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Brimrose is the premier manufacturer of Electro-Optic devices, components, and modules for the photonics community. Its products include high quality acousto-optic components and modules for research, other manufacture industries, as well as the fiber network components and modules required globally by telecommunications original equipment manufacturers (OEM); and AOTF tunable light sources for microscopy applications. Our products also comprise AOTF hyperspectral imagers for imaging, spectroscopy, ecophysiological, and agricultural applications; near infra red (NIR)-MIR spectrometers and AOTF-NIR process analyzers for applications in various industries; and photoelectromotive-force laser vibrometers.

As a customer-driven manufacturer of leading-edge technology, Brimrose creates needed solutions for specific applications. With NASA/JPL Spaceflight, FDA, and GMP certified production and software facilities, as well as an experienced engineering staff, Brimrose has the capability to custom-design products that meet the most demanding technical requirements.
Brimrose Products
Acousto-Optics Components
Brimrose offers a broad product line of several high quality acousto-optic components and modules for research and other manufacture industries. The AO components include Acousto-Optic Tunable Filters (AOTFs), Acousto-Optic modulators, frequency shifters, mode lockers, deflectors, cavity dumpers, Q-switches, and fiber optically pigtailed devices.
AOTF Tunable Light Sources
AOTF Tunable Light Source is developed by Brimrose which consists of white light source (Brimrose or customer provided), AOTF device, beam forming optics and AOTF driver. It is designed for time-resolvable microscopy applications if the customer would like to switch wavelengths within 20µs or pump multifrequency RF power to the AOTF to get multi-lines simultaneously. The AOTF driver is computer controlled using a Windows based software.
AOTF Hyperspectral Imagers
Brimrose AOTF video adapters can be used for both biomedical and semiconductor applications. Specially designed visible, NIR, and MIR spectral imaging systems have been utilized for environmental monitoring and remote sensing. We also designed the first Brimrose SWIR f22.5 mm Lens for 0.8~1.7 mm wavelength range. It is the best performance with Brimrose VA210-0.9-1.7 video adapter, IS210-0.9-1.7 or IS510-0.9-1.7 hyperspectral imager.
Fiber-Optics Devices
Brimrose is a leader in the design, packaging and manufacturing of high quality active and passive components and modules for fiber optic networks. We are focused on delivering high-performance and reliable optical components for applications such as optical switches, programmable attenuators, modulators, frequency shifters, AO modulators system for recirculating loop system, dynamic tunable filters, dynamic adpative bandpass filters, fiber collimators and focusers.
AOTF NIR Process Spectrometers
Brimrose AOTF-NIR Spectrometers are excellent tools for the measurement of properties in a number of industries. The AOTF technology enables the Brimrose spectrometers to scan very fast and without using moving parts. This makes it the ideal tool for real-time, on-line industrial process control. Analyzers can be placed at numerous points in the process and calibrations can be transferred from the laboratory to the industrial process.These analyzers meet all requirements and standards for on-line applications in and are built to work reliably even in long term harsh production environments.
Laser Vibrometers
Brimrose demonstrated experimentally significant improvement in the sensitivity of photoelectromotive-force (photo-EMF) laser vibrometers. The vibrating surface is discretely sampled by individual laser pulses and recorded by the photo-EMF sensor via the generation of photocurrent pulses whose magnitudes are proportional to the instantaneous surface displacements. The VMS 2000/3000 laser vibrometer based on Photo-EMF technology that allows the characterization and monitoring of vibration without the need of target surface treatment or surface preparation.