P6KE6.8 THRU P6KE440CA
TRANSIENT VOLTAGE SUPPRESSORS
"
600W
Features
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Economical series
Available in both unidirectional and bidirectional construction
6.8 to 440 stand-off volts available
600 watts peak pulse power dissipation
Mechanical Characteristics
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CASE:
Void free transfer molded thermosetting plastic
FINISH:
Silver plated copper readily solderable.
POLARITY:
Banded denotes cathode. Bidirectional not marked.
WEIGHT:
0.7 Gram(Appx.).
MOUNTING POSITION:
Any.
Maximum Ratings
Peak Pulse Power Dissipation at 25
o
C: 600Watts
Steady State Power Dissipatoin:5 Watts at T
L
=+75
o
C
3/8” Lead Length
t
clamping
(0 Volts to BV Min.):
-9
Unidirectional<1x10
-12
Seconds; Bidirectoinal<5x10Seconds
Operating and Storage Temperature: -55
o
C to +150
o
C
APPLICATION
This TVS is an economical, molded, commercial product voltage-
sensitive components from destruction or partial degradation. The
response time of their clamping action is virtually instantaneous(
1X10
-12
seconds) and they have a peak pulse power rating of 600
watts for 1 ms as depicted in Figure 1 and 2. MCC also offers
various varieties of TVS to meet higher and lower power demands
and special applications.
NOTES:Forward Voltage (Vf)@!50 amps peak, 8.3 msec sine
wave equal to 3.5 volts max. (For unidirectional only)
For Bidirectional Construction, indicate a C or CA suffix
after part number,i.e.P6KE440CA.
Capacitance will be 1/2 that shown in Figure 4.
E-mail: sales@taychipst.com
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Web Site: www.taychipst.com
P6KE6.8 THRU P6KE440CA
TRANSIENT VOLTAGE SUPPRESSORS
600W
Figure 1
10
Figure 2 - Pulse Waveform
t
r
100
Peak Value I
PP
Half Wave I
PP
/2
50
10 x 1000 Wave as
defined by R.E.A.
Test wave
form
parameters:
t
r
= 10
µsec
P
PP -
KW
1.0
% I
PP
0.1
.1µse
1µsec
10µsec
100µsec
1msec
c
t
P
0
Peak Pulse Power (P
PP
) –
versus
– Pulse Time (t
P
)
0
1
msec
2
3
Peak Pulse Current (% I
PP
) -
Versus
- Time (t)
Figure 3 - Typical Capacitance
10000
Measured at
zero bias
pf
1000
Figure 4 - Derating Curve
100
% P
PP
50
100
10
0
Measured at
standoff voltage
10
V
BR
100
1000
0
100
200
Temperature
°C
300
°
Peak Forward Surge Current (A)
Fig. 5 Steady State Power Derating
Steady State Power (W)
Fig. 6 Maximum Non-Repetitive
Surge Current
8.3ms Single Half Sine Wave
JEDEC Method
40 x 40 x 1mm Cu
Lead Temperature (°C)
°
Number of Cycles @ 60 Hz
E-mail: sales@taychipst.com
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Web Site: www.taychipst.com