Teledyne Princeton Instruments
Teledyne Princeton Instruments (TPI), a business unit of Teledyne Digital Imaging US, Inc, designs and manufactures high-performance CCD, sCMOS, ICCD, EMCCD, emICCD, and InGaAs cameras; spectrographs; and optics-based solutions for the scientific research, industrial imaging, and OEM communities. We take pride in partnering with our customers to solve their most challenging problems in unique, innovative ways. Teledyne Princeton Instruments has two U.S. manufacturing facilities, one located in New Jersey (Trenton) and one in Massachusetts (Acton). Our worldwide sales and service organizations in Germany, France, the United Kingdom, Japan, and China provide sales support and discuss application requirements in addition to being your local contacts for order processing and service.
- 1-800-899-1144
1 609 587 9797 - 1 609 587 1970
- moreinfo@piacton.com
- 3660 Quakerbridge Road
Trenton, NJ 08619
United States
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Fully In-Vacuum, Direct Detection X-Ray Cameras
PI-MTE3
Teledyne Princeton Instruments
Large format, fully in-vacuum CCD cameras, offering flexible detector orientation and proximity to sample through sensor and camera design. With back-illumination technology, the PI-MTE3 delivers >95% peak quantum efficiency over the ~10 eV to 30 keV energy range. Efficient liquid cooling offers low dark current, facilitating long exposure times, with the four-port readout architecture offering 7-10x higher frame rates than previous generation two-port cameras.
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Extremely Low Noise Liquid Nitrogen Cooled Cameras
PyLoN® IR
Teledyne Princeton Instruments
The PyLoN® IR offers high-performance NIR/SWIR spectroscopy with a cryogenically cooled InGaAs detector with fast spectral rate and lowest system read noise.
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SWIR Camera with 85% QE, Low Noise, and over 10 Minute Exposure Times
NIRvana® 640
Teledyne Princeton Instruments
The NIRvana® 640 offers incredible sensitivity with greater than >85% Quantum Efficiency between 950 nm and 1500 nm, ensuring you collect every photon you can.The biggest barrier to low light SWIR imaging is dark current. The NIRvana® 640 offers incredible low dark current – only 40e-/p/s, enabling longer exposures for faint samples.
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Driver for Controlling Teledyne Princeton Instruments Cameras
PICAM Driver
Teledyne Princeton Instruments
PICam is the driver for controlling all Teledyne Princeton Instruments cameras and is the platform on which LightField software is built. Teledyne Princeton Instruments also offers the PICam API, which can be used to directly automate any Teledyne Princeton Instruments cameras using the C run-time. This, alongside the PICam SDK, provides efficient and direct control of all cameras. It is available for 64-bit Windows and Linux systems (see Hardware Requirements for details).
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High-Speed Cameras for Spectroscopy
BLAZE®
Teledyne Princeton Instruments
The BLAZE® is the ideal camera for low-light spectroscopy detection, delivering extremely high sensitivity over the visible and NIR range. With low dark current and fast speed, the BLAZE offers a QE above 90% at 450 nm, 98% at 900 nm and 75% at 1000 nm
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InGaAs Focal Plane Array (FPA) SWIR Camera
NIRvana® HS
Teledyne Princeton Instruments
The NIRvana® HS InGaAs focal plane array (FPA) SWIR camera is your versatile scientific imaging solution, delivering both high speed imaging and up to 60+ second exposure times.
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Imaging Spectrometers
IsoPlane®
Teledyne Princeton Instruments
The IsoPlane® is the best imaging spectrometer in its class. With a unique optical design, it completely eliminates astigmatism across the focal plane for superior multichannel capabilities. With fast optics and specialized mirror coatings it ensures maximum throughput and signal-to-noise performance.
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Large-Format, Low-Noise Astronomy Camera
COSMOS™
Teledyne Princeton Instruments
The COSMOS™ is the only large format, high performance CMOS camera designed and manufactured entirely within a single source. With LACera™ technology, the COSMOS offers superior sensitivity, large imaging area, low noise and fast frame rate.
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High-Resolution, Back-Illuminated EMCCD with eXcelon™3 Sensor Technology
ProEM®
Teledyne Princeton Instruments
The ProEM® is a high-resolution, back-illuminated EMCCD with exclusive eXcelon™3 sensor technology providing high sensitivity within the UV-NIR range while reducing etaloning. With spectral rates of up to 20 kHz and single-photon sensitivity, the ProEM is ideal for low-light-level applications such as hyperspectral Raman imaging and single-molecule fluorescence.
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High Performance Imaging Spectrographs
SpectraPro® HRS
Teledyne Princeton Instruments
The SpectraPro® HRS ensures high spectral resolution, as well as an astigmatism-corrected design for multichannel fiber applications. With dual exit ports the SpectraPro HRS can be used as two array detectors or as both a monochromator and spectrograph.
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Highly Sensitive, Thermoelectrically Cooled Cameras Utilize Back-Illuminated CCDs Without Antireflective Coating for Direct Detection of X-Rays
PIXIS-XO
Teledyne Princeton Instruments
PIXIS-XO highly sensitive, thermoelectrically cooled cameras utilize various back-illuminated CCDs without antireflective coating for direct detection of x-rays. A rotatable ConFlat flange with a high-vacuum-seal design make these cameras well suited for UHV applications.
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Back-Illuminated Scientific CMOS Camera
KURO®
Teledyne Princeton Instruments
The KURO® is the first back-illuminated scientific CMOS camera. With high sensitivity and fast frame rates the KURO is optimal for applications such as hyperspectral imaging, astronomy, cold-atom imaging, quantum imaging, fluorescence spectroscopy, and high-speed spectroscopy
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Ultra-Low-Noise CCD Cameras
SOPHIA®
Teledyne Princeton Instruments
The SOPHIA provides multiple readout modes, with complete triggering support and independently optimized clocking for each combination, even ultrafast events can be captured.The SOPHIA also contains a field-replaceable internal mechanical shutter for enhanced flexibility.
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Spectrometer Cubes
Teledyne Princeton Instruments
The spectrometer cubes allow the flexibility to perform various techniques such as Raman, absorption, and transmission. Cubes are compatible with all spectrometers and are available for: focusing incoming light; beam splitting; housing sample; filtering for Raman light; generic filtering for order-sorting or band-limiting.