Photodiode
Photodiode
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Top Photodiode Suppliers

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189 companies for Photodiode

Opto Diode's Logo

Camarillo, United States

Opto Diode designs and manufactures high quality standard and custom sensors and emitters covering short wavelengths, X-rays, EUV, UV, visible, near IR, to mid IR wavelengths. Products include three lead selenide (PbSe) detectors (cooled and uncooled) and four pulsable and/or steady-state infrared emitters. The company’s strategic partnership with DigiKey allows for the purchase of in-stock Opto Diode products for immediate shipment. All Products Photodiodes IR Detectors LEDs IR Emitters and Controllers Optoelectronic Subsystems and Modules.

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Core business
Image for Leader in infrared detectors, photodiodes, LEDs, emitters, optoelectronic subsystems and modules.

Leader in infrared detectors, photodiodes, LEDs, emitters, optoelectronic subsystems and modules.

... Leader in infrared detectors, photodiodes, LEDs, emitters, optoelectronic subsystems and modules. ...

sglux SolGel Technologies GmbH's Logo

Berlin, Germany

11-50 Employees

2003

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Product
Image for SG01S-C18-LED | SiC UV Photodiodes, UVC | sglux

SG01S-C18-LED | SiC UV Photodiodes, UVC | sglux

... UVC photodiode for 275 nm UVC LED measurement 0.06 mm2 detector area TO18 hermetically sealed metal housing, 1 isolated pin and 1 case pin 10 mW/cm2 irradiation at 285 nm (peak responsivity) results a current of approx. 960 nA SiC chip with PTB reported high radiation ...

Datasheet Archive's Logo

London, United Kingdom

1-10 Employees

The Datasheet Archive is the world's largest free resource of electronic component datasheets and application notes.

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Core business
Image for PHOTODIODE AVALANCHE PHOTODIODE/ Search Results

PHOTODIODE AVALANCHE PHOTODIODE/ Search Results

... Datasheet Archive: PHOTODIODE AVALANCHE PHOTODIODE/ ...

Optoi Srl's Logo

Italy

11-50 Employees

1995

Optoi firmly believed in a business model based on supporting the customer in industrial and process problem-solving. For ten years now, Optoi has been pursuing a path of technological innovation to become a reference point for the production of optoelectronic components in the European aerospace context; our collaborations with the leading space agencies are numerous. Optoi biomedical division designs optical devices for diagnostic and therapeutic applications by combining electronics, material science, information technology, and nanotechnology. Optoi will exhibit the latest optoelectronics technology, customized Detectors and LEDs, in Munich at Hall A2 Stand 340! Among them we are pleased to announce the presence of OPTOI, which has been selected among the very few Italian entities as an associate partner. This choice is the basis of the agility and skill with which our companies know how to present themselves to the industrial partner for basic silicon processing right up to the most sophisticated and technologically advanced sensor requirements.Today, Optoi enjoys an “electronic” and a “microelectronic” soul that complements each other. A competitive design and manufacturing company that employs more than 30 people, with a solid focus on research. The state-of-the-art cleanroom for silicon processing, guaranteeing high-quality, is located on our premises.

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Product
Image for Photodiodes

Photodiodes

... Photodiode arrays are used in rotary and linear encoders, optical barriers, presence sensors and optical and X-ray sorting machines. The photodiode… ...

Hamamatsu Photonics's Logo

Hamamatsu, Japan

1001-5000 Employees

1948

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Product
Image for Si PIN photodiode S15193 | Hamamatsu Photonics

Si PIN photodiode S15193 | Hamamatsu Photonics

... The S15193 is a Si PIN photodiode with sensitivities in the visible to near infrared range and is compatible with lead-free solder reflow. The S13773 features high-speed response while the S15193 features improved near infrared sensitivity. They are suitable for distance measurement laser ...

