TLP160G
TOSHIBA Photocoupler
GaAs Ired & Photo-Triac
TLP160G
Triac Drive
Programmable Controllers
AC−Output Module
Solid State Relay
Unit in mm
The TOSHIBA mini flat coupler TLP160G is a small outline coupler,
suitable for surface mount assembly.
The TLP160G consists of a photo triac, optically coupled to a gallium
arsenide infrared emitting diode.
•
•
•
•
•
Peak off-state voltage: 400 V (min.)
Trigger LED current: 10 mA (max.)
On−state current: 70 mA (max.)
Isolation voltage: 2500 Vrms (min.)
UL recognized: UL1577, file No. E67349
TOSHIBA
11−4C3
Weight: 0.09 g (typ.)
Trigger LED Current
Classi−
fication*
(IFT5)
(IFT7)
Standard
Trigger LED Current (mA)
V
T
=3V, Ta=25°C
Min.
Max.
―
―
―
5
7
10
Marking of
Classification
T5
T5, T7
T5, T7, blank
Pin Configurations
1
6
*Ex. (IFT5); TLP160G (IFT5)
(Note) Application type name for certification test, please
use standard product type name, i.e.
TLP160G(IFT5): TLP160G
3
1. Anode
3. Cathode
4. Terminal 1
6. Terminal 2
4
1
2010-10-01
TLP160G
Absolute Maximum Ratings
(Ta = 25°C)
Characteristics
Forward current
Forward current derating (Ta
≥
53°C)
LED
Peak forward current (100μs pulse, 100 pps)
Reverse voltage
Junction temperature
Off− state output terminal voltage
On−state RMS current
Detector
Ta=25°C
Ta=70°C
Symbol
I
F
ΔI
F
/ °C
I
FP
V
R
T
j
V
DRM
I
T(RMS)
ΔI
T
/ °C
I
TP
I
TSM
T
j
T
stg
T
opr
T
sol
(Note)
BV
S
Rating
50
−0.7
1
5
125
400
70
40
−0.67
2
1.2
115
−55
to 125
−40
to 100
260
2500
Unit
mA
mA / °C
A
V
°C
V
mA
mA / °C
A
A
°C
°C
°C
°C
Vrms
On−state current derating (Ta
≥
25°C)
Peak on−state current (100μs pulse, 120 pps)
Peak nonrepetitive surge current
(PW=10ms)
Junction temperature
Storage temperature range
Operating temperature range
Lead soldering temperature (10s)
Isolation voltage (AC, 1 min., R.H.
≤
60%)
Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
(Note) Device considered a two terminal device: Pins 1 and 3 shorted together and pins 4
and 6 shorted together.
Recommended Operating Conditions
Characteristics
Supply voltage
Forward current
Peak on−state current
Operating temperature
Symbol
V
AC
I
F
I
TP
T
opr
Min.
―
15
―
−25
Typ.
―
20
―
―
Max.
120
25
1
85
Unit
Vac
mA
A
°C
Note: Recommended operating conditions are given as a design guideline to obtain expected performance of the
device. Additionally, each item is an independent guideline respectively. In developing designs using this
product, please confirm specified characteristics shown in this document.
2
2010-10-01
TLP160G
Individual Electrical Characteristics
(Ta = 25°C)
Characteristics
Forward voltage
LED
Reverse current
Capacitance
Peak off−state current
Peak on−state voltage
Detector
Holding current
Critical rate of rise
of off−state voltage
Critical rate of rise
of commutating voltage
Symbol
V
F
I
R
C
T
I
DRM
V
TM
I
H
dv / dt
dv / dt(c)
I
F
=10mA
V
R
=5V
V=0, f=1MHz
V
DRM
=400V
I
TM
=70mA
―
V
in
=120Vrms, Ta=85°C
I
T
=15mA, V
in
=30Vrms
(Fig.1)
(Fig.1)
Test Condition
Min.
1.0
―
―
―
―
―
200
―
Typ.
1.15
―
30
10
1.7
0.6
500
0.2
Max.
