “Reel Packaging”, and “G” for “Tray
Packaging”.
x
R
BH
-
03
H
xx
0
x
Series
name
Output
current
Input
range
Output
voltage
Mouting type
RoHS status
Option
Package
G – Tray
R – Tape
and Reel
V – Vertical type
S – Surface mount
Arrow
head
RoHS 6
3A
9-36 V
1.2-5.0 V
PARAMETER
DESCRIPTION
MIN
-0.3
-0.3
-40
-40
-
TYP
MAX
38
UNITS
Continuous non-operating Input Voltage
Remove On/Off
-
-
-
-
-
V
V
12
Ambient Temperature
Storage Temperature
Altitude
85
C
C
m
125
2000
NOTE: Ratings used beyond the maximum ratings may cause a reliability degradation of the converter or may permanently damage the device.
PARAMETER
DESCRIPTION
MIN
TYP
MAX
36
UNIT
V
Input Voltage
9
-
-
-
Input Current (full load)
Input Current (no load)
Remote Off Input Current
2.2
15
A
-
-
mA
mA
-
3
-
Input Reflected Ripple Current
(rms)
Input Reflected Ripple Current
(pk-pk)
Tested with simulated source impedance of
500 nH, 5 Hz to 20 MHz and two
100 µF/50 V electrolytic capacitors and a
3.3 µF/50 V ceramic capacitor at the input.
-
-
35
45
70
70
mA
mA
Turn-on Voltage Threshold
Turn-off Voltage Threshold
I2t Inrush Current Transient
5.8
5.7
-
-
-
8.5
8.5
0.1
V
V
0.02
A2s
tech.support@psbel.com
3
xRBH-03Hxx0 Series
PARAMETER
DESCRIPTION
MIN
TYP
MAX
UNIT
Vo = 5.0V
Vo = 3.3V
Vo = 2.5V
Vo = 1.8V
Vo = 1.5V
Vo = 1.2V
4.900
3.234
2.450
1.764
1.470
1.176
-
5.0
3.3
2.5
1.8
1.5
1.2
10
5.100
3.366
2.550
1.836
1.530
1.224
20
Output
Voltage Set
Point
Test conditions:
Vin=12 V, Io=50% full load
V
Vo = 5.0V Vin=38-55V, Io=100% load
Vo=1.2 V-3.3 V
Load
regulation
mV
mV
-
5
10
5
30
60
25
-
15
25
20
50
Vo = 5.0V
-
Line
Regulation
Vo=1.2 V-3.3 V
-
-
Regulation Over Temperature
Output Ripple and Noise (pk-pk)
Output Ripple and Noise (rms)
Output Current
mV
mV
mV
A
Tested with 0-20 MHz BW, with
a 220 µF tantalum capacitor at
the output.
Vo =1.2 V-5.0 V
Vo =1.2 V-5.0 V
-
100
50
-
0
3
Current Limit Threshold
Turn On Time
3.2
-
3.6
6
5
A
10
ms
%
Overshoot at Turn on
.
-
2
5
Output Capacitance
220
-
1200
µF
TRANSIENT RESPONSE
Overshoot
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
80
150
300
150
300
150
300
150
300
150
300
150
300
150
300
150
300
mV
µs
50% ~ 100%
of Max Load
Settling Time
Overshoot
260
80
Vo = 5.0 V
Vo = 3.3 V
mV
µs
100% ~ 50%
of Max Load
Settling Time
Overshoot
260
80
mV
µs
50% ~ 100%
of Max Load
Settling Time
Overshoot
260
80
mV
µs
100% ~ 50%
of Max Load
Test conditions: di/dt = 0.5 A/µS;
Vin = 12 V; with a 220 µF
Tantalum capacitor at the
output.
Settling Time
Overshoot
260
100
250
100
250
100
250
100
250
mV
µs
50% ~ 100%
of Max Load
Settling Time
Overshoot
Vo = 1.8 V - 2.5 V
Vo = 1.2 V -1.5 V
mV
µs
100% ~ 50%
of Max Load
Settling Time
Overshoot
mV
µs
50% ~ 100%
of Max Load
Settling Time
Overshoot
mV
µs
100% ~ 50%
of Max Load
Settling Time
NOTE: All specifications are typical, at 25°C unless otherwise stated.
PARAMETER
DESCRIPTION
MIN
TYP
MAX
UNIT
REMOTE ON/OFF
Signal Low (Unit On)
Signal High (Unit Off)
-0.3
2.6
-
-
1
Remote On/Off pin is open, the module is off.
