CELLX COHERENT | Alldatasheet
Document overview
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Technical content
- Up to 4 wavelengths
- OBIS Laser performance for high-quality high-performance beams
- Common power, control, and interface
- User-adjustable beam steering and telescopes
- Flow Cytometry
- Microscopy
- Particle Measuring
- Medical Imaging
- Optogenetics CellX is a multi-wavelength platform for use as the laser excitation Light Engine in applications requiring up to 4 lasers from a single module. CellX can serve three applications with its different models and accessories: 1) Stand-alone free-space laser engine, 2) Flow Cytometry with the beam diameters and adjustments for the best focus spot size and stripe locations, and 3) Microscopy with a common 0.7mm output beam and fiber aligner with FC/APC or collimated output. CellX delivers up to four circular laser beams from a single, compact module. This includes user-adjustable steering and tele- scopes used to optimize the beams to your target requirements. For example, CellX can be aligned to give flexible patterns of focused stripes in a flow cytometer when used with the line-generating objective optics. CellX also has a version with all 0.7 mm beam diameters to serve as a stand-alone laser engine or work with a fiber aligner to optimize power transmission. Using the same optical cores that are at the heart of the Coherent OBIS suite of lasers, CellX delivers best-in-class optical performance and reliability. With its low cost, alignment flexibility and ease-of-integration, CellX is the universal laser Light Engine for your application. The Universal Light Engine for Free-Space Applications, Flow Cytometry, and Microscopy
1) CellX - the four laser free-space output laser engine with adjustable beam steering and divergence (focus) 2) CellX for Flow Cytometry and Particle Measuring 3) CellX for Microscopy CellX has built in lasers, telescope, beam combiner, beam steering, and electronics CellX with Heat Sink and Objective Lens. Offers the focus beam stripes and stripe separation for a Flow Cytometer or Particle Measuring applications. CellX by itself is a powerful 1 to 4 laser system with adjustable divergence (focus) and beam steering/spacing CellX where the CellX has all four beams with 0.7mm for coupling to a fiber. With CellX telescope adjustments and beam steering to optimize the coupling. Shown below are the three applications and accessories. Each enables CellX to be the ideal choice as a stand-alone laser engine, or the application solution for Flow Cytometry lasers, or with 4-lasers into a fiber delivery.
Specifications CellX 405 CellX 488 CellX 561 CellX 637 Spatial Mode TEM⁰⁰ M² (Beam Quality)1 ≤1.3 Beam Asymmetry (circular beam) ≤1:1.2 Pointing Stability Over Temperature (μrad/°C) <10 Beam Colinearity2 (μrad) <100 RMS Noise3 (%) (20 Hz to 20 MHz) <0.25 Peak-to-Peak Noise3 (%) (20 Hz to 20 kHz) <1 Long-Term Power Stability (%) (8 hours, ±3°C) <2 Warm-Up Time (minutes) (from cold start) <5 Polarization Extinction Ratio >50:1 >75:1 >50:1 >50:1 Polarization Azimuth Vertical ±5° Notes: 1. Beam Quality (M2) measured per laser channel using ModeMaster with 90/10 clip levels. 2. Standard alignment. User adjustable. 3. RMS Noise and Peak-to-Peak Noise Specifications are per laser channel, during CW operation at nomimal Output Power. 4. Typical power-on delay of 1 minute from cold start. CellX offers common bolt pattern to support objective lens, shutter, or fiber launcher. Example of CellX with Laser Output Shutter attached.
