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TLN107A

In Stock: 9.100

Discontinuation Announcement: Infrared Emitters S-L-SV, Last-Time Buy (-), No Replacement Avai

TLN107A Informazione

Description

The TLN107A is an Infrared (IR) LED developed by Marktech Optoelectronics. Its primary function is to emit light at a wavelength of 940nm, commonly used in infrared applications such as remote controls, thermal imaging, and burglar alarms. This DIP2 package (double inline package) facilitates easy integration into electronic circuits. The TLN107A features no additional built-in functionality or advanced control options. Therefore, it is suitable for simple IR emission tasks where a standard 940nm LED suffices.

Features

The TLN107A is an Infrared (IR) LED with a wavelength of 940nm. Its key features are:
High Output Power: The LED offers good IR radiation intensity, suitable for various infrared applications.
Long Life: With reliable construction and materials, the TLN107A is designed to have a long operational lifespan.
Low Forward Voltage: The LED requires minimal voltage (typically below 1V) to operate effectively. In summary, the TLN107A's features are focused on high output power, longevity, and low power consumption for efficient infrared communication or sensing applications.

Package

The TLN107A has a DIP2 (dual in-line package) package type.

Pinout

The TLN107A is a DIP2 (dual-in-line package) infrared LED with a wavelength of 940nm. It has two pins:
Anode: Connect this pin to the positive voltage source in your circuit.
Cathode (optional): This pin is typically left unconnected, as the anode is the main emitting area. The TLN107A does not have additional features or functions beyond emitting infrared light at 940nm.

Manufacturer

The manufacturer of the TLN107A is Marktech Optoelectronics. It is a company that specializes in producing optical components and devices, catering to industries that require infrared technology.

Applications

The TLN107A Infrared LED is primarily used in applications like infrared (IR) remote controls, home security systems, and industrial automation where long-range IR transmission is required.

Specifiche

Part Life Cycle Code Obsolete Reach Compliance Code
HTS Code 8541.40.20.00 Forward Current-Max 0.05 A
Forward Voltage-Max 1.3 V JESD-609 Code e0
Mounting Feature THROUGH HOLE MOUNT Operating Temperature-Max 85 °C
Operating Temperature-Min -25 °C Peak Wavelength 940 nm
Reverse Voltage-Max 5 V Semiconductor Material GaAs
Surface Mount NO Terminal Finish Tin/Lead (Sn/Pb)
Viewing Angle 30 deg Package/Case DIP-2

TLN107A FAQs

1.Q: What is the viewing angle of S-L-SV infrared emitter?

A: The device has a 30-degree viewing angle characteristic.

2.Q: What semiconductor material is used in S-L-SV?

A: The emitter uses Gallium Arsenide (GaAs) as its semiconductor material.

3.Q: What is the life cycle status of S-L-SV infrared emitter?

A: The part is marked as Obsolete, having gone through Discontinued (04-04) and Phase-out (06-07) stages.

4.Q: Is the S-L-SV compliant with RoHS standards?

A: No, this part has Tin/Lead (Sn/Pb) termination and is marked as non-RoHS compliant.

5.Q: What package does the S-L-SV infrared emitter use?

A: It uses a through-hole mount DIP2 (Dual In-line Package with 2 pins) package.

6.Q: What are the electrical characteristics of S-L-SV infrared emitter?

A: Electrical characteristics include 1.3V max forward voltage at 50mA current and 940nm dominant wavelength.

7.Q: What are the absolute maximum ratings for S-L-SV?

A: Maximum ratings: 5V reverse voltage, 0.05A forward current, and operating temperature range of -25°C to +85°C.

8.Q: What are typical applications for S-L-SV infrared emitter?

A: Typical applications include infrared remote controls, optical switches, and sensor systems (though the part is now obsolete).

9.Q: What are the key features of S-L-SV infrared emitter?

A: Key features include 940nm peak wavelength, 30° viewing angle, GaAs semiconductor material, and 1.3V max forward voltage.

10.Q: What is the pinout configuration of Marktech Optoelectronics S-L-SV infrared emitter?

A: The device comes in a standard DIP2 package with anode and cathode pins for through-hole mounting.

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