Teccor brand Thyristors
1 Amp Sensitive & Standard Triacs
Lx01Ex & LxNx & Qx01Ex & QxNx Series
Description
1 Amp bi-directional solid state switch series is designed
for AC switching and phase control applications such as
motor speed and temperature modulation controls, lighting
controls, and static switching relays.
Sensitive type devices guarantee gate control in Quadrants
I & IV needed for digital control circuitry.
Standard type devices normally operate in Quadrants I & III
triggered from AC line.
Features & Benets
t 3 P ) 4$ P N Q MJU BO t 4 V SH FD B Q B C JMJU P ZV QU
20 A
Main Features t ( M BT ToQ BT TJF WBUE
junctions
Symbol Value Unit
t P MU B 7 H FD B Q B C JMJU ZVP QU
I 1A
600 V
T(RMS)
V /V 400 to 600 V
DRM RRM
I 3 to 25 mA
GT (Q1)
Applications
Excellent for lower current heating controls, water valves,
and solenoids.
Schematic Symbol
Typical applications are AC solid-state switches, home/
brown goods and white goods appliances.
Sensitive gate Triacs can be directly driven by
MT2 MT1
microprocessor or popular opto-couplers/isolators.
G
Absolute Maximum Ratings Sensitive Triacs (4 Quadrants)
Symbol Parameter Value Unit
RMS on-state current
I Lx01Ey/LxNy T = 50C 1 A
T(RMS) C
(full sine wave)
f = 50 Hz t = 20 ms 16.7
Non repetitive surge peak on-state current
I A
TSM
(full cycle, T initial = 25C)
J f = 60 Hz t = 16.7 ms 20
2 2 2
ItI t Value for fusing t = 8.3 ms 1.6 A s
p
Critical rate of rise of on-state current
di/dt f = 120 Hz 20 A/s
T = 110C
J
(I = 50mA with c 0.1s rise time)
G
I Peak gate trigger current t c 10 s T = 110C 1A
GTM p
J
P Average gate power dissipation T = 110C 0.2 W
G(AV)
J
Lx01Ey -65 to 150
Storage temperature range C
T
stg
LxNy -40 to 125
Lx01Ey -65 to 110
T Operating junction temperature range C
J
LxNy -40 to 110
Note: x = voltage, y = sensitivity
Lx01Ex & LxNx & Qx01Ex & QxNx Series
2010 Littelfuse, Inc
33
Specications are subject to change without notice. Specications are subject to change without notice.
Revised: March 31, 2010 03:44 PM
Please refer to
Teccor brand Thyristors
1 Amp Sensitive & Standard Triacs
Absolute Maximum Ratings Standard Triacs
Symbol Parameter Value Unit
RMS on-state current
I Qx01Ey/QxNy T = 60C 1 A
T(RMS) C
(full sine wave)
f = 50 Hz t = 20 ms 16.7
Non repetitive surge peak on-state current
I A
TSM
(full cycle, T initial = 25C)
J f = 60 Hz t = 16.7 ms 60
2 2 2
ItI t Value for fusing t = 8.3 ms 1.6 A s
p
Critical rate of rise of on-state current
di/dt f = 120 Hz 20 A/s
T = 125C
J
(I = 200mA with c 0.1s rise time)
G
t c 10 s;
p
I Peak gate trigger current 1A
T = 125C
GTM J
I c I
GT GTM
P Average gate power dissipation T = 125C 0.2 W
G(AV)
J
L/Qx01Ey -65 to 150
T Storage temperature range C
stg
L/QxNy -40 to 150
L/Qx01Ey -65 to 125
T Operating junction temperature range C
J
L/QxNy -40 to 125
Note: x = voltage, y = sensitivity
Electrical Characteristics (T = 25C, unless otherwise specied) Sensitive Triac (4 Quadrants)
J
Lx01E3 Lx01E5 Lx01E6 Lx01E8
Symbol Test Conditions Quadrant Unit
LxN3 LxN5 LxN6 LxN8
*o**o*** 355 10
I MAX. mA
GT
V = 12V R = 60 8 IV 3 5 10 20
D L
V ALL MAX. 1.3 V
GT
V V = V R = 3.3 k8 T = 110C ALL MIN. 0.2 V
GD D DRM L J
I I = 100mA MAX. 5 10 10 15 mA
H T
400V 20 20 30 35
dv/dt V = V Gate Open T = 100C TYP. V/s
D DRM J
600V 10 10 20 25
(dv/dt)c (di/dt)c = 0.54 A/ms T = 110C TYP. 0.5 1 1 1 V/s
J
t I = 2 x I PW = 15s I = 1.41 A(pk) TYP. 2.8 3.0 3.0 3.2 s
gt G GT T
Electrical Characteristics (T = 25C, unless otherwise specied) Standard Triac
J
Qx01E3 Qx01E4
Symbol Test Conditions Quadrant Unit
QxN3 QxN4
*o**o*** MAX. 10 25
I mA
GT
IV TYP. 25 50
V = 12V R = 60 8
D L
V *o**o*** MAX. 1.3 1.3 V
GT
V ALL MIN. 0.2 0.2 V
V = V R = 3.3 k8 T = 125C
GD D DRM L J
I I = 200mA MAX. 15 25 mA
H T
400V 30 40
dv/dt V = V Gate Open T = 125C MIN. V/s
D DRM J
600V 20 30
(dv/dt)c (di/dt)c = 0.54 A/ms T = 125C TYP. 1 1 V/s
J
t I = 2 x I PW = 15s I = 1.41 A(pk) TYP. 2.5 3.0 s
gt G GT T
Note: x = voltage, y = sensitivity
Lx01Ex & LxNx & Qx01Ex & QxNx Series
2010 Littelfuse, Inc
34
Specications are subject to change without notice. Specications are subject to change without notice.
Revised: March 31, 2010 03:44 PM
Please refer to