3KP SERIES
GLASS PASSIVATED JUNCTION TRANSIENT VOLTAGE SUPPRESSOR
VOLTAGE - 5.0 TO 170 Volts
3000 Watt Peak Pulse Power
FEATURES
l
Plastic package has Underwriters Laboratory
Flammability Classification 94V-O
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Glass passivated junction
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3000W Peak Pulse Power capability on
10/1000
£g
S waveform
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Excellent clamping capability
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Repetition rate(Duty Cycle): 0.05%
l
Low incremental surge resistance
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Fast response time: typically less
than 1.0 ps from 0 volts to BV
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Typical I
D
less than 1
£g
A above 10V
l
High temperature soldering guaranteed:
300
¢J
/10 seconds/.375”,(9.5mm) lead
length/5lbs., (2.3kg) tension
MECHANICAL DATA
Case: Molded plastic over glass passivated junction
Terminals: Plated Axial leads, solderable per
MIL-STD-750, Method 2026
Polarity: Color band denoteds positive
end(cathode)
Mounting Position: Any
Weight: 0.07 ounce, 2.1 grams
DEVICES FOR BIPOLAR APPLICATIONS
For Bidirectional use C or CA Suffix for types
Electrical characteristics apply in both directions.
MAXIMUM RATINGS AND CHARACTERISTICS
Ratings at 25
¢J
ambient temperature unless otherwise specified.
RATING
SYMBOL
VALUE
Peak Pulse Power Dissipation on 10/1000
£gS
waveform
P
PPM
Minimum 3000
(Note 1, FIG.1)
Peak Pulse Current of on 10/1000
£gS
waveform
I
PPM
SEE TABLE 1
(Note 1, FIG.3)
P
M(AV)
8.0
Steady State Power Dissipation at T
L
=75
¢J
Lead
Lengths .375”,(9.5mm) (Note 2)
Peak Forward Surge Current, 8.3ms Single Half Sine-Wave
I
FSM
250
Superimposed on Rated Load, Unidirectional only
(JECED Method) (Note 3)
Operating Junction and Storage Temperature Range
T
J
,T
STG
-55 to +175
NOTES:
1.Non-repetitive current pulse, per Fig. 3 and derated above T
A
=25
¢J
per Fig. 2.
2.Mounted on Copper Leaf area of 0.79in (20mm ).
3.Measured on 8.3ms single half sine-wave or equivalent square wave, duty cycle= 4 pulses per minutes maximum.
2
2
P-600
UNITS
Watts
Amps
Watts
Amps
¢J
RATING AND CHARACTERISTIC CURVES 3KP SERIES
P
PPM
, PEAK PULSE POWER,KW
100
EAK PULSE POWER(Ppp) OR CURRENT(lpp)
DERATING IN PERCENTAGE%
100
10
75
1.0
NON-REPETITIVE PULSE
WAVEFORM SHOWN IN
FIGURE 3 T
A
= 25
¢J
50
0.1
0.1
£g
s
1.0
£g
s
10
£g
s
100
£g
s
1.0ms
10ms
25
td, PULSE WIDTH, SEC
0
0
25
50
75
100
125
150
175
200
Fig. 1-PEAK PULSE POWER VS PULSE TIME
T
A
, AMBIENT TEMPERATURE,
¢J
150
TA = 25
¢J
Fig. 2-DERATING CURVE
CJ,CAPACITANCE, pF
20,000
10,000
TJ = 25
¢J
f = 1.0MHz
Vsig = 50mVp-p
Ippm, PEAK PULSE CURRENT, %
tf = 10
£g
sec
Peak Value Ippm
100
Pulse Width(td) is Defined as the
Point Where the Peak Current
Decays to 50% of lpp
Half Value-Ipp
2
10/1000
£g
sec Waveform
as Defined by R.E.A.
50
1,000
MEASURED AT
ZERO BIAS
MEASURED AT
STAND-OFF
VOLTAGE(V )
MW
e-kt
0
0
td
100
1.0
2.0
3.0
4.0
t, TIME , ms
10
1.0
2.0
10
20
100 200 400
Fig. 3-PULSE WAVEFORM
10.0
L = 375" (9.5mm)
V(WM), REVERSE STAND-OFF VOLTAGE, VOLTS
Pm(AV) STEADY STATE POWER
DISSIPATION, WATTS
6.0
20mm
×
20mm
×
1mm CU
(0.8"
×
0.8"
×
0.40")
4.0
IFSM, PEAK FORWARD SURGE CURRENT,
Fig. 4-TYPICAL CAPACITANCE VS STAND-OFF
VOLTAGE
300
250
200
AMPERES
150
100
50
TJ = TJ max
8.3ms SINGLE HALF SINCE-WAVE JEDEC
METHOD
2.0
0
0
25
50
75
100
125
150
175
200
TL, LEAD TEMPERATURE,
¢J
Fig. 5-STEADY STATE POWER DERATING
1
2
5
10
20
50
100
NUMBER OF CYCLES AT 60Hz
Fig. 6-MAXIMUM NON-REPETITIVE PEAK FORWARD
SURGE CURRENT