Group: HORIBA
Catalog excerpts
ELEMENTAL ANALYSIS FLUORESCENCE GRATINGS & GRATINGS & OEM SPECTROMETERS OEM SPECTROMETERS OPTICAL COMPONENTS OPTICAL COMPONENTS PARTICLE CHARACTERIZATION RAMAN SPECTROSCOPIC ELLIPSOMETRY SPR IMAGING Open-Electrode TE-Cooled CCD Detector for UV-VIS-NIR Lowest Noise & Highest Dynamic Range in its Class Research Grade OEM Spectroscopy Camera for 200 nm–1050 nm Flexible pricing structure scalable with performance and OEM volume requirements The deep cooled Open Electrode 1024 256 CCD Camera combines affordability, performance and versatility for both research and OEM applications. With peak UV QE at 32% and peak VIS-NIR at 58%, SyncerityTM offers a relatively flat response and addresses multiple applications. In the near-NIR, this detector is a lower cost alternative to a deep depleted CCD, with no etaloning. The dynamic range of the SyncerityTM camera is unmatched at 92.5 dB (in image mode) and the CCD’s tall format is an excellent fit for imaging spectroscopy applications. Its flexible design allows our OEM-dedicated team to quickly adapt the camera for industrial requirements, ranging from alternate CCD chips to electronics customizations. Spectroscopy Benefits for Research and OEM Unmatched Readout Noise Unmatched Readout Noise at a speed of 45 kHz Unparalleled Linearity & Dynamic Range Measured values on each camera exhibit outstanding performance: 92.5 dB typical dynamic range with <0.4% non linearity. Deep Thermoelectric Cooling (Minimum) –60°C @ +25°C ambient yields very low dark current Ultra-Compact size Ideal for use on microscopes and OEM integration Lifetime Vacuum Warranty All metal sealed technology provides a maintenance-free permanent vacuum. USB 2.0 high speed with 100% data integrity. No controller box. Ruggedized Connectors Maintains overall system integrity in industrial environments. Open Electrode CCD Technology Broad spectral coverage with QE of 27% at 250 nm and 55% at 800 nm. Scientific Grade 1 CCD with 6.7 mm Height Ideally suited for low light level detection in a variety of spectroscopic applications. We offer other CCD formats and sensor types for OEM volumes. Flexible Input & Output Trigger Interface Experiment synchronization with External Trigger In & TTL Shutter Out with programmable edge triggering Flexible software to integrate a Syncerity CCD into existing apparatus or as an OEM component. Contact us for a Linux driver.
Open the catalog to page 1Specifications SYNCERITYTM 1024 256 − Open-Electrode CCD Sensor Format Quantum Efficiency at 20 °C (See QE curve below) Pixel Size Image Area Deep Thermoelectric Cooling –60 °C @ +25 °C ambient or –50°C @ +40 °C ambient Yields low dark current suitable for most OEM and some Research applications Single Pixel Well Capacity Serial Register Full Well Capacity 1 000 000 e–/pixel (Typical Output Register Saturation) Scan Rates Readout Noise (at 45 kHz and at –60 °C) Maximum Spectral Rate 27 Hz at 45 kHz scan rate 278 Hz at 1 MHz scan rate Digitization Dynamic Range (Typical for Single Pixel) 42...
Open the catalog to page 2Quantum Efficiency Power Interface: Connector Type: PDP-40, Mini PWR DIN, 4-Position, STR Plug Camera Interface: Connector Type: USB standard Type B Input Jack: TTLIN (EXT TRIG IN) Output Plug: TTL OUT (SHUTTEROUT)
Open the catalog to page 3Product Drawings Ordering Information Syncer-1024x256-OE SyncerityTE Cooled CCD Camera Includes: Power Supply AC-DC Shutter Driver (SDrive-500 Shutter Control Unit with cable) Printed Manual
Open the catalog to page 4Accessory Information: SDrive-500 Shutter Control Unit The SDrive-500 Shutter Control Unit is designed to control the activation/opening of an electro-mechanical shutter during the interval when the CCD of a HORIBA Scientific detection system is being exposed to light. Spectroscopy Benefits for Research and OEM Specifications Feature System Parameter Environmental Storage Temperature from –25°C to +50°C Operating Ambient Temperature Range +25°C ± 5°C Relative Humidity ≤ 70% non-condensing Environmental Conditions TTL Level Electrical Input Signals Trigger Input #1 Trigger Input #2 Shutter...
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