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APT1221S

Trigger Device Output Optocoupler,

器件类别:光电子/LED    光电   

厂商名称:Aromat Corp

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器件参数
参数名称
属性值
厂商名称
Aromat Corp
Reach Compliance Code
unknown
文档预览
VDE
Pending
Pending
Phototriac Coupler for
the Industrial Machinery,
Consumer Electronics,
and SSR Markets
FEATURES
1. Two types available: Non zero-cross
type and zero-cross type
2. Many package sizes available.
3. High dielectric strength. (Between
input and output: SOP 3, 750 V; DIP
5,000 V)
4. This type is for both 100 and 200 V AC.
5. Terminal 5 of the DIP 6-pin type is
completely molded.
Phototriac
Coupler
TYPICAL APPLICATIONS
1. Industrial equipment such as NC
machines, chip mounter, robots and so on
2. AC fan-motor control
3. Control of heated-water motor and
flush valve for personal hygene system
4. Heater control for copiers and other
products
5. Triac driver for SSRs
TYPES
1. SOP Type
Type
AC type
Output rating*
Repetitive peak
ON-state RMS
OFF-state voltage
current
600 V
50 mA
Type
Zero-cross
Non zero-cross
Package size
SOP4pin
Part No.
Picked from
Picked from
the 1/2-pin side
the 3/4-pin side
APT1211SX
APT1211SZ
APT1221SX
APT1221SZ
Packing quantity
in tape and reel
1,000 pcs.
Notes: (1) Tape package is the standard packing style. Also available in tube. (Part No. suffix “X” or “Z” is not needed when ordering; Tube: 100 pcs.; Case: 2,000 pcs.)
(2) For space reasons, the initial letters of the product number “APT” and “S” are ommited on the product seal.
The package type indicator “X” and “Z” are omitted from the seal. (Ex. the label for product number APT1221SZ is 1221).
* Repetitive peak OFF-state voltage and surge on current express the peak AC.
2. DIP Type
Output rating*
Repetitive
ON-state
Type
peak
RMS
OFF-state
current
voltage
Part No.
Type
Package
size
Through
hole
terminal
Tube packing style
APT1211 APT1211A
DIP4pin
APT1221 APT1221A
APT1212 APT1212A
DIP6pin
APT1222 APT1222A
Surface-mount terminal
Tape and reel packing style
APT1211AX
APT1211AZ
(Picked from the 1/2-pin side)
(Picked from the 1/2/3-pin side)
APT1221AX
APT1221AZ
(Picked from the 1/2-pin side)
(Picked from the 1/2/3-pin side)
APT1212AX
APT1212AZ
(Picked from the 1/2/3-pin side)
(Picked from the 4/6-pin side)
APT1222AZ
APT1222AX
(Picked from the 1/2/3-pin side)
(Picked from the 4/6-pin side)
Packing quantity
Zero-cross
Non
zero-cross
Zero-cross
Non
zero-cross
AC
type
600 V
100 mA
Tape and reel
Tube
[DIP4pin]
1 tube contains
100 pcs.
1 batch contains
[DIP4pin]
1,000 pcs.
[DIP6pin]
[DIP6pin]
1,000 pcs.
1 tube contains
50 pcs.
1 batch contains
500 pcs.
Note: For space reasons the initial letters “APT” of the product number for the DIP 4-pin type, the letter “A”, which indicates the SMD terminal shape for the DIP 4-pin and
6-pin types, and the package type indications “X” and “Z” have been omitted from the product label. (Example: The label for product number APT1221AZ is 1221.)
* Repetitive peak OFF-state voltage and surge on current express the peak AC.
