Precise, 0.1 µm resolution, 12-bit PROFILING. USB 2.0 Port-powered no external power-brick

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1 Select: Profiling or Imaging Interface DataRay Inc. BeamScope -P8 Scanning slits or pinhole: Probe head for narrow spaces; Rotating head mount option Versatile XY probe head 2D + M 2 option Scanned & imaged areas shown actual size. Dimensions in mm Beam R2 Scanning X-Y slits Slit & Knife-edge modes New- Dual Detectors Precise, 0.1 µm resolution, 12-bit PROFILING Precise XY USB 2.0 Port-powered no external power-brick BeamMap2 Real-time X-Y-Z plus -profiling New- Dual Detectors Focusing, Pointing, Collimation, M 2 CW or Pulsed CW. Pulsed >5 khz, high duty cycle CW. Pulsed >100 khz, high duty cycle nm Si detector nm Ge detector ( nm) InGaAs detector nm Extended Range InGaAs detector, 3 mm diam m InAs detector- 2 mm diam. New New Dual Detecor Si/ InGaAs New µm New Pyroelectric New Pyroelectric (2009) Profiles Line profile Yes Yes X profile X-Y profiles X-Y-Z profiles, plus - Area image Best Resolution Yes Yes: with 2DU-SS Yes, unique patented capability 0.1 m (2.5 µm with 2-D Stage) 0.1 m Smallest Beam 0.5 m 0.5 m Largest Beam See imaged areas below this table Power Handling See detailed data sheets or Selection Request form. With accessories, you can handle almost any power. Update Rate 1 to 2 Hz (2D-SS stage, 0.01 Hz) 5 Hz (Real Time) M 2 Measurement Yes, with M2DU-P8 Accessory Yes- Real Time Locate Focus Pointing/Divergence Collimation Yes, with M2DU-P8 Accessory Switched Gain Range 42.5 db 30 db Dynamic Range 45 db (75dB with Filter) 40 db Portable Yes USB 2.0 Product Selection Guide SCANNING SYSTEMS ALL USB 2.0 Yes, automatic for focused beams ColliMate head 25 Line Profile BeamScope-P8 5 to 100 m Pinholes 25 7 X Profile BeamScope-P8 2.5 to 100 m Single Slits X-Y Profiles BeamScope-P8 2.5 to 100 m Dual 90 o X-Y Profile BeamMap2/Beam R2 2.5 to 100 m Multiple Slits (Si active area shown, 3.5 mm for InGaAs) BeamScope-P8 with M2DU2D adapter Up to 1,000 x 1,000 pixels RoHS Selection Guide_0901A Page 1 of 2 (203)

2 Select: Sensor DataRay Inc. WinCamD-UHR 10 Bit CMOS 1.3 MPixel 5.2 x 5.2 µm BladeCam -HR 10 Bit Ultra-Compact CMOS 1.3 MPixel 5.5 x 5.2 µm NEW Product Selection Guide WinCamD-UCD12, WinCamD UCD23 14 Bit High Resolution CCD 1.4 MPixel 4.65 x 4.65 µm WINCAMD - CAMERA SERIES ALL USB 2.0 CCD 1.4 MPixel 6.45 x 6.45 µm WinCamD-FIR 12 Bit High Resolution MicroBolometer 76,800 Pixels 25 x 25 µm NEW Interface CW or Pulsed? * 10x pixel size USB 2.0 Port-powered no external power-brick CW. Any pulsed Laser- Auto Capture Shutter Rolling Rolling Synchronous Synchronous Single Pulse capture To 25 khz To 25 khz 25 khz nm With UV converter nm Standard nm Extended Range version nm With CamIR Adapter 2-15 microns NEW Standard Imaged Area X-Y profiles ½ CMOS ½ CMOS 6.6 x 5.3 mm 6.6 x 5.3 mm TaperCamD 14 x 10 mm; ½ CCD 2/3 CCD 6.5 x x 6.7 mm TaperCamD x 15 mm Yes to all 2/3 9.6 x 7.2 mm Best Resolution 1 m To 5 µm Smallest Beam Diam* 52 m 52 m 47 m 65 µm 250 µm Largest Beam See imaged areas below this table Power Handling See detailed data sheets or Selection Request form. With accessories, you can handle almost any power. Update Rate 10 Hz 10 Hz 10 Hz 10 Hz 10 Hz M 2 Measurement Locate Focus Pointing/Divergence /Collimation Dynamic range Yes- with M2DU Stage Move source or camera. Use M2DU Stage Use DualCamD or M2DU Stage CW: 43.5 db, Exposure 40 s to 1 s; Pulsed: 7.5 db Signal to RMS noise 1,000:1 1,000:1 1,000:1 1,000:1 1,000:1 WinCamD-UCD12 WinCamD-UCD23 TaperCamD series NIR converter BladeCam-HR UV converter WinCamD-FIR RoHS WinCamD-UCD Shown with New M2DU Stage for M 2 Selection Guide_0901A Page 2 of 2 (203)

3 DataRay Inc. Advancing the Technology of Laser Analysis Laser Beam Profilers WinCamD -UCD12 1/2 CCD 14-bit ADC WinCamD -UCD23 2/3 CCD 14-bit ADC WinCamD -UCM 2/3 CMOS WinCamD -UHR 5.2 µm CMOS WinCamD -UHS High Speed CMOS Compact, Portable, Port-Powered, USB 2.0 Beam Profiling for Windows XP & Vista Features RoHS Compliant USB 2.0 port-powered; flexible 3 m cable; no external power supply required /29 mm thin (includes ND filter) to fit tight beam trains [0.90 /23 mm without filter] Digital CMOS/CCD cameras with on-chip 10-bit or external 14-bit ADC 4 MB image buffer & on-board microprocessor Window-free sensors standard for no fringing 20,000:1 electronic auto-shutter, 50 μs 1000 ms 1,000:1 SNR options (30/60 db Optical/Electrical) Pulsed laser auto-trigger and synchronization Parallel capture on multiple cameras Field-replaceable image sensors Large area TaperCamD options to 10 x 15 mm (p.7) X-Ray, UV, 1310 nm (p.8) & nm (p.10) Applications CW & Pulsed laser profiling Field servicing of lasers and laser-based systems Optical assembly & instrument alignment Beam wander & logging M-Squared Measurements new capability! WinCamD Series Camera shown actual size 2.40 x 2.65 x 1.12 (x0.9 without filter) [61 x 67 x 28 mm] WinCamD-UXXX_Datasheet.doc Page 1 of 10 (203) Rev. 0705a

