istar 734 Series Features and Benefits Industry workhorse for high-resolution, nanosecond, time-resolved Imaging & Spectroscopy
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- Colleen McKinney
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1 TimeResolved Fast photography of a plasma plume emission. Courtesy of Laurent Philippet, Laboratoire de Physique des Lasers, CNRS, Paris 13 University. Features and Benefits CloseCoupled Gating Capable of ns gating speed ultimate temporal resolution for imaging applications Integrated Digital Delay Generator DDG Built in camera head comprehensive softwarecontrolled functionalities and outputs synchronization IntelliGate Intelligent MCP gating for On/Off ratios >10 8 in the UV Photocathode gating rate up to 50 khz Increased Signal to Noise ratio for high speed laserbased experiments High resolution Gen 2 and 3 intensifiers Highest available intensifier resolution with QE > 50% and sensitivity up to 1090 nm (Ø 18 & 25 mm options available) Fibreoptic coupling High optical throughput without vignetting Realtime control interface Intuitive Windows user interface for rapid CCD and DDG realtime acquisition setup ThermoElectric cooling down to 35 C Negligible dark current, suitable for photon counting True optical gate setting Ensures access to the accurate optical shuttering performance of the photocathode Industry workhorse for highresolution, nanosecond, timeresolved Imaging & Spectroscopy Andor s istar 734 CCD series offer the ultimate highresolution, nanosecond timeresolved integrated solution for high resolution, nsscale timeresolved Imaging & Spectroscopy platform. The high resolution 1024 x 1024 array is ideally suited for a wide variety of timeresolved applications including Plasma analysis, Laser Induced Breakdown Spectroscopy (LIBS) when fitted to an Andor Mechelle spectrograph, or fast transient phenomena using fast kinetic mode. Specifications Summary Ø 18mm Ø 25mm Effective active area of CCD (mm) 13.3 x 13.3 Fibre optic taper magnification 1:1 1.5:1 Effective CCD pixel size 13 x 13 µm (100% fill factor) Active pixels 1024 x 1024 Read noise As low as 2.9 e Frame rate (image/sec, max.) 0.9 Useful photocathode spectral range nm* 19.5 x 19.5 µm (100% fill factor) Photocathode QE Up to 50%* Up to 45%* Minimum optical gate width * Dependant on intensifier type As low as 1.2 ns* Page 1 of 7
2 Specifications Gen 2 Image Intensfiers 1 Photocathode model 18*03 18*04 18*05 18*13 18*83 18*E3 25*03 Useful aperture Ø 18 mm Ø 25 mm Input window Quartz Quartz MgF 2 Quartz Quartz Quartz Quartz Photocathode type WAGT WAGT WAGT WR UW WEAGT WAGT Peak room temperature Wavelength range nm nm nm nm nm nm nm Image intensifier resolution limit 3 25 µm 30 µm 25 µm 25 µm 25 µm 25 µm 35 µm Phosphor type [decay time to 10%] P43 [2 ms] P46 [200 ns] P43 [2 ms] P43 [2 ms] P43 [2 ms] P43 [2 ms] P43 [2ms] Minimum optical gate width (ns) 4, 5 U (Ultrafast) F (Fast) H (High QE) < < 100 <3 <7 Relative intensifier gain 6 > 1000 > 500 > 500 > 500 > 500 > 1000 >1000 Maximum photocathode repetition rate (with Intelligate OFF) Maximum photocathode repetition rate (with Intelligate ON) Equivalent Background Illuminance (EBI) 50 khz (continuous) 5 khz (continuous) < 0.2 e /pix/sec * Substitute with appropriate gate width option, e.g. 18F03 (please refer to page 5 for detailed ordering information) Available with VUVcompatible spectrograph interface Quantum Efficiency Curves for Gen 2 Image Intensifers 2 Page 2 of 7
3 Specifications Gen 3 Image Intensfiers 1 Photocathode model 18*63 18*73 18*93 18*A3 18*C3 Useful aperture 18 mm Input window Glass Glass Glass Glass MgF 2 Photocathode type HVS VIH NIR EVS BGT Peak room temperature 2 > 47.5 > 25.5 > 4 > 40 > 17 Wavelength range nm nm nm nm nm Image intensifier resolution limit 3 30 µm 30 µm 30 µm 30 µm 40 µm Phosphor type [decay time to 10%] P43 [2 ms] Minimum optical gate width (ns) 5 U (Ultrafast) F (Fast) Relative intensifier gain 6 > 200 Maximum photocathode repetition rate 50 khz zcontinuous Equivalent Background Illuminance (EBI) < 0.2 e /pix/sec < 0.3 e /pix/sec e /pix/sec < 0.5 e /pix/sec < 0.2 e /pix/sec * Substitute with appropriate gate width option, e.g. 18U63 (please refer to page 5 for detailed ordering information) Intelligate option not available Quantum Efficiency Curves for Gen 3 Image Intensifers 2 Page 3 of 7
