AKM

AKM

AKM, also known as Asahi Kasei Microdevices, is a leading global company that specializes in the development and manufacturing of high-performance electronic products and devices. With its headquarters in Japan, AKM has established itself as a key player in the semiconductor industry, offering a diverse range of advanced integrated circuits (ICs), magnetic sensors, and other electronic components. The company's products cater to various sectors, including consumer electronics, automotive, industrial applications, and communications. AKM's magnetic sensors are particularly renowned for their precision, reliability, and sensitivity, making them integral components in a wide array of electronic devices such as smartphones, digital cameras, and automotive systems. Furthermore, AKM's high-quality audio ICs are widely used in audio equipment, providing exceptional sound quality and performance. The company's commitment to innovation, quality, and customer satisfaction has solidified its reputation as a trusted partner for companies seeking cutting-edge electronic solutions. With a focus on research and development, AKM continues to drive advancements in semiconductor technology, ensuring that it remains at the forefront of the industry. Through its dedication to excellence and technological expertise, AKM continues to shape the future of electronic devices and contribute to the advancement of various industries globally.

LED Emitters - Infrared, UV, Visible

Results:
3
Series
Operating Temperature
Grade
Wavelength
Qualification
Voltage - Forward (Vf) (Typ)
Viewing Angle
Orientation
Mounting Type
Radiant Intensity (Ie) Min @ If
Type
Package / Case
Current - DC Forward (If) (Max)
Results remaining3
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AKM
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypeOperating TemperaturePackage / CaseTypeViewing AngleOrientationGradeCurrent - DC Forward (If) (Max)Radiant Intensity (Ie) Min @ IfWavelengthVoltage - Forward (Vf) (Typ)Qualification
AK9700AE
CONSUMER GRADE IR-LED FOR CO2 GA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Surface Mount
0°C ~ 50°C (TA)
8-SMD, No Lead
Infrared (IR)
120°
Top View
-
500mA
-
4300nm
1.3V
-
AK9703AJ
INDUSTRIAL GRADE IR-LED FOR HYDR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Surface Mount
-40°C ~ 85°C (TA)
8-SMD, No Lead
Infrared (IR)
120°
Top View
-
500mA
-
3600nm
1.79V
-
AK9700AD
AUTOMOTIVE GRADE IR-LED FOR CO2
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Surface Mount
-40°C ~ 90°C (TA)
8-SMD, No Lead
Infrared (IR)
120°
Top View
Automotive
500mA
-
4300nm
1.3V
AEC-Q101

About  LED Emitters - Infrared, UV, Visible

LED emitters are semiconductor devices that emit light when an electric current passes through them. They belong to various categories based on the type of light they emit, including Infrared (IR), Ultraviolet (UV), and Visible light. Infrared (IR) emitters produce electromagnetic radiation that is invisible to the human eye. The wavelength of IR light ranges from approximately 700-800 nanometers (nm) to 1 millimeter (mm). IR emitters find applications in heat sensors, thermal imaging devices, remote controls, and more. Ultraviolet (UV) emitters emit light that is also invisible to the human eye. The wavelength of UV light falls between approximately 200 nm to 400 nm. UV emitters are commonly used for curing resins, sterilizing or killing bacteria, counterfeit detection, and other specialized applications. Visible emitters produce light that is within the range of wavelengths visible to the human eye. This range typically spans from around 400 nm to 700-800 nm. Visible emitters can emit light in various colors, such as red, green, blue, yellow, and white. They are widely used in lighting applications, displays, signage, automotive lighting, and many other industries. LED emitters can be categorized and sorted based on several parameters. These include the emitter type (IR, UV, or visible), forward current (the current required for optimal operation), wavelength (for visible emitters), viewing angle (the angle at which the emitted light is visible), forward voltage (the voltage required for operation), and operating temperature range. By considering these parameters, designers and engineers can select LED emitters that best suit their specific requirements for a given application. Whether it's for sensing, curing, illumination, or any other purpose, LED emitters offer a versatile and efficient solution for generating light in a wide range of wavelengths and applications.