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WS650 Spin Coater Spin Coater-650 SeriesSince 1985 Laurell Technologies has created a broad range of unique solutions for our customers. Laurell Technologies is the best company, equipment, and support at the lowest possible price.Custom engineered solutions!Easily upgradeable!Never Obsolete!When your process requirements change so can your system.All 650 series spin coaters come with the following benefits:• 650 Digital Process Controller - easy to program without a manual with many advanced capabilities.• Time: 1 second to 99 minutes 59.9 seconds in 0.1 second increments.• Programs: twenty 51-step programs or manual mode-number of steps/program can be user reconfigured through SPIN 300.• Spin 3000 field-proven advanced PC interface software included, not required to program system.• Class 1 Bluetooth® (100meter/328ft range) - offered as standard (no cable or converter).• Fluid-control lid directs material towards rear drain - no drips encountered when opening chamber.• Clear ECTFE Lid with Ø3/4” (Ø19 mm) center opening Ø1.5” (Ø38 mm) NPP Drain Port and Nitrogen purge.• Safety door interlock (disallows rotation when door is open).• Safety door latch (requires deliberate action to open process chamber).• Safety door lock (prevents chamber opening while program is running,or during chuck rotation after program ends).• Vacuum interlock (disallows rotation when there is insufficient vacuum).• Corrosion-proof configuration (no exposed metal — therefore, no degradation using strong acids or bases).• Glovebox-ready configuration (Continuous seal purge with CDA or inert gas required).• Lifetime Process Support.Choose a size that fits your substrate: ModelController Max Substrate SizeMax RPMMounting OptionsWS-650-23B650 Seriesø150mm (5" × 5")12,000 rpmTabletop, In-Deck, On-DeckWS-650-8B650 Seriesø200mm (7" × 7")12,000 rpmTabletop, In-Deck, On-DeckWS-650-15B650 Seriesø300mm (9" × 9")12,000 rpmTabletop, In-Deck, On-Deck(*The indicated measurements for square substrates are the length of a side)Choose the housing material based on your process and chemistry:• Polypropylene Copolymer• Teflon®Choose the motor performance that suits your process,now and in the future:• Mz Standard Performance Motor• Mz Standard Performance MotorChoose the accessories that will help you achieve your best results:• Dispense Solutions• Chucks: Standard and Custom• Wireless Control Etch Develop Clean System EDC System - EDC™Series Complete Process Control Laurell Technologies is the Global Leader in Single Wafer Spin Processing Technology.Established in1985, we have nearly 20,000 systems installed worldwide.We manufacture the only system that is ETL® listed and certified to CE, CSA® and UL® standards. What an EDC system doesIt is designed to execute an in-situ sequential process, which can be made up of a number of components, in an order which suits the customers process.DevelopEtchClean The EDC™ Series EDC System is compact and packed with advanced features. PROVENOver 12000 systems installed worldwide. Luarell Technologies exclusive “Dry In, Dry Out” process ensure the wafer and chemical delivery path are cleaner and dried after every use. FLEXIBLEMaster Design with more actual processes and substrates supported than all others combined. Capableof in-situ mixing of process chemicals for ultimate flexibility. SAFEInterlocks and electronic safety systems combined with the highest quality construction and material use ensure the operator is protected. Our Expertise at Your ConvenienceWe have 28 years of experience with our customers’complex process,multiple chemistries,safety issues,waste containment,and disposal issues.Benefit from our expertise and let us engineer your conventient solution. Choose a size that fits your substrate:ModelControllerMax Substrate SizeMax RPMMounting OptionsEDC-650-23B650 Seriesø150mm (5" × 5")12,000 rpmTabletop,In-Deck, On-DeckEDC-650-8B650 Seriesø200mm (7" × 7")12,000 rpmTabletop,In-Deck, On-DeckEDC-650-15B650 Seriesø300mm (9" × 9")12,000 rpmTabletop,In-Deck, On-Deck(The indicated measurements for square substrates are the length of a side) PDC Plasma Cleaner BENCHTOP PLASMA CLEANERS Harrick Plasma cleaners are benchtop, inductively coupled plasma devices that serve as excellent tools for surface cleaning, surface preparation, and surface modification. Plasma treatment may be applied to a wide variety of materials,including metals, ceramics, composites, plastics, polymers and biomaterials. Our plasma cleaners may be employed in a broad range of surface engineering applications,including surface cleaning, surface sterilization, surface activation, surface energy alteration, surface preparation for bonding and adhesion, modification of surface chemistry, as well as the surface treatment of polymers and biomaterials through activation, grafting and surface coating. Our products are specifically designed for laboratory and R&D use. They offer inexpensive,compact functionality. Key applications areas include materials science,microfluidics, polymer science, biomedical materials, optics, and sterilization of dental and medical implants and instruments.▶ PRODUCTSBASIC PLASMA CLEANERPDC-32G (115V) | PDC-32G-2 (230V)A compact,inexpensive benchtop plasma instrument suitable for nanoscale surface cleaningand activation of small samples.EXPANDED PLASMA CLEANERPDC-001 (115V) | PDC-002 (230V)A larger tabletop plasma instrument and extensively used for nanoscale surface cleaning and surface activation.HIGH POWER EXPANDED PLASMA CLEANERPDC-001-HP (115V) | PDC-002-HP (230V)With twice the cleaning rate as the Expanded Plasma Cleaner, the High Power Expanded model is a versatile instrument.