P6KE 6.8(C)A thru P6KE 440(C)A
600W Transient Voltage Suppressors
Feature:
* 600 Watt Peak Power Dissipation * Glass Passivated Die Construction * Excellent Clamping Capability Fast Response Time * High Temperat Soldering Guaranteed : 265 C/10 sec/.375." (9.5mm) Lead Length, 51bs., (2.3kg) Tension.
Peak Pulse Power 600 Watt Stand-off Voltage 6.8 To 440 VOLTS
Mechanical Data
* Case: JEDEC DO-15 molded Plastic. * Terminals: Axial Leads, Solderable per MIL-STD-750, Method 2026 * Polarity: Color Band Denotes Cathode Except Bipolar * Mounting Position: Any * Weight: 0.4grams(approx), 0.015ounce.
DO-15 (DO-204AC)
DO-15 Outline Dimensions Axial Device
A Dim DO-15 Min 25.4 Max Min 5.8
B Max 7.6 Min 0.71
C Max 0.86 Min 2.6
D Max 3.6
Maximum Ratings (TA =25 C Unless otherwise Noted)
Characteristics Peak Pulse Power Dissipation at T A =25 C, tp=1.0 ms (1) Steady State Power Dissipation at TL=75 C Lead Lengths .375"(9.5mm) (1) Peak Forward Surge Current 8.3ms Single Half Sine-Wave, Superimposed on Rated Load(JEDEC Method) (3) Operating and Storage Junction Temperature Range
_ _ _ _
Symbol
Value 600 5
Unit W W
P PPM P M(AV) I FSM
100
A
Tj, T STG
-55 to -175
C
NOTE: 1. Non-Repetitive Current Pulse, per Fig3 and Derated above TA=25 C per Fig2 2. Mounted on Copper Pads Area of 1.6 1.6"(40 40mm) per FIG.5. 3. 8.3ms Single Half Sine-Wave, or equivalent Square Wave, Duty Cycle=4 pulses per minutes Maximum.
WEITRON
http://www.weitron.com.tw
P6KE 6.8 (C)A thru P6KE 440(C)A
Electrical Characteristics
P6KE
PART NUMBER REVERSE BREAKDOWNBREAKDOWN MAXIMUM PEAK TEST STAND- OFF VOLTAGE VOLTAGE CLAMPING PULSE CURRENT VBR(V) VBR(V) VOLTAGE VOLTAGE CURRENT IT (mA) VRWM(V) @Ipp Vc(V) Ipp(A) MIN.@I T MAX.@IT 10.5 11.3 12.1 13.4 14.5 15.6 16.7 18.2 21.2 22.5 25.2 27.7 30.6 33.2 37.5 41.4 45.7 49.9 53.9 59.3 64.8 70.1 77.0 85.0 92.0 103.0 113.0 125.0 137.0 152.0 165.0 179.0 207.0 219.0 234.0 246.0 274.0 328.0 344.0 414.0 482.0 548.0 602.0 58.1 54.0 50.4 45.5 42.1 39.1 36.5 33.5 28.8 27.1 24.2 22.0 19.9 18.4 16.3 14.7 13.3 12.2 11.3 10.3 9.4 8.7 7.9 7.2 6.6 5.9 5.4 4.9 4.5 4.0 3.7 3.4 2.9 2.8 2.6 2.5 2.2 1.9 1.8 1.5 1.3 1.1 1.0 REVERSE LEAKAGE @V RWM IR(µA) 1000 500 200 50 10 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5
UNI-POLAR BI-POLAR P6KE6.8A P6KE6.8CA 5.80 6.45 7.14 10 P6KE7.5A P6KE7.5CA 6.40 7.13 7.88 10 P6KE8.2A P6KE8.2CA 7.02 7.79 8.61 10 P6KE9.1A P6KE9.1CA 7.78 8.65 9.55 1 P6KE10A P6KE10CA 8.55 9.50 10.50 1 P6KE11A P6KE11CA 9.40 10.50 11.60 1 P6KE12A P6KE12CA 10.20 11.40 12.60 1 P6KE13A P6KE13CA 11.10 12.40 13.70 1 P6KE15A P6KE15CA 12.80 14.30 15.80 1 P6KE16A P6KE16CA 13.60 15.20 16.80 1 P6KE18A P6KE18CA 15.30 17.10 18.90 1 P6KE20A P6KE20CA 17.10 19.00 21.00 1 P6KE22A P6KE22CA 18.80 20.90 23.10 1 P6KE24A P6KE24CA 20.50 22.80 25.20 1 P6KE27A P6KE27CA 23.10 25.70 28.40 1 P6KE30A P6KE30CA 25.60 28.50 31.50 1 P6KE33A P6KE33CA 28.20 31.40 34.70 1 P6KE36A P6KE36CA 30.80 34.20 37.80 1 P6KE39A P6KE39CA 33.30 37.10 41.00 1 P6KE43A P6KE43CA 