CellX with USB, Control I/O, Status LEDs, and Power Input Connector. Shown Mounted on the optional fan-cooled heat sink. Control Specifications Interface for Computer Control USB (mini-B) and RS-232 (from DB37, 115200 Baud) Laser Drive Modes (Four Operating Modes, individually selected for each wavelength thru USB or RS-232) 1) CW with Power Control via USB/RS-232 2) Analog Modulation 3) Digital Modulation 4) Mixed Analog and Digital Modulation (simultaneous Analog and Digital) Digital Modulation Voltage and Impedance1 Maximum Bandwidth (kHz) Rise Time (10% to 90%) (μsec) Fall Time (90% to 10%) (μsec) Modulation Depth (extinction ratio) Power Range 0-3.3V, 2 kOhm input impedance each, Normally Low (off) Infinite Modulate from 0% to Set Power (USB or RS-232) in Digital Mode Analog Modulation Voltage and Impedance Maximum Bandwidth, 3dB (kHz) Rise Time (10% to 90%) (μsec) Fall Time (90% to 10%) (μsec) Modulation Depth (extinction ratio) 0 to 5V, 2 kOhm input impedance each, Normally Low (off) >50:1, Typical 100:1 Power Range Modulate from 0% to 110% with 0 to 5V in Analog Mode Notes: 1. Digital input is 5V tolerant.
Mechanical and Environmental Specifications CellX Dimensions1 (mm) (L x D x H) 155 x 180 x 52.2 Beam Position from Reference1 (mm) <0.5 Beam Angle (mrad) <5 Laser Safety Classification2 4 ESD Protection EN61326-1 (8 kV Air Discharge, 4 kV Contact Discharge) Baseplate Operating Temperature (°C) 10 to 45 Heat Dissipation of Laser Head3 (Watts) Typical 20, Maximum 60 Ambient Temperature4 (°C) 10 to 45 Non-Operating Condition (°C) -20 to +60 Shock Tolerance (6 ms) 30g Weight (kg) 2.2 Electrical Specifications Power Input Connector Use Molex 0430250600 for Power Cable Connector, Pins 1, 2, 3 for Power, Pins 4, 5, 6 for Ground Supply Voltage (V DC) 12 ± 2 (100 Watt minimum) Power Consumption (W) Typical 20, Maximum 60 Notes: 1. See mechanical drawing. 2. OEM Product - does not comply with CDRH 21CFR 1040.10 and 1040.11 without appropriate integration. 3. Typically 85% of heat load through the base plate. See Operator’s Manual for more detail. 4. Non-condensing. See Operator’s Manual for more detail (available on coherent.com). Mechanical Specifications OBIS CellX 155.0 mm (6.10 in.) Ø 35.6 mm (1.40 in.) 4X 4-40 UNC 4.8 mm (0.19 in.) Tapped Holes for Optional Objective or Accessory Mounting Power RecepticalLaser Control I/O DB37Status Indicator 2X screws to remove lid to access beam adjustments USB Interlock Indicator Laser Aperture Ø 10.2 mm (0.40 in.) 44.8 mm (1.77 in.) 52.2 mm (2.06 in.) 25.4 mm (1.00 in.) 31.8 mm (1.25 in.) 147.0 mm (5.79 in.) 4.0 mm (0.16 in.) 10.0 mm (0.39 in.) Four mounting through holes. Hole dimension is 4.8 mm (0.19 in.) diameter. To be used with a M4 or a #8 socket head cap screw (four screws required).Top View
Optical Specifications CellX 405 CellX 488 CellX 561 CellX 637 Wavelength1 (nm) 405 488 561 637 Output Power2 (mW) Part Number 1426532 1426531 1426530 1426529 1318680 1318682 1318681 1318683 100 100 100 100 n/a n/a 100 100 100 Beam Diameter at 1/e² (mm) 2.6 3.0 3.5 4.5 Beam Divergence (mrad, full angle) 0.2 Notes: 1. Laser-to-laser center wavelength tolerance: 405 nm ±5 nm. 488 nm and 561 nm with ±2 nm, 637 nm with 632 to 643 nm range. Short -pass filter suppression of out-of-band emission for 640 nm. 2. Output power is measured at the output aperture of CellX. Power is variable in CW Mode from 1% (405 nm and 637 nm) to 110% of rated power. Output power is variable in CW Mode from 10% (488 nm and 561 nm) to 110% of rated power. Specifications are valid for 100% power. For 488 nm and 561 nm any residual laser emission at 808 nm fundamental is <0.1 mW.CellX for Flow Cytometry and Particle Measuring has telescopes to provide stronger magnification at the longer wave - lengths. This provides the advantage at the focus of having a consistent beam focus height. CellX provides larger beam diameters from violet to red to then provide the higher performance uniform focus spot height. Nominal Optical Performance Through Focus OL10-UV For Flow Cytometry and Particle Measuring CellX includes beam expanders to create larger beam diameter at the longer wavelength; for the benefit of each wave - length having the same focus spot size (when used with a Coherent CellX Objective Lens).