4 Powerful Beam Analysis Software Beam Wander on a drifting Laser Up to 8192 samples at a User Set interval. Mean, RMS and Max. deviation. Replay Fast or Slow. Export to Excel, Paint, Bitmap or Clipboard. With user overrides. Auto-Inclusion Region on an Elliptical Beam Automatically isolates the appropriate analysis region. With user overrides. Standard Linear Profile with Gaussian Fit. Logarithmic Profile The same profile with Averaging & Log 40 db display reveals structure in the wings of the beam at levels below 1%. WinCamD-UXXX_Datasheet.doc Page 2 of 10 (203) Rev. 0705a

5 DataRay Innovation - The company that brought you the first Windows-based CCD beam profiler, the first thin camera for confined spaces, the first software slider exposure and electronic auto-shutter, the first standard window-free CCD for no fringing, the first auto-orientation on the ellipse & the first USB 2.0 beam profiling camera has done it again. Compact WinCamD-UXXX cameras- small enough to fit in your shirt pocket- offer either the High Speed capability required to capture single pulses to 20 khz or High Resolution with a pixel size of 4.65 x 4.65 µm. Features: Digital serial link for EMI immunity XY profiles and centroids Linear and logarithmic displays Gaussian and Top Hat least squares fits Ellipse Angle, Major, Minor, Mean Diameters WinCamD-UXXX CCD & CMOS Sensor Specifications: Background capture and subtraction Image & Intensity Zoom Linear and area filters Image Averaging, 1 to continuous WinCamD -UCD12 -UCD23 -UCM 2/3 CMOS -UHR High Res. -UHS High Speed Pixel Count & H x V: 1.4 M Pixel 1360 x M Pixel 1360 x MPixel, 1260 x MPixel, 1280 x kpixel, 656 x 496 Sensor image area: 6.3 x 4.8 mm 8.8 x 6.6 mm 8.6 x 6.9 mm 6.6 x 5.3 mm 6.5 x 4.9 μm Pixel dimension: 4.65 x 4.65 µm 6.45 x 6.45 µm 6.7 x 6.7 μm 5.2 x 5.2 μm 9.9 x 9.9 μm Min. beam (10 pixels): ~47 µm ~65 µm ~67 μm ~52 μm ~100 μm Shutter type: Max. full frame rate: Synchronous ~10 Hz Synchronous ~10 Hz Synchronous ~10 Hz Rolling ~10 Hz Synchronous ~10 Hz Max. every pulse PRR: ~10 Hz ~10 Hz ~10 Hz ~10 Hz ~10 Hz Single pulse capture PRR: 20 khz 20 khz ~300 Hz 20 khz 20 khz Signal to RMS Noise (Opt./Elec.* db): 1,000:1 (30/60* db) 1,000:1 (30/60* db) 500:1 (27/54* db) 1,000:1 (30/60* db) 800:1 (29/58* db) Electronic Shutter Dynamic Range: 43 db 43 db 43 db 43 db 43 db ND+Shutter+SNR Dynamic Range**: 113** db; :1 113** db; :1 110** db; :1 113** db; :1 112** db; :1 TaperCamD pixel size: 10.5 x 10.5 μm 10.5 x 10.5 μm 11 x 11 μm 12 x 12 μm 22 x 22 μm TaperCamD20-15 pixel size: 14.5 x 14.5 μm 14.5 x 14.5 μm 15 x 15 μm 16 x 16 μm 31 x 31 μm ADC: 14-bit (16384 levels) 14-bit (16384 levels) 10-bit (1024 levels) 10-bit (1024 levels) 10-bit (1024 levels) * OK, we agree that quoting electrical db for optical SNR is a nonsense, but some suppliers do this, so we offer a comparable specification. ** OK, we agree that Dynamic Range that includes removable ND filters is also nonsense, but some suppliers do this, so we offer comparable specification with ND 4. Common WinCamD-UXX Series Specifications: [Specifications are subject to change without notice] Wavelength: WinCamD-UXXX IR -UV ~350 to 1150 nm ~350 to 1330 nm. Residual silicon response nm long Pass filter provided to 1680 nm. IR to Visible phosphor, 40 μm FWHM (Erbium response) ~260 to 1150 nm UV converters for <350 nm (from StarTech Instruments) are available from DataRay, with options down to X-ray. UV resolution to 1 μm. High dynamic range 20,000:1 (43 db) continuously variable auto electronic shutter, <50 μs to 1.0 s. Additional 10,000:1 ND filter + 5:1 electronic control to give 10 9 :1. Pulsed lasers Compact Interface Multiple Heads: ISO Certification Measurable Sources Auto-trigger sync, TTL input trigger, TTL output trigger x 2.65 x 1.12 [61 x 67 x 28 mm] (Includes filter depth of 0.225, 5.7 mm) Port Powered USB 2.0 for laptops & desktops. 3 m standard thin cable, 5 m option cameras. Parallel capture, serial read. Beam profile Second moment processing RoHS, WEEE, CE CW beams, Pulsed sources. CW to >20 khz with single pulse isolation (UHS) User configurable Synchronous, Asynchronous & Variable Delay trigger options. Software programmable trigger input, +ve or ve edge, 50 Ω or 1 kω RoHS WEEE Measured Beam Powers See the Saturation Beam Power/Pulse Energy Graph and Notes, below. Manual Beam Attenuation: Provided ND 4.0 (10,000:1) C-mount Neutral Density filters. [ND 4.0 at 546 nm, higher in blue, lower in near IR.] Screw stackable ND 1, 2, 3, 4, 5 available. Options: EAM-2: 4-wheel stepped variable attenuator, 0 to 90 db CUB and CUB-UV 3 to 10 % beam samplers for high power beams 1% and 0.05% Holographic Beam Samplers (by gentec-eo) Measurement Accuracy 0.1 μm processing resolution for interpolated diameters. Absolute accuracy is beam profile dependent ~1 μm accuracy is frequently achievable. Centroid accuracy is also beam dependent. It can be as good as ±1 μm since it is arithmetically derived from all pixels above the centroid clip level. WinCamD-UXXX_Datasheet.doc Page 3 of 10 (203) Rev. 0705a

