2. Specifications (Plug-in Standard type and TM type)
Characteristics
Arrangement
Contact
Contact resistance (Initial)
Contact material
Nominal switching capacity (resistive load)
Max. switching power (resistive load)
Max. switching voltage
Rating
Max. switching current
Nominal operating power
Min. switching capacity (Reference value)*
1
Insulation resistance (Initial)
Between open contacts
Breakdown voltage
Between contact sets
(Initial)
Between contact and coil
Temperature rise (coil) (at 70°C
158°F)
Operate time (at 20°C
68°F)*
2
Release time (at 20°C
68°F)*
2
Functional
Destructive
Functional
Vibration resistance
Destructive
Mechanical
Electrical (at nominal switching capacity)
Conditions for operation, transport and storage*
3
(Not freezing and condensing at low temperature)
Shock resistance
Mechanical
characteristics
Max. Operating speed
Unit weight
Item
1 Form C
Specifications
2 Form C
1 Form A (TM type)
Electrical
characteristics
Expected life
Conditions
Max. 100 mΩ
Max. 50 mΩ
Max. 100 mΩ
(By voltage drop 6 V DC 1A)
(By voltage drop 6 V DC 1A)
(By voltage drop 6 V DC 1A)
AgNi type
AgSnO
2
type
AgSnO
2
type
10A 250V AC, 10A 30V DC
5A 250V AC, 5A 30V DC
16A 250V AC, 16A 30V DC
4,000VA, 300W
1,250VA, 150W
4,000VA, 480W
250V AC, 30V DC
16A (at AC load),
5A
16A
10A (at DC load)
0.53W, 0.9VA
100mA 5V DC
1mA 1V DC
100mA 5V DC
Min. 1,000MΩ (at 500V DC) Measurement at same location as “Breakdown voltage” section.
1,000 Vrms for 1min. (Detection current: 10mA.)
3,000 Vrms for 1min.
—
—
(Detection current: 10mA.)
5,000 Vrms for 1min. (Detection current: 10mA.)
Max. 60°C
140°F
(By resistive method, nominal coil voltage)
Max. 15ms (Nominal coil voltage applied to the coil, excluding contact bounce time.)
Max. 5ms (Nominal coil voltage applied to the coil, excluding contact bounce time.) (without
diode)/Max. 20ms (with diode)
Min. 100 m/s
2
(Half-wave pulse of sine wave: 11 ms; detection time: 10µs.)
Min. 1,000 m/s
2
(Half-wave pulse of sine wave: 6 ms.)
10 to 55 Hz at double amplitude of 1.5 mm (Detection time: 10µs.)
10 to 55 Hz at double amplitude of 1.5 mm
AC: Min. 10
7
; DC: Min. 2×10
7
(at 300 times/min.)
Min. 10
5
(at 20 times/min.)
Min. 10
5
(at 10 times/min.)
Ambient temperature: –40°C to +70°C
–40°F to +158°F
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
10 times/min.
20 times/min. (at nominal switching capacity)
(at nominal switching capacity)
Approx. 19 g
.67 oz
Approx. 17 g
.60 oz
Approx. 19 g
.67 oz
Notes: *1. This value can change due to the switching frequency, environmental conditions and desired reliability level, therefore it is recommended to check this with the
actual load.
*2. For the AC coil types, the operate/release time will differ depending on the phase.
*3. The upper limit of the ambient temperature is the maximum temperature that can satisfy the coil temperature rise value. Refer to Usage, transport and storage
conditions in NOTES.