Laser Components UK's Logo

Chelmsford, United Kingdom

1-10 Employees

1993

The cultural model of a company is the basis for its innovative ability. Our work atmosphere is one that encourages creativity but also demands high quality products and service. All employees play an active role in the continuous optimization of products and processes. We have made it our business to constantly research and develop new and innovative components produced not only in-house, but also as a distributor of products offered by well-known international manufacturers. LASER COMPONENTS USA, Inc. (LCUSA) established a presence in the US in the year 2000 through the acquisition of the former Laser Analytics, Inc., producer of lead salt lasers and Tunable Diode Laser (TDL) spectroscopic instrumentation which had been in operation since 1974.

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Product
Image for InGaAs PIN Photodiodes

InGaAs PIN Photodiodes

... InGaAs and Extended InGaAs Photodiodes by Laser ...

Sensors Unlimited's Logo

Princeton, United States

101-250 Employees

1991

Originally founded in 1991 as an advanced research and development company, Sensors Unlimited, Inc. Now as a Collins Aerospace company, the team operates in an ISO 9001:2015 certified fabrication facility occupying over 97,000 square feet and that includes a III-V foundry with Class 100 clean rooms and state-of-the art processes such as our MOCVD epitaxial growth and detector formation. Products built on our proprietary InGaAs platform are SWIR cameras, 1- and 2- dimensional focal plane arrays (FPAs), extended wavelength response InGaAs image sensors, plus Collins Aerospace has the resources to custom design structures and devices for a variety of customer requirements. Over the years, Sensors Unlimited has become the world’s leading manufacturer of indium gallium arsenide (InGaAs) photodiodes, arrays, and cameras for near-infrared (NIR) and shortwave infrared (SWIR) imaging applications. Sensors Unlimited is part of the Trusted Foundry Program, and is accredited for Trusted Activites. Sensors Unlimited offers a complete line of products for image sensing in the short wave infrared (SWIR) portion of the light spectrum, producing arrays and cameras that enable users to "see beyond” what the naked eye can detect.

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Product
Image for Linear Photodiode Arrays

Linear Photodiode Arrays

... Linear Photodiode Arrays: Focal Plane Arrays | Sensors ...

ElFys's Logo

Espoo, Finland

1-10 Employees

2017

Our products follow high standards of performance and quality for different industries. ElFys provides photodetectors and related services for various light detection applications. We provide tailored photodetector solutions based on our advanced technology for the customer’s applications. About 40 % of ElFys staff are women, and we speak 7 languages at native level. ElFys is receiving great feedback from customers on our high-performance photodiodes! We got to know ElFys back in 2019, and since then, we have worked to apply their unique black silicon photodetector technology into our new developments, such as the new release of our High-Performance Redstone® OSA302 Spectrum Analyzer. ElFys’ photodetector is an excellent choice for spectroscopy instruments at short wavelengths.Our new spectrum analyzer incorporates unique black silicon photodetector technology from ElFys, delivering superior photosensitivity across a wide spectrum from the UV to NIR. With ElFys’ innovation, Thorlabs’ new instrument boasts an extended wavelength range, low noise, high resolution, and sensitivity – qualities essential for demanding applications in various fields.

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Core business
Image for ElFys – Ultraviolet sensitive photodiodes

ElFys – Ultraviolet sensitive photodiodes

... ElFys – Ultraviolet sensitive photodiodes ...

Becker & Hickl GmbH's Logo

Berlin, Germany

11-50 Employees

1993

Founded in 1993, Becker & Hickl have introduced a proprietary time-correlated single-photon counting principle that made TCSPC more than 100 times faster than the existing devices. The bh TCSPC products are complemented by bh picosecond diode lasers, detector modules, multi-spectral detector assemblies, and experiment control modules.

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Featured

Product
Image for PHD-400 Photodiode Module

PHD-400 Photodiode Module

... Photodiode module for synchronisation of TCSPC systems with pulsed lasers. ...

