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HeNe Laser Head 1122 Series

Product information "HeNe Laser Head 1122 Series"

HeNe Laser Head 1122 Series

Manufacturer "VIAVI Solutions"
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IK Series Helium-Cadmium HeCd Laser Systems
325, 442 nm; Power 2-180 mW; Polarization Random, Linear; Beam Diameter <0.9-<1.8 mm; Beam Divergence <0.4-<1.0 mrad; Noise <5%-<20% P-P Kimmon Koha’s IK Series of Helium-Cadmium (HeCd) metal-vapour gas laser systems comprises 18 models with an output wavelength of 325 nm (UV), 10 models with an output wavelength of 442 nm (Blue) and 10 models combining both wavelengths in a dual-wavelength version. More than 40 years of He-Cd laser manufacturing allow Kimmon Koha to provide HeCd lasers with the highest polarized output power, reliability and average lifetime. The average lifetimes of Kimmon Koha’s IK Series HeCd lasers are the best in the business. All of IK Series lasers average 4,500 hours or more, and some models average over 8,000 hours. Do not be surprised if you get a system which will run for more than 10,000 hours. This superior performance along with the best warranty available has resulted in Kimmon Koha having the largest installed base of He-Cd lasers. For models and specifications please see the table below – please contact the AMS Technologies He-Cd laser experts for assistance in selecting the proper laser model for your application. Specifications: Model Wavelength Power Transverse Mode Polarization Polarization Ratio Beam Diameter 1/e² Beam Divergence Noise P-P @30 kHz - 2 MHz IK3023R-BR 325 nm 2 mW TEM00 Random N/A <0.9 mm <0.6 mrad <8% IK3052R-BR 5 mW TEMmultimode <1.5 mm <0.8 mrad IK3031R-C 5 mW TEM00 Linear >500:1 <1.0 mm <0.4 mrad IK3072R-C 10 mW TEMmultimode <1.8 mm <1.0 mrad IK3083R-D 10 mW TEM00 <1.0 mm <0.4 mrad <6% IK3101R-D 12 mW <0.5 mrad <10% IK3202R-D 25 mW TEMmultimode <1.6 mm <1.0 mrad IK3151R-E 18 mW TEM00 <1.2 mm <0.4 mrad IK3252R-E 30 mW TEMmultimode <1.8 mm <1.0 mrad IK3201R-F 25 mW TEM00 <1.2 mm <0.4 mrad <15% IK3401R-F 40 mW IK3452R-F 45 mW TEMmultimode <1.8 mm <1.0 mrad IK3301R-G 35 mW TEM00 <1.2 mm <0.5 mrad IK3501R-G 50 mW IK3552R-G 60 mW TEMmultimode <1.8 mm <1.0 mrad IK3802R-G 80 mW IK3102R-G 100 mW IK4123R-B 442 nm 15 mW TEM00 Linear >500:1 <0.9 mm <0.5 mrad <5% IK4153R-C 20 mW <1.0 mm IK4151R-C 30 mW <10% IK4401R-D 50 mW <1.1 mm IK4601R-E 75 mW <1.2 mm IK4101R-F 110 mW <0.4 mrad <15% IK4121R-G 140 mW IK4131I-G 150 mW IK4171I-G 180 mW <1.4 mm <0.5 mrad <20% IK5351R-D 325/442 nm 5/13 mW TEM00 Linear >500:1 <0.9/1.0 mm <0.5 mrad <10%/10% IK5352R-D 10/50 mW TEMmultimode <1.3/1.3 mm <1.0 mrad IK5451R-E 10/50 mW TEM00 <1.0/1.1 mm <0.5 mrad IK5452R-E 15/65 mW TEMmultimode <1.3/1.3 mm <1.0 mrad IK5551R-F 15/60 mW TEM00 <1.1/1.2 mm <0.5 mrad <15%/15% IK5552R-F 25/100 mW TEMmultimode <1.5/1.5 mm <1.0 mrad IK5651R-G 20/80 mW TEM00 <1.2/1.2 mm <0.5 mrad IK5652R-G 30/120 mW TEMmultimode <1.8/1.8 mm <1.0 mrad IK5751I-G 30/110 mW TEM00 <1.2/1.2 mm <0.5 mrad <15%/20% IK5752I-G 40/150 mW TEMmultimode <1.8/1.8 mm <1.0 mrad Applications: Photoluminescence; Raman Spectroscopy; Biomedicine/Bioengineering; Flow Cytometry; Litography/Grating Production; Photopolymer Exposure; Interferometry; Printing/Plate Making; Precision Measurement; Holography; Defect Inspection
Product number: SW11527
Manufacturer:
IMPACT-2000 Pulsed CO2 Lasers