4 CCD Specifications 1 Active pixels 1024 x 1024 Fibre optic taper magnification Effective CCD pixel size Ø 18 mm 1:1 Ø 18 mm 13 x 13 µm Ø 25 mm 1.5:1 Ø 25 mm 19.5 x 19.5 µm Effective active area Pixel well depth 100,000 e Register well depth 150,000 e Read noise e 7 31 khz 63 khz 500 khz 1 MHz Typical Maximum Linearity 8 Better than 99% Frame rate 0.9 frame/sec Minimum temperature air cooled [dark current, e /pixel/sec] Coolant chiller, 10 o C, 0.75 l/min [dark current, e /pixel/sec] Ø 18 mm tube PC power supply 5 C [4.2] 25 C [0.4] Internal Digital Delay Generator (DDG ) Key Functions Gate pulse delay & width Ø 18 mm tube External PSU PS C [1.4] 35 C [0.1] Ø 25 mm tube PC power supply 0 C [7.1] 20 C [1.4] Ø 25 mm tube External PSU PS C [2.4] 30 C [0.2] Adjustable from 0 ns to 25 s (delay) and from 0.5 ns to 25 s (width) in 25 ps steps Software controlled, preprogrammed or realtime Trigger Outputs Output A Fire Arm monitor 1x TTL synchronised trigger out for auxiliary equipment, i.e. lasers, flash lamps, National Instrument hardware Individual delays control from 0 ns to 25 s in 16 ns steps Software controlled, preprogrammed or realtime TTL reference for start and end of individual CCD exposure and triggering sequence TTL reference for start and end of individual CCD exposure + CCD readout sequence Trigger Inputs External trigger Direct gate TTL trigger for CCD and Digital Delay Generator Up to 50 khz for IntegrateOnChip mode TTL input for exact external control of photocathode width and timing with smallest insertion delay. External TTL pulse width = photocathode gate width Additional Controls Gate monitoring Insertion delay AC coupling from photocathode to monitor exact photocathode on/off switching and timings 35 ns for the entire system in external trigger mode and through DDG. Have you found what you are looking for? Need higher frame rate? The DH712 series cameras offer up to 3 full frames per second. Need faster response phosphor for Fast Kinetics? P46 phosphor is available as an option for all models. Need a customised version? Please contact us to discuss our Customer Special Request (CSR) options. Page 4 of 7
5 Creating The Optimum Product for You DH734 example shown i 18 F 03 How to customise the istar DH734 : Step 1. Select Intelligate option if enhanced On/Off ratio UV gating is required. Step 2. Select the diameter of intensifier required. Step 3. Select the minimum gating speed option that best suits your needs. For the available combinations please refer to the image intensifer tables on pages 2 and 3. Step 4. Select the image intensifier type that best suits your needs. Step 5. Please indicate which software and PCI card you require. Step 6. For compatibility, please indicate which accessories are required. * In addition to the accessories listed the following special options are also available: Port replicators for Laptop / Notebook operation Dry N 2 interface for photocathode further EBI reduction in high repetition rate configurations 45 & 90 PCI connections available UV or visible lenses or adapter extension tubes Please contact your local Sales representative for details of how to order any of these items. Step 1. Step 3. Choose Intelligate option Choose minimum gating speed i: With Intelligate H: High QE, slow gating Blank: Without Intelligate F: Fast gating U: Ultra fast gating Step 4. Choose image intensifier option Step 2. (Gen 2): 03: WAGT photocathode, P43 phosphor 04: WAGT photocathode, P46 phosphor 05: WAGT photocathode, MgF 2 window, P43 phosphor 13: WR photocathode, P43 phosphor 83: UW photocathode, P43 phosphor E3: WEAGT photocathode, P43 phosphor Step 5. The following accessories are available*: LMC Cmount lens adaptor. LMNIKONF Cmount lens adaptor. PS150 External power supply for deep cooling. ACCXWCHIL160 Oasis 160 Ultra compact chiller unit. IO160 Multiple input / input connector box. IO165 Advanced Multi I/O box. Choose image intensifier option (Gen 3): 63: HVS photocathode, P43 phosphor 73: VIH photocathode, P43 phosphor 93: NIR photocathode, P43 phosphor A3: EVS photocathode, P43 phosphor C3: BGT photocathode, P43 phosphor The istar ICCD also requires at least one of the following software & PCI card options: Solis for Imaging and Spectroscopy A 32bit application compatible with 32 and 64bit Windows (XP, Vista and 7) offering rich functionality for data acquisition and processing. AndorBasic provides macro language control of data acquisition, processing, display and export. Control of Andor Shamrock spectrographs and a very wide range of 3 rd party spectrographs is also available, see list below. Andor SDK A software development kit that allows you to control the Andor range of cameras from your own application. Available as 32 and 64bit libraries for Windows (XP, Vista and 7) and Linux. Compatible with C/C++, C#, Delphi, VB6, VB.NET, LabVIEW and Matlab. CCI010 PCI Controller card with 16bit (1 MHz, 500 khz, 62 khz & 31 khz pixel readout rate options). Step 2. Choose intensifier diameter 18: Ø 18 mm 25: Ø 25 mm CCI001 PCI Controller card with 16bit (62 khz & 31 khz pixel readout rate options). Step 6. Spectroscopy istar The istar series is fully compatible with Andor s Shamrock spectrograph ( nm focal length) family. Spectrograph mounting flanges and software control are available for a wide variety of 3rd party spectrographs including, McPherson, JY/Horiba, PI/Acton, Chromex/Bruker, Oriel/Newport, Photon Design, Dongwoo, Bentham, Solar TII and others. Page 5 of 7