Panasonic Corporation
Automation Controls Business Unit
industrial.panasonic.com/ac/e/
ASCTB5E 201212-T
HN (AHN)
REFERENCE DATA
1-(1). Max. switching capacity
(1 Form C and 1 Form A)
1-(2). Max. switching capacity (2 Form C)
2-(1). Coil temperature rise (1 Form C/AC and
1 Form A/AC types)
Measured portion: Inside the coil
Ambient temperature: 70°C
158°F
100
50
30
20
16
10
5
1 Form C type
DC resistive load
1
0.5
20
0
1 Form A type DC resistive load
1 Form A and
1 Form C types
AC resistive load
10
Temperature rise,
°C
5
Contact current, A
120
100
80
60
40
Contact current, A
16A
0A
1
0.5
0.4
0.3
0.2 DC resistive load
AC resistive load
10
20 30 50
100
250
10
Contact voltage, V
20 30 50
100
250
Contact voltage, V
80
90 100 110 120 130 140
Coil applied voltage, %V
2-(2). Coil temperature rise (1 Form C/DC and
1 Form A/DC types)
Measured portion: Inside the coil
Ambient temperature: 70°C
158°F
70
Temperature rise,
°C
2-(3). Coil temperature rise (2 Form C/AC type)
Measured portion: Inside the coil
Ambient temperature: 70°C
158°F
2-(4). Coil temperature rise (2 Form C/DC type)
Measured portion: Inside the coil
Ambient temperature: 70°C
158°F
120
Temperature rise,
°C
100
80
60
40
20
0
Temperature rise,
°C
70
60
50
40
30
20
10
0
5A
0A
60
50
40
0A
30
20
10
0
16A
5A
0A
80
90 100 110 120 130 140
Coil applied voltage, %V
80
90 100 110 120 130 140
Coil applied voltage, %V
80
90 100 110 120 130 140
Coil applied voltage, %V
DIMENSIONS
(mm
inch)
1. Plug-in type 1 Form C
CAD Data
Max. 13
Max. .512
The CAD data of the products with a
CAD Data
mark can be downloaded from: http://industrial.panasonic.com/ac/e/
[font=微软雅黑][size=3]I remember that I have graduated for two years. The scene of packing my luggage to go to Beijing after graduation is still vivid in my mind. [/size][/font]:Cry:[font=微软雅黑][size=3]It...
The frequency accuracy requirement is not too high, and the stability of the 1 series can reach4M ± 20%, which is acceptable.But it seems that the 4 series must be connected to an external crystal to ...
I created a new iesimple process in my application. After I got the handle of iesimple, I sent messages to iesimple in the application to control iesimple to "forward" and "backward", but I found that...
I recently learned about switching power supplies, and I feel that the parameter calculation of this switching transformer is very complicated. The transformer calculation formula in the figure is wha...
On August 24th, Tesla CEO Elon
Musk
revealed information about the upcoming FSD V14, claiming it will outperform human drivers. Tesla FSD lead Ashok stated last year that FSD version 12.5, ...[Details]
As the main model among new energy vehicles, pure electric vehicles have received strong support and encouragement from the country in recent years, and their development is changing with each pass...[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]
1. Ease of Use: The HMI module should be designed to be simple and clear, allowing users to easily operate and configure the energy storage device.
2. Ease of Maintenance: The HMI module should...[Details]
On August 22, according to CNBC's report today, the National Highway Traffic Safety Administration (NHTSA) is launching an investigation into Tesla, and the latter is questioned whether it has fail...[Details]
Nascent Micro is launching devices covering a wide range of power applications, including gallium nitride (GaN) drivers, dual-channel automotive drivers, and battery protection MOSFETs.
...[Details]
I recently read an article in the Wall Street Journal titled "We need the right to repair our gadgets" (reference original article: ). The author was very angry about the phenomenon of "planned obs...[Details]
Introduction: Traditionally, lead-acid batteries have primarily been used to provide backup power and power regulation based on location. In typical applications, the battery's actual use (discharg...[Details]
The characteristics of electric vehicles place high demands on the motors they use. To increase top speed, the motor should have high instantaneous power and power density (W/kg); to increase drivi...[Details]
It's not possible to generalize whether one vehicle is good or bad; the definition of "good" varies depending on the environment. Excluding policy support, whether electric vehicles or gasoline-pow...[Details]
summary
NFC (Near Field Communication) is a short-range, high-frequency wireless communication technology that allows contactless, point-to-point data exchange (within ten centimeters) between...[Details]
The development of electric vehicles is unstoppable. More and more people are choosing new energy vehicles. With the subsidies provided by the state and the shortage of resources, new energy vehicl...[Details]
The main differences between xenon lamps and halogen lamps are as follows:
1. Xenon lamps rely on high-voltage arc discharge for lighting, so xenon lamps need to be equipped with an additional...[Details]
Wireless Communications
Ethernet protocol
Touch screen and 200Smart
In real-world systems, multiple PLCs are distributed throughout a single workshop, centrally controlled by a...[Details]