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STUP547

EIC
Part Number STUP547
Manufacturer EIC
Description (STUP06I - STUP5G4) SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR
Published Feb 5, 2011
Detailed Description www.DataSheet4U.com STUP06I - STUP5G4 VBR : 6.8 - 440 Volts PPK : 400 Watts FEATURES : * 400W surge capability at 1ms *...
Datasheet PDF File STUP547 PDF File

STUP547
STUP547


Overview
www.
DataSheet4U.
com STUP06I - STUP5G4 VBR : 6.
8 - 440 Volts PPK : 400 Watts FEATURES : * 400W surge capability at 1ms * Excellent clamping capability * Low zener impedance * Fast response time : typically less then 1.
0 ps from 0 volt to VBR(min.
) * Typical IR less then 1µA above 10V SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR SMA (DO-214AC) 5.
0 ± 0.
15 4.
5 ± 0.
15 1.
1 ± 0.
3 1.
2 ± 0.
2 2.
6 ± 0.
15 2.
1 ± 0.
2 0.
2 ± 0.
07 2.
0 ± 0.
2 MECHANICAL DATA * Case : SMA Molded plastic * Epoxy : UL94V-O rate flame retardant * Lead : Lead Formed for Surface Mount * Polarity : Color band denotes cathode end except Bipolar.
* Mounting position : Any * Weight : 0.
064 grams Dimensions in millimeter DEVICES FOR BIPOLAR APPLICATIONS For bi-directional altered the third letter of type from "U" to be "B".
Electrical characteristics apply in both directions MAXIMUM RATINGS Rating at 25 °C ambient temperature unless otherwise specified.
Rating Peak Power Dissipation at Ta = 25 °C, Tp=1ms (Note1) Steady State Power Dissipation at TL = 75 °C Peak Forward Surge Current, 8.
3ms Single Half Sine-Wave Superimposed on Rated Load (JEDEC Method) (Note 3) Symbol PPK PD Value 400 1.
0 Unit Watts Watt IFSM TJ, T STG 40 - 55 to + 150 Amps.
°C Operating and Storage Temperature Range Note : (1) Non-repetitive Current pulse, per Fig.
5 and derated above Ta = 25 °C per Fig.
1 2 (2) Mounted on copper Lead area at 5.
0 mm ( 0.
013 mm thick ).
(3) 8.
3 ms single half sine-wave, duty cycle = 4 pulses per Minutes maximum.
UPDATE : JULY 13, 1998 www.
DataSheet4U.
com ELECTRICAL CHARACTERISTICS Rating at = 25 °C ambient temperature unless otherwise specified Breakdown Voltage @ It ( Note 1 ) Working Peak Reverse Voltage VRWM (V) 5.
50 5.
80 6.
05 6.
40 6.
63 7.
02 7.
37 7.
78 8.
10 8.
55 8.
92 9.
40 9.
72 10.
2 10.
5 11.
1 12.
1 12.
8 12.
9 13.
6 14.
5 15.
3 16.
2 17.
1 17.
8 18.
8 19.
4 20.
5 21.
8 23.
1 24.
3 25.
6 26.
8 28.
2 29.
1 30.
8 31.
6 33.
3 34.
8 36.
8 38.
1 40.
2 41.
3 43.
6 45.
4 47.
8 50.
2 Maximum Reverse Leakage @ VRWM IR ( µA) 1000 1...



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