PS2561D-1Y-V-A Optocoupler 1 Channel DIP 4 Pins 40 mA 5 kV
₹20.00 ₹10.73
This is a PS2561D-1Y-V-A Optocoupler , 1 Channel, DIP, 4 Pins, 40 mA, 5 kV, 50 % New product from with the model number PS2561D-1Y-V-A
52 in stock
Specification
No. of Channels | 1 Channel |
Optocoupler Case Style | DIP |
No. of Pins | 4Pins |
Forward Current If Max | 40mA |
Isolation Voltage | 5kV |
CTR Min | 50% |
Collector Emitter Voltage V(br)ceo | 80V |
Product Range | – |
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- Supply Voltage : 7V
- Input Voltage : 5.5V
- Operating Free Air Temperature Range : 0°C to +70°C
- Storage Temperature Range : −65°C to +150°C
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Specification
- Size : 75mm (length) x 55mm (W) x 19.3mm (height);
- Weight : 80g;
- PCB Color : Blue;
- board four weeks with four screw holes, hole diameter 3.1mm, easy to install and fixed;
- Relay selection of quality loose music relays, SPDT. A common terminal, a normally open, one normally closed terminal;
- optocoupler isolation, good anti-jamming;
- Low pull, high release. Energisation status indicator light, release status LED is off;
- VCC for the system power, JD_VCC for the relay power. Default hair 12V relay, plug the jumper cap to;
- Relay Maximum output : DC 30V/10A, AC 250V/10A
- Wiring : VCC : positive power supply system GND : System power supply negative IN1 – IN4 : relay control ports
- Rated 4.55 out of 5
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This DC Voltage Sensor Module is essentially a 5:1 potential divider circuit built using precession resistors for high accuracy.
The Arduino analog input is limited to a 5 VDC input. If you wish to measure higher voltages,this module allows you to measure voltages of 0-25V. Keep in mind, you are restricted to voltages that are less than 25 volts. More than that and you will exceed the voltage limit of your Arduino input.
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This is a 8MHZ Crystal. This is a low cost crystal oscillator with oscillation frequency of 8Mhz. Crystal are normally required to provide clock pulses to your micro controller or other IC’s which require external clock source.
An oscillator crystal has two electrically conductive plates, with a slice or tuning fork of quartz crystal sandwiched between them. The crystal oscillator circuit sustains oscillation by taking a voltage signal from the quartz resonator, amplifying it, and feeding it back to the resonator. Quartz has the further advantage that its elastic constants and its size change in such a way that the frequency dependence on temperature can be very low.
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