English
Language : 

2N6071 Datasheet, PDF (1/2 Pages) Motorola, Inc – TRIACs 4 AMPERES RMS 200 thru 600 VOLTS
2N6071, A, B
2N6073, A, B
2N6075, A, B
SENSITIVE GATE TRIAC
4.0 AMPS, 200 THRU 600 VOLTS
CentralTM
Semiconductor Corp.
DESCRIPTION:
The CENTRAL SEMICONDUCTOR 2N6071, A, B
series types are silicon sensitive gate triacs
designed for such applications as light dimmers,
motor controls, heating controls and power
supplies.
MARKING CODE: FULL PART NUMBER
TO-126 CASE
MAXIMUM RATINGS: (TJ=25°C unless otherwise noted)
Peak Repetitive Off-State Voltage
RMS On-State Current (TC=85°C)
Peak One Cycle Surge (60Hz, TJ=110°C)
I2t Value for Fusing (t=8.3ms)
Peak Gate Power (TC=85°C)
Average Gate Power (t=8.3ms, TC=85°C)
Peak Gate Voltage (TC=85°C)
Storage Temperature
Junction Temperature
Thermal Resistance
Thermal Resistance
Maximum Lead Temperature
SYMBOL
VDRM, VRRM
IT(RMS)
ITSM
I2t
PGM
PG(AV)
VGM
Tstg
TJ
ΘJC
ΘJA
TL
2N6071
2N6071A
2N6071B
200
2N6073
2N6073A
2N6073B
400
4.0
30
3.7
10
0.5
5.0
-40 to +150
-40 to +110
3.5
75
260
2N6075
2N6075A
2N6075B
600
ELECTRICAL CHARACTERISTICS: (TC=25°C unless otherwise noted)
SYMBOL
IDRM, IRRM
IDRM, IRRM
IGT
IGT
IGT
IGT
IGT
IGT
IGT
IGT
IH
IH
VGT
VGT
VTM
ton
dv/dt
TEST CONDITIONS
VD=Rated VDRM, VRRM, TJ=25°C
VD=Rated VDRM, VRRM, TJ=110°C
VD=12V, RL=100Ω, QUAD I, TJ=25°C
VD=12V, RL=100Ω, QUAD II, TJ=25°C
VD=12V, RL=100Ω, QUAD III, TJ=25°C
VD=12V, RL=100Ω, QUAD IV, TJ=25°C
VD=12V, RL=100Ω, QUAD I, TJ= -40°C
VD=12V, RL=100Ω, QUAD II, TJ= -40°C
VD=12V, RL=100Ω, QUAD III, TJ= -40°C
VD=12V, RL=100Ω, QUAD IV, TJ= -40°C
VD=12V, IT=1.0A, TJ=25°C
VD=12V, IT=1.0A, TJ= -40°C
VD=12V, RL=100Ω, TJ=25°C, QUAD I, II, III, IV
VD=12V, RL=100Ω, TJ= -40°C, QUAD I, II, III, IV
ITM=6.0A
ITM=14A, IGT=100mA
VD= Rated VDRM, ITM=5.7A, TJ=85°C
TYP MAX
10
2.0
30
-
30
-
60
-
60
-
30
70
2.0
2.5
2.0
1.5
5.0
A Series
TYP MAX
10
2.0
5.0
5.0
5.0
10
20
20
20
30
15
30
2.0
2.5
2.0
1.5
5.0
B Series
TYP MAX
10
2.0
3.0
3.0
3.0
5.0
15
15
15
20
15
30
2.0
2.5
2.0
1.5
5.0
UNITS
V
A
A
A2s
W
W
V
°C
°C
°C/W
°C/W
°C
UNITS
µA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
V
V
V
µs
V/µs
R0 (27-April 2004)