6 Measured & Displayed Profile Parameters Displayed Profiles Displayed Plots Processing Options Pass/Fail display Averaging Log data and statistics Relative Power Measurement Fluence Beam Diameter: Diameter at two user set Clip levels Gaussian & Second Moment beam diameters Equivalent diameter above a user defined Clip level Equivalent Slit and Knife Edge diameters Beam Fit: Gaussian & Top Hat profile fit & % fit Equivalent Slit profile Ellipticity: Major, Minor & Mean diameters. Auto-orientation of axes. Centroid Position: Relative and absolute Intensity Weighted Centroid and Geometric Center Beam Wander Display and Statistics Smoothing Filter: Triangular running average up to 10% FWHM 2-D & 3-D plots 10, 16, 256 or max. colors or gray. Contoured display at 10 and 16 color. X-Y Profiles, 2D, 3D Plots. Zoom to x10 Image & profile averaging, 1, 5, 10, 20, Continuous Background Capture and Subtraction User set rectangular or elliptical Capture region *.job files save all WinCamD custom settings for particular test configurations On-screen, in selectable Pass/Fail colors. Ideal for QA & Production. Beam dimension running average up to 50 samples Min., Max., Mean, Standard Deviation. Up to 4096 samples Rolling histogram based on user s initial input. Units of mw, µj, dbm, % or user choice (relative to a reference measurement input) Fluence, within user defined area Chip depth from housing/filter ring (all ±~0.5 mm) -UCD12 -UHR, -UHS -UCD23 -UCM 7.3/15.1 mm 8.7/16.5 mm 7.5/15.3 mm 8.2/16.0 mm Outline and Mounting L x W x D 2.65 x 2.4 x 0.9/1.13 without/with ND4 filter See Drawing below 67 x 61 x 23/29 mm Weight, Camera Head Minimum PC Requirements: (Mac version not currently available) 155 gm (5.5 oz) 1 GHz Pentium IV or higher running Windows XP/Vista; 512/1024 MB RAM; 10 MB Hard Drive space; 1024 x 768 monitor, USB 2.0 hi-power (500 ma) port. *DataRay can supply/recommend USB 2.0 PCI & Cardbus cards and hubs. Outline and Mounting Dimensions in inches Scale 1:1 WinCamD-UXXX_Datasheet.doc Page 4 of 10 (203) Rev. 0705a

7 Saturation Beam Power/ Pulse Energy Graphs These two graphs allow you to simply determine the approximate maximum CW optical power (above) or pulse energy (below) that the standard WinCamD-UCM configuration can measure for your beam diameter and wavelength without additional attenuation. The Saturation Limit assumes: - The provided ND 4.0 filter in place - The electronic shutter set at 40 μs, its lowest value - The ADC gain set at 1, its lowest value - The beam onto the ND filter must not exceed 5 W total power or 100 mw/per mm 2. [10 W/per cm 2 ] 400 nm 500 nm 1064 nm 675 nm 800 nm 400 nm 500 nm 1064 nm 675 nm 800 nm The lower limit in the standard configuration is ~10-5 x the Saturation Limit. Relative Exposure vs. Wavelength Use the graph right to estimate for other wavelengths WinCamD-UXXX_Datasheet.doc Page 5 of 10 (203) Rev. 0705a Wavelength in nm

8 ORDERING INFORMATION 3 Year Warranty Free Software Upgrades 30 Day Sale or Return Evaluation PO A Complete System comprises: Camera, ND 4.0 filter, Software, 3 m (10 ft) Cable, User Manual. Generate the Part Number based upon the component descriptions, and limitations, in the table. Your CCD or CMOS chip choice does not affect the system price except for the 2/3 CCD chip which is higher. Part Number = Camera type + CCD/ CMOS chip + Suffix (if required) WinCamD -UXXX -UV TaperCamD -UXXX (use UCDxx detectors) TaperCamD UXXX -IR e.g. WinCamD-UHR is a complete working system with a High Resolution CMOS with 5.2 μm pixels. TaperCamD-UHS-1310 is a complete working system with a 14.4 x 10.8 mm FO Taper for 1310 nm. Part Number component descriptions WinCamD Complete working USB 2.0 camera system. Add CMOS chip extension to generate Part #. TaperCamD WinCamD with 14.4 x 10.8 mm 1.6:1 FO taper on the sensor TaperCamD20-15 WinCamD with 20 x 15 mm 2.27:1 FO taper on the sensor -UCD12 ½ CCD sensor for CW and pulsed, 1360 x 1024 pixels 4.65 x 4.65 µm -UCD23 2/3 CCD sensor for CW and pulsed, 1360 x1024 pixels 6.45 x 6.45 µm -UCM 2/3 CMOS sensor for CW and low PRR, 1260 x 1024 pixels 6.7 x 6.7 μm -UHR ½ CMOS sensor for CW and low PRR, 1280 x 1024 pixels 5.2 x 5.2 μm -UHS ½ CMOS sensor for CW and pulsed, 656 x 496 pixels 9.9 x 9.9 μm Adds 50 mm C-mount tube and long-pass filter for 1290 to 1350 nm work. -UV Camera with 3 mm UG11 filter instead of ND 4.0. Works at 260 through 380 nm. -IR On-chip IR to visible phosphor converter for 1480 to 1600 nm. Not available on TaperCams. - Extra Cameras, priced lower than systems, programmed to only work as additional cameras on the same PC. Extra cameras, come with Cable, Mount and ND filter, but no Software or User Manual. Confirm with factory. Add additional suffix -X to the system Part #. E.g.: WinCamD-UHS becomes WinCamD-UHS-X Accessories EAM-2 Variable Attenuator, 93 db optical dynamic range. Max.: 1 W/cm 2 /100 mj/cm 2. CUB & CUB-UV ND1.0, ND2.0, ND3.0, ND4.0, ND5.0 Vis & UV Beamsplitters, 3% to 10% (polarization dependent) C-mount to camera. Additional Neutral Density filters in ND 1 steps in stackable C-mount threaded holders. (ND4.0 filter comes as standard with the system.). See User Manual for curves. (Add L after ND for use with large TaperCamD- NDL1.0, NDL2.0, NDL3.0, NDL4.0, NDL5.0) M-Squared Option for WinCamD USB 2.0 M2DU-UV M2DU-VIS M2DU-NIR M2DU-TEL WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 μm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 185 to 450 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 μm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 400 to 700 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 μm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 630 to 1100 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 μm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 1030 to 1800 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths Other DataRay Profiling Instruments BeamMap Beam R BeamScope-P7 Real Time M-Squared Multi-plane profiler 0.1 micron resolution on CW lasers Centroid, Alignment, Divergence, M 2, Visible and Telecom wavelengths. 0.1 micron resolution on CW lasers, 0.5 micron to 4 mm beam dimensions 3.0 microns to 23 mm, M 2 accessory, ISO Standard Linear scanning slit,cw or Pulsed (prr >5 khz) lasers, up to 23 x 45 mm scanned area WinCamD-UXXX_Datasheet.doc Page 6 of 10 (203) Rev. 0705a