9.3, 10.6 µm; Energy 0.15-5 J; Max. Rep-rate 12-500 Hz; Max. Average Power 60, 75 W; Beam Size 8x9-25x25 mm LightMachinery’s IMPACT-2000 series of pulsed CO2 lasers are optimized for 24/7 precision processing and drilling of non-metallic materials. The material interaction of the short, high-power pulses from TEA (Transversely Excited Atmospheric) CO2 lasers is quite different from that of long pulse and continuous CO2 lasers. High-definition processing with excellent edge quality can be obtained. Plastic materials can be selectively removed from a metal backing, leaving the metal layer untouched. For many applications, IMPACT-2000 lasers offer a lower cost alternative to excimer lasers. The IMPACT-2000 series of lasers all incorporate high reliability SSM (solid state modulator) switch technology as well gas filtering systems to ensure very high uptimes and low maintenance even at continuous 75 W power delivery 24/7. Impact-2000 series lasers are ideally suited for the selective removal or machining of non-metallic layers deposited on a metallic under-layer. Unlike conventional CO2 lasers, the short pulses and high peak powers of TEA CO2 lasers enable the surface layer to be removed (“ablated”) with little or no effect on the underlying metal substrate, and with minimal thermal damage (“heat-affected zone” or “HAZ”) to the surrounding polymer material. Key Features: Pulse Energy: 0.15 to 5 J Maximum Average Power: 60, 75 W Maximum Repetition Rate: 12 to 500 Hz Beam Size (Horizontal x Vertical) at Laser: 8x9 to 25x25 mm Megawatt Peak Powers Give Excellent Edge Definition in Non-metallic Materials Greatly Reduced Heat-affected Zone (HAZ) Compared to Conventional CO2 Lasers High-reliability SSM (Solid State Modulator) Switch Technology Internal Real-time Gas Filtering Systems High Up-times and Low Maintenance Even at Continuous 75 W Power Delivery 24/7 Operation at 10.6 or 9.3 µm Variety of Pulse Energy and Repetition Rate Models Cost-effective Alternative to Excimer Lasers in Many Processes Simple to Operate Low Cost of Ownership Applications: Drilling, Patterning and Ablation of Non-metallic Materials; Selective Removal of Polymer Materials Fom a Metal Substrate With no Damage to the Metallic Backing; Wire Stripping; Medical Device Components; Drilling of Controlled-release and Rapid-release Pharmaceutical Tablets and Capsules; Microvia-hole Drilling in Printed Circuits; Flex-circuit Processing; Laser Ultrasound Non-destructive Testing
Product number: SW11153
Manufacturer:
IMPACT-3000 Pulsed CO2 Lasers
9.0-11 µm; Energy 0.25-3.0 J; Max. Rep-rate 100-400 Hz; Max. Average Power 100-300 W; Beam Size 11x11, 19x19 mm LightMachinery’s IMPACT-3000 series of pulsed CO2 lasers are optimized for 24/7 precision processing and drilling of non-metallic materials. The material interaction of the short, high-power pulses from TEA (Transversely Excited Atmospheric) CO2 lasers is quite different from that of long pulse and continuous CO2 lasers. High-definition processing with excellent edge quality can be obtained. Plastic materials can be selectively removed from a metal backing, leaving the metal layer untouched. For many applications, IMPACT-3000 lasers offer a lower cost alternative to excimer lasers. The IMPACT-3000 series lasers are high-power (up to 300 W) short-pulse TEA CO2 lasers for surface layer removal and cleaning, non-destructive testing, photochemistry and scientific research. The highest repetition rate model (3400) is intended primarily as a source for laser ultrasound testing. For materials processing, their combination of high peak power and short pulses permits the removal of surface layers such as polymer coatings, paint or contamination from metal or composite backings with no damage to the underlying material and minimal heat-affected zone (HAZ). Their high average power offers fast throughput. In non-destructive testing, the high pulse repetition rate, short pulse durations and optimised mode structure of IMPACT-3000 lasers make them an ideal generation source for laser ultrasound (Laser UT) testing of composite matrix materials. For photochemistry and advanced scientific research, the high repetition rate and high average power can be utilised in applications as diverse as isotope separation and remote sensing / LIDAR. Key Features: Pulse Energy: 0.25 to 3.0 J Maximum Average Power: 100 to 300 W Maximum Repetition Rate: 100 to 400 Hz Beam Size (Horizontal x Vertical) at Laser: 11x11, 19x19 mm Beam