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Quantum Sensors
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Apogee offers two types of quantum sensors. The Full-spectrum Quantum Sensors feature an improved detector that provides accurate measurements under all light sources, including LEDs, right out of the box. The Original Quantum Sensor is less expensive and great for measuring all light sources except certain LED colors, where post-measurement correction factors need to be applied to achieve accurate readings.
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Quantum Accelerometer
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A quantum accelerometer uses atom interferometry to measure accelerations along a horizontal axis. Quantum accelerometers are able to achieve a combination of sensitivity and stability by exploiting quantum interference. As such, they will be critical components of a quantum inertial navigation unit, which will offer satellite-free navigation with unparalleled long-term accuracy. A phase locked SolsTiS system underpins this setup and provides the extremely low phase noise required to make high sensitivity measurements and dynamic frequency tunability to address multiple atomic transitions.
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Quantum & Metrology Instruments
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Beyond quantum sensors, Exail’s photonics solutions enable real applications in other quantum technology fields. They also enable precise control and transmission of the frequency, phase and amplitude of a laser light through fibered telecommunication links, for metrology applications. The true and deep understanding of Exail teams for the fundamental physics behind its technology explains the absolute quality of its time & frequency reference products.
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Quantum Hall Resistance System
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Measurements International Ltd.
Quantum Hall System, System Accuracy to < 0.003 ppm with CCC Model 6200A, System Accuracy to < 0.015 ppm with DCC Model 6020Q, 5 Tesla Standard System Magnet, Stable Controlled Sample Environment, Base Temperature < 3.6 K, Low Operating Costs, Direct Transfer to 100 Ω, 1 kΩ, 10 kΩ, and 100 Ω Standards, System Range 0.1 Ω to 100 kΩ, Graphene Device Values 1 kΩ, 10 kΩ, 12.9064037 kΩ and 100 kΩ, Triple Sample Device Mounting.
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Quantum Photonics
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designed for the development of Quantum Light Source (QLS) related applications. Contact Optilab for more information.
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Quantum Efficiency Measurement Systems
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Newest generation of quantum efficiency (yield) measurement tool, which allows the user to determine QE of powders, liquids, solids and films. An optically optimized geometry using an integration hemisphere and low stray light array spectrometer enables world class measurements and new applications.
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PAR Quantum Radiometric Probe
LP471PAR
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Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400nm…700 nm), μmol m-²s-¹ measure, cosine correction diffuser.
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Quantum-Safe Security
CN8000 Series
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The CN8000 harnesses the power of quantum mechanics to help ensure secure communications – the encryption keys are generated by IDQ’s Quantum Random Number Generator to guarantee inherent and provable randomness. The CN8000 can also be upgraded to be quantum-safe via the Cerberis QKD Blade (quantum cryptography) to ensure long-term protection of the data in transit.
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IndiRAM CTR With Quantum Characterizer
Spectrometer
The IndiRAM CTR Raman/PL system with Quantum Emitter Microscope is a multi-purpose system capable of performing Quantum Emitter Characterization, Raman, Photoluminescence as well as Optical Emission Spectroscopy. The system consists of a Pulse Laser along with a single photon counting module (SPCM), a Pulse Synchronization unit, Motorized Scanning stage and a research grade microscope (Upright or Inverted) for TCSPC measurements. Along with these, it also contains a High throughput Spectrometer with a TE Cooled CCD and an optics box assembly to perform Raman/PL and OES Spectroscopy and Microscopy. obtained after the multiple set of experiments gives the lifetime function.
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Widely Tunable Mid-Infrared Quantum Cascade Laser
LaserTune™
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Block Engineering's next generation LaserTune represents a significant leap forward in offering the ultimate mid-IR, pulsed Quantum Cascade Laser (QCL) source to meet the ever challenging requirements of the research community. The fully integrated "single box" concept has been taken to new extremes with a significant reduction in footprint size, saving considerable laboratory bench space. This single box also offers the widest gap-free tuning range available on the market of 5.4 - 12.8 microns. No external power supply or control peripherals are required.
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Front Side Illuminated Sensor with Pixel Size of 5.3µm with NIR Spectrum Sensitivity
Ruby Family
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The EV76C660 and EV76C661 are members of Teledyne e2v’s Ruby family of CMOS imaging sensors. These breakthrough devices provide sensitivity and performance beyond that considered possible on a front side illuminated sensor with a pixel size of 5.3µm, Quantum Efficiency (QE) of over 80% and excellent sensitivity and performance in the near-infrared (NIR) spectrum (>50% at 850nm). This significantly reduces system illumination costs, or enables very low-light imaging in outdoor camera applications.