Nominal Optical Performance Through Focus OL10-UV Flow Cytometry Example: Four-laser Focus with Separated Positions (user-adjustable) Nominal Optical Performance Through Focus OL15-UV Optical Performance Specifications CellX Objective Lens Accessories OL10-UV OL15-UV Part Number 1365935 1383130 Wavelength Range (nm) 350 to 700 Beam Profile at Focus Gaussian Profile on both the Vertical and Horizontal Axis Focus Spot Size Vertical (μm) (1/e2) 10 ±2 15 ±3 Focus Spot Size Horizontal1 (μm) (1/e2) 60 ±15 90 ±20 Working Distance2 (mm) 36.4 60.9 Dimensions (mm) 22 x 22 x 47.2 22 x 22 x 59.7 Vertical Adjustment3,4 (μm) ±250 Horizontal Adjustment3,4 (μm) ±250 Focus Adjustment5 Independent focus adjustment of all wavelengths Notes: 1. Measured at location of best vertical focus. System aligned to lower limit on delivery. Horizontal beam size can be adjusted up to the upper limit. Sys- tem may be adjusted to reduce or expand the horizontal focus width. See Operator’s Manual. 2. Measured from mechanical surface (output end) of the objective assembly. 3. Measured from nominal beam axis. Adjustment using tilt/yaw adjustment internal to CellX, while meeting all optical specifications. 4. Assumes the objective assembly mounted within less than 200 mm (optical path length) from the output face of CellX. 5. Adjustment using telescope adjustment internal to CellX, while meeting all optical specifications. Nominal Optical Performance for the Focus of the Objective Lenses CellX for Flow Cytometery and Particle Measuring offers objective lens accessories to focus the beam and create a line at the focus. Accessories for Flow Cytometry and Particle Measuring
1426532 CellX Laser 1x50 mW 488 nm
1426531 CellX Laser 2x50 mW 488, 637 nm
1426530 CellX Laser 2x50 mW 488, 561 nm
1426529 CellX Laser 2x50 mW 405, 488 nm
1318680 CellX Laser 3x50 mW 405, 488, 637 nm
1318682 CellX Laser 4x50 mW 405, 488, 561, 637 nm
1318681 CellX Laser 3x100 mW 405, 488, 637 nm
1318683 CellX Laser 4x100 mW 405, 488, 561, 637 nm
1323532 Developer’s Kit, includes CellX System 4x100 mW 405, 488, 561, 637 nm and all parts below
1321203 Accessory Kit for CellX (Alignment Tools, Interlock Plug, USB Cable, Coherent Connection, User Manual)
1365935 Accessory, Objective Lens, OL10-UV 10 μm Focus, CellX
1383130 Accessory, Objective Lens, OL15-UV 15 μm Focus, CellX
1321963 Accessory, Mount, Front Aperture Objective Holder, CellX
1321964 Accessory, Translation Stage with Mount for Objective Lens, CellX
1323285 Heatsink, Fan-Cooled with Stage Platform Extension, CellX
1315322 Heatsink, OEM, CellX
1299911 Accessory, Control Board, Adjustable Power, CellX
1298365 Accessory, Control Board, Key-Switch, RS-232, Digital/Analog SMB, CellX
1313160 Accessory, Interlock Plug, DB37, CellX
1323597 Accessory, Control Board, 4 Analog Modulation Inputs, RS-232
1211389 Power Supply, CellX
Accessories for Flow Cytometry and Particle Measuring Shown here are two choices for heat sinks, four choices for electronic interface and two choices for Objective Lens assemblies for Flow Cytometry.
