UNISONIC TECHNOLOGIES CO., LTD
MAC97A6/8
LOGIC LEVEL TRIAC
DESCRIPTION
Logic level sensitive gate triac intended to be interfaced directly
to microcontrollers, logic integrated circuits and other low power
gate trigger circuits.
TRIACS
FEATURES
*Blocking voltage to 600 V (MAC97A8)
*RMS on-state current to 0.6 A
*Sensitive gate in all four quadrants
APPLICATIONS
*General purpose bidirectional switching
*Phase control applications
*Solid state relays.
SYMBOL
MT2
MT1
G
ORDERING INFORMATION
Order Number
Lead Free
MAC97A6L-AA3-R
MAC97A6L-T92-B
MAC97A6L-T92-K
MAC97A6L-T92-R
MAC97A8L-AA3-R
MAC97A8L-T92-B
MAC97A8L-T92-K
MAC97A8L-T92-R
Halogen Free
MAC97A6G-AA3-R
MAC97A6G-T92-B
MAC97A6G-T92-K
MAC97A6G-T92-R
MAC97A8G-AA3-R
MAC97A8G-T92-B
MAC97A8G-T92-K
MAC97A8G-T92-R
Package
SOT-223
TO-92
TO-92
TO-92
SOT-223
TO-92
TO-92
TO-92
Pin Assignment
1
2
3
MT1
MT2
Gate
MT1
Gate
MT2
MT1
Gate
MT2
MT1
Gate
MT2
MT1
MT2
Gate
MT1
Gate
MT2
MT1
Gate
MT2
MT1
Gate
MT2
Packing
Tape Reel
Tape Box
Bulk
Tape Reel
Tape Reel
Tape Box
Bulk
Tape Reel
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QW-R401-023.D
MAC97A6/8
ABSOLUTE MAXIMUM RATINGS
TRIACS
CHARACTERISTIC
SYMBOL
RATINGS
UNIT
MAC97A6
400
V
Repetitive Peak off-State Voltage
V
DRM
(T
J
=25 ~125°C)
MAC97A8
600
V
RMS on-State Current (Full Sine Wave, T
LEAD
≤50°C)
I
T(RMS)
0.6
A
t=20ms
8.0
A
Non-Repetitive Peak on-State Current
I
TSM
(Full Sine Wave, T
J
=25°C Prior to Surge) t=16.7ms
8.8
A
2
2
I t for Fusing (t=10ms)
It
0.32
A
2
s
50
A/μs
T2+G+
Repetitive Rate of Rise of on-State
T2+G-
50
A/μs
Current After Triggering
dI
T
/dt
T2-G-
50
A/μs
(I
TM
=1.0A, I
G
=0.2A, dI
G
/dt=0.2A/μs)
T2-G+
10
A/μs
Peak Gate Voltage [ t=2μs (max) ]
V
GM
5
V
Peak Gate Current [ t=2μs (max) ]
I
GM
1
A
Peak Gate Power
[ t=2μs (max) ]
P
GM
5
W
Average Gate Power [ T
C
=80℃, t=2us (max) ]
P
G(AV)
0.1
W
Operating Junction Temperature
T
J
-40~+125
°C
Storage Temperature
T
STG
-40~+150
°C
Note: Absolute maximum ratings are those values beyond which the device could be permanently damaged.
Absolute maximum ratings are stress ratings only and functional device operation is not implied.
THERMAL DATA
PARAMETER
Junction to Ambient
TO-92
SOT-223
SYMBOL
θ
JA
RATINGS
150
165
UNIT
°C/W
°C/W
STATIC CHARACTERISTICS
(T
J
=25℃, unless otherwise specified)
PARAMETER
Gate Trigger Current
SYMBOL
I
GT
TEST CONDITIONS
T2+G+
T2+G-
V
D
=12V, I
T
=0.1A
T2-G-
T2-G+
T2+G+
T2+G-
V
D
=12V, I
GT
=0.1A
T2-G-
T2-G+
V
D
=12V, I
GT
=0.1A
I
T
=0.85A
V
D
=12V,I
T
=0.1A
V
D
=V
DRM
, I
T
=0.1A, T
J
=110°C
V
D
=V
DRM(MAX)
, T
J
=110°C
MIN
TYP
1
2
2
4
1
5
1
2
1
1.4
0.9
0.7
3
MAX UNITS
5
mA
5
mA
5
mA
7
mA
10
mA
10
mA
10
mA
10
mA
10
mA
1.9
V
2
V
V
100
μA
Latching Current
Holding Current
On-State Voltage
Gate Trigger Voltage
Off-State Leakage Current
I
L
I
H
V
T
V
GT
I
D
0.1
DYNAMIC CHARACTERISTICS
(T
J
=25℃, unless otherwise specified)
PARAMETER
Critical Rate of Rise of Off-State
Voltage
Critical Rate of Rise of Commutation
Voltage
Gate Controlled Turn-On Time
SYMBOL
dV
D
/dt
CONDITIONS
V
D
=67% of V
DRM(MAX)
, T
C
=110°C,
Exponential Waveform, Gate
Open Circuit
V
D
=Rated V
DRM
, T
C
=50°C,
l
TM
=0.84A, commutating
dl/dt=0.3A/ms
I
TM
=1.0A,V
D
=V
DRM(MAX)
,
I
G
=25mA,dI
G
/dt=5A/μs
MIN
30
TYP
45
MAX UNITS
V/μs
dV
COM
/dt
t
GT
5
2
V/μs
μs
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QW-R401-023,D
MAC97A6/8
TYPICAL CHARACTERISTICS
Transient Thermal Impedance From Junction to
Ambient as a Function of Pulse Duration.