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Random Number Generation
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Quantis is a family of hardware random number generators (RNG) which exploit elementary quantum optical processes as a source of true randomness (cf. Wikipedia: physical phenomena with quantum random properties). Photons (light particles) are sent, one by one, onto a semi-transparent mirror and detected. The exclusive events (reflection or transmission) are associated to “0” or “1” bit values. Such quantum processes provide instantaneous and inexhaustible entropy.
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Peltier cooled CCD camera
Bigeye Series
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The Bigeye G-132B Cool is a low noise CCD camera. It is distinguished by an outstandingly low dark current and an excellent quantum efficiency. The Bigeye G-132B Cool is designed to produce a superior image quality even at very long exposure times.
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Solar Cell Systems
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he Solar Cell Scan is a multifunctionalexperimental platform,which is based on the measurement of Quantum Efficiency (QE) . The system employs a turnkey integrated design, which can carry out QE, Reflectivity and Mapping testing functions automatically. There are also modular and customdesigned accessories to adapt to different solar cell samples.
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Fast Low Noise SWIR InGaAs Camera
C-RED 2
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C-RED 2 is a revolutionary ultra high speed low noise camera designed for high resolution Short Wave InfraRed imaging. Thanks to its state of the art electronics, software, and innovative mechanics, C-RED 2 is capable of unprecedented performances: up to 400 images per second with a read out noise from 10 to 30 electrons. Designed for high-end SWIR applications, smart and compact, C-RED 2 is operating from 0.9 to 1.7 μm with a very good Quantum Effi ciency over 70%, offering new opportunities for industrial or scientifi c applications.
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Scientific Solutions
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Our backside illuminated (BSI) and backthinned Charge Coupled Devices (CCDs) and front and back illuminated CMOS image sensors (CIS) are seen as the gold standard for scientific and quantum imaging in applications in spectroscopy, microscopy, in vivo, x-ray and astronomy. We understand that every imaging application is unique and requires our engineers and scientists to work closely with our customers providing highly tailored imaging solutions.
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Lasers FP/DFB-LDs For OTDR
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C is a 1 650 nm Multiple Quantum Well (MQW) structured Distributed Feed-Back (DFB) pulsed laser diode DIP module with single mode fiber and internal thermoelectric cooler. It is designed for light sources of Optical Time Domain Reflectometer (OTDR).
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Complete Testing Solutions
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System includes a lamp and monochromator for a tunable light source, which is coupled to a high sensitivity source meter with measurement software. This user-friendly system is the most powerful Spectral Response system currently on the market, but its true power is the ease of upgrading from the base PTS-1 to the more powerful PTS-2-QE (Quantum Efficiency) or PTS-3-CPM (Constant Photocurrent Method). Designed for researchers who have limited budgets but want to start work immediately, this allows the ability to do baseline studies until additional funding for the full QE or CPM system becomes available.
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Tunable, Ultrafast TI: Sapphire Laser
SPRITE XT
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Sprite XT is a flexible ultrafast, femtosecond laser source. It delivers stability, reliability and productivity and is equally at home in the lab or as part of an OEM application. Choose your output power (up to multi-Watts), pulse width (femtosecond or picosecond models), wavelength range (fixed wavelength or tunable), and pulse repetition rate (<80 MHz to multi-GHz). All Sprite models are designed for alignment-free and maintenance-free operation and can be controlled from a web browser. It’s ideal for multi-photon excitation (MPE) and FLIM, quantum optics, time resolved spectroscopy, nonlinear optics, pump-probe experiments, microscopy, amplifier seeding, and electro-optic sampling.
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Teslameter
RX - 32
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The device is designed to work as a research or service instrument characterized by a very high precision of magnetic field measurement. Thanks to the operation based on the principle of nuclear magnetic resonance ( Nuclear Magnetic Resonance - NMR ), it is a quantum device whose indications do not depend on external factors such as temperature, pressure, aging effects, etc.
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Scientific Cameras
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Thorlabs' Scientific-Grade Cameras are specifically designed for microscopy and other demanding applications. The Zelux™ CMOS cameras have small footprints and provide cost-effective solutions for general-purpose imaging applications. Kiralux® cameras have CMOS sensors with high quantum efficiency in a compact housing and are offered in monochrome, color, NIR-enhanced, and polarization-sensitive versions. Our polarization-sensitive CMOS camera is ideal for materials inspection, flaw detection, and other advanced techniques using polarization. The Quantalux® monochrome sCMOS cameras are fast frame rate imagers that combine high dynamic range with extremely low read noise for low-light applications. They are available in either a passively cooled compact housing or a hermetically sealed TE-cooled housing. We also offer scientific CCD cameras with a variety of features, including versions optimized for operation at UV, visible, or NIR wavelengths; fast-frame-rate cameras; TE-cooled or non-cooled housings; and versions with the sensor face plate removed. An intuitive software package, API and SDK for developers, and third-party software support provide options for custom system control and image acquisition.
