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This saves countertop space and provides an easy and ergonomic operation, directly on the microscope. The VisiLED illuminators include a control box and offer a ...
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LASER COMPONENTS Detector Group has wafer fabrication capabilities, such as epitaxial growth, high temperature diffusion, plasma etching, photolithography, and plasma deposition. During the design process LASER COMPONENTS’ product experts will help determine the best options to offer during the component selection process. Offering transistor outline (TO), surface mount device (SMD), dual flat no leads (DFN), dual inline (DIL), and leadless chip carrier (LCC) packages, and change the optical window to various other options, the final product manufactured can be personalized for each customer.
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LASER COMPONENTS has a large portfolio of Si APD products, that are customized to support high Quantum Efficiencies (QE) at wavelengths of 250 nm, 405 nm, 670 nm, 700 nm, 905 nm, 1050 nm, and 1064 nm (the SAT series is typical for YAG applications). These ultra-sensitive detectors can capture even the smallest amounts of light, ideal for single photon counting (SAP series and Count Modules). Si APDs are typically offered with active area diameters ranging from 230 µm to 3000 µm.
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Like photomultipliers, avalanche photodiodes (APDs) are used to detect extremely weak light intensities. Silicon (Si) APDs are used in the wavelength range from UV to NIR (250 nm to 1100 nm), and indium gallium arsenide (InGaAs) is used as semiconductor material in APDs for the NIR wavelength range from 1100 nm to 1700 nm.
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All Si & InGaAs APD wafers are produced in a Class 100 clean room. Packaging is done within a Class 10,000 clean room. For customers in the automotive industry, many components have been developed to meet the AEC-Q102 qualification. Additionally, products are developed with MIL-STD for high-reliability defense and aerospace applications.
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LASER COMPONENTS can be your one stop for all your emitter and detector products as a manufacturer of both pulsed laser diodes (PLDs) and photodiodes. PLDs are offered with custom band-pass filters to match the needs of different industries.
Depending on the material of a detector the range and reliability can drastically differ for various applications. Read the LASER COMPONENTS APD Selection Guide to understand where Si and InGaAs APDs each fit.
Through close collaboration during new product development, the engineering experts at LASER COMPONENTS Detector Group, can ensure customers receive an effective solution for their application. Customers can rely on quick response times with support from the beginning of the engineering consultation, to quoting process, manufacturing of components, testing samples, and well after development.
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All APDs developed by LASER COMPONENTS are manufactured at the production facility in Arizona. To meet the needs of each customer, components can be offered with modifications and customizations. Even before a purchase order is placed, product experts can offer guidance in the decision-making process.
For the infrared (IR) range, LASER COMPONENTS offers two variants of InGaAs APDs with the active area diameters ranging from 80 um to 500 um. These APDs are ideal for applications that require industrial durability, low capacitance, low dark current, high dynamic operational range and detectivity across a spectral range of 800 nm to 1700 nm. They have a high quantum efficiency at 1310 nm, 1480 nm, 1550 nm. and 1625 nm that allow these avalanche photodiodes to operate with low noise even at higher gains and high bandwidth without neglecting lower wavelengths. These detectors demonstrate high signal-to-noise ratio (SNR) even when operating at gain 30.
Featuring a large frequency bandwidth and support for many wavelengths, APD Receivers operate in 400 nm to 1100 nm and 1000 nm to 1650 nm for Silicon and InGaAs APDs respectively. LASER COMPONENTS offers the H1-Series for low noise with a built-in temperature sensor supporting bandwidths up to 30 MHz. The H2-H5-Series work for even faster applications, with bandwidth up to 700 MHz.
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Fast and reliable detection of light. In APD modules the driver for operating the avalanche photodiodes is already included.