Name Part Number Description CellX Accessory Kit, Interlock Plug
1321203 Alignment Tools, Interlock Plug, USB Cable, Coherent
Connection Software, Operator’s Manual CellX Control Board, Analog Modulation, RS-232
1323597 Control Board for OBIS CellX, DB37 with four Analog
Modulation Inputs and RS-232 communication CellX Control Board, Adjustable Power
1299911 Control Board for OBIS CellX with four laser output power
CellX Control Board, Key Switch, RS-232, Digital and Analog Modulation
1298365 Control Board for OBIS CellX with Key Switch, Interlock,
RS-232, Four Analog Modulation inputs and Four Digital Modulation inputs CellX Mount for Objective Lens
1321963 Mounting kit to mount the Objective Lens to the OBIS CellX
CellX Objective Lens, OL10-UV, 10 μm Focus
1365935 OBIS CellX Objective Lens to create a focus of 10 x 60 μm
at a distance of 36.4 mm Accessories for Flow Cytometry and Particle Measuring
Name Part Number Description CellX Objective Lens, OL15-UV, 15 μm Focus
1383130 OBIS CellX Objective Lens to create a focus of 15 x 90 μm
at a distance of 60.9 mm CellX Translation Stage with Mount for Objective Lens
1321964 Mount and Stage to translate the OBIS CellX Objective Lens
to optimize the focus location CellX Heatsink, Fan Cooled with Platform Extension
1323285 OBIS CellX Heatsink with cooling fans and platform
extension for Objective Lens stage CellX Heatsink, OEM 1315322 OBIS CellX compact heatsink, OEM version. Requires hole in mounting plate to allow heatsink to protrude through the optics deck and requires that the OEM provide air flow. Accessories for Flow Cytometry and Particle Measuring
Optical Specifications CellX 405 CellX 488 CellX 561 CellX 637 Wavelength1 (nm) 405 488 561 637 Output Power2 (mW) Part Number 1424660 100 100 100 100 Beam Diameter at 1/e² (mm) (typical) 0.7 Beam Divergence (mrad, full angle) 1.8 Notes: 1. Laser-to-laser center wavelength tolerance: 405 nm ±5 nm. 488 nm and 561 nm with ±2 nm, 637 nm with 632 to 643 nm range. Short -pass filter suppression of out-of-band emission for 640 nm. 2. Output power is measured at the output window of CellX. Power is variable in CW Mode from 1% (405 nm and 637 nm) to 110% of rated power. Output power is variable in CW Mode from 10% (488 nm and 561 nm) to 110% of rated power. Specifications are valid for 100% power. For 488 nm and 561 nm any residual laser emission at 808 nm fundamental is <0.1 mW. Looking for a CellX with all 0.7 mm beam diameters like the OBIS LX/LS lasers? CellX with a common 0.7 mm beam diameter offers all the CellX advantages of an adjustable internal beam expander as well as adjustable internal beam steering. CellX with common 0.7 mm beam diameter is an excellent choice for fiber launch. CellX with common 0.7 mm beam diameter is an excellent choice for a fiber launch. CellX, General Purpose with common 0.7 mm beam diameter
Operating Wavelength (nm) 400 to 645 Maximum Input Power (mW) 500 (≤200 at 400 to 460 nm) Polarization Extinction Ratio1 (dB) ≥20 Coupling Efficiency2 (%) ≥65 (typical 75%) Long-Term Power Throughput3 95 Fiber Lifetime4 2500 hours continuous operation Optical Fiber Parameters Length (m) 2 Stainless Steel Sheathing OD (mm) 4.8 Collimated Beam Output Beam Diameter (mm) 0.6 ±0.15 M² ≤1.1 Output Collimator Dimensions (mm) Ø 12 x 50 Collinearity (mrad) <0.25 Asymmetry 1 ±0.1 Astigmatism (%) <20 Pointing Angle (Boresight) (mrad) <0.5 Divergence (mrad) <1.8 FC/APC Beam Output Numerical Aperture (NA) 0.07 to 0.1 Environmental Conditions Shipping Temperatures (°C) -20 to 60 Operating Temperatures (°C) 10 to 40 Humidity Non-condensing Notes: 1. PER measured with four laser sources (405, 488, 561, 637 nm) with ≥500:1 input polarization within ±1° azimuth. 