Divergence, Half Angle: ~2.0, ~6.0 mrad Megawatt Peak Powers Give Excellent Edge Definition in Non-metallic Materials Greatly Reduced Heat-affected Zone (HAZ) Compared to Conventional CO2 Lasers High Up-times and Low Maintenance Even at Continuous >200 W Power Delivery 24/7 Operation at 9.0 to 11 µm Variety of Pulse Energy and Repetition Rate Models Cost-effective Alternative to Excimer Lasers in Many Processes Simple to Operate Low Cost of Ownership Applications: Surface Layer Removal and Cleaning; Polymer Coatings; Brake Lines; Paint Stripping; Mold Cleaning; Non-Destructive Testing; Laser Ultrasound Generation; Photochemistry and Spectroscopy; Isotope Separation; LIDAR and Remote Sensing
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IMPACT-4000 Pulsed CO2 Lasers
9.2-10.8 µm; Energy 0.25-5.0 J; Max. Rep-rate 12-150 Hz; Max. Average Power 60 W; Peak Power 1.0-12 MW; Beam Size 14x11, 25x25 mm LightMachinery’s IMPACT-4000 series of pulsed CO2 lasers are optimized for 24/7 precision processing and drilling of non-metallic materials. The material interaction of the short, high-power pulses from TEA (Transversely Excited Atmospheric) CO2 lasers is quite different from that of long pulse and continuous CO2 lasers. High-definition processing with excellent edge quality can be obtained. Plastic materials can be selectively removed from a metal backing, leaving the metal layer untouched. For many applications, IMPACT-4000 lasers offer a lower cost alternative to excimer lasers. The fully configurable IMPACT-4000 series lasers are designed for scientific and specialized applications. The short pulse of the thyratron-switched IMPACT-4000 series is ideal for ultrasound applications as well as applications in infrared chemistry. IMPACT-4000 lasers can be configured with a tunable option and set up in a master oscillator / power amplifier (MOPA) configuration with additional amplifiers to achieve the right power at the right wavelength for your application. IPACT-4000 series lasers can be supplied in a range of standard multi-module oscillators and MOPA configurations. The beam parameters (divergence, linewidth, mode structure, range of wavelength tuning, etc.) are mainly defined by the master oscillator, and the final energy is mainly defined by the number of power amplifier modules. Key Features: Pulse Energy: 0.25 to 5.0 J Maximum Average Power: 60 W Peak Power: 1.0 to 12 MW Gain Spike Duration: 100 ns Maximum Repetition Rate: 12 to 150 Hz Beam Size (Horizontal x Vertical) at Laser: 14x11, 25x25 mm Ultra-short Pulse Tunable TEA CO2 Lasers for Advanced Applications in Science and Industry Thyratron-switched for Low Jitter, Ultra-short Pulse (~100 ns) Operation Multi-module Oscillators and Oscillator-amplifier Systems Available Fully Configurable as Master Oscillator and Multiple Power Amplifier (MOPA) Stages Line-tunable (9.2 to 10.8 µm) or Operation at 9.3 or 10.6 µm as Standard Options Single Mode Operation (TEM00 / SLM) as Standard Option Variety of Pulse Energy and Repetition Rate Models Simple to Operate Low Cost of Ownership Applications: Plasma Diagnostics; Laser Photochemistry; Optical Damage Studies; Non-destructive Testing / Laser Ultrasound; Laser Propulsion and Particle Acceleration; Material Ablation & Surface Removal
Product number: SW11156
Manufacturer:
IPEX-700 Excimer Lasers
193-351 nm; Energy 0.150-0.700 J; Max. Rep-rate 10-100 Hz; Average Power 3-40 W; Pulse Duration 12-20 ns FWHM; Beam Size 12x26, 12x28 mm; Medium Duty Cycle Operation Designed for medium duty cycle operation in industrial and R&D environments, Light Machinery’s IPEX-700 series of excimer lasers deliver high-power ultraviolet laser machining combined with state-of-the-art performance. LightMachinery excimer lasers are used by leading R&D scientists all over the world. The largest single cost of operating an excimer laser is laser gas consumption while running the laser (also known as dynamic gas