▶ APPLICATIONSNANOSCALE CLEANINGPlasma surface treatment removes nanoscale organic contamination and alters surface chemistry without affecting the bulk material.ALTER SURFACE CHEMISTRYTailoring surfaces with specific chemical functionalities is often vital for optimal material performance. Plasma can alter surfaces to be more hydrophilic or hydrophobic or to introduce specific chemical functionalities to the surface without affecting the bulk material.DEVICE FABRICATIONPlasma enables the fabrication of devices through covalent bonding (microfludic devices) or by facilitating the adhesive potential of intermediate epoxys, glues or other adhesives.BIOLOGY & BIOMEDICALPlasma treatment cleans, sterilizes and activates biomaterial surfaces, improving biocompatability and antibiofouling traits. As a result, plasma is used extensively for cell seeding, protein adsorption, biomaterial coating, and implant surface activation.SURFACE PATTERNINGPlasma can be employed in various ways to facilitate surface patterning, which is often a required processing step for the fabrication of multilayer devices, such as solar cells, sensors, and microfluidic chips. Laboratory Presses Laboratory Presses The International Standard For more than 100 years Carver hydraulic presses have been the standard for laboratories around the world.Carver Model C presses alone are in use in more laboratories than any other press. The current Carver line has been expanded and improved with more sizes, options, features, and quality performance than any other line of presses. The Widest Choices Standard choices now include two-column and four-column,benchtop and floor standing, and manual or automatic presses with clamping capacities from 0.5 to 100 tons. Auto-matic “Auto Series” presses include a user-friendly control system and integral safety enclosures.Accessories include self-contained, electrically operated AutoPak hydraulicpower units for existing manual Carver presses. ▶ Applications• Materials research: ceramics,compos-ites, construction materials, cosmetics, drugs, pharmaceuticals, powder metals, printed circuit boards, rubber, silicone and other elastomers, soil,thermoplastic resins and thermosets.• Quality and performance testing of physical properties: compression strength, flexural strength, shear strength, flow and color dispersion.• Laboratory testing: ASTM test plaqueor bar molds for polyethylene & polypropylene.• Other applications: composite molding, compression molding, crushing, laminat-ing, encapsulation, extrusion,forming, insert pressing, producing KBr pellets for infrared spectroscopy,metal forming (dimpling), insert molding, oil extraction, pelletizing, specimen preparation, splice molding, splitting chilled oils, transfer molding, and vulcanizing .• Specialized Applications Special presses dedicated to specific applications include ASTM test plaque or bar molding, pellet making (KBr specimens forinfrared and x-ray spectroscopy) and laminating.• Custom Presses In addition to the models shown in this catalog, Carver designs and manufactures a wide variety of custom made presses and accessories to suit your specific application. Please consult the factory for any equipment not specifically listed in this catalog. ▶ How to select the right Carver press for your application:1. Determine if you want a general laboratory press or one dedicated to a special application.General.....................Automatic Benchtop Presses/ Auto Series Plus press models /Monarch Hydraulic Lab Presses/ Heated Manual Presses with Digital Temperature/ Standard Unheated Manual PressesSpecial ......................... Molding ASTM Test Specimens/ Presses for preparing pellets,bricks, briquettes and cakes/ Pneumatic Low Force & Laminating Presses 2. Determine clamp force and choose benchtop or floor standing model.Benchtop 7.5 to 30 tons ................... Automatic Benchtop Presses/ AutoSeries Plus press models /Molding ASTM Test Specimens/ Heated Manual Presseswith Digital Temperature/ Standard Unheated Manual Presses / Presses for preparing pellets,bricks, briquettes and cakes /Pneumatic Low Force &Laminating PressesFloor Standing 30 to 100 tons ............................. Monarch Hydraulic Lab Presses 3. Decide if heated platens will be needed.Heated Floor Models .......... Monarch Hydraulic Lab Presses/ Pneumatic Low Force& Laminating PressesBenchtop.............................. Auto Series Plus press models/ Heated Manual Presses with Digital TemperatureUnheated Floor Models .............. Monarch Hydraulic Lab PressesBenchtop............................. Auto Series Plus press models/ Standard Unheated Manual Presses 4. Refer to specification tables for appropriate work area (platen size) and daylight opening (working height between platens). 5. Refer to photos and descriptions to select two- or four-column configuration. 6. Select heat control level desired and platen options on Heating and Cooling Platen Options. 7. Select appropriate accessories you’re your application. ▶ ProductsAuto Series benchtop presses 15 to 48 tonsMonarch floor standing presses 30 to 100 tonsPresses for plastic ASTM testingProppant presses Heated manual benchto presses 7.5 to 30 tonsUnheated manual benchtop presses 12 to 30 tons Pellet presses and accessories Pneumatic and laminating presses Heating and cooling platens AutoPak power unit for existingmanual presses Custom presses Wabash hydraulic presses and molding machines Nanoimprint System Nanoimprint System Creating the future of micro- and nanostructure solutions NIL Technology is specialized in replication of micro- and nanostructures. We develop solutions for advanced high-tech components, focusing on optical applications for sensors, 3D imaging and displays. We enable future optical solutions for Smartphones, Augmented Reality, IoT, Automotive and more. Optical design - Mastering - Prototyping - Mass production. Products▶ CNI – Compact Nanoimprint Tool▶ EZI – UV NIL Tool Mask Aligners Mask Aligners High performance products, built to last!• Technologically Advanced Mask Aligners • Incredibly fast and accurate electromagnetic linear stage motors• Smart Align Technology-superior auto alignment algorithms • Integrated OBS and IR backside alignment unit with no hardware conversion • Best in class dual arm robot and pre-aligner optimized Tor highest T-put Application• MEMs • WLP • 3DIC and SiP • Compound Semi • Optoelectronics • LED • 2.5D Interposer - TSV • Solar - HCPV ▶ NXQ4000 Series – R&D & pilot line production▶ NXQ8000 Series – Scalable, high volume production platform Atomic Layer Deposition System AT400 Base ALD System Table Top Atomic Layer Deposition Unit, suitable for up to 5 lines.Precise precursor dosing with defined dose volumes:- Reduces process and dose variability common to competitors- Fast cycling capability- 6-10 cycles/min or up to 1.2nm/min Al2O3 (best in class) Features:- Substrate size up to 4" (100mm) diameter- Chamber temperatures from RT to 400°C ± 1°C- Precursor temperatures from RT to 150°C ± 2°C with optional heating jackets- 2 counter reactants - standard- 1 liquid source such as H2O or H2O2- 1 gas source such as O2 or NH3- 2 gas sources can be used as well- Variable process pressure control 0.1 to 1.5Torr- All metal sealed system upstream of sample- Up to 3x Heated sources- Volume controlled dosing (Volume control yields more repeatable precursor doses)- Valve time controlled dosing- Exposure Control- Point source Gas Distribution with Optimal Spreading for superior film uniformity- Integrated, angled HMI/PLC SW/Controls (prevents random SW lockups)- Robust 7" touch screen PLC control system- Recipe Control: proven recipes pre-loaded in controller- Smallest Footprint on the market (55cm W x 55cm D X 39cm H), cleanroom compatible- Weight 45kg Other:- Pump (> 12cfm) to be provided by customer- Facilities required (15amp power, 10psi regulated high purity N2 or Ar with 1/4" face seal fittings, 1" vacuum line or 1.5" linefor lengths >4ft, compressed dry air 70-80 psi)- Excellent Process Development Support (Harvard lab scientsts provide evidence based assistance to customers)- Simple system maintenance and integrated vacuum interlock. Film Thickness Gauges Film Thickness GaugesThetaMetrisis's core technology is White Light Reflectance Spectroscopy (WLRS) that allows accurate and simultaneous measurement of thickness and refractive index of stacked thin and thick films in ultra-wide range from few Angstroms to millimeters. Applications• Semiconductors• Photovoltaics• Photonics• Process Control • Material Characterization• Optical Coatings• Polymers• Chem- & Bio-Sensing• Packaging• Education Products▶ FR-pRo Build-To-Order tool for any coating characterization needs▶ FR-pOrtable Accurate Characterization of Coatings at the Point-of-Need ▶ FR-μProbe▶ FR-Scanner Automated, Ultrafast, mapping of Thickness & Refr Index▶ FR-Education ▶ BioAnalyzer Fast & Label-free monitoring of bioreactions Slot-Die Coater Slot-Die CoaterPrecision slot-die coating, even in small laboratories.Compact & affordable, the Slot-Die Coater enables scale-up processing for both beginners & experts.Made by Ossila, UK Compatible with both roll-to-roll and sheet-to-sheet deposition processes, slot-die coating is one of the best techniques for scalable thin-film deposition. Its wide processing window ensures stable defect-free deposition for various solution viscosities. Film uniformity is highly accurate, and thickness is controlled by changing the flow rate and substrate speed. Part of the Institute of Physics award-winning Solar Cell Prototyping Platform, the Slot-Die Coater is much smaller than other models on the market (measuring only 36 x 28 x 19 cm). Despite its reduced size, it also includes an integrated Syringe Pump for synchronised start/end times. The entire unit is fully operable via the digital controls on the unit itself. This allows you to easily programme multi-step processes, where different parts of the system can each be controlled independently. Up to 20 of these programmes can be saved for easy repeat experiments. You have control over temperature, substrate speed and alignment, solution flow rate, channel thickness, head height, and more (full details below) ! A range of Slot-Die Coater Accessories including Heads, Shims and Tubing can also be purchased separately. ▶ Features• Space-Saving Design - Designed with lab space in mind, our compact desktop design allows the system to be place on standard laboratory benches, fume hoods, and even within gloveboxes. • Easy Setup - Ready for immediate use upon being plugged into a power socket. With no need for compressed gasses or vacuum lines, it can easily be moved between different labs and different environments. • High Cross-Web Uniformity - By using a simple coat-hanger design for the distribution of solution, the flow rate across the head width is made uniform. This results in highly even coatings across the width for a wide range of viscosities. The stainless-steel slot-die head allows for compatibility with the widest range of materials possible. • Variable Channel Thickness - Interchangeable stainless-steel shims allow the user to change the thickness of the slot die channel. This increases the range of different solutions that can be processed with a single slot die head. By inserting multiple shims, the channel thickness can be increased in intervals of 100μm. • Uniform Flow Rates and Thicknesses - Our slot-die system comes with an in-built syringe pump. This gives users precise control over the amount of solution entering the slot-die system, thus enabling accurate and repeatable control over the thickness of the deposited film. The in-built syringe pump is controlled by the same internal software, so there is no need for any external controls - enabling you to program synchronised starting times for your experiments. • Temperature Control - A built-in hotplate on the stage allows the temperature of the substrate to be controlled up to a maximum of 120°C. In addition, a temperature offset can be set in the software for environments with high air flow, to correct for differences between the substrate and hotplate temperature. Control of the substrate temperatures can improve the wetting of solutions by reducing the surface tension, while at the same time the drying rates can be varied - allowing for changes to the nanostructure of deposited films. • Wide Range of Substrate Speeds - Our motorised stage allows for smooth, continuous movement. With the motor capable of moving at speeds from as low as 1mm/m to as high as 50mm/s, the system has a wide processing window for control of the meniscus. • Precision Alignment - By using a 3-point levelling system along with high precision micrometer gauges it is possible to precisely align the stage relative to the head. • Head Height Control - Two micrometers on top of the head carriage allow for the adjustment of the slot die head relative to the stage. By varying the gap height the stability of the meniscus can be improved and the minimum wet film thickness can be changed. ▶ ApplicationsThere are a significant number of applications for slot-die coating so far, including:• Organic Photovoltaics• Organic Field-Effect Transistors• Conductive Polymers• Nanowires and Nanotubes• 2D Materials• Organic Light-Emitting Diodes and Perovskite Light-Emitting Diodes• Perovskite Photovoltaics• Electrolytes and electrodes for Li-ion batteries• Dye-Sensitized Solar Cells• and many more... Tergeo Plasma Cleaner Tergeo tabletop plasma cleanersTabletop & remote plasma cleaners for sample cleaning, surface treatment & activation, photresist ashing Sample cleaning & etchingSurface wettability modificationPromote bondability & adhesion Generate oxygen, argon, nitrogen, hydrogen, and ambient air plasma to ash photoresist, descum after patterning, remove hydrocarbon and other types of surface organic coatings or contaminations, change surface energy and improve the bonding strength. Tergeo series plasma systems are laboratory tabletop plasma system. The maximum chamber diameter is 160mm (6.3 inch). Here are some typical applications: • Integrated circuit chip cleaning before wire bonding and packaging• TEM and SEM sample cleaning for hydrocarbon contamination removal• Plasma treatment for hydrophilic or hydrophobic surface wettability• Surface preparation to improve epoxy/glue bonding strength• Glass and optical fiber heads cleaning for optics, laser and communication• Improve wettability for MEMS microfluidics devices.