2. With CellX the Coupling Efficiency is >60% for each wavelength 405, 488, 561 and 637 nm. 3. 8 hours ±3 °C. 4. ≤5% drop in coupling efficiency, not including changes due to thermal or mechanical effects. Specifications CellX 405 CellX 488 CellX 561 CellX 637 Wavelength1 (nm) 405 488 561 637 Output Power2 (mW) 100 100 100 100 Beam Diameter at 1/e² (mm) 0.7 0.7 0.7 0.7 Part Number3 2309585 2309912 Includes Fiber Launcher and Fiber with Collimated Beam Output Includes Fiber Launcher and Fiber with FC/APC Output Notes: 1. Laser-to-laser center wavelength tolerance: 405 nm ±5 nm. 488 nm and 561 nm with ±2 nm, 637 nm with 632 to 643 nm range. Short -pass filter suppression of out-of-band emission for 640 nm. 2. Output power is measured at the output aperture of CellX. Power is variable in CW Mode from 1% (405 nm and 637 nm) to 110% of rated power. Output power is variable in CW Mode from 10% (488 nm and 561 nm) to 110% of rated power. Specifications are valid for 100% power. For 488 nm and 561 nm any residual laser emission at 808 nm fundamental is <0.1 mW. 3. Alignment Tube included, supports an alignment of the Fiber Launcher as necessary. CellX ships with Fiber Aligner bolted to the front; customer to insert fiber into Fiber Launcher. The CellX can be provided with fiber delivery from Coherent. The CellX with a common 0.7 mm beam diameter is coupled to a fiber launcher and can then be configured with a fiber. Fiber options include an FC/APC output connector or a colli- mated beam fiber output. Fiber Specifications. Fiber Delivery with FC/APC or collimated beam output.
2309585 CellX FR Laser 4x100 mW 405 nm, 488 nm, 651 nm, 637 nm, Fiber Ready, Fiber/Launcher for Collimated Output
2309912 CellX FR Laser 4x100 mW 405 nm, 488 nm, 651 nm, 637 nm, Fiber Ready, Fiber/Launcher for FC/APC Output
1321203 Accessory Kit for CellX (Alignment Tools, Interlock Plug, USB Cable, Coherent Connection, User Manual)
2324764 Heatsink, Fan-Cooled with No Stage Platform Extension, CellX
Name Part Number Description CellX Accessory Kit, Interlock Plug Connection Software, Operator’s Manual CellX Control Board, Analog Modulation, RS-232 Modulation Inputs and RS-232 communication CellX Control Board, Adjustable Power CellX Control Board, Key Switch, RS-232, Digital and Analog Modulation RS-232, Four Analog Modulation inputs and Four Digital Modulation inputs CellX Heatsink, Fan Cooled 2324764 OBIS CellX Heatsink with No Stage Platform Extension with cooling fans CellX Heatsink, OEM 1315322 OBIS CellX compact heatsink, OEM version. Requires hole in mounting plate to allow heatsink to protrude through the optics deck and requires that the OEM provide air flow. Accessories for Microscopy
© 2024 Coherent Corp. Legal notices : coherent.com/legal For more information www.coherent.com Accessories for Microscopy Name Part Number Description Adjustable Fiber Aligner wth Alignment Sleeve 2313364 Adjustable Fiber Aligner. Includes alignment tool and mounting hardware. Bolts onto front of CellX laser. Can be used to adjust fiber assembly to the optimal position for maximum output power transmission. Fiber Assembly, FC/APC Termination, 2m Long 2313508 Fiber Assembly with FC/APC Output. Includes integrated optics for the fiber input launch. 2 meters long. Fiber Assembly, Collimated Termination, 2m Long 2313509 Fiber Assembly with collimated beam output. Includes integrated optics for the fiber input launch. 2 meters long Core Flat 8.0° ±0.5° DETAIL C C Stress Rod Alignment to Polishing Direction: 90 ±2° Stress Rod Alignment to Key: 0 ±2° Fiber (Detailed View) Slow Polarization Axis Fast Polarization Axis 8° Polish is Past Fiber Core FC/APC Connector Narrow Key: 1.97 to 2.02 mm Mechanical Specifications CellX Fiber Assembly with FC/APC output Output Polarization