lifetime). Incorporating LightMachinery’s proprietary ICON™ (Integrated Ceramic on Nickel) and patented exciPure™ technologies, IPEX lasers offer extremely long gas lifetimes, superior optical stability and precise control of laser operating parameters. With exciPure™, LightMachinery has achieved a 10x improvement in gas usage over competing lasers. This technological breakthrough leads to dramatically less cost to run your laser. EasyClean automated valves fitted to the optics ports allow the laser chamber to be sealed and the gas fill / passivation to be retained while resonator optics are removed for cleaning and maintenance. Easy to use, simple to service and economical to operate, IPEX-700 lasers combine the benefits of high precision excimer processing with the lowest total cost of ownership and highest uptime in the market today. IPEX-700 lasers are ideal for applications such as pulsed laser deposition (PLD) and can be operated from any computer using Windows 7 or 8 – a Microsoft® Surface Pro 3 is included for your convenience. Key Features: Medium Duty Cycle Operation Wavelengths: 193 nm (ArF), 248 nm (KrF), 308 nm (XeCl), 351 nm (XeF) Maximum Pulse Energy: 230 to 700 mJ Stabilized Pulse Energy: 150 to 600 mJ Stabilized Average Power: 3 to 40 W Maximum Repetition Rate: 10 to 100 Hz Pulse Duration: 12 to 20 ns FWHM exciPure™ Technology for 10x Gas Lifetimes and Lowest Cost of Operation No Expensive Cryogenic Gas Purifier Required EasyClean Automated Optics Seals to Retain Gas Fill and Reduce Downtime During Optics Maintenance Optional High-Brightness Optics for Applications Requiring Low Beam Divergence or Extended Coherence Length High-stability Optics Mounts for Ultimate Beam Pointing Accuracy Simple Integration into Industrial Processing Systems Microsoft® Surface Pro 4 Remote Control for Simple Operation Simplified Optical Maintenance, Retained Gas Fill and Passivation No Realignment Required After Cleaning or Replacing Optics Fast, Precise Energy Stabilization (<1.0%, KrF Gas) in Internal, Burst and External Trigger Modes Removes Particulates and Maintains Optics Cleanliness Pointing Stability: 200 rad Beam Size: 12x26, 12x28 mm Beam Divergence (Vertical x Horizontal): 1x3 mrad, Can be Reduced to 0.25 mrad With High-brightness Unstable Resonator Optics Cooling Requirements: Optional Air Cooling up to 25 Hz Operation, Water Cooling at Higher Repetition Rates Laser Gas: Premix or Individual Cylinders Applications: Pulsed Laser Deposition; Precision Manufacturing; Material Processing; Drilling; Wire Stripping; Scientific Research; LIDAR; Laser Induced Breakdown Spectroscopy
Product number: SW11159
Manufacturer:
IPEX-800 Excimer Lasers
193-351 nm; Energy 0.150-0.700 J; Max. Rep-rate 10-200 Hz; Average Power 3-80 W; Pulse Duration 12-20 ns FWHM; Beam Size 12x26, 12x28 mm; High Duty Cycle Operation Designed for high duty cycle operation in a manufacturing environment, Light Machinery’s IPEX-800 series of excimer lasers deliver high power ultraviolet laser machining combined with state-of-the-art performance. The largest single cost of operating an excimer laser is laser gas consumption while running the laser (also known as dynamic gas lifetime). Incorporating LightMachinery’s proprietary ICON™ (Integrated Ceramic on Nickel) and patented exciPure™ technologies, IPEX lasers offer extremely long gas lifetimes, superior optical stability and precise control of laser operating parameters. With exciPure™, LightMachinery has achieved a 10x improvement in gas usage over competing lasers. This technological breakthrough leads to dramatically less cost to run your laser. EasyClean automated valves fitted to the optics ports allow the laser chamber to be sealed and the gas fill/passivation to be retained while resonator optics are removed for cleaning and maintenance. Easy to use, simple to service and economical to operate, IPEX-800 lasers combine the benefits of high precision excimer