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Part: 6KA24

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Description:

Company: Vishay Intertechnology

Datasheet: Download 6KA24 datasheet     File size : 312 kB

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6KA24
Vishay Semiconductors
formerly General Semiconductor

Automotive Transient Voltage Supressor
Case Style P600

ed*Features ent Pat

Stand-off Voltage 24V Peak Pulse Power 6000W (10/1000µs)

1.0 (25.4) MIN. 0.360 (9.1) 0.340 (8.6) 0.360 (9.1) 0.340 (8.6)

· Designed for under the hood applications · Plastic package has Underwriters Laboratory Flammability Classification 94V-0 · Exclusive patented PAR® oxide passivated chip construction · Low incremental surge resistance · Ideally suited for automotive "load dump" applications · High temp. soldering guaranteed: 300°C/10 seconds, 0.375" (9.5mm) lead length, 5lbs. (2.3 kg) tension · Available in unidirectional only

Mechanical Data
Dimensions in inches and (millimeters)

0.052 (1.32) 0.048 (1.22) DIA.

1.0 (25.4) MIN.

*Patent #'s

4,980,315 5,166,769 5,278,094

Case: Molded plastic body over nitride passivated die Terminals: Axial leads solderable per MIL-STD-750, Method 2026 Polarity: Color band denotes postitive end (cathode) Weight: 0.07 oz., 2.1 g Mounting Position: Any Packaging codes/options: 1/750 ea. per Bulk Box, 7.5K/box 4/800 ea. per 13" Reel (52mm tape), 3.2K/box 23/300 ea. per Ammo Box (52mm tape), 2.7K/box
A

Maximum Ratings and Thermal Characteristics (T
Parameter Peak pulse power dissipation w/ 10/1000µs waveform
(1) (2)

= 25°C unless otherwise noted)

Symbol PPPM PPPM PM(AV) VWM
(3)

Limit 6000 2000 6.5 24 400 ­ 65 to +185

Unit W W W V A °C

Peak pulse power dissipation w/ 10µs/50ms waveform Steady state power dissipation lead lengths 0.375" (9.5mm), TL = 85°C (6) Maximum working stand-off voltage

Peak forward surge current, 8.3ms single half sine-wave Operating junction and storage temperature range

IFSM TJ, TSTG

Electrical Characteristics (T
Maximum DC reverse leakage current at VWM = 24V Reverse Breakdown Voltage at 100mA

A

= 25°C unless otherwise noted)

TA = 25°C TA = 150°C TA = TA = TA = TA = 25°C min. 25°C max. 150°C min. 150°C max.

ID

1.0 50 26.7 32.6 29.7 36.7 40 45 1.8

µA

V(BR)

V

Maximum clamping voltage at IPP = 90A(4)

TA = 25°C TA = 150°C

VC VF

V V

Maximum instantaneous forward voltage at 100A(5)
Notes: (1) Non-repetitive current pulse, per Fig. 2, with a 10/1000µs waveform (2) Non-repetitive current pulse, per Fig. 5, with a 10µs/50ms waveform (3) Measured on 8.3ms half sine-wave, or equivalent square wave, duty cycle = 4 pulses maximum

(4) Measured on 80µs square pulse width (5) Measured on 300µs second square pulse width (6) Mounted on copper pad area of 1.6 x 1.6" (40 x 40mm) per Fig. 5

Document Number 88309 23-May-03

www.vishay.com 1

6KA24
Vishay Semiconductors
formerly General Semiconductor

Ratings and Characteristic Curves (TA = 25°C unless otherwise noted)
Fig. 1 ­ Peak Pulse Power Rating Curve
1000 150

Fig. 2 ­ 10/1000µs Pulse Waveform
IPPM ­ Peak Pulse Current, % IRSM
tr = 10µsec. Peak Value IPPM TJ = 25°C Pulse Width (td) is defined as the point where the peak current decays to 50% of IPPM

PPPM ­ Peak Pulse Power (kW)

Non-repetitive Pulse Waveform shown in Fig. 3 TA = 25°C 100

100

10

Half Value ­ IPP 2 IP P M 50 10/1000µsec. Waveform as defined by R.E.A.

1

td 0 0 1.0 2.0 3.0 4.0

0.1 100ns

1.0µs

10µs

100µs

1.0ms

10ms

100ms

td ­ Pulse Width (sec.)

t ­ Time (ms)

Fig. 3 ­ Pulse Derating Curve
Peak Pulse Power (PPP) or Current (IPPM) Derating in Percentage, % IFSM ­ Peak Forward Surge Current (A)
100 400

Fig. 4 -- Maximum Non-Repetitive Peak Forward Surge Current
TJ = TJ max. 8.3ms Single Half Sine-Wave (JEDEC Method)

80

350 300

Peak Power (Single Pulse)

60 Average Power 40 Lead Length = 0.375" (9.5mm) 20

250 200

150 100

0

0

25

50

75

100

125

150

175

1

5

10

50

100

TA ­ Ambient Temperature (°C)

Number of Cycles at 60 Hz

Fig. 5 ­ 10µs/50ms Pulse Waveform
150 tr = 10µsec. TJ = 25°C Pulse Width (td) is defined as the point where the peak current decays to 50% of IPPM

IPPM ­ Peak Pulse Current, % IPP

100

Peak Value IPPM

Half Value ­ IPPM 2 50 10µs/50ms Waveform as defined by R.E.A.

td 0 0 50 100 150 200

t ­ Time (ms) www.vishay.com 2 Document Number 88309 23-May-03




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