Specifications Summary. Active pixels 2048 x Pixel size (W x H) 13.5 x 13.5 µm. Active area pixel well depth (typical) 100,000 e - - PDF

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High Energy Detection XD Powder diffraction image courtesy of NASA AMES, USA Features and Benefits Open front end 1 6 CF152 flange and knife-edge sealing provided as standard for direct interfacing to

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High Energy Detection XD Powder diffraction image courtesy of NASA AMES, USA Features and Benefits Open front end 1 6 CF152 flange and knife-edge sealing provided as standard for direct interfacing to vacuum chambers Peak QE of 95% High detector sensitivity 13.5 x 13.5 µm pixel size Optimal balance of dynamic range and resolution Large area 2048 x 2048 sensor Large field of view and high resolution TE cooling to -100 C Minimization of dark current and pixel blemish Up to 5 MHz pixel readout 9 Slower readout for low noise, faster speeds for dynamic processes and 5 MHz for focusing mode USB 2.0 connection USB plug and play no controller box Ultra-low noise readout Intelligent low-noise electronics offer the most silent system noise available Dual output High sensitivity output for low-light applications, or a High Capacity output for maximum dynamic range with extensive binning Cropped sensor mode Specialized acquisition mode for continuous imaging with fast temporal resolution Enhanced baseline clamp Essential for quantitative accuracy of dynamic measurements Integrated in EPICS Platform is fully integrated into the EPICS control software Direct Detection Andor s ikon-l SO 936 series is designed with direct High-Energy Imaging in mind with a convenient 16-point, knife-edge sealed 6 CF152 flange providing a robust and highly-effective seal to any compatible vacuum chamber interface. The 2048 x 2048 array and 13.5 x 13.5 μm pixels combine to deliver a 27.6 x 27.6 mm active image area, TE cooled down to -100 C. The ikon-l SO 936 offers outstanding resolution, field of view, sensitivity and dynamic range performance. Ultimate sensitivity performance is achieved through combination of 90% QE (back-illuminated sensor), low noise readout electronics and exceptionally deep TE cooling. ikon-l SO 936 boasts a proprietary large area 5-stage TE cooler (4-stage optional), enabling cooling of this large area sensor down to an unprecedented -100 C without the aggravation of liquid nitrogen or compressed gas cooling, perfect for the longest of exposure times. USB 2.0 connectivity and multi-mhz readout options enable seamless integration and operation. Specifications Summary Active pixels 2048 x 2048 Sensor size 27.6 x 27.6 mm Pixel size (W x H) 13.5 x 13.5 µm Active area pixel well depth (typical) 100,000 e - Maximum readout rate 5 MHz ead noise 2.9 e - Maximum cooling -100 C Frame rate 0.95 fps 1 System Specifications Sensor options BN: Back Illuminated CCD, Vis optimized FI: Front Illuminated CCD B-DD: Back Illuminated CCD, Deep Depletion with fringe suppression Active pixels x 2048 Pixel size 13.5 x 13.5 µm Image area 27.6 x 27.6 mm with 100% fill factor Minimum temperatures 3 Air cooled Coolant recirculator Coolant chiller, 10ºC, 0.75L/min 4-stage peltier cooler -70ºC -75ºC -80ºC 5-stage peltier cooler -80ºC -95ºC -100ºC Blemish specification Grade 1 sensor as per sensor manufacturer definition Advanced Performance Specifications 4 Dark current, e - /pixel/sec C (5-stage peltier cooler model only) BN, FI Sensors B-DD Sensor Pixel readout rates 5, 3, 1, 0.05 MHz Output node capacity 1,000,000 e - 1,000,000 e - Active area pixel well depth 100,000 e- 150,000 e- ead noise (e - ) 6 High Sensitivity output High Capacity output High Sensitivity output High Capacity output 0.05 MHz 1 MHz 3 MHz 5 MHz Linearity 7 Better than 99% Digitization Vertical clock speed Maximum bakeout temperature Vacuum compatibility 16 bit 38 or 76 µs (software selectable) +55 C 10-8 millibar Frame ates 8 50 khz Precision photometry mode 1 x x x x x MHz 1 x x x x x MHz 1 x x x x x MHz Visualization mode 9 1 x x x x x Quantum Efficiency Curves 10 Wavelength (nm) BN (15 μm epitaxial) 90 B-DD (40 μm epitaxial) FI (15 μm