• Photoresist ashing and descum after patterning• Device decapsulation for failure analysis.• Contact lens, medical implant and other type medical device surface treatment and activation Tabletop plasma cleaners model:▶ Tergeo Automatic tabletop plasma cleaner for research laboratories and low volume production ▶ Tergeo-plus Large chamber tabletop plasma cleaner for R&D, low to mid volume production ▶ Tergeo-EM Tabletop plasma cleaner for SEM/TEM sample cleaning Plasma Etch & Deposition PlasmaStar 100/200A Unique Modular Approach to Barrel Plasma Processing The PlasmaSTAR® Series of Plasma Processing Systems from Axic, Inc. defines a new concept in barrel plasma processing. The systems are based on a modular design concept. Starting with a universal base unit, multiple electrode modules are available for easy insertion into the base unit. You will find the ease of use, variety of plasma processes, serviceability and attractive pricing unsurpassed by any other plasma. - Interchangeable Electrode Modules- A Multiple Electrode Configurations: Cage, Tray, RIE, Downstream- Proven Process Recipes- Field Proven Components- End-Point Detection (optional)- Auto RF Matching- Downstream Pressure Control (optional)- Computer Controlled- Touch Screen Operation- Multiple Pumping Options System DescriptionIn the research, process development and production of plasma processing, the need for a highly versatile and reliable tool is always in considerable demand. With the ever changing requirements in plasma research, the system selected must he capable of offering the widest range of process parameters, highest degree of repeatability for verifying the process and easily modified for new process requirements. The PlasmaSTAR® series of dry process systems will satisfy the demanding requirements necessary to perform these tasks. The PlasmaSTAR® is a plasma tool used in research, process development and volume production for photo-resist striping and descuming, isotropic and an isotropic etching, organic ashing, hybrid circuit cleaning, printed circuit board desmearing, failure analysis, surface treatment and modification of plastics, polymer deposition, and a wide range of other plasma applications. The PlasmaSTAR® product line offers a uniquely new modular approach to barrel plasma systems. The PlasmaSTAR® will accommodate the processing of 200 mm or smaller substrates. (For single wafer RIE processing of 300 mm wafers) The selection of proven, quality components, modular sub assemblies, versatile chamber-electrode design, compact size, automation and field proven process recipes will make the PlasmaSTAR® the "system of choice" for plasma process engineers. ApplicationsWith the PlasmaSTAR®’s wide selection of chamber and electrode configurations the system is capable of satisfying a wide range of plasma processing conditions. These processes range from simple surface cleaning to sophisticated submicron RIE etching. Axic, Inc., in conjunction with our large customer b ase has developed proven process recipes guaranteeing your system is up and processing from the day you install the system. Only the highest quality sub components are used in the manufacturing of the PlasmaSTAR® system providing the highest up-time, reliability, repeatability and serviceability.Typical processes include: - Plasma Descuming- Photo-Resist Stripping- Surface Treatment- Anisotropic & Isotropic Etching- Failure Analysis Applications- Material Modification- Package Cleaning- Passivation Etching- Polyimide Etching- Adhesion Promotion- Biomedical Applications- Polymerizaton- Hybrid Cleaning- Pre-Bond Cleaning UV Ozone Systems UV Ozone Systems Instruments that Work Easy-to-use, high quality, reliable and affordable ▶ The PSD Series (PSD-UV)▶ The PSD Pro Series (PSDP-UV) ▶ The PSD Pro Heated Series (PSDP-UVT)The PSD and PSDP systems are similar in performance and dimensions, but vary in controller capability, upgradability and heated stage options. Selecting the proper system for your application• atomic cleaning of surfaces• polymer bonding• organic molecule stripping• release of trapped inorganic molecules• microfluidic fabrication• micro and nano-patterning• UV curing• chemical surface modification• surface sterilization• surface oxidation• metal bonding prep... and more Sample Applications In addition to the above uses, Novascan's PSD series instruments are often used for scanning probe microscopy applications. Our instruments can be used to clean common oily films and trapped inorganic materials from AFM tips, SPM standards and surfaces. Treatment can also be used to alter surface hydrophobicity, assist in tip and surface chemical modifications, oxidize and harden tips helping to maintain tip geometry while scanning, and sharpen tips for improved lateral resolution. Novascan instruments are used in nanotechnology, chemistry, biology, optics, electronics, semiconductor, and other scientific laboratories around the world. The PSD Series publication list continues to grow. Sample SubstratesSilicon/Silicon Nitride/Borosilicate Glass/Silcon dioxide/Mica/Quartz/Metals/Ceramics/Sapphire/Gallium Arsenide/Polymers such as PDSMOther Materials Contaminated glass laboratory slide Contaminated glass laboratory slide after 10 minutes of PSD treatment Glass laboratory slide, decontaminated after 20 minutes of PSD treatment UV Flood Curing System IntelliRay - Full-Featured UV Flood Curing System The IntelliRay is a compact microprocessor-controlled UV flood curing system. All system components are integrated into a small lamp head which can be easily mounted on the optional Rayven benchtop curing chamber or anywhere on a factory floor, with virtually no cabling or remote power boxes required. Just mount the head, connect the AC line cord, and start timed exposure curing! The system contains an integrated retractable shade type shutter, which allows for repeatable exposure timing, and shields the user from UV rays. The system’s LCD display and digital keypad make programming and monitoring of curing operations a snap. The long life arc lamp and parabolic reflector illuminate an 8 x 6 inch curing area with evenly distributed UV light. The arc lamp is powered by the state of the art UV Power-Plus Lamp Driver. For a larger version of this system, see the IntelliRay Quad. The head