9 TaperCamD-UXXX for Direct Imaging of Larger Beams TaperCamD-UXXX and TaperCamD20-15-UXXX series beam profiling cameras are unique to DataRay and offer a larger effective imager area. TaperCamD series cameras offer direct imaging of the beam without any of the Gaussian beam near-field/far-field issues that arise with the use of beam expansion telescopes. They are available in standard, and IR versions. Fiber optic tapers are fused coherent fiber bundles, heated, drawn and polished to give an output end the size of the imager chip. The image is demagnified (M<1) from the faceplate input to the imager chip end. The taper ends are bonded to the surface of the imager chip using a proprietary DataRay process which eliminates both surface reflections and thermal cycling stress. The PMF (Pixel Multiply Factor) shown below and on the camera label is entered into the software in order to provide correct diameter readings. NA at the imager end is 1.0. NA at the input faceplate is a factor of M smaller. The individual fibers at the input end are 6 um pitch with a 50% core/cladding area ratio. Refractive index is 1.81, leading to a front surface reflectivity of 8.3%. Empty filter holders are available for both TaperCam sizes. A 0.25 deep extension ring is available with male and female tpi threads. Residual distortion is specified by the manufacturer at ±3% barrel/pin-cushion distortion. In our experience this distortion is concentrated towards the edges of the field. Residual non-uniformity in optical response is generally small and requires no correction, but the ability to do so is available in the software. 1.0"-32 C-mount thread ND4 at 3 o 13.0 mm 25.7 mm 20.0 mm TaperCamD-UCDXX, UHR & -UHS PMF = 2.25 TaperCamD-UCM PMF = Imager area is shown actual size in mm for: WinCamD-UCD12, -UHR, -UHS WinCamD-UCD23, -UCM ND4 at 3 o 10.5 TaperCamD-UXXX 16.7 mm TaperCamD20-15-UXXX 34.4 mm 28.0 mm 1.30" 20 tpi thread 1.0"-32 C-mount thread TaperCamD20-15-UCDXX, -UHR and -UHS PMF = 3.1 TaperCamD20-15-UCM PMF = 2.27 WinCamD-UXXX_Datasheet.doc Page 7 of 10 (203) Rev. 0705a

10 WinCamD-UCD : High Resolution beam profiling to 1350 nm. Image of a 1310 nm beam, 100 µm diameter, 1.5 mw. [43 ms Shutter. No ND filter] The high resolution advantage of 4.65 micron square pixels is clearly seen. Summary: 1) Technology. WinCamD-UCD uses proprietary software and electronics in conjunction with factory selected CCDs that exhibit residual sensitivity at 1310 nm. This is a tailing silicon response, and has been observed out to at least 1340 nm. The effective Quantum Efficiency (QE) in this tailing response is around 0.01%, i.e. a factor of around ~10 4 down on the visible response. 2) Features. Despite the low QE, WinCamD-UCD cameras can be very attractive for 1310 nm region use if the source irradiance is adequate (see later). The 4.65 micron square pixels give much higher resolution than standard IR cameras. The WinCamD shutter exposure of up to 1047 ms is 25 to 30 times greater than that of standard cameras, partially compensating the low 1310 nm sensitivity. 3) Operational Issues. ND filters are not normally used with WinCamD-UCD , unless the beam power is very high, meaning that normal laboratory background can dominate the 1310 nm signal. Options are: - Use no filter and work in a darkened room, or with black screening - Use a long pass filter which blocks radiation below the wavelength(s) of interest. DataRay supports both options. No Filter Operation. With no shading or filtering, a typical room background level is equivalent to an exposure time of ~3 ms. i.e. the background is ~10% of the signal when the exposure time with signal is ~0.3 ms. This emphasizes the need to suppress the ambient light as far as is possible. Working in a darkened lab is the best solution. WinCamD-UXXX_Datasheet.doc Page 8 of 10 (203) Rev. 0705a

11 A 50 mm long, 30 mm outer diameter, black-anodized C-mount tube, provided, will reduce the ambient lab background by a factor of around 4. A 100 mm long tube will reduce the ambient lab background by a factor of around 8. With thin black card and tape, you can mount your own custom tube off the provided 50 mm C- mount extension, and customize the ambient suppression shading to your application. Long-Pass Filter Option. DataRay provides the WinCamD-UCD camera with an anglemounted, C-mount WCD-LPF1290 custom long pass filter, with 80% transmission above 1295 nm, 50 % transmission at 1290 nm, 1% transmission at 1285 nm, fully blocked below 1250 nm. This filter provides very effective blocking of visible light, e.g. ambient light or laser pump signal. It has a custom construction to minimize fringing effects, but can still lead to some fringing due to internal reflections in the filter sandwich and between the filter rear surface and the CCD. Filters with lower cut-on wavelengths can be obtained to special order. Exposure Time. Use the graph below to estimate the required exposure time for your beam. Maximum Beam Power. Note the red line indicating to the maximum power of 100 mw allowed on the CCD. Above this level, you must use sampling or attenuation to reduce the beam power. 100 WinCamD/1310 Sensitivity Limits (85% of ADC) Max Beam Power = 100 mw Beam Power in mw ,000 Exposure τ in ms * For example, to give an 85% saturation level on the ADC: At 1310 nm, a 100 micron diameter 2 mw beam will require a shutter exposure time τ of ~ 30 ms At λ < 1310 nm, τ will be lower. At λ > 1310 nm, τ will be greater ,000 10,000 Beam 13.5 % Diameter in microns WinCamD-UXXX_Datasheet.doc Page 9 of 10 (203) Rev. 0705a

12 WinCamD-UXXX-IR: Economical Telecom beam profiling, 1475 to 1600 nm WinCamD-UXXX-IR & TaperCamD-UXXX-IR for Telecom C & L bands nm, IR phosphor-on-silicon CCD 25 μm FWHM point spread function due to phosphor ±10% spatial response non-uniformity due to phosphor ~20 μw to 100 mw, for 1 mm nm. (With 0.02% transmission (1550 nm) ND filter) e.g. 10 ms exposure on 1 mw, 1 mm diameter beam at 1550 nm. Gamma: Signal = (Incident Irradiance) where γ = Gamma (γ) correction is included in the software. WinCamD-UXXX_Datasheet.doc Page 10 of 10 (203) Rev. 0705a

