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1.5KE-43A 参数 Datasheet PDF下载

1.5KE-43A图片预览
型号: 1.5KE-43A
PDF下载: 下载PDF文件 查看货源
内容描述: 6.8V至400V GPP瞬态电压抑制器 [6.8V to 400V GPP TRANSIENT VOLTAGE SUPPRESSORS]
分类和应用:
文件页数/大小: 4 页 / 181 K
品牌: FCI [ FIRST COMPONENTS INTERNATIONAL ]
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Data Sheet
6.8V to 400V GPP TRANSIENT
VOLTAGE SUPPRESSORS
TVS
Device
Load
Uni-Polar
TVS
Device
Load
Description
Mechanical Dimensions
JEDEC
D0-201AD
.190
.210
.285
.375
1.00 Min.
1.5KE Series
.050 typ.
Bi-Polar
Features
n
1500 WATT PEAK POWER PROTECTION
n
EXCELLENT CLAMPING CAPABILITY
n
FAST RESPONSE TIME
n
TYPICAL I
R
< 1µA ABOVE 10V
n
GLASS PASSIVATED CHIP CONSTRUCTION
n
MEETS UL SPECIFICATION 94V-0
1.5KE Series
Maximum Ratings
Peak Power Dissipation...P
PK
T
P
= 1ms
(Note 5)
Steady State Power Dissipation...P
D
@ T
L
= 75°C
Non-Repetitive Peak Forward Surge Current...I
FSM
(For Bi-Polar Applications, See Note 1)
Units
Watts
......................................... 1500 Min. ..........................................
............................................. 5.00 ...............................................
Watts
............................................. 200 ...............................................
Amps
@ Rated Load Conditions, 8.3 ms, �½ Sine Wave, Single Phase
(Note 3)
Weight...G
RM
Soldering Requirements (Time & Temp)...S
T
@ 250°C
Operating & Storage Temperature Range...T
J
, T
STRG
NOTES:
1.
2.
3.
4.
5.
............................................. 0.20 ...............................................
Grams
............................................. 11 Sec. ........................................... Min. to
Solder
......................................... -65 to 175 ..........................................
°C
For Bi-Directional Applications, Use C or CA. Electrical Characteristics Apply in Both Directions.
Mounted on 40mm
2
Copper Pads.
8.3 ms, �½ Sine Wave, Single Phase Duty Cycle, @ 4 Pulses Per Minute Maximum.
V
BR
Measured After I
T
Applies for 300
µs.
I
T
= Square Wave Pulse or Equivalent.
Non-Repetitive Current Pulse. Per Fig. 3 and Derated Above TA = 25°C Per Fig. 2.
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