Note: When using the relay to absorb the reverse voltage during inductive load switching, make sure the load is within the inductance range given in the internal varistor
characteristics data below, rather than the energy resistance range for the internal varistor. Note, the inductance range will differ if the switching frequency is higher
than the rate given for the characteristics data conditions.
Note: Recommendable LED forward current I
F
= 5 to 10 mA.
*Turn on/off time
For type of connection, see page 35.
Input
90%
Output
Ton
Toff
10%
s
For Dimensions, see Page 29.
s
For Schematic and Wiring Diagrams, see Page 35.
s
For Cautions for Use, see Page 40.
3.-(1) On resistance vs. ambient temperature
characteristics
LED current: 10 mA;
Continuous load current: 3.0 A (DC) (AQZ202V),
2.0 A (DC) (AQZ205V),
0.5
= 20mm
= 10mm
80
= 5mm
60
40
On resistance,
Ω
0.4
REFERENCE DATA
1. Load current vs. ambient temperature char-
acteristics
Allowable ambient temperature: –40°C to +85°C
–40°F to +185°F
3.5
3.0
Load current, A
2.5
2.0
1.5
1.0
AQZ204V
0.5
0
-40
-20
0
20
40
60 8085 100
Ambient temperature,
°C
20
= Adjacent mounting pitch
0
-40 -20
0
20
40
60 80 85 100
Ambient temperature,
°C
0
-40
-20
0
40
60 8085
20
Ambient temperature,
°C
AQZ207V
AQZ202V
AQZ205V
2. Load current vs. ambient temperature char-
acteristics in adjacent mounting
I
L
: Load current;
I
L
(max.): Maximum continuous load current
120
100
I
L
/I
L
(max.)×100,%
0.3
AQZ205V
0.2
0.1
AQZ202V
211
AQZ20
r
V
3.-(2) On resistance vs. ambient temperature
characteristics
LED current: 10 mA;
Continuous load current: 3.0 A (DC) (AQZ202V),
2.0 A (DC) (AQZ205V),
5.0
4. Turn on time vs. ambient temperature char-
acteristics
LED current: 10 mA;
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
10
5. Turn off time vs. ambient temperature char-
acteristics
LED current: 10 mA;
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
1.0
On resistance,
Ω
Turn on time, ms
3.0
AQZ204V
6
AQZ202V
4
AQZ205V
AQZ204V
AQZ207V
Turn off time, ms
4.0
8
0.8
0.6
2.0
0.4
AQZ207V
AQZ202V
AQZ204V
-40
-20
0
20
40
60
8085
Ambient temperature,
°C
AQZ205V
1.0
AQZ207V
2
0.2
0
-40
-20
0
20
40
60 8085
Ambient temperature,
°C
0
-40
-20
0
20 40
60 8085
Ambient temperature,
°C
0
6. LED operate vs. ambient temperature char-
acteristics
Load voltage: 10 V (DC);
Continuous load current: 100 mA (DC)
5
LED operate current, mA
7. LED turn off current vs. ambient temperature
characteristics
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
5
LED turn off current, mA
8. LED dropout voltage vs. ambient tempera-
ture characteristics
Sample: all types; LED current: 5 to 50 mA
1.5
LED dropout voltage, V
1.4
1.3
1.2
1.1
1.0
0
-40
4
4
3
AQZ204V
2
AQZ202V
AQZ207V
AQZ205V
0
-40 -20
0
20 40
60 8085
Ambient temperature,
°C
3
AQZ204V
2
AQZ202V
AQZ207V
1
1
AQZ205V
50mA
30mA
20mA
10mA
5mA
0
-40 -20
0
20 40
60 8085
Ambient temperature,
°C
-20
0
20
40
60 8085 100
Ambient temperature,
°C
9. Voltage vs. current characteristics of output
at MOS portion
Ambient temperature: 25°C
77°F
4.0
Current, A
3.0
2.0
1.0
-2.0 -1.5 -1.0 -0.5
10. Off state leakage current
Ambient temperature: 25°C
77°F
11. LED forward current vs. turn on time char-
acteristics
Load voltage: 10 V (DC); Continuous load current:
100 mA (DC); Ambient temperature: 25°C
77°F
20
Off state leakage current, A
AQZ202V
AQZ205V
AQZ207V
AQZ204V
0 0.5 1.0 1.5 2.0
Voltage, V
-1.0
-2.0
-3.0
-4.0
10
-3
AQZ202V
10
-6
AQZ205V
AQZ207V
Turn on time, ms
18
16
14
12
10
8
6
4
AQZ204V
AQZ207V
0
10
20
30
40
50
LED forward current, mA
AQZ202V
AQZ205V
AQZ204V
10
-9
10
-12
0
20
40
60
80
Load voltage, V
100
2
0
12. LED forward current vs. turn off time char-
acteristics
Load voltage: 10 V (DC); Continuous load current:
100 mA (DC); Ambient temperature: 25°C
77°F
0.5
13. Maximum operating frequency vs. load volt-
age/current characteristics
LED current: 10 mA
Ambient temperature: 25°C
77°F
Maximum operating frequency, time/s
10
9
duty = 50%
14. Applied voltage vs. output capacitance
characteristics
Frequency: 1 MHz;
Ambient temperature: 25°C
77°F
2000
1800
Output capacitance, pF
1600
1400
1200
1000
800
600
AQZ205V
400
200
AQZ207V
AQZ204V
0
20
40
60
80
Applied voltage, V
100
AQZ202V
Turn off time, ms
0.4
8
7
6
5
4
3
2
1
0.3
AQZ205V
0.2
AQZ207V AQZ202V
AQZ204V
0.1
0
0
10
20
30
40
50
LED forward current, mA
0
0
25
50
75
100
Load voltage, V× load current, A
0
212
AQZ20rV
15. Data for internal varistor characteristic
Operating frequency: 1 Hz
No. of operations: 10
6
max.