Optilab, Inc.'s Logo

Gettysburg, United States

1-10 Employees

2001

Optilab offers the most unique and innovative photonics and fiber optic products on the market today. Optilab collaborates and partners with many customers to create customizable products specific to the customer’s wants and needs. We provides the in-stock availability and price for each product, as well as important product information, data sheets, test data, and more. Optilab delivers its state-of-the-art products to customers all over the world. We always apply the most updated technologies and scientific systems to revolutionize our products with exceptional performance and top of the line quality. You can always count on Optilab to provide you with the most advanced and trustworthy devices available. These inventive products go through a series of complex processes to ensure top of the line development. As a leader in fiber optic and photonics solutions, Optilab owns and operates the largest online source for lasers, photodiodes, fiber optics, EDFAs, test instruments, photonics devices, and more.

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Featured

Product
Image for 23 GHz Photodiode, Module
– optilab

23 GHz Photodiode, Module – optilab

... module designed for RF over Fiber, antenna remoting, and broadband RF transmission applications using single mode optical. The PD-23-M can accept input power of up to 35 mW. The PD-23-M utilizes a high input power, low distortion PIN photodiode that provides optical to RF ...


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Facts about those Photodiode Results

Some interesting numbers and facts about the results you have just received for Photodiode

Country with most fitting companiesUnited States
Amount of fitting manufacturers162
Amount of suitable service providers81
Average amount of employees11-50
Oldest suiting company1948
Youngest suiting company2017

Geographic distribution of results





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Things to know about Photodiode

What is Photodiode?

A photodiode is a specialized semiconductor device that operates by converting light into an electrical current. The fundamental principle behind its operation is the photoelectric effect, where photons - the basic units of light - strike the diode's surface, exciting electrons and thus creating electron-hole pairs. When these pairs are separated by the diode's internal electric field, an electrical current is generated, flowing through the device. This characteristic allows photodiodes to be used as light sensors, translating varying light intensities into corresponding electrical signals. Their sensitivity to light, combined with the ability to rapidly respond to changes in light intensity, makes photodiodes invaluable across a range of applications. They are extensively utilized in consumer electronics, medical devices, and telecommunications, serving roles from simple light detection in automatic lighting systems to complex data transmission in fiber optic networks. The precision and reliability of photodiodes have also enabled their use in scientific instrumentation, where they play a crucial role in photometry and spectroscopy, measuring light intensity and analyzing material properties, respectively. As technology advances, the importance of photodiodes in enhancing the accuracy and efficiency of optical systems continues to grow, highlighting their significant impact in both practical and innovative technological solutions.


Advantages of Photodiode

1. High Sensitivity
Photodiodes are renowned for their exceptional sensitivity to light. This characteristic allows them to detect even minimal levels of light, making them superior for applications requiring precise light detection and measurement, such as in medical devices and optical communication systems.

2. Fast Response Time
The response time of photodiodes is remarkably fast, enabling them to convert light into an electrical signal in a fraction of a second. This rapid response is beneficial in high-speed applications, including fiber optic communication and barcode scanners, where quick signal processing is essential.

3. Low Power Consumption
Photodiodes operate efficiently with very low power consumption. This efficiency is particularly advantageous in portable or battery-operated devices, where extending the battery life is crucial. It also makes photodiodes an environmentally friendly option for various electronic applications.

4. Wide Spectral Response
Photodiodes offer a broad spectral response, capable of detecting a wide range of light wavelengths. This versatility enables their use in diverse fields, from solar energy panels capturing sunlight to sensors in astronomical instruments measuring different light wavelengths.


How to select right Photodiode supplier?

While evaluating the different suppliers make sure to check the following criteria:

1. Product Quality and Reliability
Ensure the photodiodes meet industry standards for quality and reliability. Verify certifications and conduct performance testing under various conditions.

2. Technological Compatibility
Check if the photodiodes are compatible with your existing systems and technology. Consider parameters like wavelength sensitivity, response time, and reverse voltage.

3. Customization Capabilities
Determine if the supplier can provide customized solutions to meet specific requirements. This could include custom packaging, spectral responses, or form factors.

4. Supply Chain Efficiency
Evaluate the supplier’s ability to deliver products in a timely manner. Consider their manufacturing capabilities, stock levels, and logistics support.

5. Cost-effectiveness
Compare pricing among suppliers, but ensure that cost savings do not compromise quality. Consider long-term reliability and maintenance costs.

