Matte Tin (Sn) Infrared LEDs 35

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature Lens Type Terminal Finish Configuration Color At Wavelength Size No. of Functions Maximum Forward Current Peak Wavelength (nm) Packing Method Maximum Response Time Sub-Category Maximum Reverse Voltage Semiconductor Material Maximum Operating Temperature Height Shape Viewing Angle Minimum Operating Temperature Nominal Output Power No. of LEDs in Array Additional Features Spectral Bandwidth JESD-609 Code Maximum Forward Voltage

TSAL6200

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

940

BULK

85 Cel

ROUND

-40 Cel

35 W

HIGH RELIABILITY

e3

TSAL6100

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

940

BULK

85 Cel

ROUND

-40 Cel

35 W

HIGH RELIABILITY

e3

VSMB2020X01

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

1.8 mm

1

.1 A

940

85 Cel

ROUND

-40 Cel

40 W

AEC-Q101

e3

TSHA6203

Vishay Intertechnology

INFRARED LED

THROUGH HOLE MOUNT

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

875

Infrared LEDs

5 V

GaAlAs

85 Cel

ROUND

-40 Cel

25 W

HIGH RELIABILITY

80 m

e3

1.7 V

VSMF3710-GS08

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

890

85 Cel

ROUND

-40 Cel

40 W

HIGH RELIABILITY

e3

VSML3710-GS18

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

940

85 Cel

ROUND

-40 Cel

35 W

HIGH RELIABILITY

e3

VSMF4720-GS08

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

870

85 Cel

ROUND

-40 Cel

50 W

HIGH RELIABILITY

e3

VSMB2000X01

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

1.8 mm

1

.1 A

940

85 Cel

ROUND

-40 Cel

40 W

HIGH RELIABILITY

e3

QED233A4R0

Fairchild Semiconductor

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

940

100 Cel

ROUND

-40 Cel

e3

TSAL6400

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

940

BULK

85 Cel

ROUND

-40 Cel

35 W

HIGH RELIABILITY

e3

VSMB3940X01-GS08

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

940

85 Cel

ROUND

-40 Cel

40 W

AEC-Q101

e3

TSUS4300

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

.1 A

950

85 Cel

ROUND

-40 Cel

20 W

HIGH RELIABILITY

e3

TSHG6200

Vishay Intertechnology

INFRARED LED

THROUGH HOLE MOUNT

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

850

Infrared LEDs

5 V

GaAlAs

85 Cel

ROUND

20 deg

-40 Cel

50 W

HIGH RELIABILITY

40 m

e3

1.8 V

VSML3710-GS08

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

940

85 Cel

ROUND

-40 Cel

35 W

HIGH RELIABILITY

e3

VSMS3700-GS08

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

2.4 mm

1

.1 A

950

85 Cel

ROUND

-40 Cel

15 W

HIGH RELIABILITY

e3

TSFF5210

Vishay Intertechnology

INFRARED LED

THROUGH HOLE MOUNT

Matte Tin (Sn)

SINGLE

5 mm

1

.1 A

870

Infrared LEDs

5 V

GaAlAs

85 Cel

ROUND

20 deg

-40 Cel

50 W

HIGH RELIABILITY

40 m

e3

1.8 V

CQY37N

Vishay Intertechnology

INFRARED LED

Matte Tin (Sn)

SINGLE

3.3 mm

1

.1 A

950

85 Cel

RECTANGULAR

-25 Cel

10 W

e3

ASDL-4860-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

.5 A

850

100 Cel

ROUND

-40 Cel

e3

ASDL-4671-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4670-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4671-D22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4770-C41

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

940

ROUND

e3

ASDL-4263-C31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

85 Cel

-40 Cel

e3

ASDL-4264-C31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.15 A

940

85 Cel

ROUND

-40 Cel

e3

ASDL-4264-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

.15 A

940

85 Cel

ROUND

-40 Cel

e3

ASDL-4670-C31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4772-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1.6 mm

1

940

ROUND

e3

ASDL-4671-D31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4360-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

.1 A

885

85 Cel

ROUND

-40 Cel

e3

ASDL-4262-C31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

940

ROUND

e3

ASDL-4262-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

5 mm

1

940

ROUND

e3

ASDL-4263-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

85 Cel

-40 Cel

e3

ASDL-4671-C31

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

3 mm

1

940

ROUND

e3

ASDL-4772-C41

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1.6 mm

1

940

ROUND

e3

ASDL-4770-C22

Broadcom

INFRARED LED

Matte Tin (Sn)

SINGLE

1

940

ROUND

e3

Infrared LEDs

Infrared LEDs (light-emitting diodes) are electronic devices that emit infrared radiation, which is invisible to the human eye. Infrared LEDs are commonly used in applications where the presence of light is undesirable, such as in remote control devices, security cameras, and other electronic devices.

Infrared LEDs emit light in the infrared spectrum, which is a type of electromagnetic radiation that has longer wavelengths than visible light. Infrared radiation is commonly used in communication and sensing applications, such as in infrared remote controls and proximity sensors.

Infrared LEDs are designed to emit radiation in a narrow range of wavelengths, which allows them to be used in specific applications. They are typically made from a semiconductor material, such as gallium arsenide, and operate at low voltages and currents.

One of the advantages of using infrared LEDs is that they are energy-efficient and have a long lifespan. They also do not produce heat or noise, which makes them ideal for use in electronic devices. Additionally, they are compact and easy to integrate into electronic devices.

One of the disadvantages of using infrared LEDs is that they are limited in their range and may not be able to transmit or receive signals over long distances. Additionally, they may be affected by external sources of infrared radiation, which can interfere with their operation.