epitaxial) Quantum efficiency (%) X-ray energy / ev Typical Setup Photoelectrons v Incident X-rays 11 Vacuum Chamber CF152 Flange PC Software CD USB Cable Photoelectrons per detected X-ray ikon-l-so CCD PS-29 Power Supply PS-40 Power Supply Power Supply Cable Energy [kev] 3 Creating The Optimum Product for You DO936Nexample shown M 0 Z - #FI How to customize the ikon-l SO: Step 1. The ikon-l SO flange has three mounting flange options. Please select the type of fitting for your installation. Step 1. Choose flange hole type I: Imperial thread (5/16 UNC) O: No thread (ø 8 mm through hole) M: Metric thread (M8) Choose cooling option W: 4-stage peltier cooling Z: 5-stage peltier cooling Step 2. Step 2. The ikon-l SO has three options for peltier cooling. Please select the type of cooler required. Step 3. The ikon-l SO CCD comes with three options for sensor types. Please select the sensor that best suits your needs. Step 4. Please indicate which software you require. Step 5. For compatibility, please indicate which accessories are required. Step 3. Choose sensor type #BN: Back Illuminated CCD, with no A coating BD: Back illuminated CCD, with NI coating #FI: Front Illuminated CCD Step 4. The ikon-l SO also requires at least one of the following software options: Solis Imaging A 32-bit and fully 64-bit enabled application for Windows (XP, Vista, 7 and 8) offering rich functionality for data acquisition and processing. AndorBasic provides macro language control of data acquisition, processing, display and export. Andor SDK A software development kit that allows you to control the Andor range of cameras from your own application. Available as 32 and 64-bit libraries for Windows (XP, Vista, 7 and 8), compatible with C/C++, C#, Delphi, VB6, VB.NET, LabVIEW and Matlab. Linux SDK compatible with C/C++. Step 5. The ikon-l SO also requires at least one of the following software options: The following accesories are available: XW-EC e-circulator for enhanced cooling performance ACC-XW-CHIL-160 Oasis 160 Ultra compact chiller unit XU-EC/TANS USB Transmitter and eceiver, including 2 power supplies XF-FILTE HOLDE Optional filter holder for camera Have you found what you are looking for? Need a faster frame rate? Andor s ikon-m SO 934 boasts a 1k x 1k active image area. Need to detect harder X-rays? Andor offers a range of Indirect Detection cameras (HH/HF range) that are compatible with industry-standard scintillators. Need a standalone camera for X-ray? A custom built Beryllium window is fitted as standard to our SY/HY range of cameras to block visible light. Need a specific mounting? Contact our experienced design team so we can make the perfect fit. Need a camera for VUV/ X-ray spectroscopy? Andor s specialist spectrographic cameras (SO 920 or SO 940) are ideally suited for vacuum spectrographs. Need a customized version? Please contact us to discuss our options. 4 Product Drawings Dimensions in mm [inches] Ø151.6 [5.97] 68.0 [2.68] 22.5 Ø151.6 [5.97] 68.0 [2.68] CF 152 Flange 27.6 [1.09] 22.5 Image Plane of sensor Position of pixel 1,1 CF 152 Flange 27.6 [1.09] [6.62] Image Plane of sensor [5.30] [6.62] [6.04] Third-angle projection [5.30] [6.04] 71.0 [2.80] 27.6 [1.09] 71.0 [2.80] [0.24] [1.09] 45.2 [1.78] 6.1 [0.24] 45.2 Water [1.78] connectors 2 off to suit 6.0 mm I.D. soft PVC hose Water connectors 2 off to suit 6.0 mm I.D. soft PVC hose [5.04] [5.04] Power Power I²C I²C USB USB 3 x SMB 3 x SMB Weight: 5.5 kg [12 lb 2 oz] Best Practice Guidelines Condensation Contamination & Damage Vacuum Operations Connector panel It is strongly advised that the camera should not be used in a condensing atmosphere. If used in a condensing atmosphere the sensor MUST be protected and the use of a cold finger is strongly recommended When not in use the sensor chamber should be covered and sealed. Due to the exposed nature of the sensor extreme care should be taken with the camera, as damage can easily occur through mishandling or by contamination. If the sensor becomes contaminated, due to accident or misuse, please contact Andor immediately for advice on cleaning. Ensure that the vacuum environment to which the camera is fitted is free of