13 DataRay Inc. Wavelength BladeCam TM The Smallest Profiler in the Known Universe Camera Based Range: nm (Optional) nm Resolution: 1.0 µm Smallest Beam: 52 µm Imaged Area: 5.2 x 5.2 mm 0.65 Thin! Portable, Port-Powered, USB 2.0, Beam Profiling for Windows XP & Vista, Intel-Mac RoHS Compliant Features USB 2.0 port-powered; flexible 3 m cable; Ultra-thin -0.65, (16.5 mm), (includes ND filter) 10 Bit Digital CMOS cameras with on-chip 10-bit ADC Window-free sensors standard for no fringing Auto-Shutter 20,000:1 electronic, 50 s 1000 ms Multiple Cameras- Parallel capture Field-replaceable image sensors Wide Wavelength Range nm, (optional X-Ray-385, 1475 to 1620 nm) High Resolution: 1.3 MPixel, 1280 x 1024, 5.2 µm 2, 6.6 x 5.2 mm Shown Actual Size 1.8 x 1.8 x 0.65 [45 x 45 x 16.5 Applications CW laser profiling Field servicing of lasers and laser-based systems Optical assembly & instrument alignment Beam wander & logging 3D View with Auto Rotation BladeCam_Datasheet_0901A Page 1 of 4 (203)

14 Powerful Beam Analysis Software Beam Wander on a drifting Laser Up to 8192 samples at a User Set interval. Mean, RMS and Max. deviation. Replay Fast or Slow. Export to Excel, Paint, Bitmap or Clipboard. With user overrides. Auto-Inclusion Region on an Elliptical Beam Automatically isolates the appropriate analysis region. With user overrides. Standard Linear Profile with Gaussian Fit. Logarithmic Profile The same profile with Averaging & Log 40 db display reveals structure in the wings of the beam at levels below 1%. BladeCam_Datasheet_0901A Page 2 of 4 (203)

15 DataRay Innovation - The company that brought you the first Windows-based CCD beam profiler, the first thin camera for confined spaces, the first software slider exposure and electronic auto-shutter, the first standard window-free CCD for no fringing, the first auto-orientation on the ellipse & the first USB 2.0 beam profiling camera has done it again. Ultra-Compact profiling cameras. Features: Digital serial link for EMI immunity XY profiles and centroids Linear and logarithmic displays Gaussian and Top Hat least squares fits Ellipse Angle, Major, Minor, Mean Diameters Background capture and subtraction Image & Intensity Zoom Linear and area filters Image Averaging, 1 to continuous PC Or Intel-Mac Operation BladeCam Specifications: [Specifications are subject to change without notice] Wavelength ~ nm (see Options and Accessories for use outside nm) High dynamic range 20,000:1 (43 db) continuously variable auto electronic shutter, <50 s to 1.0 s. Additional 10,000:1 ND filter + 5:1 electronic control to give 10 9 :1. Compact- with ND filter Interface Multiple Heads: ISO Certification Measurable Sources Measured Beam Powers Manual Beam Attenuation: Measured & Displayed Profile Parameters Displayed Profiles Displayed Plots Processing Options Pass/Fail display Averaging Log data and statistics Options: 1.8 x 1.8 x 0.65 (0.50 without ND filter) Port Powered USB 2.0 for laptops & desktops. 3 m standard thin cable, 5 m option cameras. Parallel capture, serial read. Beam profile Second moment processing RoHS, WEEE, CE CW beams and can average pulsed beams at 10 x 1/exposure time. See the Saturation Beam Power Graph and Notes, below. Provided ND 4.0 (10,000:1) C-mount Neutral Density filters. [ND 4.0 at 546 nm, higher in blue, lower in near IR.] Screw stackable ND 1, 2, 3, 4, 5 available. EAM-2: 4-wheel stepped variable attenuator, 0 to 90 db CUB and CUB-UV 3 to 10 % beam samplers for high power beams 1% and 0.05% Holographic Beam Samplers (by gentec-eo) Beam Diameter: Diameter at two user set Clip levels Gaussian & Second Moment beam diameters Equivalent diameter above a user defined Clip level Equivalent Slit and Knife Edge diameters Beam Fit: Gaussian & Top Hat profile fit & % fit Equivalent Slit profile Ellipticity: Major, Minor & Mean diameters. Auto-orientation of axes. Centroid Position: Relative and absolute Intensity Weighted Centroid and Geometric Center Beam Wander Display and Statistics Smoothing Filter: Triangular running average up to 10% FWHM 2-D & 3-D plots 10, 16, 256 or max. colors or gray. Contoured display at 10 and 16 color. X-Y Profiles, 2D, 3D Plots. Zoom to x10 Image & profile averaging, 1, 5, 10, 20, Continuous Background Capture and Subtraction User set rectangular or elliptical Capture region *.job files save all WinCamD custom settings for particular test configurations On-screen, in selectable Pass/Fail colors. Ideal for QA & Production. Beam dimension running average up to 50 samples Min., Max., Mean, Standard Deviation. Up to 4096 samples RoHS Relative Power Measurement Fluence Rolling histogram based on user s initial input. Units of mw, µj, dbm, % or user choice (relative to a reference measurement input) Fluence, within user defined area BladeCam_Datasheet_0901A Page 3 of 4 (203)

16 Chip depth from housing/filter ring Outline and Mounting L x W x D Weight, Camera Head Minimum PC Requirements: PC or Intel-Mac ORDERING INFORMATION 4.0 mm (Options for other depths contact sales) 1.8 x 1.8 x 0.65 (0.5) without ND filter (45 x 45 x 16.5 mm) 85 gm (3 oz) 1 GHz Pentium IV or higher running Windows XP/Vista (32 Bit); 1024 MB RAM; 10 MB Hard Drive space; 1024 x 768 monitor, USB 2.0 hi-power (500 ma) port. Limited 3 Year Warranty Free Software Upgrades 30 Day Sale or Return Evaluation PO A Complete System comprises: Camera, ND 4.0 filter, Software, 3 m (10 ft) Cable, User Manual. Part Number component descriptions BladeCam-HR Complete working USB 2.0 camera system. Other DataRay Profiling Instruments all USB 2.0 interface BeamMap2 Beam R2 BeamScope-P8 WinCamD-UCD12 WinCamD-UCD23 WinCamD-UHS Real Time M-Squared Multi-plane profiler 0.1 micron resolution on CW lasers Centroid, Alignment, Divergence, M 2, Visible and Telecom wavelengths. 0.1 micron resolution on CW lasers, 0.5 micron to 4 mm beam dimensions 3.0 microns to 23 mm, M 2 accessory, ISO Standard Linear scanning slit,cw or Pulsed (prr >5 khz) lasers, up to 23 x 45 mm scanned area 14 Bit ADC with high resolution ½ CCD array µm pixels 14 Bit ADC with high resolution 2/3 CCD array µm pixels High Speed 10 Bit onboard ADC DualCamD Measure real-time divergence and ratios with cameras at 90 M-Squared Option for WinCamD series USB 2.0 M2DU-UV nm M2DU-VIS nm M2DU-NIR nm WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 µm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 185 to 450 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 µm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 400 to 700 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 µm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 630 to 1100 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths M2DU-TEL nm Options- Accessories UV Converter -UV WinCamD-Series USB 2.0 M 2 Scan Stage with lens & adaptor plates: 2.5 µm steps, 44 mm travel + Mounted 100 mm focal length fused silica singlet lens (17.5 mm aperture) for 1030 to 1800 nm + 3 m (10 ft) cable Contact factory for lens assemblies for other wavelengths and focal lengths Converts UV wavelengths to Visible non damaging wavelengths. Available from nm. Contact sales for assistance with this option Camera with 3 mm UG11 filter instead of ND 4.0. Works at 260 through 380 nm Adds 50 mm C-mount tube and long-pass filter for 1290 to 1350 nm work. -NIR On-chip IR to visible phosphor converter for 1480 to 1600 nm BladeCam_Datasheet_0901A Page 4 of 4 (203)

