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Part: SMCJ160CA

Category:
 Discrete
   -> Diodes & Rectifiers
     -> Protection

Description: 1500 Watt Transient Voltage Suppressors

Company: Fairchild Semiconductor

Datasheet: Download SMCJ160CA datasheet     File size : 597 kB

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Datasheet text preview:
SMCJ5V0(C)A - SMCJ170(C)A
Transient Voltage Suppressors SMCJ5V0(C)A - SMCJ170(C)A
Features · Glass passivated junction. · 1500 W Peak Pulse Power capability · Excellent clamping capability. · Low incremental surge resistance. · Fast response time; typically less
than 1.0 ps from 0 volts to BV for unidirectional and 5.0 ns for bidirectional. Typical IR less than 1.0 µA above 10V. UL certified, UL #E210467. on 10/1000 µs waveform.
SMC/DO-214AB
COLOR BAND DENOTES CATHODE ON UNIDIRECTIONAL DEVICES ONLY. NO COLOR BAND ON BIDIRECTIONAL DEVICES.
· ·
DEVICES FOR BIPOLAR APPLICATIONS
- Bidirectional types use CA suffix. - Electrical Characteristics apply in both directions.
1500 Watt Transient Voltage Suppressors
Absolute Maximum Ratings*
Symbol
PPPM IPPM IFSM Tstg TJ
TA = 25°C unless otherwise noted
Parameter
Peak Pulse Power Dissipation on 10/1000 µs waveform Peak Pulse Current on 10/1000 µs waveform Non-repetitive Peak Forward Surge Current superimposed on rated load (JEDEC method) Storage Temperature Range Operating Junction Temperature
(Note 1)
Value
1500 see table 200 -55 to +150 + 150
Units
W A A °C °C
*These ratings are limiting values above which the serviceability of any semiconductor device may be impaired.
Note 1: Measured on 8.3 ms single half-sine wave or equivalent square wave; Duty cycle = 4 pulses per minute maximum.
2 0 0 3 Fairchild Semiconductor Corporation
S M C J 5 V 0 ( C ) A - S M C J 1 7 0 ( C ) A , Rev. H
SMCJ5V0(C)A - SMCJ170(C)A
Transient Voltage Suppressors
(continued)
Electrical Characteristics
U n i- d ir e c t i o n a l B i - d i r e c t i o n a l (C ) D e v ic e S M C J 5 V .0 (C )A S M C J 6 V 0 (C )A S M C J 6 V .5 (C )A S M C J 7 V 0 (C )A S M C J 7 V .5 (C )A S M C J 8 V 0 (C )A S M C J 8 V 5 (C )A S M C J 9 V 0 (C )A S M C J1 0 (C )A S M C J1 1 (C )A S M C J1 2 (C )A S M C J1 3 (C )A S M C J1 4 (C )A S M C J1 5 (C )A S M C J1 6 (C )A S M C J1 7 (C )A S M C J 1 8 (C ) A S M C J2 0 (C )A S M C J2 2 (C )A S M C J2 4 (C )A S M C J2 6 (C )A S M C J2 8 (C )A S M C J3 0 (C )A S M C J3 3 (C )A S M C J3 6 (C )A S M C J4 0 (C )A S M C J4 3 (C )A S M C J4 5 (C )A S M C J4 8 (C )A S M C J5 1 (C )A S M C J5 4 (C )A S M C J5 8 (C )A S M C J6 0 (C )A S M C J6 4 (C )A S M C J7 0 (C )A S M C J7 5 (C )A S M C J7 8 (C )A S M C J8 5 (C )A S M C J9 0 (C )A S M C J1 0 0 (C )A S M C J1 1 0 (C )A S M C J1 2 0 (C )A S M C J1 3 0 (C )A S M C J1 5 0 (C )A S M C J 1 6 0 (C )A S M C J1 7 0 (C )A P art M a r k in g *
TA = 25°C unless otherwise noted