RATING
1. Absolute maximum ratings (Ambient temperature: 25°C
77°F)
Item
LED forward current
LED reverse voltage
Peak forward current
Repetitive peak
OFF-state voltage
Output
ON-state RMS current*
Non-repetitive surge current
Total power dissipation
I/O isolation voltage
Temperature limits
Operating
Storage
Symbol APT1211S APT1221S
I
F
V
R
I
FP
V
DRM
IT
(RMS)
I
TSM
P
T
V
iso
T
opr
T
stg
0.05 A
0.6 A
350 mW
3,750 V AC
APT1211 APT1221
50 mA
6V
1A
600 V
0.1 A
1.2 A
500 mW
5,000 V AC
–40°C to +100°C
–40°F to +212°F
–40°C to +125°C
–40°F to +257°F
AC
In one cycle at 60Hz
APT1212
APT1222
Remarks
Input
f = 100 Hz,
Duty Ratio = 0.1%
Non-condensing at
low temperatures
* Do not exceed 50 mA of ON state RMS current in case of following load voltage condition.
APT1211, APT1221: more than 100 V AC; APT1212, APT1222: more than 120 V AC
30
APT1
2. Electrical characteristics (Ambient temperature: 25°C
77°F)
Item
LED dropout
voltage
Input
LED reverse
current
Peak OFF-state
current
Peak On-state
voltage
Output
Holding current
Typical
Maximum
Typical
Maximum
Typical
Maximum
Typical
Maximum
Typical
Maximum
Symbol
V
F
I
R
I
DRM
V
TM
I
H
dv/dt
I
FT
V
ZC
T
ON
C
iso
R
iso
50 V
100
µs
1.5 pF
50 GΩ
APT1211S, APT1211, APT1212 APT1221S, APT1221, APT1222
1.18 V
1.3 V
10
µA
1
µA
1.3 V
2.5 V
0.3 mA
3.5 mA
500 V/µs
10 mA
Condition
I
F
= 10 mA
V
R
= 6 V
I
F
= 0
V
DRM
= 600 V
I
F
= 10 mA
I
TM
= 0.05 A
Critical rate of
rise of OFF-state Minimum
voltage
Trigger LED
Maximum
current
Zero-cross
Maximum
voltage
Transfer
characteristics
Turn on time*
I/O capacitance
I/O resistance
Maximum
Maximum
Minimum
V
DRM
= 600 V
×1/M2
V
D
= 6 V
R
L
= 100
I
F
= 10 mA
I
F
= 20 mA
V
D
= 6 V
R
L
= 100
f = 1 MHz
V
B
= 0
500 V DC
Note: For type of connection, see Page 33.
*Turn on time
Input
90%
Output
Ton
REFERENCE DATA
1. Effective on current vs. ambient temperature
characteristics
Allowable ambient temperature: –40°C to +100°C
–40°F to +212°F
Tested sample: APT1211S, APT1221S
70
Effective on current, mA
Effective on current, mA
60
50
40
30
20
10
0
–40
–20
0
20
40
60
80
100
2. Effective on current vs. ambient temperature
characteristics
Allowable ambient temperature: –40°C to +100°C
–40°F to +212°F
Tested sample: APT1211, APT1221
120
100
80
60
40
20
0
–40
3. Effective on current vs. ambient temperature
characteristics
Allowable ambient temperature: –40°C to +100°C
–40°F to +212°F
Tested sample: APT1212, APT1222
120
Effective on current, mA
VL
100V AC
100
80
60
40
20
0
–40
VL
120V AC
VL
>
100V AC
VL
>
120V AC
–20
0
20
40
60
80
100
–20
0
20
40
60
80
100
Ambient temperature,
°C
Ambient temperature,
°C
Ambient temperature,
°C
31
APT1
4. On voltage vs. ambient temperature
characteristics
Trigger LED current: 10 mA; ON current: 50 mA (AC)
1.8
Trigger LED current, mA