6 Product Drawings Dimensions in mm [inches] = position of pixel 1,1 NOTE: There are three mounting holes (¼ 20UNC) located on the base of the ICCD head. One is positioned centrally at a distance of 47 mm (1.85 ) from the front. The other two are positioned 25.4 mm (1 ) either side of the central one. Weight: 3.2 kg [7 lb] Connecting to the istar PCI Connector type: 26 way D Type for connection to PCI controller card SubMiniature B (SMB) Connectors 2x outputs: FIRE pulse & Output A from DDG. 2x inputs: Camera trigger from 3 rd party source & direct gate for complete, direct external control of intensifier gating. Rear connector panel Minimum cable clearances required at rear of camera 90 mm for standard straight cable 40 mm for 90 option 50 mm for 45 option Mounting hole locations Applications Guide Gen 2 Gen 2 UV Enhanced (05, 83, E3) Laser Induced Fluorescence (LIF) Planar Laser Induced Fluorescence (PLIF) Fundamental Plasma Studies UVVis TimeResolved Luminescence * Vis TimeResolved Luminescence NIR TimeResolved Photoluminescence Laser Induced Breakdown Spectroscopy (LIBS) Gen 3 InGaAs * Gen 3 typically do not exhibit any UV response Andor C3 is constructed with an additional input phosphor interface to provide this UV response. = Suitable = Optimum Page 6 of 7
7 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 onetoone guidance and technical support on all Andor products. For a full listing of our local sales offices, please see: /contact 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 1x 3m TP04 Dconnector to Dconnector PCI cable 2x 2m BNC to SMB cable 1x Quick launch guide 1x CD containing Andor user guides 1x Individual system performance booklet 1x CD containing either Solis software or SDK Footnotes: Specifications are subject to change without notice 1. Figures are typical unless otherwise stated. 2. Refers to the typical photocathode Quantum Efficiency and input window as measured by the tube manufacturer. Quartz input window cutoff occurs at around 180 nm, while MgF 2 window allows operation down to 120 nm. Ø 25 mm tubes typical QE tend to be slightly lower than Ø 18 mm versions. 3. Typical resolution of the image intensifier tube only, not the overall resolution of the ICCD system. As a rough guide, the smallest resolvable FWHM feature on a CCD will be approximately 2 times the pixel size. This is a very important consideration for optical resolution calculations in spectrographbased systems. Resolution may be slighlty impacted while using Intelligate TM. 4. Gen 2 High QE (H) option Photocathode QE is inherently linked to the gating speed of the intensifier. High QE option (H) offers higher peak QE than Ultrafast (U) or Fast (F) intensifiers, while exhibiting minimum gating speed one order of magnitude lower. 5. Actual measured minimum optical gating of the photocathode, reflecting not only the electrical pulse width applied to the photocathode but also its inherent irising time. This value will typically be slightly higher with Intelligate TM. 6. Measured in A/D counts per photoelectrons at the photocathode. Gain is softwareselectable from ~ 1 ct/photoelectron to maximum. 7. Measured for the entire system. Combination of CCD readout noise and A/D noise measurement is for single pixel readout with 20 C CCD cooling and at minimum exposure time under dark conditions. Noise values will change with preamplifier gain (PAG) selection. Values quoted are measured with highest available PAG setting. 8. Linearity is measured from a plot of counts vs signal up to the saturation point of the system. Minimum Computer Requirements: 3.0 GHz single core or 2.4 GHz multi core processor 2 GB RAM 100 MB free hard disc to install software (at least 1 GB recommended for data spooling) PCI 2.2 slot Windows (XP, Vista and 7) or Linux Operating & Storage Conditions Operating Temperature 0 C to 30 C ambient Relative Humidity < 70% (noncondensing) Storage Temperature 25 C to 50 C Page 7 of 7 ISO14001: 2004 EMS91062 ISO9001: 2008 FM40523 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. T734SS 0710 R1
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