10
3
TRIACS
Maximum On-State Dissipation as a Function of
RMS On-State Current; Typical Values.
α=Conduction
Angle.
1.2
1
α
Zth(j-a)/kW
10
2
α
α=180
α=120
α=
90
α=
60
α=
30
0.8
P
D
(W)
t
P
t
1
0.6
0.4
0.2
p
10
1
10
-5
10
-4
10
-3
10
T
P
(s)
-2
10
-1
10
0
0
0.2
0.4
I
T(RMS)
/A
0.6
0.8
Maximum Permissible Non-Repetitive Peak on-
State Current as a Function of Pulse Width for
Sinusoidal Currents;Tyical Values. t
P
20ms.
1000
I
T
I
TSM
10
Maximum Permissible Non-Repetitive Peak
On-State Current as a Function of Number
of Cycles for Sinusoidal Currents; Typical
Values . n=Number of Cycles at f=50Hz.
I
T
I
TSM
T
100
I
TSM
(A)
T
J
initial=25°C max
time
8
T
6
T
J
initial=25°C max
time
I
TSM
(A)
10
1
-5
10
10
-4
4
2
10
-3
T
P
/s
10
-2
10
-1
0
1
10
10
2
10
3
Maximum Permissible RMS Current as a Function
of Lead Temperature; Typical Values.
1
0.8
Maximum Permissible Repetitive RMS On-State
Current as a Function of Surge Duration for
Sinusoidal Currents; Typical Values. f=50Hz;
T
LEAD
50°C
3
2.5
2
I
T(RMS)
(A)
1.5
1
I
T(RMS)
(A)
0.6
0.4
0.2
0.5
0
10
-3
0
0
20
40
60
80
100
120
140
10
-2
Tsurge(s)
1
10
T
LEAD
(°C)
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QW-R401-023,D
MAC97A6/8
TYPICAL CHARACTERISTICS(Cont.)
Normalized Gate Trigger Voltage as a of
Function Junction Temperature; Typical Values.
1.6
1.4
1.2
V
GT
(25°C)
I
GT
(T
J
)
I
GT
(25°C)
1
0.8
0.6
0.4
0.5
0.2
0
-60
-10
40
T
J
(°C)
90
140
0
-60
-20
20
60
T
J
(°C)
100
2
TRIACS
Normalized Gate Trigger Current as a Function
of Junction Temperature; Typical Values.
2.5
T2+G+
T2-G+
T2-G-
T2+G-
1.5
V
GT
(T
J
)
1
140
Normalized Latching Current as a Function of
Junction Temperature; Typical Values.
2.5
Normalized Holding Current as a Function of
Junction Temperature; Typical Values.
2.5
2
2
I
L
(25°C)
1.5
I
H
(25°C)
I
H
(T
J
)
I
L
(T
J
)
1.5
1
1
0.5
0
-60
0.5
-20
20
T
J
(°C)
60
100
140
0
-60
-20
20
60
T
J
(°C)
100
140
On-State Current as a Function of On-State
Voltage; Typical and Maximum Values.
2.0
T
J
=125°C
T
J
=25°C
typ
max
max
Critical Rate of Rise of Off-State Voltage as a
Function of Junction Temperature; Typical Values.
1000
1.6
1.
2
0.8
0.
4
0
0.5
dV
D
/dt(V/us)
1
V
T
(V)
1.5
2.0
100
I
T
(A)
10
1
0
20
40
60
80
T
J
(°C)
100
120
140
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QW-R401-023,D
MAC97A6/8
TRIACS
UTC assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or
other parameters) listed in products specifications of any and all UTC products described or contained
herein. UTC products are not designed for use in life support appliances, devices or systems where
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in
whole or in part is prohibited without the prior written consent of the copyright owner. The information
presented in this document does not form part of any quotation or contract, is believed to be accurate
and reliable and may be changed without notice.
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