TOSHIBA TLP666J

TLP666J
TOSHIBA Photocoupler GaAs Ired & Photo−Triac
TLP666J
Office Machine
Household Use Equipment
Triac Driver
Solid State Relay
Unit in mm
The TOSHIBA TLP666J consists of a zero voltage crossing turn−on
photo−triac optically coupled to a gallium arsenide infrared emitting
diode in a six lead plastic DIP.
·
Peak off−state voltage: 600V(min.)
·
Trigger LED current: 10mA(max.)
·
On−state current: 100mA (max.)
·
UL recognized: UL1577, file no. E67349
·
Isolation voltage: 5000Vrms(min.)
TOSHIBA
Option (D4) type
Weight: 0.44 g
·
11−9A2
VDE approved: DIN VDE0884/08.87,
certificate no. 68383
Maximum operating insulation voltage: 630VPK
Highest permissible over voltage: 6000VPK
Pin Configurations (top view)
(Note 1) When a VDE0884 approved type is needed,
please designate the “Option(D4)”
·
6
1
2
Structural parameter
Creepage distance: 7.0mm(min.)
Clearance: 7.0mm(min.)
Insulation thickness: 0.5mm(min.)
3
ZC
4
1 : Anode
2 : Cathode
3 : N.C.
4 : Terminal 1
6 : Terminal 2
1
2002-09-25
TLP666J
Maximum Ratings (Ta = 25°C)
Characteristic
Symbol
Rating
Unit
IF
50
mA
∆IF / °C
-0.7
mA / °C
Peak forward current
(100µs pulse, 100pps)
IFP
1
A
Reverse voltage
VR
5
V
Junction temperature
Tj
125
°C
VDRM
600
V
Forward current
LED
Forward current derating (Ta ≤ 53°C)
Off-state ontput terminal voltage
Detector
On-state RMS Current
Ta = 25°C
100
IT(RMS)
Ta = 70°C
mA
50
∆IT / °C
-1.1
mA / °C
ITP
2
A
ITSM
1.2
A
Tj
115
°C
Storage temperature range
Tstg
-55~125
°C
Operating temperature range
Topr
-40~100
°C
Lead soldering temperature (10s)
Tsol
260
°C
BVS
5000
Vrms
On-state current derating (Ta ≥ 25°C)
Peak on-state current
(100µs pulse, 120pps)
Peak nonrepetitive surge current
(PW = 10ms, DC = 10%)
Junction temperature
Isolation voltage (AC, 1 min., R.H. ≤ 60%)
(Note 2)
(Note 2) Pins 1, 2 and 3 shorted together pin 4 and 6 shorted together.
Recommended Operating Conditions
Characteristic
Symbol
Min.
Typ.
Max.
Unit
Supply voltage
VAC
―
―
240
Vac
Forward current
IF
15
20
25
mA
Peak on-stage current
ITP
―
―
1
A
Operating temperature
Topr
-25
―
85
°C
2
2002-09-25
TLP666J
Individual Electrical Characteristics (Ta = 25°C)
Detector
LED
Characteristic
Symbol
Test Condition
Min.
Typ.
Max.
Unit
Forward voltage
VF
IF = 10mA
1.0
1.15
1.3
V
Reverse current
IR
VR = 5V
―
―
10
µA
Capacitance
CT
V = 0, f = 1MHz
―
30
―
pF
Peak off-state currentt
IDRM
VDRM = 600V
―
10
1000
nA
Peak on-state voltage
VTM
ITM = 100mA
―
1.7
3.0
V
―
0.6
―
mA
200
500
―
V / µs
―
0.2
―
V / µs
Min.
Typ.
Max.