10
4
10
AQZ202V
AQZ205V
6
AQZ207V
AQZ204V
Inductance, mH
10
5
Inductance, mH
10
3
10
2
10
4
10
10
3
1
0
1
2
Load currnt, A
3
10
2
0
0.25
0.5
0.75
Load currnt, A
1
ACCESSORY
For more details, please consult our nearest office.
Does anyone have the source code of FPGA-based fingerprint verification (verilog)? Can you send it to my email? 527058534@qq.com Thank you very much...
I inserted the device tree file BB-BONE-LCD4-01-00A1.dtbo that comes with Angstrom into the slot, and the screen displayed the login interface of BeagleBone. I used the serial port or ssh to log in to...
With the continuous deepening of medical system reform and the rapid development of medical industry, more and more people need to get various medical services from hospitals quickly and conveniently,...
IntroductionBattery-powered devices have been around for a long time. However, the number of devices powered by rechargeable batteries has grown exponentially in the past two decades, since the advent...
This is a very popular LED emergency light on the market! The original light does not have a circuit diagram, so this circuit is drawn for reference!...
My graduation project is to use Quartus II to make a 16-bit computer memory. The design instructor requires the use of VHDL language. I have learned Verilog HDL by myself, but I am completely unfamili...
There are many different ways of human-computer interaction. The more common ones are listed below:
Mouse interaction: Using a mouse to operate a computer and interact was the most common human...[Details]
In recent years, the government has increasingly supported electric vehicles, and the number of electric vehicles has increased. Observant drivers will notice that there are many more green license...[Details]
According to foreign media reports, secondary battery materials company POSCO Future M announced that it has successfully developed two experimental (prototype) positive electrode materials for the...[Details]
This paper proposes a temperature real-time transmission and display solution based on LED optical data transmission, with Jingwei Yager low-power FPGA HR (Yellow River) series as the main controll...[Details]
As the scale and business applications of national e-government networks continue to expand, the data and services transmitted over them are becoming increasingly sensitive and critical. To protect...[Details]
Normally, we determine our location and where we want to go by comparing our surroundings with observation and simple GPS tools. However, this kind of reasoning is very difficult for self-driving c...[Details]
Coal mines typically contain gas and coal dust. When gas and coal dust reach a certain concentration, they can cause explosions. Electrical equipment generates arcs during normal operation or durin...[Details]
Bosch has released a new SoC series to support L2+ advanced driver assistance functions. The chip integrates high resolution and long-range detection capabilities, and has built-in support for neur...[Details]
There are more and more electric vehicles. Recently, I have heard some news about electric vehicles performing poorly in winter. I would like to briefly introduce whether heat pump technology is mo...[Details]
Civilian internal combustion engines operate in the range of approximately 1000-4000 rpm. This results in the engine's kinetic energy being ineffective at low or high rpm, making starting difficult...[Details]
Compared to gasoline-powered vehicles, electric vehicles have a simpler structure, allowing for greater flexibility in the layout of various components. While electric and gasoline-powered vehicles...[Details]
On August 19, according to foreign media Cyber Security News reported yesterday, a cybersecurity researcher discovered that hundreds of publicly accessible TeslaMate installation programs are leaki...[Details]
Electronic scales are a product of modern electronics development. Due to their simplicity, convenience, and high precision, they are widely used in various fields of industry and daily life. Based...[Details]
introduction
By the end of 2014, people aged 60 and above in China accounted for 15.5% of the total population, reaching 212 million; those aged 65 and above accounted for 10.1% of the total, ...[Details]
HEVO, a developer of wireless charging infrastructure for electric vehicles, and STEER Tech, a company specializing in high-precision autonomous vehicle technology for fleet garage operations, anno...[Details]