36.80 40.90 45.20 1 P6KE47A P6KE47CA 40.20 44.70 49.40 1 P6KE51A P6KE51CA 43.60 48.50 53.60 1 P6KE56A P6KE56CA 47.80 53.20 58.80 1 P6KE62A P6KE62CA 53.00 58.90 65.10 1 P6KE68A P6KE68CA 58.10 64.60 71.40 1 P6KE75A P6KE75CA 64.10 71.30 78.80 1 P6KE82A P6KE82CA 70.10 77.90 86.10 1 P6KE91A P6KE91CA 77.80 86.50 95.50 1 P6KE100A P6KE100CA 85.50 95.00 105.00 1 P6KE110A P6KE110CA 94.00 105.00 116.00 1 P6KE120A P6KE120CA 102.00 114.00 126.00 1 P6KE130A P6KE130CA 111.00 124.00 137.00 1 P6KE150A P6KE150CA 128.00 143.00 158.00 1 P6KE160A P6KE160CA 136.00 152.00 168.00 1 P6KE170A P6KE170CA 145.00 162.00 179.00 1 P6KE180A P6KE180CA 154.00 171.00 189.00 1 P6KE200A P6KE200CA 171.00 190.00 210.00 1 P6KE220A P6KE220CA 185.00 209.00 231.00 1 P6KE250A P6KE250CA 214.00 237.00 263.00 1 P6KE300A P6KE300CA 256.00 285.00 315.00 1 P6KE350A P6KE350CA 300.00 332.00 368.00 1 P6KE400A P6KE400CA 342.00 380.00 420.00 1 P6KE440A P6KE440CA 376.00 418.00 462.00 1 For bidirectional type having Vrwm of 10 volts and less, the IR limit is double. For parts without A , the VBR is + 10%
WEITRON
http://www.weitron.com.tw
P6KE 6.8 (C)A thru P6KE 440 (C)A
PEAK PULSE POWER (Ppp) or CURRENT (IPPM) DERATING IN PERCENTAGE, %
FIG.1- PEAK PULSE POWER RATING CURVE
PPPM, PEAK PULSE POWER, (KW)
100 NON-REPETITIVE PULSE WAVEFORM SHOWN in FIG.3 TA=25 C
FIG.2- PULSE DERATING CURVE
100
75
10
50
1.0
25
0.1 0.1 s
s
s
s
1.0ms
10ms
0 0 25 50 75 100 125
o
150
175
200
t d , PULSE WIDTH, (sec).
TA, AMBIENT TEMPERATURE, ( C)
FIG.3- PULSE WAVEFORM
PEAK PULSE CURRENT - %
tr=10 u sec. PEAK VALUE lPPM
PULSE WIDTH (td) is DEFINED as the POINT WHERE the PEAK CURRENT DECAYS to 50% of lPPM
CJ, JUNCTION CAPACITANCE.(pF)
150
6,000
FIG.4- TYPICAL JUNCTION CAPACITANCE UNIDIRECTIONAL
MEASURED at ZERO BIAS
Tj=25 C f=1.0MHz Vsig=50mVp-p
o oo
100
50
HALF VALUE- lPPM 2 10/1000 sec. WAVEFORM as DEFINED by R.E.A.
1,000
MEASURED at STAND-OFF VOLTAGE, VWM
0 0
td
1.0
2.0 t, TIME, ms
3.0
4.0
100
1.0
10 V(BR), BREAKDOWN VOLTAGE. (VOLTS)
100
200
PM(AV), STEADY STATE POWER DISSIPATION, (W ATTS)
5.0
L=0.375"(9.5mm) LEAD LENGTHS 60Hz RESISTIVE OR INDUCTIVE LOAD
lFSM, PEAK FORWARD SURGE CURRENT, (AMPERES)
FIG.5- STEADY STATE POWER DERATING CURVE
200
FIG.6- MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT UNIDIRECTIONAL ONLY
Tj=Tj max 8.3ms Single Half Sine Wave (JEDEC Method)
3.75
100
2.5
1.6 X 1.6 X .040" ( 40 X 4 0 X 1 m m . ) COPPER HEAT SINKS
1.25
0
10 1 10 NUMBER OF CYCLES AT 60Hz
0
25
50
75
100
125
o
150
175
200
100
TL, LEAD TEMPERATURE, ( C)
lD, INSTANTANEOUS REVERSE LEAKAGE CURRENT, (MICROAMPERES)
FIG.7- TYPICAL REVERSE LEAKAGE CHARACTERASTICS
TRANSIENT THERMAL IMPEDANCE ( C/W) 100
FIG.8 - TYP. TRANSIENT THERMAL IMPEDANCE
1,000 100 10 1 0.1 0.01 MEASURED AT DEVICES STAND-OFF VOLTAGE, VWM o TA =25 C
10
o
1
TA=25 C 0 100 200 300 400 500
o
0.001
0.1 0 0.2 0.4 0.6 0.8 1 1.2
V(BR), BREAKDOWN VOLTAGE. (VOLTS)
tp-PULSE DURATION(SEC)
WEITRON
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