features a convenient carrying handle and sliding height adjustment bracket. • The IntelliRay is available in 400W or higher intensity 600W version. • 175 mW/cm2 Intensity @ 3"• 8" x 6" curing area• User control of time & intensity / Remote control & reporting via PC or PLC• Integrated exposure shutter• Solid-state / Constant power• Optional shielded benchtop curing chamber SpecificationsSystem TypeParabolic Flood Curing SystemPart #UV0338UV0832Lamp Power400W600WInput Voltage100-120 / 200-240 VAC ±10% (auto-ranging)Input Current (Max)7.0/3.5 Amps10.0/5.0 AmpsIrradiance@ 3"115 mW/cm2 UVA, typical175 mW/cm2 UVA, typicalCuring Area8" x 6"Weight13 lbsSize (L x W x H)11” x 10” x 9” System TimersDuration of curing is controlled by a 1 to 9999 second or hour exposure timer that actuates the shutter. The exposure timer also has a user controlled manual mode, and a mode for use in long exposure applications such as artificial aging or solar panel testing. Lamp Intensity ControlThe system has a user adjustable intensity level. This feature provides the flexibility of choosing appropriate curing intensity for sensitive materials. Time, intensity as well as all other settings can be password protected. Standby ModeThe unit automatically reduces lamp power when the shutter is closed. This reduces excessive heat and therefore increases life of system components, without the need to power down. Status IndicatorsFour front panel LEDs are provided: Lamp ready, system in standby mode, shutter open, and system alarm. External Logic Signal InterfaceThe system can be remotely monitored and controlled using logic signals available at a 15 pin D-sub connector on the unit’s rear panel. The digital logic functions allow high speed control of the IntelliRay for applications requiring a direct interface with machine controllers or PLCs. Remote Control via PC Serial PortThe system can also be remotely controlled via a RS232 / RS485 serial port. A Windows™ compatible graphical interface program allows all system functions to be exercised (see photo), and with RS485, multiple units can be networked. Foot Pedal ControlAn optional shutter control foot pedal is available for applications requiring hands-free operation. The pedal can be used in conjunction with the system's exposure timer, or in a manual mode in which the shutter remains open as long as the pedal is pressed. Lamp Power RegulationThe system’s switch mode power supply maintains constant lamp power regardless of variations in AC line input or lamp voltages. The result is repeatable curing times throughout the life of the lamp. Auto-Range AC Line InputThe Auto-Ranging 90-132 / 180-265 VAC line input makes the Uvitron IntelliRay easy to use in any country, with no wiring changes or voltage select switching required. Forced Air CoolingA baffled fan cooling system with removable filter channels cooling air appropriately to all components to ensure high system reliability. Best-in-Class Lamp LifeThe IntelliRay systems now have enhanced lamp life which rivals even microwave and LED systems, significantly lowering operating and maintenance costs. Typical lamp life (intensity versus time) charts are available for 400W and 600W IntelliRay systems. EMS Hot Plates Hot PlatesThe EMS has been supplying precision Hot Plate to the semiconductor fabrication industry for over 35 years. The Models have changed over the years to meet customer requirements which has lead us to focus on the key features such as simple set up, precise temperature control, reliability and robustness. Please follow the links below for more details on each product. ▶ Hot Plate Model 1000-1▶ Hot Plate Model 1000-3 Laminating LaminatingSystems for laminating cards & webs Matrix 2210 Universal Laminator Module The Matrix 2210 Universal Laminator Module is an easy to use card lamination instrument. Designed to laminate a wide variety of rapid diagnostic test strip products, this unit can easily support your laminating requirements from product development through production quantities. Constructed of high quality components and engineered for long life, the Matrix 2210 will provide outstanding performance and value. With a patented, low cost, quick change track alignment key system, you may begin processing an entirely different card product in a matter of minutes. Combined with this unique flexibility is Kinematic Automation's proven performance and reliability embodied in all Matrix Series modules. The Matrix 2210 vs. other Laminators• Flexible for multiple products (changing the alignment system in 60 seconds)• Vacuum is generated by compressed air• Card is made right side up Key Features• Quick change track alignment key• Low Cost• Process multiple products with one unit• Verify high laminating accuracy• Repeatable process control• High throughput• Very low maintenance• Ease of use and set-up• User configurable vacuum platens Arbor Presses ARBOR PRESSESNobody in the industry offers a wider range of tonnage and sizes in arbor presses than Dake. We manufacture 17 different standard single leverage, ratchet leverage, and compound leverage arbor presses. For strength and durability, all frames are cast iron and incorporate a flanged spine design which adds rigidity to the press body. Arbor press bases are machined for maximum stability and drilled to permit side mount, bench, or pedestal mounting. ▶ Single Lever Arbor Presses▶ Ratchet Lever Arbor Presses▶ Compound Leverage Arbor Presses▶ Air Arbor Presses Optical Reagent Optical ReagentCargille develops and manufactures optical liquids calibrated for refractive indices for use throughout the many laboratory disciplines involving microscopy and optics. Cargille has also consistently led in the development and standardization of immersion oils for over 50 years. Cargille Immersion Oils meet or exceed the ISO 8036-1 Standard. Other major products which Cargille concentrates on include highly stable Laser Liquids, mounting medias, optical gels, fused silica matching liquids, comminuted optical glass & mineralogical reference standards. ▶ IMMERSION OILS ▶ REFRACTIVE INDEX LIQUIDSAll Refractive Index Liquid Sets are sold in 1/4 fl. oz bottles (7cc) with applicator caps. Sets are packed in partitioned boxes for convenient access and storage. Temperature coefficients and dispersion values (nC, nF, nF-nC, Abbe vD) are included on each index liquid label. All Refractive Index Liquids are standardized at 589.3 nanometers (D line) and 25°C. ▶ BRIX-STOCK AND CUSTOM BLENDED LIQUIDS ▶ CALIBRATION LIQUIDS▶ MOUNTING MEDIA ▶ CUSTOM MADE REFRACTIVE INDEX LIQUIDSImmersion Liquid formulations are custom blended at 589.3 