processing with the lowest total cost of ownership and highest uptime in the market today. Marking of ceramics is one of many applications for these versatile industrial tools. Key Features: High Duty Cycle Operation Wavelengths: 193 nm (ArF), 248 nm (KrF), 308 nm (XeCl), 351 nm (XeF) Maximum Pulse Energy: 230 to 700 mJ Stabilized Pulse Energy: 150 to 600 mJ Stabilized Average Power: 3 to 80 W Maximum Repetition Rate: 10 to 200 Hz Pulse Duration: 12 to 20 ns FWHM exciPure™ Technology for 10x Gas Lifetimes, Long Replacement Intervals and Lowest Cost of Operation No Expensive Cryogenic Gas Purifier Required EasyClean Automated Optics Seals to Retain Gas Fill and Reduce Downtime During Optics Maintenance Optional High-Brightness Optics for Applications Requiring Low Beam Divergence or Extended Coherence Length High-stability Optics Mounts for Ultimate Beam Pointing Accuracy Simple Integration into Industrial Processing Systems Simplified Optical Maintenance, Retained Gas Fill and Passivation No Realignment Required After Cleaning or Replacing Optics Fast, Precise Energy Stabilization (<1.0%, KrF Gas) in Internal, Burst and External Trigger Modes Removes Particulates and Maintains Optics Cleanliness Pointing Stability: 200 µrad Beam Size: 12x26, 12x28 mm Beam Divergence (Vertical x Horizontal): 1x3 mrad, Can be Reduced to 0.25 mrad With High-brightness Unstable Resonator Optics Cooling Requirements: Optional Air Cooling up to 25 Hz Operation, Water Cooling at Higher Repetition Rates Laser Gas: Premix or Individual Cylinders Applications: 24/ 7 Pulsed Laser Deposition; Precision Manufacturing; Material Processing; Drilling; Wire Stripping; Scientific Research; LIDAR; Laser Induced Breakdown Spectroscopy
Product number: SW11157
Manufacturer:
LaserMark Pulsed CO2 Lasers
9.3, 10.6 µm; Energy 0.5-5.7 J; Max. Rep-rate 12-150 Hz; Marks/h 43,200-540,000; Beam Size 14x11-25x25 mm LightMachinery's' LaserMark 950 and 960 series of pulsed CO2 lasers provide a fast, reliable means of applying high-quality permanent marks such as date and batch codes to a broad spectrum of products ranging from consumer product packages like beer labels, gelatin capsules or hair color tubes to miniature electronic components. LaserMark series lasers are designed for on-line marking and coding, creating perfect, crisp images on your products 24 / 7. These pulsed CO2 lasers complete the entire marking process in less than 1 µs so large-area, multi-character marking can be done "on the fly" without mark smearing or degradation that can occur in other types of laser marking. LightMachinery and AMS Technologies have the experience required to design, install and support your ultra-high reliability marking system. LaserMark lasers can mark on a wide variety of materials including inked paper and cards, foils, painted or anodized metal, glass and many types of plastic. The LaserMark series provides ease of operation, extreme reliability and high uptime in production environments. Solid state SSM high-voltage modulators and ultra-low gas flow ensure minimal consumable and maintenance costs. The LaserMark 960SSM series is sealed to NEMA 12 standards for general purpose applications. For more demanding operation, the LaserMark 950SSM series is NEMA 4 rated for direct high pressure hose down. Key Features: Super Fast "On the Fly"-Marking of Moving Parts (Mark Completed in 1 Millionth of a Second!) Eliminates Inks and Other High-cost/Environmentally-unfriendly Consumables Permanent, Multi-character Marks Applied Instantaneously in a Single Pulse Reliable, Proven Fourth-generation Product With Solid-state Technology for Low Cost of Ownership Wide Range of Beam Delivery Modules Available - Pulse Energy: 0.5 to 5.7 J Maximum Repetition Rate: 12 to 150 Marks per Second Marks per Hour: 43,200 to 540,000 Beam Size (Horizontal x Vertical): 14x11 to 25x25 mm Sealing Standard: IEC 529 (IP66), NEMA 4 or NEMA 12 High Voltage Switch: SSM (Solid State Modulator) Electrical Standards: IEC 204:EN 60204 Laser Gas Mix: LaserMark 5 Commercial Laser Premix Internal Gas Option for LaserMark 950 Series Water Cooling: 90 l/h at +10-+25°C RS-485 Interface Applications: Applying High-quality Permanent Marks Such as Date and Batch Codes to a Broad Spectrum of Products, Ranging From Consumer Product Packages Like Beer Labels, Gelatin Capsules or Hair Color Tubes to Miniature Electronic Component