17 DataRay Inc. BeamMap2 Beam R2 Datasheet - High Performance XY & XYZΘΦ Beam Profiling - Real-time Focus, Divergence, M 2 Sampling: 0.05 μm Resolution: 0.1 μm Beam R2/BeamMap2 Slit-Scan Beam Profilers The Best Slit-Scan Profilers are Port Powered USB 2.0 New Dual-Detector wide λ range head options Coming Pyro-electric head for 0.19 to 20 μm Typical Applications Laser & Laser Assembly Verification, e.g. Precision Focused Assemblies for: Laser Printing/Marking Medical Lasers Diode Laser instruments etc. Fiber Optic Telecom assembly focusing. LensPlate2 option for re-imaging waveguides and fiber ends. Development, Production, Field Service CW; Pulsed lasers, φ µm [5,000/(PRR in khz)] Beam R2 Each single plane XY beam profiling head contains a 2.5 μm slit pair for high dynamic range slit mode & a 50 µm slit pair for 0.1 μm resolution Knife-Edge mode. (5 & 50 µm for longer wavelengths). Linear & log X-Y profiles, centroid 0.05 µm Sampling. 0.1 μm Resolution. Beams diameters 1 μm to 4 mm. Profile zoom & slit width compensation. Detector options, 190 nm to 2400 nm Shown actual size (with extra DD aperture) 2.65 x 2.4 x 2.7 (W x H x D) BeamMap2 adds scanning in multiple z-planes to allow the measurement of: Real-time XYZ profiles, Focus position Real-time M2, Divergence, Collimation By measuring in multiple planes in z, the propagation direction, BeamMap can identify the focus positon with ±1 µm repeatability. This dramatically speeds real-time diagnosis of focusing and alignment errors & the setting of multiple assemblies to the same focus. [Protected under US Patent # 6,313,910.] Configuration All systems comprise a compact, USB 2.0, port-powered head, 3 m cable and software for Windows XP & Vista. True2D Slits Profile tightly focused beams more accurately with thin, True2D slits. 0.4 µm thick metallic multilayer films on a sapphire substrate avoid the tunnel effect of air slits. Air slits are frequently deeper than they are wide, and can buckle under high irradiance. 0.4 µm True2D Slit 25 μm deep conventional rough wall tunnel slit BMBR2_Datasheet_0902b.docx Page 1 of 2 DataRay Inc. Boulder Creek, CA (203)

18 Parameter Specification Beam R2 BeamMap2 Comments Wavelength options: nm, nm, μm Scanned beam diameters: 0.5 μm to 4 mm (2 mm for IGA-X.X) Yes Yes X-Y Profile & Centroid Resolution: Accuracy: Beam Wander display and logging 0.1 μm or 0.05% of scan range ± <2% ± 0.5μm Yes Yes Yes Yes Slit scan Si, InGaAs Extended InGaAs BR2 has KE mode for <5 µm BMS2-3XY50KE-XX <5 µm Profiles: ± <1 μm (beam dependent) X-Y only X-Y-Z X-Y-Z gives focus position Angular alignment: ± 1 mrad with BeamMap2 ColliMate - Yes M 2 measurement: 1 to >20, ± 5% - Yes 4 Z-plane hyperbolic fit Real-time update: 5 Hz Yes Yes Brushless DC motor Maximum Power & Irradiance: 1 W Total & 0.5 mw/μm 2 Yes Yes Metallic film on Sapphire slits Gain Range: 1600:1 Switched :1 ADC range Yes Yes Full bandwidth 12-bit ADC Display graphics: Measurement Analysis: Averaging: Statistics: Beam'R2 BR2-Si BR2-IGA BR2-IGA-x.x BR2-DD BR2-DD-x.x BeamMap2 Waist diameter measurement: All: X-Y position; Profiles, Zoom x1 to x16. BeamMap only: M 2, Focus; Divergence, Boresight/Pointing On-screen, for values & graphics, in selectable Pass / Fail colors User selectable running average (1 to samples) Min., Max., Mean, Standard Deviation. Log data over extended periods. Second moment (4σ) diameter to ISO 11146; Fitted Gaussian & TopHat; 1/e 2 (13.5%) width; User selectable % of peak; Knife-Edge mode for very small beams Product Specifications are subject to change without notice. Silicon detector; 2.5 µm & 50 µm XY slit pairs InGaAs detector; 5 µm & 50 µm XY slit pairs InGaAs extended λ detector options to 2.4 µm; 5 µm & 50 µm XY slit pairs Si plus InGaAs detectors Si plus InGaAs-x.x detectors BMS2-4XY250*-Si Silicon detector; 2.5 µm XY slit pairs in 4 planes in z BMS2-4XY250*-IGA InGaAs detector; 5 µm XY slit pairs in 4 planes in z BMS2-4XY250*-IGA-x.x InGaAs extended λ detector options to 2.4 µm; 5 µm XY dual axis slits in 4 planes in z BMS2-4XY250*-DD Silicon plus InGaAs detector; 5 µm XY slit pairs in 4 planes in z BMS2-4XY250*-DD-x.x Silicon plus InGaAs-x.x detector; 5 µm XY slit pairs in 4 planes in z * Default unit has 250 µm plane spacing. 50, 100, 500, 750 & 5000 µm plane spacings available at standard pricing. DD Aperture BMBR2_Datasheet_0902b.docx Page 2 of 2 DataRay Inc. Boulder Creek, CA (203)