water vapour and other contaminants. Care should also be taken to control pressure change, as sudden pressure changes can potentially cause damage to the sensor assembly Connecting to the ikon-l SO Camera Control Connector type: USB 2.0 TTL / Logic Connector type: SMB, provided with SMB - BNC cable Fire (Output), External Trigger (Input), Shutter (Output) I 2 C connector Compatible with Fischer SC102A Shutter (TTL), I 2 C Clock, I 2 C Data, +5 Vdc, Ground Minimum cable clearance required at bottom of camera 90 mm Applications Guide X-ray Laser Development Lithography EUV X-ray Plasma Diagnostics Soft X-ray Imaging X-ray Diffraction (XD) X-ray Fluorescence (XF) Crystallography Phase Contrast Imaging High Harmonic Generation 5 Order Today Need more information? At Andor we are committed to finding the correct solution for you. With a dedicated team of technical advisors, we are able to offer you one-to-one guidance and technical support on all Andor products. For a full listing of our regional sales offices, please see: Our regional headquarters are: Europe Belfast, Northern Ireland Japan Tokyo Phone +44 (28) Phone +81 (3) Fax +44 (28) Fax +81 (3) North America China Connecticut, USA Beijing Phone +1 (860) Phone +86 (10) Fax +1 (860) Fax +86 (10) Items shipped with your camera: 1 x 2 m BNC - SMB connection cable 1 x 3 m USB 2.0 cable Type A - Type B 2 x Power supplies (PS-29 & PS-40) with associated cables 1 x CD containing Andor user guides 1 x Individual system performance booklet 1 x Protective cover plate 4 x Fixing screws for cover plate 12 Footnotes: Specifications are subject to change without notice 1. IMPOTANT - Due to the sensor being exposed to environments outside of Andor s control there is no warranty on the sensor. For full details of Andor s Warranty Policy please refer to our webpage at For key information on handling precautions for SO/HO open front end systems, please refer to the best practice guidelines on page 5. Note permanent damage can easily occur due to misuse. 2. Edge pixels may exhibit a partial response. 3. Stabilized cooling temperatures are given for slowest readout speed. Use of faster readout speeds (in order to achieve faster frame rates) may require a higher cooling temperature to be selected. Specified minimum air cooled temperature assumes ambient temperature of 25 C. Specified minimum temperature with coolant assumes coolant temperature of 10 C. All cooling performance can be compromised by the environment to which the sensor is exposed. 4. Figures are typical unless otherwise stated. 5. Dark current measurement is averaged over the CCD area excluding any regions of blemishes. 6. eadout noise is for the entire system and is taken as a mean over the sensor area excluding any regions of blemishes. It is a combination of sensor readout noise and A/D noise. 7. Linearity is measured from a plot of counts vs exposure time under constant photon flux up to the saturation point of the system. 8. Typical binning or array size combinations. All measurements are made with µs vertical shift speed. It also assumes internal trigger mode of operation and minimum exposure time MHz is for focusing/visualization mode only. 10. Quantum efficiency as supplied by the sensor manufacturer. 11. The graph shows photoelectrons generated as a function of photon energy of incident X-ray. 12. Fixing screws for mounting the flange to a vacuum chamber are not included. Minimum Computer equirements: 3.0 GHz single core or 2.4 GHz multi core processor 2 GB AM 100 MB free hard disc to install software (at least 1GB recommended for data spooling) USB 2.0 High Speed Host Controller capable of sustained rate of 40 MB/s Windows (XP, Vista, 7 and 8) or Linux Operating & Storage Conditions Operating Temperature: 0 C to 30 C ambient elative Humidity: 70% (non-condensing) Storage Temperature: -25 C to 50 C Maximum Bakeout: Temperature +55 C Power equirements VAC, Hz FM40523 EMS91062 Windows is a registered trademark of Microsoft Corporation. Labview is a registered trademark of National Instruments. Matlab is a registered trademark of The MathWorks Inc. XiKonLSOSS
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