nm and 25°C to an accuracy of ±0.0005 in the range of nD 1.293 – 1.700. Laser Liquids formulations are custom blended at 589.3 nm and 25°C to an accuracy of ±0.0002 in the range of nD 1.2930 – 1.6300. Deviations from the standard specifications are available for changes in wavelength, temperature and accuracy at an additional cost. ▶ MATCHING LIQUIDSSpecialized Optical Coupling (index matching) Liquids that closely match the refractive index of common materials (Fused Silica, BK 7 and Water) at given wavelengths. Please contact our technical department for optical coupling of additional materials. ▶ OPTICAL GELSOptical coupling gel primarily used to match the refractive index of fused Silica and BK-7 glass but can be utilized for other glasses. Optical Gel Codes 0607 and 0608 are optically and chemically nearly identical, and both are used for coupling optical fibers and other optical components, and for mode stripping. Optical Gel Code 0607 is a thinner gel than 0608 and, upon standing, the surface of 0607 will normally appear to be fluid. Code 0608 appears to be much less fluid. Perovskite Materials PEROVSKITE MATERIALS• PEROVSKITESIodidosBromidesChloridesThiocyanatesCyanatesSpiroTetrafluoroboratesHexafluorophosphateTFSIAcetatesTrifluoroacetatesDiammonium • HOLE TRANSPORT MATERIAL DOPANTS & COBALT COMPLEXES DSC MATERISLS• DYES & SENSITIZERSC106 Dye C106K19 Dye K19N3 Foundation Dye N3N719 Industry Standard Dye N719N749 Black Dye N749Z907 Hydrophobic Dye Z907 • ELECTROLYTES & COMPONENTSEthyl Isopropyl Sulfone EL-HPE High Performance Electrolyte EL-HPEEL-HSE High Stability Electrolyte EL-HSEEL-HTE High Temperature Electrolyte EL-HTEUltra High Stability Electrolyte PASTES & INKS• TITANIA & PLATINUM PASTESBL-1 Blocking LayerMPT-2018NR-AO Active Opaque Titania PasteCELS Counter Electrode Solution30 NR-DWER2-O Reflector Titania PastePT1 Platinum Paste90-T Transparent Titania Paste (Thin Use)18NR-T Transparent Titania Paste • SILVER INKS GLASS & SEALANTS• GLASS SUBSTRATESPrinted GlassTEC7 Glass Plates TEC7TEC8 Glass Plates TEC8TEC15 Glass Plates TEC15Platinum Coated Test Cell Counter Electrodes with Fill HoleTiO2 Coated Test Cell Glass Electrodes (Opaque) TiO2TiO2 Coated Test Cell Glass Electrodes (Transparent) TiO2 • SEALANTSTwo Part Thermal Cure Epoxy Compound - Clear Two Part Thermal Cure Epoxy Compound - Opaque Aluminium Thermoplastic Laminate High Temperature Thermoplastic Sealant Low Temperature Thermoplastic Sealant Two Part Hermetic Sealing Compound Two Part Interconnect Polymer Two Part Neutral Assembly Polymer LIGANDS & ADDITIVES• LIGANDS & INTERMEDIATES4-Bromo-N,N-bis (4-iodophenyl) anilineC101 Ligand C101C106 Ligand C1061-Chloro-2,4-bis (hexyloxy) benzene 1-chloro-2,4-bisDCBP Anchoring Ligand DCBPDMBP Building Block Ligand DNBP Hydrophobic Ligand DNBPFK 102 Ligand FK 102FK 209 Ligand FK 209FK 269 Ligand FK 269K19 Ligand K19TCBA Black Dye Ligand tcba4-bromo-N,N-bis (4-methoxyphenyl) aniline 4-(tert-butyl)-2-chloropyridine 44-(tert-butyl) pyridine-N-oxide 4 • ADDITIVES AND MODIFIERS5-AVAI5-AVAB5-AVAC DT-2030 Slot-Die Coater Slot-Die CoaterModel Number: DT-2030 Process and Application IntroductionThe coating system mainly consists of feeding units and coating units. The coating unit is composed of upper and lower dies and thin spacers mounted between them, made using precision machining. The feeding unit consists of material storage, conveying injection pumps, and filtration devices. The system precisely moves the coating mold relative to the substrate, controlling the rate, precise metering, and pumping of process fluids. This process extrudes liquid chemical materials from the gap between the upper and lower dies onto the moving substrate (such as glass, stainless steel, and plastic) to form a film. The film thickness can be directly calculated by the liquid flow rate and substrate moving speed. Its advantages include high film uniformity, wide range of applicable coating viscosity, fast coating speed, and the ability to produce large-area films. It is suitable for the coating of substrates such as organic photovoltaic (OPV) cells and perovskite solar cells (PVK). Multiple specifications and sizes are available for selection or customization, with various user-friendly configurations such as heating tables, FFU air shower systems, multiple size doctor blades, and different specifications of spacers, meeting various customer needs and providing tailored high-precision professional equipment. Product AdvantagesBrand Advantages:1. Experience: Over a decade of experience in slot die coating.2. Coating Size: Offers large-area coating solutions.3. Brand Recognition: Holds a market share of 70% in the industry.4. Physical Presence: Operates laboratories and factories.5. Customer Experience: Provides laboratory facilities and equipment support for sample testing, and welcomes factory visits.6. After-sales Support: Has a dedicated team to provide timely and efficient service to customers.7. Customization: Offers customization options.8. Cost-effectiveness: Independently develops products with core componentssourced from imported brands. Slot Die Coater Structural Design Advantages:1. The base adopts an integrated design with marble: ensuring the stability of the entire base platform and high precision of the sample table.2. Double Z-axis design: lifting the blade head through dual Z-axis ensures long-term coating stability and blade head parallelism.3. High-precision automatic blade alignment: convenient operation, high precision, and prevents collisions.4. Injection pump: capable of 5-stage program linkage to minimize edge effects.5. Air knife: adjustable scale/angle/height settings, maintaining a distance of 1mm-2mm from the coating head to ensure stable airflow and crystallization of the film surface across the entire coating area.6. Specialization: fluid simulation design of the cavity and customized blade heads.7. Factory standards: strict adherence to in-house quality control, with equipment undergoing 2000 cycles of testing before leaving the factory. Technical Parameters1. Substrate: FTO Glass / ITO Glass / Flexible Conductive Film (Attached to Rigid Substrate) Treated with Ultraviolet Ozone2. Substrate Thickness: 0.1-3 mm3. Sample Table Area: 200mm (Width) * 300 mm (Length)4. Coating Dry Film Thickness: 0.02-10 um5. Solid Content: 10-50%6. Viscosity: 1~100 cps7. Coating Speed: 1-80mm/s8. Coating Width: 200mm9. Distance between Coating Head and Platform:-Fine Adjustment Range: 0-10mm-Unit Adjustment Accuracy: 0.001mm-Coarse Adjustment Range: 0-50mm10. Blade Head Horizontalness: ±3um11. Platform Flatness: ±3um12. Blade Head Slot