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Gravity Measurement
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Quantum gravity measurement is emerging as a new frontier in sensing, bringing the ability to passively detect objects and voids, through difficult to penetrate materials such as soil, rock, lead and water. Gravity measurement using cold atom interferometers is set to revolutionise nearly all industries from civil to oil and gas, mining to maritime, and medical to defence.
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Scientific CCD Image Sensors
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Our front and backside illuminated (BSI) and backthinned Charge Coupled Devices (CCDs) are seen as the gold standard for scientific and quantum imaging in applications in spectroscopy, microscopy, In vivo, x-ray and astronomy. We understand that every imaging application is unique and requires our engineers and scientists to work closely with our customers providing highly tailored imaging solutions.
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Continuous Gas Analyzer
CT5800
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Emerson's Rosemount CT5800 continuous gas analyzer is the first Quantum Cascade Laser (QCL) analyzer designed for industrial process applications requiring Class I, Division 2 hazardous area certification. Built within a flameproof enclosure, the CT5800's unique cell design enables high accuracy measurement of concentrations of impurities down to low ppm levels in the gas streams, and is ideal for Hydrogen purity, Nitrogen purity and Ethylene purity applications. With up to six laser modules housed inside the same enclosure, the CT5800 analyzer can measure up to twelve components simultaneously, greatly reducing the need for multiple analyzers.
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High-Density Precision SMU (10 PA, 30 V)
PZ2131A
Source Measure Unit
The Keysight PZ2131A is a high-channel density precision source / measure unit (SMU) having 5 channels per module and saving space for a wide range of applications requiring numerous precision power supplies. The narrow-pulse function and fast Digitizer Mode allow the PZ2131A to expand the conventional static DC measurements to emerging dynamic measurements. Its seamless current measurement ranging function eliminates the time it takes to change the range and expands the dynamic range to cover multiple measurement ranges, which reduces test duration. These capabilities make the PZ2131A suitable for applications that require numerous precision power supplies, such as semiconductor reliability tests and integrated circuit (IC) tests. The Keysight PX0107A low noise filter adapter lowers its voltage source noise level, which makes the PZ2131A suitable for noise-sensitive applications such as quantum computing as well.
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Laser Diodes
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Our laser diode portfolio is broad, extending from cw laser diodes to pulsed laser diodes to high-power laser diodes. For special areas of application VCSELs and quantum cascade lasers are also included in our range of products.
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Benchtop RF Signal Generator
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The Benchtop version of the Lucid series offers up to 4 phase coherent channels in a 2U 19” benchtop box. With a 5” touch display and front panel control buttons the Benchtop platform enables users to program the instrument without the need of an external PC. For synchronized, phase coherent, multi-channel applications such as quantum physics and phased array antennas the Benchtop platform is an ideal, high performance and cost-effective solution.
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2- and 4-Mirror Floating Zone Crystal Furnaces
IR Image Furnace
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The high-performance, compact IR Image Furnace from Quantum Design offers unsurpassed performance in a convenient, stand-alone design. Rivaling much larger and more costly IR furnaces, it uses the Floating Zone (FZ) method to promote single crystal growth from a polycrystalline rod. This method has been shown to be extremely effective for a wide class of materials. Now, more easily than ever before, you have the ability to synthesize superior quality single crystal specimens in your own laboratory. This furnace is available in both 2- and 4-mirror versions.
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Cryogenic Applications
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Over the last 20 years the Celadon Engineering team has developed an expertise in cryogenic materials which has resulted in a solid reputation in the industry for producing extremely stable cryogenic on-wafer probe card as well as DUT probing solutions. These custom cryogenic probe card solutions are widely used to test Space, Military, Medical and Quantum Computing products. Celadon’s cryogenic solutions vary from standard VersaTile™ footprints which interface to positioners to innovative custom PCB based designs to allow for flexibility when testing at these very cold temperatures. Lakeshore cryogenic wire is used in standard DC solutions for high density cableout designs to support high pin count applications. During the development process, Celadon works closely with the cryogenic prober vendor to ensure the integrated solution is optimized for current and future testing needs.





























