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ASI photon counting hybrid pixel X-ray detector

NegotiableUpdate on 05/10
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Overview
The LynX series detectors produced by ASI are mixed pixel area detectors with a pixel spacing of 55 μ m and a wide range of applications. The ability of LynX detectors to distinguish or measure X-ray energy in each 512 × 512 pixel (262K pixel) provides unprecedented possibilities for applications such as X-ray detection, imaging, and tomography. The LynX sensor (made of silicon, gallium arsenide, cadmium telluride) is designed as a pixel array and connected to the readout circuit of the chip integrated underneath the sensor through bump bonds, converting the sensor signal into an electrical signal. Each pixel can be used for measuring the object under test, counting photon energy, or calculating the time it takes to detect a quantum.
Product Details

LynX series hybrid pixel X-ray detector

ASIProduced by the companyLynXThe series of detectors are mixed pixel area detectors,55μmPixel spacing, with a wide range of applications. In every512×512pixel(262KPixel point)In the middle,LynXDetector identification or measurementXThe ability of radiation energy, forXApplications such as X-ray detection, imaging, and tomography provide unprecedented possibilities.LynXSensors (silicon, gallium arsenide, cadmium telluride) are designed as a pixel array and bonded through bump bonding(bump-bondsball)Connect to the readout circuit integrated under the sensor to convert the sensor signal into an electrical signal. Each pixel can be used for measuring the object under test, counting photon energy, or calculating the time it takes to detect a quantum.

LynX 120It is based onTimepix ASICA multifunctional photon counting detector with a dedicated chip. Each pixel either counts the detected events, measures the energy value deposited in the pixel, or measures the arrival time of the detected photons. Read speed up to120frame/In seconds.

LynX 1800be based onMedipix3RX ASICThe speed has been improved. In continuous readout mode, it can record up to1800frame/A signal of seconds with zero dead time. In charge accumulation mode, spectral performance can be improved, avoiding energy loss caused by charge distribution between pixels.

In addition, it can also be provided based onMedipix3RXBut with each110μMArrangement of convex blocksLynX 1800sIn charge accumulation mode, it has4An energy threshold that allows counting different energy windows in a single measurementXRay.

LynX T3 is based onTimepixA high-speed detector with nanosecond photon timestamps for 3, with a time resolution of up to 1.6 nanoseconds.

Characteristics of Mixed Pixel Technology

Direct, single photon detection

Superior point spread function

Zero noise, high signal-to-noise ratio, and wide dynamic range

Short read time and high frame scanning rate

Modular detector with larger active area

High can be selectedZSensor materials to improve high energy efficiency

Main applications

Phase contrast imaging(ptychographyGrating interference)

scanningSAXS / WAXSImaging, small angleXRay scattering

Surface diffraction

Time-resolved experiment

XRadiation and Medical Imaging

Macromolecular crystallography

Tomographic photography

Energy resolutionXradial

Computerized tomography (CT) scan

Rapid production lineXX-ray inspection

electron microscope

Mass spectrometer

Sensor indicators

Sensor:300μmSi(Standard)

500μmGaAs

1000μmCdTe

Model and configuration

(***)There are multiple pixel sizes to choose from

NetherlandsASI products also includeTPX3CamIt... itIt is a fast optical camera used for photon timestampIt is based on a new type of silicon pixel sensor and combines it withTimepix3 ASIC and readout chip technology, suitable for various applications requiring time-resolved imaging such as electronics, ions, or single photons; can refer toTPX3Cam is used as a fast optical detector for nanosecond photon timestamps.ASIProduced byChee-tahSeries productsIt is a hybrid pixel detector suitable for electron microscopy applications(TEM ED Detector Camera)Chee tah's exceptional sensitivity and speed provide unprecedented possibilities for obtaining electron diffraction, imaging, and tomography scansCommonly used in diffraction experimentsThe high-speed characteristics of Chee tah make it an ideal tool for observing dynamic processes and capturing rapidly decaying signals, can refer toChee-tahseriesThe Hybrid Pixel Detector.