Allicdata Part #: | 8871000000-ND |
Manufacturer Part#: |
8871000000 |
Price: | $ 11.36 |
Product Category: | Relays |
Manufacturer: | Weidmuller |
Short Description: | RELAY GEN PURPOSE SPDT 16A 24V |
More Detail: | General Purpose with Socket Relay SPDT (1 Form C) ... |
DataSheet: | 8871000000 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 10.32570 |
Turn On Voltage (Max): | 16.8 VDC |
Coil Resistance: | 1.44 kOhms |
Coil Power: | 400 mW |
Contact Material: | Silver Nickel (AgNi) |
Operating Temperature: | -40°C ~ 70°C |
Termination Style: | Screw Terminal |
Mounting Type: | DIN Rail |
Features: | LED Indicator |
Release Time: | 3ms |
Operate Time: | 7ms |
Turn Off Voltage (Min): | 2.4 VDC |
Series: | RCI KIT |
Switching Voltage: | 250VAC - Max |
Contact Rating (Current): | 16A |
Contact Form: | SPDT (1 Form C) |
Coil Voltage: | 24VDC |
Coil Current: | 16.7mA |
Coil Type: | Non Latching |
Relay Type: | General Purpose with Socket |
Part Status: | Active |
Packaging: | Bulk |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Power Relays, Over 2 Amps
When dealing with power relays that have a current capacity of over 2 amps, the 8871000000 application field and working principle is a key factor that dictates the functionality of the relay. Whether in a signal, switch, or just in a large-scale energy control system, the 8871000000 application field and working principle play an important role in the way the relay functions.
The 8871000000 application field and working principle refers to the relationship between the current, voltage, and impedance of a power relay. It forms the basis for determining the amount of current that can be safely sent through a relay. This helps to ensure that the relay is operating correctly and efficiently without being overloaded or subject to serious damage.
Power relays can be used for a variety of applications, from industrial and commercial uses to consumer electronics. For any application, the 8871000000 application field and working principle can dictate which type of relay is best to use. For example, a short-circuit protection device requires a relay with a lower impedance and higher current capacity than a switch or control device due to the amount of power that must be handled.
The working principle of a power relay is based on the principles of electromagnetic induction. This means that the relay will open or close a circuit depending on the electromagnetic fields created by the coils inside of the relay. This can be used to control the flow of electricity, allowing for the control of switches, signals, and other electronic components.
In order for the 8871000000 application field and working principle to be successful, the components of the relay must be compatible with each other. This means that the manufacturer of the relay must carefully select materials, design, and construction to ensure that the relay will function properly. The materials used must be able to handle the different properties of electricity, such as voltage, impedance, and current.
One important aspect of the 8871000000 application field and working principle is the electrical isolation of the relay. The isolation is the separation between the electrical components of the relay and the outside environment. This ensures that the relay is not subjected to external electrical interference, which could prevent it from functioning properly. This also helps to protect the relay from damage due to excessive heat or short-circuiting.
In order to ensure that the 8871000000 application field and working principle are successful, a number of tests must be conducted. These tests typically involve the use of a special testing device, which is designed specifically to simulate the operating conditions of the relay. This will allow for accurate testing of the relay\'s performance in various applications, including those in which the current, voltage, and impedance of the relay may be different.
The 8871000000 application field and working principle are crucial for determining the safety, effectiveness, and life of a power relay. By understanding how these components work together, manufacturers and engineers can ensure that their relay components are performing properly and that the current, voltage, and impedance levels are within the desired limits.
The specific data is subject to PDF, and the above content is for reference
Part Number | Manufacturer | Price | Quantity | Description |
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8871MN 006100 | Belden Inc. | 182.62 $ | 1000 | CBL 7COND 18AWG SHLD7 Con... |
8871MN 008100 | Belden Inc. | 182.62 $ | 1000 | CBL 7COND 18AWG SHLD7 Con... |
8871MN 0041000 | Belden Inc. | 1.39 $ | 1000 | CBL 7COND 18AWG SHLD7 Con... |
8871MN 0061000 | Belden Inc. | 1.39 $ | 1000 | CBL 7COND 18AWG SHLD7 Con... |
8871MN 0081000 | Belden Inc. | 1.39 $ | 1000 | CBL 7COND 18AWG SHLD7 Con... |
M80-8871005 | Harwin Inc. | 3.94 $ | 88 | CONN RECEPT 2MM VERT PCB ... |
M80-8871801 | Harwin Inc. | 5.73 $ | 75 | 2X9POS DIL FEMALE VERTICA... |
M80-8871805 | Harwin Inc. | 6.17 $ | 52 | CONN RECEPT 2MM VERT PCB ... |
5962-8871902MXA | Analog Devic... | 425.79 $ | 8 | IC DAC 12BIT QUAD MONO 28... |
5962-8871901MXA | Analog Devic... | 425.79 $ | 1000 | IC DAC 12BIT QUAD MONO 28... |
5962-8871903MYA | Analog Devic... | 495.51 $ | 1000 | IC DAC 12BIT QUAD MONO 44... |
8871000000 | Weidmuller | 11.36 $ | 1000 | RELAY GEN PURPOSE SPDT 16... |
8871030000 | Weidmuller | 11.36 $ | 1000 | RELAY GEN PURPOSE DPDT 8A... |
8871040000 | Weidmuller | 15.1 $ | 1000 | RELAY GEN PURPOSE DPDT 8A... |
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8871010000 | Weidmuller | 14.75 $ | 1000 | RELAY GEN PURPOSE SPDT 16... |
M80-8871405 | Harwin Inc. | 5.04 $ | 1000 | CONN RECEPT 2MM VERT PCB ... |
M80-8871201 | Harwin Inc. | 4.14 $ | 1000 | 2X6POS DIL FEMALE VERTICA... |
8871050000 | Weidmuller | 16.81 $ | 1000 | RELAY GEN PURPOSE DPDT 8A... |
8871020000 | Weidmuller | 17.48 $ | 1000 | RELAY GEN PURPOSE SPDT 16... |
M80-8871401 | Harwin Inc. | 3.75 $ | 1000 | 7+7 DIL FEMALE VERT CONN1... |
88714-620H | Amphenol FCI | 0.0 $ | 1000 | BERGSTIK II DR STRAIGHT R... |
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