Note: For space reasons, only “210HL” is marked on the product. The three initial letters of the part number “AQY”, the surface mount terminal shape indicator “A” and the
packing style indicator “X” or “Z” are not marked on the device.
RATING
1. Absolute maximum ratings
(Ambient temperature: 25°C
77°F)
Item
LED forward current
LED reverse voltage
Peak forward current
Power dissipation
Symbol
I
F
V
R
I
FP
P
in
V
L
I
L
P
out
P
T
V
iso
T
opr
T
stg
AQY210HL(A)
50 mA
5V
1A
75 mW
350 V
0.12 A
500 mW
550 mW
5,000 Vrms
–40 to +85°C
–40 to +185°F
–40 to +100°C
–40 to +212°F
Remarks
Input
f = 100 Hz, Duty factor = 0.1%
Load voltage (peak AC)
Output Continuous load current
Power dissipation
Total power dissipation
I/O isolation voltage
Ambient
temperature
Operating
Storage
Peak AC, DC
(Non-icing at low temperatures)
–1–
ASCTB134E 201703-T
GU 1 Form A Current Limiting (AQY210HL)
2. Electrical characteristics
(Ambient temperature: 25°C
77°F)
Item
LED operate current
Input
LED turn off current
LED dropout voltage
On resistance
Maximum
Output
Off state leakage current
Current limit
Turn on time*
Transfer
characteristics
Turn off time*
I/O capacitance
Initial I/O isolation resistance
Maximum
Typical
Typical
Maximum
Typical
Maximum
Typical
Maximum
Minimum
I
Leak
—
T
on
T
off
C
iso
R
iso
1μA
0.18 A
0.5 ms
2.0 ms
0.08 ms
1.0 ms
0.8 pF
1.5 pF
1,000 MΩ
Typical
Maximum
Minimum
Typical
Minimum
Typical
Typical
R
on
25Ω
Symbol
I
Fon
I
Foff
V
F
AQY210HL(A)
1.2 mA
3.0 mA
0.4 mA
1.1 mA
1.25 (1.14 V at I
F
= 5 mA)
1.5 V
20Ω
Condition
I
L
= Max.
I
L
= Max.
I
F
= 50 mA
I
F
= 5 mA
I
L
= Max.
Within 1 s
I
F
= 0 mA
V
L
= Max.
I
F
= 5 mA
I
F
= 5 mA
I
L
= Max.
I
F
= 5 mA
I
L
= Max.
f = 1 MHz
V
B
= 0 V
500 V DC
*Turn on/Turn off time
Input
90%
Output
Ton
Toff
10%
3. Recommended operating conditions
(Ambient temperature: 25°C
77°F)
Please use under recommended operating conditions to obtain expected characteristics.
Item
LED current
AQY210HL(A)
Load voltage (Peak AC)
Continuous load current
Symbol
I
F
V
L
I
L
Min.
5
—
—
Max.
30
280
0.12
Unit
mA
V
A
■
These products are not designed for automotive use.
If you are considering to use these products for automotive applications, please contact your local Panasonic Corporation
technical representative.
REFERENCE DATA
1. Load current vs. ambient temperature
characteristics
Allowable ambient temperature: –40 to +85°C
–40 to +185°F
200
2. On resistance vs. ambient temperature
characteristics
Measured portion: between terminals 3 and 4;
LED current: 5 mA; Load voltage: Max. (DC)
Continuous load current: Max.(DC)
50
3. Turn on time vs. ambient temperature
characteristics
LED current: 5 mA; Load voltage: Max.(DC);
Continuous load current: Max.(DC)
2.5
Load current, mA
On resistance,
Ω
150
30
Turn on time, ms
–40
–20
0
20
40
60
80 85
40
2
1.5
100
20
1
50
10
0.5
0
–40 –20
0
20
40
60
80 85 100
0
0
–40 –20
0
20
40
60
80 85
Ambient temperature,
°C
Ambient temperature,
°C
Ambient temperature,
°C
–2–
ASCTB134E 201703-T
GU 1 Form A Current Limiting (AQY210HL)
4. Turn off time vs. ambient temperature
characteristics
LED current: 5 mA; Load voltage: Max.(DC);
Continuous load current: Max.(DC)
0.25
LED operate current, mA
5. LED operate current vs. ambient
temperature characteristics
Load voltage: Max.(DC);
Continuous load current: Max.(DC)
5
6. LED turn off current vs. ambient temperature
characteristics
Load voltage: Max.(DC);
Continuous load current: Max.(DC)
5
Turn off time, ms
0.2
4
LED turn off current, mA
–40 –20
0
20
40
60 80 85
Ambient temperature,
°C
4
0.15
3
3
0.1
2
2
0.05
1
1
0
–40 –20
0
20
40
60
80 85
0
0
–40 –20
0
20
40
60
80 85
Ambient temperature,
°C
Ambient temperature,
°C
7. LED dropout voltage vs. ambient
temperature characteristics
LED current: 5 to 50 mA
1.5
LED dropout voltage, V
1.4
1.3
1.2
1.1
1.0
0
50mA
30mA
20mA
10mA
5mA
8. Current vs. voltage characteristics of output
at MOS portion
Measured portion: between terminals 3 and 4;
Ambient temperature: 25°C
77°F
140
120
100
80
60
40
20
-3 -2 -1
Current, mA
1
-20
-40
-60
-80
-100
-120
-140
2
3 4 5
Voltage, V
9. Off state leakage current vs. load voltage
characteristics
Measured portion: between terminals 3 and 4;
Ambient temperature: 25°C
77°F
Off state leakage current, A
10
–3
10
–6
-5 -4
10
–9
10
–12
0
20
40
60
80
100
–40 –20
0
20
40
60
80 85
Ambient temperature,
°C
Load voltage, V
10. Turn on time vs. LED forward current
characteristics
Measured portion: between terminals 3 and 4;
Load voltage: Max.(DC); Continuous load current:
Max.(DC); Ambient temperature: 25°C
77°F
3
2.5
11. Turn off time vs. LED forward current
characteristics
Measured portion: between terminals 3 and 4;
Load voltage: Max.(DC); Continuous load current:
Max.(DC); Ambient temperature: 25°C
77°F
0.2
12. Output capacitance vs. applied voltage
characteristics
Measured portion: between terminals 3 and 4;
Frequency: 1 MHz; Ambient temperature: 25°C
77°F
50
Output capacitance, pF
Turn on time, ms
Turn off time, ms
40
0.15
2
1.5
1
30
0.1
20
0.05
0.5
0
10
0
10
20
30
40
50
60
0
0
10
20
30
40
50
60
0
0
10
20
30
40
50
LED forward current, mA
LED forward current, mA
Applied voltage, V
What is current limit
When a load current reaches the
specified output control current, a current
limit function works against the load
current to keep the current a constant
value.
The current limit circuit built into the
PhotoMOS thus controls the
instantaneous load current to effectively
ensure circuit safety.
This safety feature protects circuits
downstream of the PhotoMOS against
over-current.
But, if the current-limiting feature is used
longer than the specified time, the
PhotoMOS can be destroyed. Therefore,
set the output loss to the max. rate or
less.
• Comparison of output voltage and
output current characteristics
V-I Characteristics
Output current
Output voltage
–3–
ASCTB134E 201703-T
Mouser Electronics
Authorized Distributor
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