8L41-05-011 Allicdata Electronics
Allicdata Part #:

306-1044-ND

Manufacturer Part#:

8L41-05-011

Price: $ 5.64
Product Category:

Relays

Manufacturer: Coto Technology
Short Description: RELAY REED SPDT 250MA 5V
More Detail: N/A
DataSheet: 8L41-05-011 datasheet8L41-05-011 Datasheet/PDF
Quantity: 1000
1 +: $ 5.12820
10 +: $ 4.81068
25 +: $ 4.27594
50 +: $ 4.06211
100 +: $ 3.84836
250 +: $ 3.42075
500 +: $ 3.20695
Stock 1000Can Ship Immediately
$ 5.64
Specifications
Turn Off Voltage (Min): 0.5 VDC
Coil Resistance: 200 Ohms
Coil Power: --
Contact Material: --
Operating Temperature: -20°C ~ 85°C
Termination Style: PC Pin
Mounting Type: Through Hole
Features: Diode
Release Time: 1.5ms
Operate Time: 1ms
Series: 8L
Turn On Voltage (Max): 3.8 VDC
Switching Voltage: 100VAC, 100VDC - Max
Contact Rating (Current): 250mA
Contact Form: SPDT (1 Form C)
Coil Voltage: 5VDC
Coil Current: 25.0mA
Coil Type: Non Latching
Part Status: Active
Packaging: Tube 
Description

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Introduction

Reed relays are a type of electrical switch that is powered by a magnetic field. They are typically used in automotive, telecommunications, and medical instrumentation applications due to their ability to switch loads quickly and without the need for an external power source. This article will discuss the application fields and working principle of 8L41-05-011 reed relays in detail.

Application Field and Working Principle of 8L41-05-011 Reed Relays

8L41-05-011 reed relays are able to switch loads of up to 3A and they are suitable for applications such as automotive and telecommunications. These relays are also known as "3-pole relays" due to their three contact points.The working principle of 8L41-05-011 reed relays is based on the principles of electromagnetic induction. Electromagnetic induction is the phenomenon of creating an electric current in a conductor when a magnetic field passes through it. This principle is used to switch the load in the reed relay.When the current is introduced into the reed relay, it produces a magnetic field which then causes the reed switch contacts inside the relay to open or close in order to complete the circuit. When the current is switched off, the magnetic field also dies down and the contacts automatically close back up. This allows the relay to switch loads quickly and reliably without the need for an external power source.

Advantages and Disadvantages

8L41-05-011 reed relays have some advantages and disadvantages that users should consider when selecting them for their application.One common advantage of 8L41-05-011 reed relays is their small size. These relays are very compact and can fit into tight spaces, making them a great choice for applications where space is limited. Additionally, these relays do not require an external power source, which can be beneficial for applications that operate on battery power.One disadvantage of these relays is that they are not suitable for applications with very high voltage or current. Additionally, these relays can be susceptible to electromagnetic interference, which may cause them to malfunction in certain situations.

Conclusion

In conclusion, 8L41-05-011 reed relays are a popular choice for applications such as automotive and medical instrumentation due to their ability to switch loads quickly and without the need for an external power source. They are capable of switching loads of up to 3A and their small size allows them to fit into tight spaces. The working principle of 8L41-05 05-011 reed relays is based on the principles of electromagnetic induction, which produce a magnetic field to switch the load. There are some advantages and disadvantages to be aware of when selecting these relays, such as their susceptibility to electromagnetic interference and their lack of suitability for high voltage and current applications.

The specific data is subject to PDF, and the above content is for reference

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