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TIC106DS Datasheet, PDF (1/4 Pages) Bourns Electronic Solutions – SILICON CONTROLLED RECTIFIERS
TIC106 SERIES
SILICON CONTROLLED RECTIFIERS
5 A Continuous On-State Current
30 A Surge-Current
Glass Passivated Wafer
400 V to 800 V Off-State Voltage
Max IGT of 200 µA
This series is currently available, but
not recommended for new designs.
TO-220 PACKAGE
(TOP VIEW)
K
1
A
2
G
3
Pin 2 is in electrical contact with the mounting base.
MDC1ACA
absolute maximum ratings over operating case temperature (unless otherwise noted)
RATING
TIC106D
Repetitive peak off-state voltage (see Note 1)
TIC106M
TIC106S
TIC106N
TIC106D
Repetitive peak reverse voltage
TIC106M
TIC106S
TIC106N
Continuous on-state current at (or below) 80°C case temperature (see Note 2)
Average on-state current (180° conduction angle) at (or below) 80°C case temperature
(see Note 3)
Surge on-state current at (or below) 25°C (see Note 4)
Peak positive gate current (pulse width ≤ 300 µs)
Peak gate power dissipation (pulse width ≤ 300 µs)
Average gate power dissipation (see Note 5)
Operating case temperature range
Storage temperature range
Lead temperature 1.6 mm from case for 10 seconds
SYMBOL
VDRM
VRRM
IT(RMS)
IT(AV)
ITSM
IGM
PGM
PG(AV)
TC
Tstg
TL
VALUE
400
600
700
800
400
600
700
800
5
3.2
30
0.2
1.3
0.3
-40 to +110
-40 to +125
230
UNIT
V
V
A
A
A
A
W
W
°C
°C
°C
NOTES: 1. These values apply when the gate-cathode resistance RGK = 1 kΩ.
2. These values apply for continuous dc operation with resistive load. Above 80°C derate linearly to zero at 110°C.
3. This value may be applied continuously under single phase 50 Hz half-sine-wave operation with resistive load. Above 80°C derate
linearly to zero at 110°C.
4. This value applies for one 50 Hz half-sine-wave when the device is operating at (or below) the rated value of peak reverse volta ge
and on-state current. Surge may be repeated after the device has returned to original thermal equilibrium.
5. This value applies for a maximum averaging time of 20 ms.
APRIL 1971 - REVISED SEPTEMBER 2002
Specifications are subject to change without notice.
1