R everse S ta n d -o ff V o lt a g e V R W M (V ) 5.0 6.0 6.5 7.0 7.5 8.0 8.5 9.0 10 11 12 13 14 15 16 17 18 20 22 24 26 28 30 33 36 40 43 45 48 51 54 58 60 64 70 75 78 85 90 100 110 120 130 150 160 170
B re a k d o w n V o lt a g e V B R (V ) m in 6.40 6.67 7.22 7.78 8.33 8.89 9.44 10.0 11.1 12.2 13.3 14.4 15.6 16.7 17.8 18.9 20.0 22.2 24.4 26.7 28.9 31.1 33.3 36.7 40.0 44.4 47.8 50.0 53.3 56.7 60.0 64.4 66.7 71.1 77.8 83.3 86.7 94.4 100.0 111.0 122.0 133.0 144.0 167.0 178.0 189.0 max 7.0 7.37 7.98 8.60 9.21 9.83 10.4 11.1 12.3 13.5 14.7 15.9 17.2 18.5 19.7 20.9 22.1 24.5 26.9 29.5 31.9 34.4 36.8 40.6 44.2 49.1 52.8 55.3 58.9 62.7 66.3 71.2 73.7 78.6 86.0 92.1 95.8 104.0 111.0 123.0 135.0 147.0 159.0 185.0 197.0 209.0
Test C u rr e n t I T (m A ) 10 10 10 10 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1
C la m p in g V o lt a g e @ IP P M V C (V ) 9.2 10.3 11.2 12.0 12.9 13.6 14.4 15.4 17.0 18.2 19.9 21.5 23.2 24.4 26.0 27.6 29.2 32.4 35.5 38.9 42.1 45.4 48.4 53.3 58.1 64.5 69.4 72.7 77.4 82.4 87.1 93.6 96.8 103.0 113.0 121.0 126.0 137.0 146.0 162.0 177.0 193.0 209.0 243.0 259.0 275.0
P e a k P u ls e C u rr e n t I P P M (A ) 163.0 145.6 133.9 125.0 116.3 110.3 104.2 97.4 88.2 82.4 75.3 69.8 64.7 61.5 57.7 54.3 51.4 46.3 42.3 38.6 35.6 33.0 31.0 28.1 25.8 23.3 21.6 20.6 19.4 18.2 17.2 16.0 15.5 14.6 13.3 12.4 11.9 10.9 10.3 9.3 8.5 7.8 7.2 6.2 5.8 5.5
R everse Leakage @ V RWM I R (uA ) * * 1000 1000 500 200 100 50 20 10 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5
GDE GDG GDK GDM GDP GDR GDT GDV GDX GDZ GEE GEG GEK GEM GEP GER GET GEV GEX GEZ GFE GFG GFK GFM GFP GFR GFT GFV GFX GFZ GGE GGG GGK GGM GGP GGR GGT GGV GGX GGZ GHE GHG GHK GHM GHP GHR
* Color band denotes cathode on unidirectional devices only. No color band on bidirectional devices. ** For bidirectional parts with VRWM<10V, the IR max limit is doubled.
S M C J 5 V 0 ( C ) A - S M C J 1 7 0 ( C ) A , Rev. H
SMCJ5V0(C)A - SMCJ170(C)A
Transient Voltage Suppressors
(continued)
Typical Characteristics
Peak Pulse Power Rating Curve
100
100
Pulse Derating Curve
PULSE POWER (kW)
10
PULSE POWER (%)
TA = 25º C
75
50
1
25
0.1 0.0001
0
0.001
0.01 0.1 PULSE WIDTH (ms)
1
10
0
25
50 75 100 125 150 175 AMBIENT TEMPERATURE (º C)
200
Pulse Waveform
150 PEAK PULSE CURRENT (%)
tf = 10µsec µ Peak Value Ippm TA = 25º C Pulse Width (td) is Defined as the Point Where the Peak Current Decays to 50% of Ipp
Junction Capacitance
20000 10000 CAPACITANCE (pF)
TA = 25º C f = 1.0 MHz Visg = 50m Vp-p Measured at Zero Bias
100
1000
Measured at Stand-Off Voltage (V mw)
Half Value-Ipp 2
50
10/1000µs ec Waveform µ as Defined by R.E.A. e-kt td
100
0
0
1
2 TI ME (ms)
3
4
10
1
5 10 50 100 200 400 REVERSE VOLTAGE (V)
Non -Repetitive Surge Current
200 FORWARD SURGE CURRENT (A)
T A = T Amax 8.3ms Single Half Sine-Wave JEDEC Method
100
50
20
10
1
2
5 10 20 50 NUM BER OF CYCLES AT 60Hz
100
S M C J 5 V 0 ( C ) A - S M C J 1 7 0 ( C ) A , Rev. H


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