V
12
North America
+1 408 785 5200
Asia-Pacific
+86 755 298 85888
Europe, Middle East
+353 61 225 977
© 2017 Bel Power Solutions & Protection
Rev. F1
4
xRBH-03Hxx0 Series
PARAMETER
DESCRIPTION
MIN
TYP
MAX
UNIT
Vo = 5.0V
Vo = 3.3V
Vo = 2.5V
Vo = 1.8V
Vo = 1.5V
Vo = 1.2V
87
85
82
70
78
76
89
87
84
82
80
78
-
-
-
-
-
-
Measured at Vin=12 V, full
load and Ta=25 C
Efficiency
%
Switching Frequency
Output Voltage Trim Range
Weight
-
90
-
300
-
-
110
-
kHz
%Vo
g
Wide Trim
3.7
3.4
Weight (vertical)
-
-
g
Calculated Per Bell Core SR-332
FIT
20.248
(Vin=12 V, Vo=5 V, Io=3A, Ta = 25C, FIT=109/MTBF)
0.885 x 0.512 x 0.32
22.48 x 13.00 x 8.13
0.70 x 0.60 x 0.308
17.78 x 15.24 x 7.82
inch
mm
inch
mm
Dimensions (L × W ×H)
Surface mount
Dimensions (L × W ×H)
Vertical
100.0%
100.0%
80.0%
60.0%
40.0%
20.0%
0.0%
80.0%
60.0%
40.0%
20.0%
0.0%
9V
9V
12V
28V
12V
36V
0.300 0.750 1.500 2.250 3.000
0.300
0.750
1.500 2.250
3.000
Output current (A)
Output current (A)
Figure 1. xRBH-03H500
Figure 2. xRBH-03H330
100.0%
80.0%
60.0%
40.0%
20.0%
0.0%
9V
12V
28V
0.300 0.750
1.500 2.250 3.000
Output current (A)
Figure 3. xRBH-03H120
tech.support@psbel.com
5
xRBH-03Hxx0 Series
1.SRBH-03H500. Vin=24.0V Vout=5.0V
4.VRBH-03H500. Vin=24.0V Vout=5.0V
2.SRBH-03H330. Vin=24.0V Vout=3.3V
5.VRBH-03H330. Vin=24.0V Vout=3.3V
3.SRBH-03H120. Vin=24.0V Vout=1.2V
6.VRBH-03H120. Vin=24.0V Vout=1.2V
North America
+1 408 785 5200
Asia-Pacific
+86 755 298 85888
Europe, Middle East
+353 61 225 977
© 2017 Bel Power Solutions & Protection
Rev. F1
6
xRBH-03Hxx0 Series
Figure 4. Ripple and noise at no load, 5VDC output
Figure 5. Ripple and noise at full load, 5VDC output
Figure 6. Ripple and noise at no load, 3.3VDC output
Figure 7. Ripple and noise at full load, 3.3VDC output
Figure 8. Ripple and noise at no load, 1.2VDC output
Figure 9. Ripple and noise at full load, 1.2VDC output
NOTE: Ripple and Noise at 24VDC input, with a 220 µF tantalum cap at the output, Ta=25 ˚ C.
tech.support@psbel.com
7
xRBH-03Hxx0 Series
Figure 10. Vin= 50%-100% Load Transient at Vin = 24 VDC
Figure 11. Vin= 100% - 50% Load Transient at Vin = 24 VDC
input, 5VDC output and Ta = 25 ˚C
input, 5VDC output and Ta = 25 ˚C
Figure 12. Vin= 50%-100% Load Transient at Vin = 24 VDC
Figure 13. Vin= 100% - 50% Load Transient at Vin = 24 VDC
input, 3.3VDC output and Ta = 25 ˚C
input, 3.3VDC output and Ta = 25 ˚C
Figure 14. Vin= 50%-100% Load Transient at Vin = 24 VDC
Figure 15. Vin= 100% - 50% Load Transient at Vin = 24 VDC
input, 1.2VDC output and Ta = 25 ˚C
input, 1.2VDC output and Ta = 25 ˚C
NOTE: Test Condition: di/dt=0.5A/µS, Vin=24V, with a 220µF tantalum 7capacitor at the output.
North America
+1 408 785 5200
Asia-Pacific
+86 755 298 85888
Europe, Middle East
+353 61 225 977
© 2017 Bel Power Solutions & Protection
Rev. F1
8
xRBH-03Hxx0 Series
STARTUP
SHUT DOWN
Figure 16. Start up at full load, 24VDC
input 5VDC output and Ta=25 ˚ C
Figure 17. Shut down at full load, 24VDC
input 5VDC output and Ta=25 ˚ C
Figure 16. Start up at full load, 24VDC
input 3.3VDC output and Ta=25 ˚ C
Figure 17. Shut down at full load, 24VDC
input 3.3VDC output and Ta=25 ˚ C
Figure 18. Start up at full load, 24VDC
input 1.2VDC output and Ta=25 ˚ C
Figure 19. Shut down at full load, 24VDC
input 1.2VDC output and Ta=25 ˚ C
NOTE: Test Condition: Vin=24V, Iout=3A, with a 220µF tantalum capacitor at the output.
tech.support@psbel.com
9
xRBH-03Hxx0 Series
Equations for calculating the trim resistor (in kΩ) given the desired adjusted voltage (Vadj) and the nominal output voltage of the
converter (Vnom) are shown below. The Trim Down resistor should be connected between the Trim pin and Vout. The Trim Up
resistor should be connected between the Trim pin and Ground. Only one of the resistors should be used for any given application.