Product number: SW11158
Manufacturer:

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Vacuum Interrupters
35 to 450 A RMS; Single Terminal; 28 to 45 kV; Mechanical Life 0.5 to 2 Mio. OperationsJennings Technology’s series of vacuum interrupters handle a wide range of voltage and current interrupt levels, and high-quality and highly reliable interrupters are available for the utility and industrial markets.Current interruption in a vacuum is recognized as the ideal switching technology in the medium voltage range, and it is also applied in high-voltage and low-voltage applications. Excellent switching capabilities and compact design make vacuum interrupters the most economical switching device solutions possible.Jennings vacuum interrupters feature an evacuated ceramic insulating envelope surrounding two contacts, one fixed and one movable. The movable contact is operated from the outside through a metallic bellows. Contacts are typically a copper alloy that is developed for use in AC voltage applications. The end plates are made of stainless steel or copper.With these features, vacuum interrupters can be expected to last the life of the equipment in which they are installed. Their interruption mechanism is independent of the current magnitude, so interruption can normally be anticipated at the first current zero with no restriking, as the dielectric strength of the contact gap recovers more rapidly than the recovery voltage can rise.Vacuum dielectric enables the interrupters’ contacts to be arranged close together, so circuit interruptions can be designed in a smaller envelope. With current interruption occurring in a vacuum, all arcing is confined within the vacuum interrupter body, so Jennings interrupters are noise-free and flash-free, avoid contact contamination as oxides and corrosion layers cannot form in vacuum, and they do not emit any greenhouse or toxic gases.Key Features: Long Life, High Reliability Controlled Contact Erosion Results in Virtually Maintenance-free Operation Fast Interrupting Speed Rapid Dielectric Recovery High Cycle Withstand Voltages Robust, Compact Design Environmentally Friendly Atmospheric Contact Contamination is Eliminated Noise-free and Flash-free Applications: Load Break Switches; Contactors for Industrial and Motor Control; Capacitor Bank Switching; Circuit Breakers; Specialty RF and DC Applications
Product number: SW10935
Manufacturer:
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TEST003 NAME_TEST
Rotary Mini Compressor 24V DC with Inverter Board (R134a Refrigerant)Enhance your cooling or refrigeration system with this high-performance Rotary Mini Compressor. Designed for efficiency and reliability, this compact compressor operates at 24 VDC and is compatible with R134a refrigerant, making it ideal for a variety of applications, including automotive, portable refrigeration units, and compact cooling systems.Key features:Wide Operating Range: Inverter board supports a speed range of 20-100 rps, ensuring precise performance for varying cooling demands.Built-in Electronic Controller: Provides seamless operation and ensures optimal energy efficiency.Complete Mounting Kit: Includes all necessary components for easy and secure installation.Whether you’re building a new cooling solution or upgrading an existing system, this rotary mini compressor is engineered to deliver quiet, efficient, and dependable operation.Shop now and experience cutting-edge cooling technology tailored to your needs!
