Infrared Sensors

Reset All
Part RoHS Manufacturer Sensors or Transducers Type Mounting Feature Minimum Detectivity No. of Channels Photosensitive Area Spectral Response (nm) Sub-Category Semiconductor Material Maximum Operating Temperature Minimum Responsivity Minimum Operating Temperature Terminal Finish JESD-609 Code

SS-430L-W

KEMET Corporation

INFRARED SENSOR, THERMAL, PYROELECTRIC

PANEL MOUNT

USEQFCSA500100

KEMET Corporation

INFRARED SENSOR,PYROELECTRIC

USEQGSEAC82180

KEMET Corporation

INFRARED SENSOR,PYROELECTRIC

SURFACE MOUNT

85 Cel

-40 Cel

LHI807

Infineon Technologies

INFRARED SENSOR,PYROELECTRIC

THROUGH HOLE MOUNT

1

1000-35000

Infrared Sensors

LiTaO

75 Cel

4200 V/W

-30 Cel

Tin/Lead (Sn/Pb)

e0

LHI954

Infineon Technologies

INFRARED SENSOR,PYROELECTRIC

THROUGH HOLE MOUNT

1

8000-14000

Infrared Sensors

LiTaO

70 Cel

2300 V/W

-40 Cel

Tin/Lead (Sn/Pb)

e0

LHI1158

Infineon Technologies

INFRARED SENSOR,PYROELECTRIC

THROUGH HOLE MOUNT

2

7000-14000

Infrared Sensors

LiTaO

70 Cel

3400 V/W

-40 Cel

Tin/Lead (Sn/Pb)

e0

LHI1258

Infineon Technologies

INFRARED SENSOR,PYROELECTRIC

THROUGH HOLE MOUNT

2

7000-14000

Infrared Sensors

LiTaO

70 Cel

3000 V/W

-40 Cel

Tin/Lead (Sn/Pb)

e0

AFBR-S6PY0575

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPY32271R

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

SURFACE MOUNT

85 Cel

-40 Cel

AFBR-S6PY1943

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPY12121B

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPR44212

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

85 Cel

-40 Cel

AFBR-S6PY2341

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6PY0574

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6PY3151

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

2

85 Cel

167000 V/W

-40 Cel

AFBR-S6PY2572

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPR44352

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

85 Cel

-40 Cel

AFBR-S6EPY12251R

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

SURFACE MOUNT

85 Cel

-40 Cel

AFBR-S6PY0234

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPY12211R

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

SURFACE MOUNT

85 Cel

-40 Cel

AFBR-S6EPR44112

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

85 Cel

-40 Cel

AFBR-S6PY1601

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPY12111R

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

SURFACE MOUNT

85 Cel

-40 Cel

AFBR-S6PY0211

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6PY2486

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6PY3200

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6PY2626

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

2

85 Cel

167000 V/W

-40 Cel

AFBR-S6EPY12111B

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

AFBR-S6EPR44252

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

THROUGH HOLE MOUNT

85 Cel

-40 Cel

AFBR-S6PY2343

Broadcom

INFRARED SENSOR, THERMAL, PYROELECTRIC

Infrared Sensors

Infrared sensors are electronic devices that detect infrared radiation and convert it into a measurable electrical signal. Infrared radiation is a type of electromagnetic radiation that lies in the non-visible portion of the electromagnetic spectrum, with wavelengths longer than visible light but shorter than radio waves.

Infrared sensors work by detecting the heat emitted by objects in their field of view. They typically consist of an infrared detector, which absorbs the radiation and generates an electrical signal proportional to the amount of heat detected, and a signal processing circuit, which amplifies and analyzes the signal to determine the presence, location, and intensity of the infrared radiation.

Infrared sensors are widely used in a variety of applications, including remote temperature sensing, motion detection, gas detection, and flame detection. They are commonly used in industrial settings for process control, monitoring and inspection, and in consumer electronics for home automation, security systems, and remote controls.

One of the key advantages of infrared sensors is their ability to detect objects and conditions that are not visible to the naked eye, such as temperature gradients and gas leaks. They are also non-contact sensors, which means they can detect objects without physical contact, making them ideal for applications where contact with the object is not desirable or possible.

However, infrared sensors also have some limitations, such as their susceptibility to interference from ambient heat sources, their limited range and resolution, and their inability to detect non-thermal infrared radiation, such as that emitted by some types of plastics.