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5.0SMDJ12CA-R 数据表(PDF) 4 Page - Bourns Electronic Solutions

部件名 5.0SMDJ12CA-R
功能描述  Transient Voltage Suppressor Diodes
PDF  6 Pages
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制造商  BOURNS [Bourns Electronic Solutions]
网页  http://www.bourns.com
标志 BOURNS - Bourns Electronic Solutions

5.0SMDJ12CA-R 数据表(HTML) 4 Page - Bourns Electronic Solutions

  5.0SMDJ12CA-R Datasheet HTML 1Page - Bourns Electronic Solutions 5.0SMDJ12CA-R Datasheet HTML 2Page - Bourns Electronic Solutions 5.0SMDJ12CA-R Datasheet HTML 3Page - Bourns Electronic Solutions 5.0SMDJ12CA-R Datasheet HTML 4Page - Bourns Electronic Solutions 5.0SMDJ12CA-R Datasheet HTML 5Page - Bourns Electronic Solutions 5.0SMDJ12CA-R Datasheet HTML 6Page - Bourns Electronic Solutions  
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5.0SMDJ-R SERIES
Transient Voltage Suppressor Diodes
*RoHS
COMPLIANT
&
**HAL
OGEN
FREE
www.bourns.com
INVENTORY
SAMPLES
FOLLOW
CONTACT
TECHNICAL
LIBRARY
PRODUCT
SELECTOR
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers
as set forth on the last page of this document, and at www.bourns.com/docs/legal/
disclaimer.pdf.
Pulse Derating Curve
Maximum Non-Repetitive Surge Current
Rating & Characteristic Curves
Pulse Waveform
Typical Junction Capacitance
Pulse Derating Curve (Typical)
Steady State Power Derating Curve
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional
100
50
0
0
1.0
2.0
3.0
4.0
T, Time (ms)
TA=25 °C
Td
TR=10 µs
Half value= Ipp
2
Max. Peak Current value (Ipp)
Pulse width (Td)
is defined as that point
where the peak current
decays to 50 % of Ipp.
10 x 1000 waveform
100
75
50
25
0
050
25
75
100
150
125
175
200
Junction Temperature (°C)
10 x 1000 Waveform
250
200
150
100
50
300
0
1
25
10
20
50
100
Number of Cycles at 60 Hz
300 A at 1 cycle
100 A at 80 cycles
(UNIDIRECTIONAL
DEVICES)
4.0
5.0
3.0
2.0
1.0
0.0
050
25
75
100
150
125
175
200
TL, Lead Temperature (°C)
6.0
6.5
5.5
4.5
3.5
2.5
1.5
0.5
60 Hz Resistive or
Inductive Load
100
10.
1000
1.0
1
10
100
1000
Td, Pulse Width (µs)
TA = 25 °C
100000
1000
10
1
10
100
VBR - Reverse Breakdown Voltage (V)
10000
100
VD = 0 V - Unidirectional
VD = 0 V - Bidirectional
VD = VRWM - Unidirectional
VD = VRWM - Bidirectional



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