Product number: C000-TEST3
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LAMPPY Optical DNA Rapid Detection System For Pathogens
High-intensity LED Array; 478 nm; Detection Range 500-595 nm; Optical Dynamic Range 60 dB; Electrical Dynamic Range 120 dB; Acquisition Frequency 10 s-2 min With LAMPPY™, OZ Optics provides an exceptionally affordable, yet reliable optical DNA detection system based on isothermal techniques such as "Loop-mediated Isothermal Amplification" (LAMP). Much like "Polymerase Chain Reaction" (PCR) amplification, LAMP is a highly sensitive method of DNA detection that creates billions of copies of a target DNA from a minute amount of sample RNA or DNA. However, unlike PCR, LAMP applies an isothermal process that does not require expensive and complex equipment, nor time consuming thermal cycling. It is a more cost-effective and rapid system. LAMP is especially ideal for rapid diagnosis of pathogens or infectious diseases, with results usually within 30 minutes and for high viral loads less than 20 minutes. The LAMPPY™ system uses an array of high powered LEDs, photodiodes and filters for real-time quantitative detection. The system can be paired with an external battery for a compact, field-deployable diagnostic instrument. Samples to be tested are first mixed with a solution of primers, enzymes, an intercalating dye, and several other components. This mixture is then dispensed into standard 0.1 mL PCR tubes with flat caps, commonly known as low-profile PCR tubes. Acceptable sample volumes can be between 5 µl and 125 μl (10 to 30 μl recommended). The instrument can work with many different solution kits from third parties for different pathogens. For that reason, OZ Optics considers it to be a universal DNA/RNA detection system. The standard system utilizes an excitation diode/filter combination emitting at 450 nm to 488 nm and a filter/detector combination for 500 nm to 595 nm light. This setup is compatible with many popular fluorescent dyes, including SYTO 9, SYBR Green and EvaGreen dyes. Solution kits using these or similar dyes can work with the instrument as-is. However, if the user wants to work with different dyes that utilize different wavelengths, AMS Technologies can provide filter blocks with different filter combinations. The filter blocks can be exchanged by the user, making the instrument extremely versatile and easy to service with downtime reduced to a minimum. The accompanying software is intuitive and easy to use, providing quantitative measurements in real-time while allowing fast and easy setup of assays, protocols, and experiments that can be saved and reused. It will automatically detect attached instruments for quick setup and can run multiple instruments simultaneously on one computer. Data can be exported as CSV, XML, JSON, or PNG. Standard communication is via a USB cable, wireless communication via Wi-Fi will also be offered. Key Features: Use to Detect Viral, Fungal, and Bacterial DNA/RNA Including Covid-19, SARS, Ebola, Cholera, Salmonella, etc. Rapid DNA/RNA Detection (from 20 min) Highly Sensitive and Specific Detection of Low Viral Levels Intuitive Software Displays Real-time Data During Testing Melt Analysis Available With the Included Software Lid Heater Prevents Evaporation and Condensation Compact Modular Design Allows for Easy Cleaning and Maintenance Pair With an External Battery for a Portable and Field-deployable System Test up to 8 Samples Simultaneously (Higher Throughput Systems With up to 96 Samples Available Upon Request) Wireless Communication to Computers and Smartphones (coming soon) A Fraction of the Cost of qPCR-based Systems Private Labelling for Volume OEM Applications on Request Electrical Dynamic Range: ~120 dB Optical Dynamic Range: ~60 dB Excitation Wavelength: 478 nm, FWHM = 20 nm (Typical) Detection Wavelength Range: 500 nm to 595 nm Temperature Range: Adjustable From Ambient to +94°C (Block) and +99°C (Lid) in 1°C Increments Heating Ramp Rate: ~9.6 s/°C Standard Throughput / Test Wells: 8 Acquisition Frequency: 10 s to 2 min Light Source: High-intensity LED Array Detector: Photodiode Array Interface: USB Type B Power Supply: 100-240 VAC Input, 12 VDC Output, <50 W Dimensions: 163 x 104 x 127 mm Weight: 1.67 kg Applications: Screening and Diagnosis of Infection Disease; Food and Water Testing for Microbes; Molecular Biology Research; Dry Block Incubator
Product number: SW11790
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