19 Typical Applications Laser/Diode Laser characterization Laser assembly development, alignment, characterization, production test & QA. Lasers And Laser Assemblies for - Disk/Wafer Characterization - Laser Printing/Marking - Medical Lasers - Bar Code Scanners etc. Real Time: Features: DataRay Inc. Wavelength X-Y Profile Measurement Angular Divergence Ellipticity, Centroid, Gaussian fit Relative Power Beam dimensions 3 m to 45 mm Resolution 0.5 m or 0.5 % 190 nm to 4 m options M 2 measurement accessory ISO Compliant Narrow probe for confined spaces Front mounted apertures Wide dynamic range Powerful, intuitive software Upgrade option, BeamScope-P7 to USB 2.0 Accessories & Options M 2 Measurement Accessory-USB 2.0 UV - IR Options 190 to 4 µm 2-D Scan Stage for 23 x 45 mm profiling BeamScope-P8 New - Pyroelectric to 50 µm - Slit Scanning USB 2.0 Range: nm nm New Pyroelectric: µm Resolution: 0.1 µm Smallest Beam: 0.5 µm Scanned Area: 5 x 7 mm- Si 3 mm- Ge With 2D Stage: 23 x 43 mm ¼ - 20 Max. depth 0.2 / 6 M6 ¼ - 45 o DataRay Inc BeamScope P8 ¼ - 20 Avoid back-reflections from surfaces Warranty void if label removed ¼ - 20 Max. depth M6 ¼ - 45 o BeamScope-P8 system is comprised of: a compact head, interface box, a 3 m (10 ft.) USB 2.0 cable, user manual, and Software for Windows XP or Vista. BeamScopeP8_Datasheet_0901A Page 1 of 5 (203)

20 Principle of Operation: A linear scanning probe carries either a single pinhole, a single slit, or orthogonal X-Y slits. This linear scan satisfies the strict requirements of the ISO laser profiling standard*. Light passing through the slits falls onto a Silicon (190 to 1150 nm) or Germanium (800 to 1800 nm) detector. [* Until the introduction of the DataRay BeamScope Beam Profiler, no commercially available slit scan or knife-edge scan beam profiler met the ISO Standard. The Standard requires that the scan be performed in a plane orthogonal to the propagation axis. Drum style scanners cannot meet the Standard. DataRay s unique linear scan probe is designed to fully comply with the Standard.] Acquire Beam Profiles In Constricted Areas BeamScope-P8 has made the measurement of once inaccessible beam profiles not merely possible, but simple. The unique probestyle scan head easily peers into confined axial gaps between lens, mirrors, and filters. Its ability to probe along-axis spaces as narrow as 12mm creates a whole new world of applications. No Beam Distortion From Optics Or Filters There's no distortion of the beam due to ancillary optics or filters because the BeamScope-P8 doesn't need them when analyzing most type of lasers. The AUTO GAIN feature can continually adjust the detector amplifier gain to ensure full use of the 55 db (300,000:1) gain range. Spot dimensions from 3 m to 23 mm can be measured from a single scan head. Scan beam areas up to 23 x 45 mm with the new 2-D stage accessory. Front Mounted Apertures Front mounted apertures enable you to see precisely where the beam is being measured. Rapidly diverging and fast focusing beams are simple to capture if you can get close to your source. Now it's easier than ever to measure laser diode arrays, micro-lensed sources, broad stripe lasers, etc. Available apertures can accommodate power densities up to 100 W/mm 2 onto small pinhole apertures. (Max. Total power = 0.5 W) Change apertures in minutes from slits to pinholes. This makes the BeamScope-P8 an unbeatable value in beam analyzers. Notebook PC Portability with USB 2.0 BeamScope plugs interface to a USB 2.0 port on your notebook PC to give a portable unit with a small footprint. Perfect For R&D, QA & Production R&D users will appreciate the comprehensive range of analytical functions. QA & Production engineers will appreciate the ability to save test configurations as JOB files, and to indicate Pass/Fail onscreen. Unparalleled M 2 Measurements The BeamScope TM P8 optional M2DU-P8 accessory is unlike any other on the market. There are no complicated adjustments, yet the user can achieve highly repeatable measurements. The software automatically takes more frequent measurements in the waist area in order to accurately determine the true waist diameter. 23 x 45 mm 2-D Scan Stage DataRay s latest beam profiling innovation offers extraordinary 0.2% (512 x 512 pixels) resolution, down to 5 x 5 m (HxV), over beam areas up to 23 x 45 mm. 2-D scan results display in the integral imaging software for area image analysis. BeamScopeP8_Datasheet_0901A Page 2 of 5 (203)

21 BeamScope Measurable Sources Measured Beam Powers Optical Dynamic Range Shape of Maximum Scanned Area Pinholes (PA series) Single Slits (SS series) X-Y Slits (XY series) 2-D Stage (M2B) P8 Product Specifications [Subject to change without notice.] CW or Pulsed sources >5kHz Pulse Rep 5% duty factor. Higher PRR is better. See the graph in the Notes, below. E.g. 6 W to 3 W, for a 1 mm diameter (1/e 2 ) Gaussian 633 nm, 5 m slit. 55 db (= 300,000:1) [75 db with Neutral Density 2.0 film Important: For accurate measurements, beamwidth should be < 0.5 x Scan Dimensions. With /EPH extended probe head, dimension 23 mm below, becomes 35 mm. Shape Cross Scan x Scanned Length Line Scan Pinhole diameter x 23 mm Rectangle 7* x 23 mm, (* 5 for Ge, 3 for InAs Trapezoid 5* x 15/5 mm, (* 3 for Ge, 2 for InAs, 3.5 x 13.5/6.5 for XYPl5) Rectangle 45 x 23 mm scanned area image. Scans a pinhole over this area. Measured Beam Diameters/Widths Measurement Resolution Measurement Accuracy Measured Beam Profiles Measured Profile Parameters Displayed Profiles (Note 1) Update Rate Data Analysis Pass/Fail Averaging Standard Deviation Power Measurement Source to Slit Distance Aperture sizes (Note 2 ) Slits Pinholes Wavelength Range Silicon Detector Germanium Detector InAs New Pyroelectric Mounting Temp. Range (inc. Accessories) Operating Storage Minimum PC Requirements PC or Intel-Mac 0.5 m to ~25 mm (Defined as the 1/e 2 diameter, = 13.5% of peak for Gaussian beams) 0.5 m, or 0.5% of the measured beam diameter, whichever is greater 1m 2% of measured beam diameter X & Y Linear & logarithmic profile display modes Gaussian beam diameter Gaussian fit Second Moment beam diameter Knife-Edge beam diameter Centroid position, relative and absolute Ellipticity + Orientation of Major Axis Beam Wander display X only, Y only, X & Y 2-D plot (10,16 or 256 colors) 3-D plot (10,16 or 256 colors) 1 to 2 Hz. Depends upon the PC Processor Speed, Scanned Profile & Selected Options On all measured parameters, on-screen, in selectable Pass/Fail colors Beam Diameter Running Average and Accumulating Average options On Accumulation Averaging Screen Units of mw, dbm, db, % or user entered (relative to a reference measurement provided by the user.) 1.0 mm minimum Important: See Scanned Area (above ) for measurable beam dimensions 2.5, 5, 10, 25 and 100 m wide 7 mm long (Planar version of 5 m slits are 5 mm long) 5, 10, 25 and 50 m diameter (Larger or smaller pinholes to special order) 190 to 1150 nm 800 to 1800 nm 1500 to 4 µm 190 nm to 20 µm ¼-20 & M6 threaded mounting holes 10 o to 35 o C 5 o to 45 o C USB2.0 port, Windows XP or Vista; 1024 MB RAM; 10 MB Hard Drive space; 1024x768 monitor. BeamScopeP8_Datasheet_0901A Page 3 of 5 (203)