1.3
10
―
1000
2.8
―
―
―
Unit
V
μA
pF
nA
V
mA
V /
μs
V /
μs
Coupled Electrical Characteristics
(Ta = 25°C)
Characteristics
Trigger LED current
Capacitance input to output
Isolation resistance
Symbol
I
FT
C
s
R
S
V
T
=3V
V
S
=0, f=1MHz
V
S
=500V, R.H.
≤
60%
AC, 1 minute
Isolation voltage
BV
S
AC, 1 second, in oil
DC, 1 minute, in oil
Turn−on time
t
ON
V
D
=6→4V, R
L
= 100Ω
I
F
=rated I
FT
×1.5
Test Condition
Min.
―
―
1×10
12
Typ.
5
0.8
10
14
Max.
10
―
―
―
―
―
100
Unit
mA
pF
Ω
Vrms
Vdc
μs
2500
―
―
―
―
5000
5000
30
Fig.1 dv / dt Test Circuit
R
in
V
CC
+
-
120Ω
1
3
6
4
V
in
R
L
2kΩ
½
5V,V
CC
0V
dv / dt (c)
dv / dt
3
2010-10-01
TLP160G
I
F
– Ta
60
120
I
T(RMS)
– Ta
50
100
Allowable forward current
I
F
(mA)
R.m.s. on-state current
I
T
(RMS) (mA)
0
20
40
60
80
100
120
40
80
30
60
20
40
10
20
0
-20
0
-20
0
20
40
60
80
100
120
Ambient temperature Ta (°C)
Ambient temperature Ta (°C)
I
FP
– D
R
3000
Pulse width
≤
100μs
Ta = 25°C
50
1000
500
100
Ta = 25°C
I
F
– V
F
Allowable pulse forward
current I
FP
(mA)
(mA)
I
F
Forward current
10
-
3
3
10
-
2
30
10
5
3
100
50
1
0.5
0.3
10
3
10
-
1
3
10
0
0.1
0.6
0.8
1.0
1.2
1.4
1.6
1.8
Duty cycle ratio
D
R
Forward voltage
V
F
(V)
ΔV
F
/
ΔTa
-3.2
- I
F
1000
500
300
I
FP
– V
FP
Forward voltage temperature
coefficient
ΔV
F
/
ΔTa
(mV / °C)
-2.8
-2.4
-2.0
-1.6
-1.2
Pulse forward current
I
FP
(mA)
100
50
30
10
5
3
1
0.6
Pulse width
≦
10
μs
Repetitive frequency
= 100 Hz
Ta = 25°C
-0.8
-0.4
0.1
0.3 0.5
1
3
5
10
30 50
1.0
1.4
1.8
2.2
2.6
3.0
Forward current I
F
(mA)
Pulse forward voltage
V
FP
(V)
4
2010-10-01
TLP160G
Normalized I
FT
– Ta
3
V
T
=3V
2
2
3
Normalized I
H
– T
a
Trigger LED current IFT
(arbitrary unit)
0.5
Holding current IH
(arbitray unit)
20
60
80
100
1.2
1
1.2
1
0.5
0.3
0.3
0.1
-40
-20
0
40
0.1
-40
-20
0
20
40
60
80
100
Ambient temperature Ta (°C)
Ambient temperature Ta (°C)
Normalized I
DRM
– Ta
10
3
VDRM=Rated
1.4
Normalized V
DRM
– Ta
10
2
Off-state output terminal voltage
VDRM(arbitrary unit)
1.2
Peak off-state current IDRM
(Arbitrary unit)
1.0
0.8
10
1
0.6
0.4
10
0
0
20
40
60
80
100
0.2
-40
-20
0
20
40
60
80
100
Ambient temperature Ta (°C)
Ambient temperature Ta (°C)
Normalized LED Current
-LED
Current Pulse Width
10
Normalized LED current
I
F
/ I
FT
5
3
2
1.8
1.6
1.4
1.2
1
10
30
50
100
300
500
1000
LED current pulse width
P
w
(μs)
5
2010-10-01