6. Technical Support and Service
Assess the supplier’s technical support and customer service. Reliable after-sales support is crucial for addressing future issues or technical inquiries.


What are common B2B Use-Cases for Photodiode?

Photodiodes find extensive application in the telecommunications industry, where they serve as critical components for fiber optic communication systems. Their ability to convert light signals into electrical signals enables the high-speed transmission of data over long distances with minimal loss, making them indispensable for maintaining the backbone of global internet and communication networks. In the healthcare sector, photodiodes play a pivotal role in medical imaging devices, such as digital X-ray sensors and computed tomography (CT) scanners. Their high sensitivity to light allows for the capture of detailed images with lower doses of radiation, enhancing patient safety and the accuracy of diagnostic procedures. Another significant use case for photodiodes is in the safety and security industry, where they are utilized in smoke detectors and fire alarms. The photodiodes detect light changes caused by smoke, triggering alarms that can save lives and prevent damage by alerting to fires in their early stages. Moreover, photodiodes are crucial in the automotive industry, particularly in advanced driver-assistance systems (ADAS). They are used in LiDAR sensors to help vehicles detect obstacles, measure distances, and support autonomous driving functions, contributing to improved road safety and the advancement of self-driving technology. Each of these use cases underscores the versatility and importance of photodiodes across various B2B sectors, highlighting their role in advancing technology and improving safety and efficiency in our daily lives.


Current Technology Readiness Level (TLR) of Photodiode

Photodiodes, as semiconductor devices that convert light into an electrical current, have achieved a Technology Readiness Level (TRL) of 9, indicating they are fully mature and extensively deployed in various applications. This high TRL reflects their widespread integration across diverse sectors, including telecommunications, medical devices, and consumer electronics, underscoring their reliability and the depth of understanding regarding their operation and limitations. The technical reasons for this maturity stem from decades of research and development, leading to significant enhancements in efficiency, sensitivity, and response times. Advances in semiconductor technology have allowed for the optimization of photodiodes' physical properties, enabling tailored designs for specific wavelengths and applications. Moreover, the evolution of fabrication techniques has significantly reduced costs while improving the quality and scalability of photodiode production. The robustness of photodiodes under different environmental conditions further contributes to their high TRL, ensuring their performance remains consistent across a broad range of temperatures and radiation levels. Consequently, the technical advancements and proven reliability of photodiodes affirm their status as a cornerstone technology in the conversion of light to electrical signals, facilitating their ubiquitous presence in modern electronic systems.


What is the Technology Forecast of Photodiode?

In the Short-Term, advancements in photodiode technology are expected to focus on improving sensitivity and speed. Developers are leveraging materials like graphene to enhance the photodiode's ability to detect low levels of light swiftly. This development is crucial for applications in fiber optic communication and medical imaging, where rapid and accurate detection of light signals is essential. Looking into the Mid-Term, the integration of photodiodes with other semiconductor technologies will be a key area of progress. By combining photodiodes with CMOS (Complementary Metal-Oxide-Semiconductor) technology, it's anticipated that we will see a significant boost in the efficiency and miniaturization of devices. This hybrid approach will enable the creation of more compact and energy-efficient sensors, opening up new possibilities for wearable technology and Internet of Things (IoT) devices. In the Long-Term, the focus will shift towards the development of quantum photodiodes. These devices will be capable of detecting single photons, offering unprecedented sensitivity and precision. Quantum photodiodes will revolutionize fields such as quantum computing and secure communications, where the ability to detect and manipulate individual photons can lead to breakthroughs in processing speeds and encryption methods. This phase represents a significant leap forward in the capabilities of photodiode technology, potentially transforming a wide array of industries.


Frequently asked questions (FAQ) about Photodiode Suppliers

Some interesting questions that has been asked about the results you have just received for Photodiode

Based on our calculations related technologies to Photodiode are Magnets, Printed Electronics, Industrial Amplifiers, Electronic Transducers, Electronic Oscillators

The most represented industries which are working in Photodiode are Manufacturing, Hardware, Consumer Electronics, Science and Engineering, Commerce and Shopping

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