Width: 0.05/0.08/0.1mm (Three sizes of spacers available)13. Power Supply Voltage: AC 220V x 50Hz14. Base Fixation: Vacuum Adsorption15. Syringe Capacity: 5ml M6000 Multifunctional Bonder M6000 Multifunctional BonderM6000 multifunctional bonder is a manual bonding equipment used to connect the chip pads to the pads on the substrate or lead frame with platinum wire, gold wire/tape, aluminum wire, silver wire or copper wire. It is a semiconductor One of the key equipment necessary for the post-packaging process on the production line.M6000 bonding machine has two functional modes of ball welding and wedge welding. It adopts XYZ integrated operation handle and electric brake structure, which makes the equipment operation flexible and convenient; unique ultrasonic control algorithm, stable ultrasonic output frequency and fast response speed; FPGA parallel Control algorithm design, fast bonding speed; high-precision voice coil motor force control technology and force compensation algorithm design, precise bonding pressure control, high bonding accuracy; integrated design of the whole machine,compact structure, good user experience.Equipment application fieldsM6000 multifunctional wire bonder is widely used in microwave devices, hybrid circuits, RF devices/modules, discrete devices, sensors, COB modules, MCM, MEMS devices, optoelectronic devices,etc.Main parameters Hall Effect Testing System Hall Effect Testing SystemThe Hall Effect Testing System HET-3L is based on the van der Waals method to measure the electrical transport performance parameters of materials, such as carrier concentration, mobility, resistivity, Hall coefficient, etc. It can be used to measure thin film or thin layer materials and can be applied to all semiconductor materials,including Si, ZnO, SiGe, SiC, GaAs, InGaAs, InP, GaN (N-type&P-type can be measured). It is widely used in domestic universities, research institutes, semiconductors, metals, high thermal conductivity organic new materials and other industries.Product Featuresl Adopt a precision constant current source and voltmeter to ensure good accuracy and high stability of instrument testing, with superior performance.l The test parameters are consistent with scientific research equipment, with complete functions and high cost - effectiveness.l It can test non - standard samples, is easy to install, and meets teaching and scientific research needs at the same time.l It is an innovative experimental equipment and can be used as a comparison and supplement to basic university physics experiments.l Equipped with self - contained software, optimized for Chinese users, making the testing process more convenient.Application Functionsl Carrier type identification: By measuring the Hall coefficient, the type of current carrier can be determined, whether it is positive - charge holes or negative - charge electrons, so as to obtain the electronic structure and band characteristics of semiconductors or conductors.l Carrier concentration measurement: There is a relationship between the Hall coefficient and the carrier concentration. Therefore, by measuring the Hall coefficient, the carrier concentration in the material can be estimated.l Mobility evaluation: The Hall coefficient can also be used to calculate the carrier mobility, that is, the ability of charge carriers to move in the material, so as to conduct in - depth research on the electrical conductivity and electron mobility of the material.l Material electrical performance evaluation: By understanding information such as the electronic structure, carrier type, concentration and mobility of the material, the electrical performance of the material can be evaluated more comprehensively, providing important references for the design of electronic devices and circuitsTechnical Parameters (Partial)Temperature Range: Room TemperatureMagnetic Induction Intensity: 0.6TResistivity Range: 10- 5 -106Ω•cmHall Coefficient Range: 10-2-106cm3/CMobility Range: 1-105cm2/(V•s)Carrier Concentration Range: 1012-1021/cm3Sample Size: Edge Length or Diameter:10mm–20mm; Thickness: 10nm-1mm Rapid Thermal Processing Product Advantages:True Real-Time Temperature Accuracy: Unlike systems that use low-sensitivity components to mask issues like temperature overshoot and instability, our furnace provides a true reading of the actual sample temperature. Our self-developed, non-traditional PID temperature control ensures zero overshoot, even at the maximum heating rate.Superior Heat Exchange & High Efficiency: Our advanced heat exchange system consumes up to 70% less power than comparable products. This high efficiency enables superior performance during prolonged heating and reduces dependency on complex water-cooling requirements. The system operates with low electricity consumption and supports extended high-temperature processing without the risk of generating peculiar odors or chamber damage—a common issue in other systems.Advanced Uniformity & Lamp Technology: Multi-zone temperature control allows for precise adjustment of temperature uniformity via an intuitive APP interface. A unique lamp cooling system extends light source lifespan to internationally competitive levels, while a scientifically optimized wavelength spectrum ensures effective absorption by semiconductor materials.Proven Safety & Reliable Supply Chain: The system incorporates comprehensive abnormal condition protection and is designed with extensive experience in handling special process gases like hydrogen and ammonia. Our global user base has maintained a perfect safety record over 30 years. We ensure a secure supply chain with guaranteed availability of spare parts and reliable delivery times.30 Years of Global R&D Leadership: With a presence spanning the globe over three decades, we have contributed to various national key scientific research projects, demonstrating superior R&D capability. We offer extensive customization services for our main product lines to meet specific customer application needs.