Unit
Holding current
IH
Critical rate of rise of
off-state voltage
dv / dt
Critical rate of rise of
commutating voltage
dv / dt(c)
―
Vin = 240V, Ta = 85°C
Vin = 60Vrms, IT = 15mA
(Note 3)
(Note 3)
(Note 3) dv / dt test circuit
Vin
Rin
VCC
120Ω
1
2
3
5V, VCC
6
0V
RL
4
dv / dt(c)
4kΩ
dv / dt
Coupled Electrical Characteristics (Ta = 25°C)
Characteristic
Symbol
Test Condition
Trigger LED current
IFT
VT = 6V
―
5
10
mA
Inhibited voltage
VIH
IF = rated IFT
―
―
50
V
Leakage in inhibited state
IIH
IF = rated IFT
VT = rated VDRM
―
200
600
µA
Capacitance (input to output)
CS
VS = 0, f = 1MHz
―
0.8
―
pF
10
―
Ω
5000
―
―
AC, 1 second, in oil
―
10000
―
DC, 1 minute, in oil
―
10000
―
Isolation resistance
RS
VS = 500V, R.H.≤ 60%
AC, 1 minute
Isolation voltage
BVS
3
12
1×10
14
Vrms
Vdc
2002-09-25
TLP666J
IT (RMS) – Ta
200
80
160
R.M.S on-stage current
IT (RMS) (mA)
Allowable forward current
IF (mA)
I F – Ta
100
60
40
80
40
20
0
-20
120
0
20
40
60
80
Ambient temperature Ta
100
0
-20
120
(°C)
0
20
40
Pulse width ≤ 100 µs
50
1.6
1.8
(°C)
Ta = 25 °C
(mA)
10
Forward current IF
Allowable pulse forward
current IFP (mA)
500
300
100
50
30
5
3
1
0.5
0.3
10-3
10-2
3
10-1
3
3
0.1
0.6
100
Duty cycle ratio DR
0.8
1.0
1.2
Forward voltage
∆VF/∆Ta – IF
1.4
VF (V)
IFP – VFP
-3.2
IFP (mA)
1000
-2.8
-2.4
Pulse forward current
Forward voltage temperature
coefficient ∆VF/∆Ta (mV/°C)
120
30
1000
-2.0
-1.6
-1.2
-0.8
-0.4
0.1
100
IF – VF
100
Ta = 25 °C
10
3
80
Ambient temperature Ta
IFP – DR
3000
60
0.3 0.5
1
3
Forward current
5
10
500
300
100
50
30
10
IF (mA)
Repetitive
3
1
0.6
30 50
Pulse width ≤ 10 µs
5
Frequency = 100 Hz
Ta = 25 °C
1.0
1.4
1.8
2.2
Pulse forward voltage VFP
4
2.6
(V)
2002-09-25
TLP666J
Normalized IFT – Ta
VT = 3 V
2
2
1.2
1
1.2
1
Holding current IH
(arbitrary unit)
IFT
Trigger LED current
(arbitrary unit)
Normalized IH – Ta
3
3
0.5
0.3
0.1
-40
0
-20
20
40
60
Ambient temperature Ta
80
0.5
0.3
0.1
-40
100
(°C)
-20
VDRM
Off-state output terminal voltage
(arbitrary unit)
Peak off-state current IDRM
(arbitrary unit)
1
100
20
40
60
80
Ambient temperature Ta
80
100
80
100
80
100
(°C)
1.2
1.0
0.8
0.6
0.4
0.2
-40
100
(°C)
-20
0
20
40
60
Ambient temperature Ta
Normalized VIH – Ta
(°C)
Normalized IIH – Ta
3
3
2
2
1.2
1
1.2
1
Inhibit current IIH
(arbitrary unit)
Inhibit voltage VIH
(arbitrary unit)
60
1.4
VDRM = Rated
0
40
Normalized VDRM – Ta
102
10
20
Ambient temperature Ta
Normalized IDRM – Ta
103
0
0.5
0.3
0.5
0.3
IF = Rated IFT
VT = Rated VDRM
IF = Rated IFT
0.1
-40
-20
0
20
40
Ambient temperature Ta
60
80
0.1
-40
100
(°C)
-20
0
20
40
Ambient temperature Ta
5
60
(°C)
2002-09-25
TLP666J
RESTRICTIONS ON PRODUCT USE
000707EAA
· TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor
devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical
stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of
safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of
such TOSHIBA products could cause loss of human life, bodily injury or damage to property.
In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as
set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and
conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability
Handbook” etc..
· The TOSHIBA products listed in this document are intended for usage in general electronics applications
(computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances,
etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires
extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or
bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or
spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments,
medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this
document shall be made at the customer’s own risk.
· The information contained herein is presented only as a guide for the applications of our products. No
responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other
rights of the third parties which may result from its use. No license is granted by implication or otherwise under
any intellectual property or other rights of TOSHIBA CORPORATION or others.
· The information contained herein is subject to change without notice.
6
2002-09-25