NAIS AQS225SZ

AQS225S
RF (Radio Frequency) Type
SOP Series 4-Channel
(Form A) 16-pin Type
PhotoMOS
RELAYS
FEATURES
4.4
.173
2.1
.083
10.37
.408
mm inch
1. 4-channel(4 Form A) of RF PhotoMOS Relays
2. SO package 16-pin type in super
miniature design
The device comes in a super-miniature
SO package measuring (W)10.37 × (L)4.4
× (H)2.1mm (W) .408×(L).173×
(H).083inch— approx. 50% of the footprint size of 8-pin(2-channel) type.
1
16
2
15
3
14
Footprint
4
13
Approx. 50%
5
12
6
11
7
10
8
9
SOP 2-channel type
AQS225S
3. Applicable for 4 Form A use, as well
as 4 independent 1 Form A
4. Low capacitance between output
terminals ensure high response
speed:
The capacitance between output terminals is small, typically 4.5pF.
This enables for a fast operation speed of
0.1ms(typ.).
5. Low-level off state leakage current
6. Controls low-level analog signals
PhotoMOS relays feature extremely low
closed-circuit offset voltage to enable
control of low-level analog signals without
distortion
TYPICAL APPLICATIONS
• Telephone and data comunication equipment
• Measuring equipment
• Medical equipment
• Industrial equipment
TYPES
Type
AC/DC type
Output rating*
Load voltage Load current
80 V
Part No.
Picked from the 1/2/3/4/5/6/7/8-pin side Picked from the 9/10/11/12/13/14/15/16-pin side
50 mA
AQS225SX
Packing quantity
in tape and reel
AQS225SZ
1,000 pcs.
* Indicate the peak AC and DC values.
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: 50 pcs.;
Case: 1,000 pcs.)
(2) For space reasons, the package type indicator "X" and "Z" are omitted from the seal.
RATING
1. Absolute maximum ratings (Ambient temperature: 25°C 77°F)
Item
LED forward current
LED reverse voltage
Input
Peak forward current
Power dissipation
Load voltage
Continuous load current
Output
Peak load current
Power dissipation
Total power dissipation
I/O isolatiom voltage
Operating
Temperature
limits
Storage
158
Symbol
IF
VR
IFP
Pin
VL
IL
Ipeak
Pout
PT
Viso
Topr
Tstg
AQS225S
50 mA
3V
1A
75 mW
80 V
0.05 A
0.15 A
600 mW
650 mW
1,500 V AC
–40°C to +85°C –40°F to +185°F
–40°C to +100°C –40°F to +212°F
Remarks
f = 100 Hz, Duty factor = 0.1%
100 ms (1 shot), VL= DC
Non-condensing at low temperatures
AQS225S
2. Electrical characteristics (Ambient temperature: 25°C 77°F)
Item
Symbol
Typical
Maximum
Minimum
Typical
Typical
Maximum
LED operate
current
LED turn off
current
Input
LED dropout
voltage
IFon
IFoff
VF
AQS225S
0.9 mA
3 mA
0.3 mA
0.85 mA
1.14 (1.25 V at IF = 50mA)
1.5 V
Condition
21Ω
IF = 5 mA
IL = Max.
Within 1 s on time
IF = 0
VB = 0 V
f = 1 MHz
Typical
On resistance
Ron
Output capaci- Typical
tance
Maximum
Typical
Maximum
Typical
Maximum
Typical
Off state leakage current
Turn on time*
Transfer characteristics
Turn off time*
Maximum
Typical
Maximum
I/O capacitance
Initial I/O isolaMinimum
tion resistance
IL = Max.
IF = 5mA
35Ω
Maximum
Output
IL = Max.
4.5 pF
Cout
6 pF
30 pA
10 nA
0.1 ms
0.3 ms
0.03 ms
ILeak
Ton
Toff
Ciso
Riso
IF = 0
VL = Max.
IF = 5 mA
IL = Max.
IF = 5 mA
IL = Max.
0.1 ms
0.8 pF
1.5 pF
f = 1 MHz
VB = 0
1,000 MΩ
500 V DC
Note: Recommendable LED forward current IF= 5 mA.