22 Notes: 1. The 2-D and 3-D profiles are reconstructed from the X-Y scan, making the assumption that the measured X beam profile is the same for all values of Y, and that the measured Y beam profile is the same for all values of X. 2. In Single Slit or Pinhole mode, the slit/pinhole width should be 1/3 rd of the diameter of the beam under measurement. For X-Y slit pairs inclined at 45 o, the ratio is approximately 1/5 th. E.g., for any beam below 20 m diameter, use the 2.5 m slits wherever possible. In Knife-Edge mode, the slit width should be 3x the beam diameter. For X-Y slit pairs inclined at 45 o, the ratio is 4.3 times the beam diameter. Power Limit. The graph allows you to simply determine the approximate maximum optical power that BeamScope can measure without additional attenuation. The limit is a detector current limit. PxS is the Power Limit in Watts. To calculate the power limit at the laser wavelength: The graph shows the approximate saturation beam power in mw versus wavelength for a 100 μm diameter beam (1/e 2 ) & a 5 μm slit. 1) Determine the plotted value, P S mw, for your wavelength. (e.g. 70 mw at 633 nm) 2) For a different slit or beam, multiply P S by: 0.05.(beam diam., µm)/(slit width, µm) Approximate saturation beam power 100 m beam diameter, 5 m slit Si Ge Wavelength in m InAs 3) For a pinhole multiply P S by: 0.05 x (beam diam., µm) 2 /(pinhole diam. µm) 2 BeamScope-P8 on M2DU stage P8 USB 2.0 interface BeamScopeP8_Datasheet_0901A Page 4 of 5 (203)

23 Part Numbers System Examples BS8-XY5 BS8-XY2.5 BS8G-XY5 BS8G-PA10 BS8-InAs SSX New BS8PY-XY5 /EPH PA5 PA10 PA25 PA50 SS2.5 SS5 SS10 SS25 SS100 XY2.5 XY5 XY10 XY25 XY100 XYPl5 M2DU-BS-UV-100 M2DU-BS-VIS-100 M2DU-BS-NIR-100 M2DU-BS-TEL-100 M2DU-2D M2DU-AP BeamScope Products & Accessories [Includes Software, 3 m long USB 2.0 cable, User Manual] Silicon Detector system with 5 m X-Y Slit Silicon Detector system with 2.5 m X-Y Slits Germanium Detector system with 5 m X-Y Slits Germanium Detector system with 10 µm Pinhole Indium Arsenide Detector system with Single slit (pinholes are also available) Pyroelectric Detector with 5 µm X-Y Slits Suffix for +10 mm Extended probe head, for probing deeper recesses Accessories Pinhole 5 m diameter Pinhole 10 m diameter Pinhole 25 m diameter Pinhole 50 m diameter Single Slit 2.5 m wide x 3 mm long Single Slit 5 m wide x 7 mm long Single Slit 10 m wide x 7 mm long Single Slit 25 m wide x 7 mm long Single Slit 100 m wide x 7 mm long X-Y Slit 2.5 m wide x 3 mm 45 o Planarity ~40 m X-Y Slit 5 m wide x 7 mm 45 o X-Y Slit 10 m wide X-Y Slit 25 m wide X-Y Slit 100 m wide Dual planar X-Y Slit 5 m wide x 5 mm long, planarity set to 4 m (for tightly focused beams). M 2 Accessory, 44 mm scan/2.5 m steps, + 3 m long USB cable + M 2 lens nm M 2 Accessory, 44 mm scan/2.5 m steps, + 3 m long USB cable + M 2 lens nm M 2 Accessory, 44 mm scan/2.5 m steps, + 3 m long USB cable + M 2 lens nm M 2 Accessory, 44 mm scan/2.5 m steps, + 3 m long USB cable + M 2 lens nm Additional lenses/ focal lengths are available. Please contact us for custom configurations 2D Scanning Stage 44 mm travel, 2.5 µm steps. Beam size to 23 x 44 mm with M2DU-AP plate Additional adapter plate to connect BeamScope to M2DU-2D Scanning stage P7-P7U-UPGRD P7-USB2-IF Standard Lens Assembly (Detached for 2-D Stage operation) Stage Travel / Step Size Dimensions M2DU Weight M2DU M2DU + BeamScope-P8 BeamMap2 Beam R2 WinCamD WinCamD-FIR Upgrade a PCI BeamScope-P7 to USB 2.0 interfaced BeamScope-P7U with rebuilt head, calibration certificate, Interface box, USB 2.0 cables + Universal wall socket power supply and 3 year warranty. Add USB2.0 interfacing to a BeamScope-P7.. [No head rebuild, no calibration, no warranty extension.] M2 Accessory / 2D Stage Specifications Coated Achromat, 550 nm ( see below for other wavelengths) Focal Length 100 mm Clear Aperture 22 mm 44 mm / 2.5 m Across axis width x Height with BeamScope x Along axis depth 90 x 100 x 200 mm (5.5 x 6.5 x 8 inches) 0.8 kg (1.8 lb) 1.5 kg (3.3 lb) Other DataRay Beam Profiling Instruments Real Time M-Squared Multi-plane profiler 0.1 micron resolution on CW lasers. XYZ profiles, XYZ focus, Centroid, Alignment, Divergence, M 2, Visible to Telecom wavelengths. Port-powered USB micron resolution on CW lasers, 0.5 micron to 4 mm beam dimensions. Port-powered USB2.0 High performance, high resolution CCD and CMOS imaging systems. Port-powered USB2.0 Wavelength Range 8-14 µm, 23.5 µm pixel pitch, 320 x 240 pixels, 7.5 x 6.6 mm active area BeamScopeP8_Datasheet_0901A Page 5 of 5 (203)

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