參數(shù)資料
型號: P6KE100A
廠商: MOTOROLA INC
元件分類: 參考電壓二極管
英文描述: ZENER OVERVOLTAGE TRANSIENTSUPPRESSORS
中文描述: 600 W, UNIDIRECTIONAL, SILICON, TVS DIODE
文件頁數(shù): 4/7頁
文件大?。?/td> 81K
代理商: P6KE100A
P6KE6.8A through P6KE200A
Motorola TVS/Zener Device Data
4-10
600 Watt Peak Power Data Sheet
APPLICATION NOTES
RESPONSE TIME
In most applications, the transient suppressor device is
placed in parallel with the equipment or component to be
protected. In this situation, there is a time delay associated
with the capacitance of the device and an overshoot condition
associated with the inductance of the device and the
inductance of the connection method. The capacitance effect
is of minor importance in the parallel protection scheme
because it only produces a time delay in the transition from the
operating voltage to the clamp voltage as shown in Figure A.
The inductive effects in the device are due to actual turn-on
time (time required for the device to go from zero current to full
current) and lead inductance. This inductive effect produces
an overshoot in the voltage across the equipment or
component being protected as shown in Figure B. Minimizing
this overshoot is very important in the application, since the
main purpose for adding a transient suppressor is to clamp
voltage spikes. The P6KE6.8A series has very good response
time, typically < 1 ns and negligible inductance. However,
external inductive effects could produce unacceptable over-
shoot. Proper circuit layout, minimum lead lengths and placing
the suppressor device as close as possible to the equipment
or components to be protected will minimize this overshoot.
Some input impedance represented by Zin is essential to
prevent overstress of the protection device. This impedance
should be as high as possible, without restricting the circuit
operation.
DUTY CYCLE DERATING
The data of Figure 1 applies for non-repetitive conditions
and at a lead temperature of 25
°
C. If the duty cycle increases,
the peak power must be reduced as indicated by the curves of
Figure 6. Average power must be derated as the lead or
ambient temperature rises above 25
°
C. The average power
derating curve normally given on data sheets may be
normalized and used for this purpose.
At first glance the derating curves of Figure 6 appear to be in
error as the 10 ms pulse has a higher derating factor than the
10
μ
s pulse. However, when the derating factor for a given
pulse of Figure 6 is multiplied by the peak power value of
Figure 1 for the same pulse, the results follow the expected
trend.
TYPICAL PROTECTION CIRCUIT
Vin
VL
V
Vin
Vin (TRANSIENT)
VL
td
V
VL
Vin (TRANSIENT)
Zin
LOAD
OVERSHOOT DUE TO
INDUCTIVE EFFECTS
tD = TIME DELAY DUE TO CAPACITIVE EFFECT
t
t
Figure 7.
Figure 8.
相關(guān)PDF資料
PDF描述
P6KE100A UNI AND BIDIRECTIONAL TYPES, PEAK PULSEPOWER : 600W
P6KE100A 600W TRANSIENT VOLTAGE SUPPRESSOR
P6KE100A 600 Watt Transient Voltage Suppressors
P6KE110CA 600 Watt Transient Voltage Suppressors
P6KE200CA UNI AND BIDIRECTIONAL TYPES, PEAK PULSEPOWER : 600W
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P6KE100A/1 功能描述:TVS 二極管 - 瞬態(tài)電壓抑制器 600W 100V Unidirect RoHS:否 制造商:Vishay Semiconductors 極性:Bidirectional 工作電壓: 擊穿電壓:58.9 V 鉗位電壓:77.4 V 峰值浪涌電流:38.8 A 系列: 封裝 / 箱體:DO-214AB 最小工作溫度:- 55 C 最大工作溫度:+ 150 C