For type of connection, see page 34.
*Turn on/Turn off time
Input
90%
Output
10%
Ton
Toff
■ For Dimensions, see Page 28.
■ For Schematic and Wiring Diagrams, see Page 34.
■ For Cautions for Use, see Page 36.
REFERENCE DATA
1. Load current vs. ambient temperature characteristics
2. On resistance vs. ambient temperature characteristics
3. Turn on time vs. ambient temperature characteristics
Allowable ambient temperature: –40°C to +85°C
–40°F to +185°F
LED current: 5 mA; Load voltage: Max. (DC);
Continuous load current: Max. (DC)
LED current: 5 mA; Load voltage: Max. (DC);
Continuous load current: Max. (DC)
50
75
50
0.3
0.25
40
Turn on time, ms
On resistance, Ω
Load current, mA
100
30
20
0.2
0.15
0.1
25
10
0
–40 –20
0
20
40
60
80 85 100
Ambient temperature, °C
0
0.05
–40
–20
0
20
40
60
80 85
Ambient temperature, °C
0
–40 –20
0
20
40
60
80 85
Ambient temperature, °C
159
AQS225S
4. Turn off time vs. ambient temperature characteristics
5. LED operate current vs. ambient temperature characteristics
6. LED turn off current vs. ambient temperature
characteristics
LED current: 5 mA; Load voltage: Max. (DC);
Continuous load current: Max. (DC)
Load voltage: Max. (DC);
Continuous load current: Max. (DC)
Load voltage: Max. (DC);
Continuous load current: Max. (DC)
2.5
0.15
0.1
0.05
2.5
LED turn off current, mA
LED operate current, mA
Turn off time, ms
0.2
2
1.5
1
0.5
0
–40 –20
0
20
40
60
–40 –20
7. LED dropout voltage vs. ambient temperature characteristics
8. Voltage vs. current characteristics of output
at MOS portion
LED current: 5 to 50 mA
Ambient temperature: 25°C 77°F
1.5
0
–40
–20
0
20
40
60
80 85
Ambient temperature, °C
9. Off state leakage current
Ambient temperature: 25°C 77°F
1.4
1.3
Off state leakage current, A
50
Current, mA
LED dropout voltage, V
1
0
20
40 60 80 85
Ambient temperature, °C
Ambient temperature, °C
40
30
20
10
–3 –2.5 –2 –1.5 –1 –0.5
1.2
0.5 1 1.5 2 2.5 3
–10 Voltage, V
50mA
30mA
20mA
10mA
5mA
1.1
1.0
–20
–40 –20
0
10
–3
10
–6
10
–9
10
–12
–30
–40
0
1.5
0.5
0
80 85
2
–50
20
40 60
80 85
Ambient temperature, °C
0
20
40
60
80
Load voltage, V
100
11. LED forward current vs. turn off time characteristics
12. Applied voltage vs. output capacitance
characteristics
Load voltage: Max. (DC); Continuous load current:
Max. (DC); Ambient temperature: 25°C 77°F
Load voltage: Max. (DC); Continuous load current:
Max. (DC); Ambient temperature: 25°C 77°F
Frequency: 1 MHz; Ambient temperature: 25°C 77°F
0.25
0.2
0.2
0.15
0.1
0.15
0.1
0.05
0.05
0
6
Output capacitance, pF
0.25
Turn off time, ms
Turn on time, ms
10. LED forward current vs. turn on time characteristics
0
10
20
30
40
50
LED forward current, mA
0
60
13. Isolation characteristics
(50Ω impedance)
5
4
3
2
1
0
10
20
30
40
50
LED forward current, mA
60
0
0
10
20
30
40
50
60
70
80
Applied voltage, V
14. Insertion loss characteristics
(50Ω impedance)
Ambient temperature: 25°C 77°F
Ambient temperature: 25°C 77°F
6
5
Insertion loss, dB
Isolation, dB
100
80
60
4
3
40
2
20
1
0
0
104
5/7/2001
160
105
106
Frequency, Hz
107
104
105
106
Frequency, Hz
107
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