5. Trigger LED current vs. ambient temperature
characteristics
Load voltage: 6 V (DC); Load resistance: 100Ω
10
6. LED dropout voltage vs. ambient
temperature characteristics
1.5
LED dropout voltage, V
On voltage, V
1.6
8
1.4
6
1.3
50mA
1.2
30mA
20mA
1.1
10mA
1.4
4
1.2
2
1
–40
–20
0
20
40
60
80
100
0
–40
–20
0
20
40
60
80
100
1
–40 –20
0
20
40
60
80
100
Ambient temperature,
°C
Ambient temperature,
°C
Ambient temperature,
°C
7. Turn on time vs. trigger LED current
Load voltage: 6V (DC)
Load resistance: 100Ω
200
8. Off state leakage current vs. load voltage
Ambient temperature: 25°C
77°F
9. Hold current vs. ambient temperature
characteristics
2
0.001
Off state leakage current, A
Turn on time,
µs
150
Hold current, mA
20
40
60
80
100
10
-5
1.5
10
-7
100
1
10
-9
50
10
-11
0.5
0
0
10
20
30
40
50
10
-13
0
0
–40
–20
0
20
40
60
80
100
Trigger LED current, mA
Load voltage, V
Ambient temperature,
°C
10. Zero-cross voltage vs. ambient
temperature characteristics
Trigger LED current: 10 mA (APT1211S)
50
Zero-cross voltage, V
40
30
20
10
0
–40
–20
0
20
40
60
80
100
Ambient temperature,
°C
DIMENSIONS
4.4±0.2
.173±009
mm
inch
0.5
.020
Recommended mounting pad (TOP VIEW)
6.8±0.4
.268±016
6.0
1.2
.236
.047
4.3±0.2
.169±.009
2.0±0.2
.079±.009
0.5
.020
0.8
.032
2.54
.100
0.4
.016
2.54
.100
0.4
.016
0.1
.004
Terminal thickness = 0.15
.006
General tolerance:
±0.1
±.004
Tolerance:
±0.1
±.004
32
APT1
mm
inch
PC board pattern (BOTTOM VIEW)
Max. 10°
4-0.8 dia.
4-.031 dia.
2.54
.100
7.62
.300
6.4
.252
7.62±0.05
.300±.002
Max. 10°
4.78
.188
6.4
.252
2.54
.100
2.7
.106
Tolerance:
±0.1
±.004
Recommended mounting pad (TOP VIEW)
3.2±0.2
.126±.008
3.0
.118
0.47
.019
1.0
.039
2.54
.100
0.2
.008
0.33
.013
0.47
.019
8.3
.327
Terminal thickness = 0.15
.006
General tolerance:
±0.1
±.004
1.9
.075
1.5
.059
2.54
.100
Tolerance:
±0.1
±.004
PC board pattern (BOTTOM VIEW)
5.08
6-0.8 dia.
6-.031 dia. .200
2.54
.100
2.54 7.62
.100 .300
6.4±0.05
.252±.002
7.62±0.05
.300±.002
Max. 10°
Max. 10°
6.4
.252
8.8±0.05
.346±.002
3.9±0.2
.154±.008
3
.118
0.47
.019
1.25
.049
2.54
.100
0.47
.019
1.25
.049
0.47
.019
1.25
.049
2.54
.100
3.4
.134
Tolerance:
±0.1
±.004
Recommended mounting pad (TOP VIEW)
8.3
.327
1.9
.075
1.5
.059
2.54 2.54
.100 .100
Terminal thickness = 0.15
.006
General tolerance:
±0.1
±.004
Tolerance:
±0.1
±.004
SCHEMATIC AND WIRING DIAGRAMS
Notes: E
1
: Power source at input side; I
F
: Trigger LED forward current; V
L
: Load voltage; I
L
: Load current;
Schematic
Output
configuration
4
Load
Wiring diagram
1
2
ZC
Zero-cross circuit
3
E1
IF
1
4
4
Load
IL
VL (AC)
IL
2
3
VL (AC)
3
1
4
Load
2
3
1a
1
2
3
6
AC
ZC
Zero-cross circuit
4
E1
IF
1
6
4
Load
IL
VL (AC)
2
3
4
IL
VL (AC)
3
1
2
3
6
Load
4
33
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