PEAK PULSE POWER :600W (10/1000μs)BREAKDOWN VOLTAGE RANGE :From 6.8V to 440V.
UNI AND BIDIRECTIONAL TYPES.LOW CLAMPING FACTOR.FAST RESPONSE TIME.UL RECOGNIZED.
FEATURES
CB417
Symbol Parameter
Value Unit P PP Peak pulse power dissipation (see note 1)Tj initial =T amb 600W P Power dissipation on infinite heatsink T amb =75°C 5W I FSM Non repetitive surge peak forward current For Unidirectional types.Tj initial =T amb tp =10ms
100A T stg T j Storage temperature range Maximum junction temperature
-65to +175
175
°C °C T L
Maximum lead temperature for soldering during 10s at 5mm from case
230
°C
Note 1:For a surge greater than the maximum values,the diode will fail in short-circuit.
ABSOLUTE MAXIMUM RATINGS (Tamb =25°C)DESCRIPTION
Transil diodes provide high overvoltage protection by clamping action.Their instantaneous response to transient overvoltages makes them particularly suited to protect voltage sensitive devices such as MOS Technology and low voltage supplied IC’s.
November 1998-Ed:2A P6KE6V8A/440A P6KE6V8CA/440CA
?
TRANSIL TM
Symbol Parameter
Value Unit R th (j-l)Junction-leads
20°C/W R th (j-a)
Junction to ambient on printed circuit.
L lead =10mm
75
°C/W
THERMAL RESISTANCES 1/6
I I F
V F V CL
V BR
V RM
I PP
I RM
V
Symbol Parameter
V RM Stand-off voltage.V BR Breakdown voltage.V CL Clamping voltage.I RM Leakage current @V RM .I PP
Surge current.
αT
Voltage temperature coefficient.V F
Forward Voltage drop.
ELECTRICAL CHARACTERISTICS (Tamb =25°C)
TYPES
I RM @V RM V BR
@
I R
V CL @I PP
V CL @I PP
αT C max
min
nom max max max max
typ note210/1000μs 8/20μs note3note4Unidirectional Bidirectional μA V V V V mA V A V A 10-4/°C pF P6KE6V8A P6KE6.8CA 1000 5.8 6.45 6.87.141010.55713.4298 5.74000P6KE7V5A P6KE7.5CA 500 6.47.137.57.881011.35314.5276 6.13700P6KE10A P6KE10CA 108.55
9.5
1010.5114.54118.62157.52800P6KE12A P6KE12CA 510.211.41212.6116.73621.71847.82300P6KE15A P6KE15CA 112.814.31515.8121.22827.21478.41900P6KE18A P6KE18CA 115.317.11818.9125.22432.51238.81600P6KE22A P6KE22CA 118.820.92223.1130.62039.31029.21350P6KE24A P6KE24CA 120.522.82425.2133.21842.8939.41250P6KE27A P6KE27CA 123.128.72728.4137.51648.3839.61150P6KE30A P6KE30CA 125.628.53031.5141.514.553.5759.71075P6KE33A P6KE33CA 128.231.43324.7145.713.159689.81000P6KE36A P6KE36CA 130.834.23637.8149.91264.3629.9950P6KE39A P6KE39CA 133.337.13941.0153.911.169.75710.0900P6KE47A P6KE47CA 140.244.74749.4164.89.3844810.1800P6KE56A P6KE56CA 147.853.25658.81777.81004010.3700P6KE68A P6KE68CA 158.164.66871.4192 6.51213310.4625P6KE82A P6KE82CA 170.177.98286.11113 5.31462710.5550P6KE100A P6KE100CA 185.595.010******** 4.417822.510.6500P6KE120A P6KE120CA 11021141201261165 3.62121910.7450P6KE150A P6KE150CA 11281431501581207 2.92651510.8400P6KE180A P6KE180CA 11541711801891246 2.431712.610.8360P6KE200A
P6KE200CA
1
171
190
200
210
1
274
2.2
353
11.3
10.8
350
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TYPES
I RM @V RM V BR @I R V CL @I PP V CL @I PP αT C max
min nom max
max
max max typ note210/1000μs 8/20μs note3note4Unidirectional Bidirectional μA V V V V mA V A V A 10-4/°C pF P6KE220A P6KE220CA 11882092202311328238810.310.8330P6KE250A P6KE250CA 121323725026313442442911310P6KE300A P6KE300CA 12562853003151414 1.65297.611290P6KE350A P6KE350CA 12993323503681482 1.6618 6.511270P6KE400A P6KE400CA 13423804004201548 1.3706 5.711360P6KE440A
P6KE440CA
1
376
418
440
462
1
603
1.3
776
5.2
11
350
Note 2:Pulse test :tp <50ms.
Note 3:?V BR =αT *(Ta -25)*V BR (25°C).
Note 4
V R =0V,F =1MHz.For bidirectional types,capacitance value is divided by 2.
Fig 1:Peak pulse power dissipation versus initial junction temperature (printed circuit board).
10s
1000s
%I PP 50
t
PULSE WAVEFORM 10/1000s
100
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0.0010.010.1110100
Ppp (W)
Fig.2:Peak pulse power versus exponentialpulse duration.
Fig.3:Clamping voltage versus peak pulse current.exponentialwaveform :t p =20μs________
t p =1ms-------------t p =10ms...............
Note :The curves of the figure 3are specified for a junction temperature of 25°C beforesurge.
The given results may be extrapolated for other junction temperatures by using the following formula :?V (BR)= αT (V(BR))*[T a -25]*V (BR).
For intermediate voltages,extrapolate the given results.
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Fig.6:Transient thermal impedance junction-am-bient versus pulse duration (For FR4PC Board with L lead =10mm).
Fig.5:Peak forward voltage drop versus peak forward current (typical values for unidirectional types).
Fig.4b :Capacitance versus reverse applied voltage for bidirectional types (typical values).
Fig.4a :Capacitance versus reverse applied voltage for unidirectionaltypes (typical values).
Note :multiply by 2for units with V BR >220V.
Fig.7:Relative variation of leakage current versus junction temperature.
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Packaging:standard packaging is in tape and reel.PACKAGE MECHANICAL DATA CB417(Plastic)
C
A
B O
/O /D
O /D
C
ORDER CODE
P6KE 100
C A RL
PACKAGING:
=Ammopack tape RL =Tape and reel.
REF.
DIMENSIONS
Millimetres Inches Min.
Max.Min.
Max.A 8.890.350B
3.683
0.145
C 25.4
1.000
D
1.092
0.043
Weight =0.65g.
600W
BREAKDOWN VOLTAGE
MARKING :Logo,Date Code,Type Code,Cathode Band (for unidirectional types only).BIDIRECTIONAL
Information furnished is believed to be accurate and reliable.However,STMicroelectronics assumes no responsIbility for the consequences of
use of such information nor for any infringement of patents or other rights of third parties which may result from its use.No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics.Specifications mentioned in this publication are subject to change without notice.This publication supersedes and replaces all information previously supplied.
STMicroelectronics products are not authorized for use as critical component s in life support devices or systems without express written ap-proval of STMicroelectronics.
The ST logo is a registered trademark of STMicroelectronics ?1998STMicroelectronics -Printed in Italy -All rights reserved.
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