A
Rtrimdown
B
Vnom Vadj
C
Rtrimup
D
Vadj Vnom
Vnom
A
B
C
D
5
995.39
592.5
402.9
237
474
474
474
474
474
474
189.6
189.6
189.6
189.6
189.6
189.6
237
237
237
237
237
237
3.3
2.5
1.8
1.5
1.2
165.9
94.8
North America
Asia-Pacific
Europe, Middle East
+1 408 785 5200
+86 755 298 85888
+353 61 225 977
© 2017 Bel Power Solutions & Protection
Rev. F1
10
xRBH-03Hxx0 Series
SRBH-03Hxx0
PIN
1
FUNCTION
Remote On/Off
Vin
2
3
Ground
Vout
4
5
Trim
6
N/A
7
N/A
NOTE: These parts are not however compatible with the higher temperatures associated with lead free solder processes and must be
soldered using a reflow profile with a peak temperature of no more than 245 C.
NOTE:
1) All Pins: Material - Copper Alloy;
Finish – 3 micro inches minimum Gold over 50 micro inches minimum Nickel plate
2) Undimensioned components are shown for visual reference only.
3) All dimensions in inches (mm); Tolerances: x.xx +/-0.02 in. (x.x +/-0.5mm) x.xxx +/-0.010 in. (x.xx +/-0.25mm).
tech.support@psbel.com
11
xRBH-03Hxx0 Series
VRBH-03Hxx0
PIN
1
FUNCTION
Remote On/Off
Vin
2
3
Ground
Vout
4
5
Trim
NOTE: These parts are not however compatible with the higher temperatures associated with lead free solder processes and must be
soldered using a reflow profile with a peak temperature of no more than 245 C.
NOTE:
1) All Pins: Material - Copper Alloy;
Finish – 3 micro inches minimum Gold over 50 micro inches minimum Nickel plate
2) Undimensioned components are shown for visual reference only.
3) All dimensions in inches (mm); Tolerances: x.xx +/-0.02 in. (x.x +/-0.5mm) x.xxx +/-0.010 in. (x.xx +/-0.25mm).
North America
Asia-Pacific
Europe, Middle East
+1 408 785 5200
+86 755 298 85888
+353 61 225 977
© 2017 Bel Power Solutions & Protection
Rev. F1
12
xRBH-03Hxx0 Series
DATE
REVISION
CHANGES DETAIL
First release
APPROVAL
2012-01-20
PA
YF Sun
1. Update Input spec;
2. Updated Current Limit Threshold in Output spec;
3. Update Efficiency in General;
4. Update Thermal Derating Curve;
5. Add trim equations
2012-7-31
PB
Summer Wang
1.Update trim equations;
2.Update the MD of SMD narrow version;
3.Update Input spec;
4.Update Output spec
5.Add Efficiency Data;
6.Add NR;
7.Add TR;
2012-9-25
PC
PD
Summer Wang
Summer Wang
8.Add Startup&Shutdown
1.Update Continuous Input Voltage in Abs Max;
2.Update Input Voltage in Input Specs;
3. Update Efficiency Data;
2012-10-29
4.Update the description in NR;
1.Update Cover;
2.Update Turn on Voltage Threshold;
3.Update Turn off Voltage Threshold;
4.Input Reflected Ripple Current;
5.Update Turn on Time;
6.Update Transient Response;
7.Update Weight;
2013-8-12
PE
Summer Wang
8.Update Efficiency Data;
9. Update Thermal Derating Curve;
10.Update Output Ripple and Noise Waveforms;
11.Update Mechanical Outline;
12.Update Transient Response Waveforms;
13.Update Start up & Shut down Waveforms.
1.Update Input Reflected Ripple Current;
2.Update Turn on Voltage Threshold;
3.Update Turn off Voltage Threshold;
4.Update Load Regulation;
5.Update FIT2;
6.Update Mechanical Outline;
7.Update Line Regulation;
2014-6-23
F
Summer Wang
8.Update Current Limit Threshold ;
9.Update Input Current (no load);
10.Add Weight (vertical)
NUCLEAR AND MEDICAL APPLICATIONS - Products are not designed or intended for use as critical components in life support systems,
equipment used in hazardous environments, or nuclear control systems.
TECHNICAL REVISIONS - The appearance of products, including safety agency certifications pictured on labels, may change depending on
the date manufactured. Specifications are subject to change without notice.
tech.support@psbel.com
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