▶ PRODUCTSRTP500SV Rapid Thermal ProcessingRTP500Z Rapid Thermal ProcessingRTP600V Rapid Thermal ProcessingRTP800V Rapid Thermal ProcessingFRTP1200V Rapid Thermal Processing Four-Point Probe Quick and accurate characterisation for a wide range of materialsExperience effortless sheet resistance measurements with the system's easy-to-use PC softwarePart of the Institute of Physics award-winning Ossila Solar Cell Prototyping Platform, the Ossila Four-Point Probe System is an easy-to-use tool for the rapid measurement of sheet resistance, resistivity, and conductivity of materials.Built with a high-specification Ossila Source Measure Unit at its core, the Ossila Four-Point Probe is a low-cost system that allows a wide measurement range. The probe head uses spring-loaded contacts instead of sharp needles, preventing damage to delicate samples, such as polymer films with thicknesses on the order of nanometres.Key FeaturesWide Current RangeThe four-point probe is capable of delivering currents between 1 μA and 200 mA, and can measure voltages from as low as 100 μV up to 10 V. The system can measure sheet resistances in the range of 100 mΩ/□ to 10 MΩ/□, enabling the characterisation of a wide range of materials.Easy-to-UseJust plug in the system, install the software, and you're ready to go! The intuitive interface and clean design makes the four-point probe easy-to-use, simplifying the measurement of sheet resistance. Substrates of various shapes and sizes can be used.High AccuracyPositive and negative polarity measurements can be performed using the PC software. This enables you to calculate the average sheet resistance between positive and negative currents — eliminating any voltage offsets that may have occurred, hence increasing the accuracy of your measurements.Non-Destructive TestingDesigned with the measurement of delicate samples in mind, the four-point probe head utilises gold-plated, gentle spring-loaded contacts with rounded tips. This results in a constant contact force of 60 grams, preventing the probes from piercing fragile thin films, whilst still providing good electrical contact.Space-Saving DesignThrough careful design consideration, we have been able to keep the footprint of the four-point probe to a minimum (total bench area of 14.5 cm x 24 cm), allowing it to be used even in busy labs where shelf space is limited.Rapid Material CharacterisationThe PC software (included with the system) performs all the necessary measurements and calculations for sheet resistance, resistivity, and conductivity — making material characterisation effortless. It also automatically performs correction factor calculation.Four-Point Probe Measurement Specifications Dip Coater Precision dip coating coating machineProduce high quality thin films every time with the Ossila Dip CoaterTo provide accurate movement, the Ossila Dip Coater uses the same high-precision stages as can be found in our slot die coater and syringe pumps. The result is a dependable machine which can consistently produce and reproduce high-quality films with ease, every time you use it.Built-in software means that you can get started as soon as your dip coater arrives. Choose between two modes of operation: manual and automatic. The immersion and withdrawal of the Ossila Dip Coater system can be set independently and both constant and variable film thicknesses can be created. Programmes can be saved in 10 individual user profiles, each of which can store up to 20 routines, so that you can easily coat multiple substrates without needing to reconfigure the device each time.Key FeaturesHigh-Precision MotorBuilding upon our motorised stages used in our slot die coater and syringe pump, we have developed a motor with a high degree of accuracy and reproducibility. You can be sure that each time you coat your sample, you will get the same results every time.Smooth MotionWith the micro-stepping motor, your substrate will be immersed and withdrawn using smooth and precise movements, ensuring high-quality film coatings.Wide Range of SpeedsOur Dip Coater can withdraw a substrate from solution at rates varying from as low as 0.01mm/s to as high as 50mm/s. This gives a wide range of coating thicknesses - all from a single dip-coating system.Variable Withdrawal SpeedsThe speed of withdrawal can be varied across the substrate length. This enables you to produce thickness gradients across a film for the quick optimisation of film thicknesses.Compact SizeThe small footprint of the system enables you to perform measurements even in the smallest and busiest labs! With a total bench area of 20 cm x 30 cm, you can be assured that the Dip Coater will fit in your lab.Sturdy, Non-Slip DesignWith rubberised feet, the Dip Coater will remain in place where you want it to!Simple-to-Use SoftwareThe in-built software and controls on the Dip Coater have been designed to make it easy for you to programme an experiment. By setting the immersion speed, dwell time, withdrawal speed, and drying time, the entire dip coating process can be completed.Saved RecipesThe dip coater is capable of saving up to 20 different coating recipes. This saves time by allowing you to store working recipes for future use - perfect for busy labs, where multiple scientists share the same piece of equipment!Full Colour DisplayIn any lighting condition, you can easily read the Dip Coater's coloured screen. The angled screen has been cleverly designed for comfortable viewing in the lab.In-Built SafetyEnsuring the highest degree of safety, the Dip Coater has a crash detection system built into the software. This will detect when the substrate or arm crashes into the base of the coater or a beaker. Upon detecting this, the motor will stop. This reduces the chance of damaging your samples, glassware, or the Dip Coater itself.Quick-Release ClampOur quick release clamp design allows the user to quickly load and unload samples onto the dip coater arm.Magnetic Attachment for RulersBuilt-in magnets are strategically located beside the clamp, so you can conveniently secure a metal ruler (included) in place for storage or for easy measurement.Specifications UV Ozone Cleaner Ultra-Clean Surfaces in MinutesProduce near-atomically clean surfaces without causing damage to the sampleWithin minutes, the Ossila UV Ozone Cleaner is capable of removing contamination from the surface of substrates and samples, providing ultraclean surfaces. Using a high-power UV light source to generate ozone and break down organic surface contaminants, the procedure can produce near-atomically clean surfaces without causing any damage to your sample. Volatile compounds created from surface contaminants will quickly evaporate, leaving the sample ready for the next part of your experiment.The our UV ozone cleaner is an extremely versatile piece of equipment. It is able to treat a wide range of materials for a number of different applications and will soon be an essential part of your lab.High Intensity UV LampThe Ossila UV Ozone Cleaner houses a series of high intensity, low pressure synthetic quartz mercury vapour discharge lamps. By utilizing the emission at 185 nm and 254 nm, ozone is generated. The presence of ozone and UV light allows for the removal of organic material. The high intensity output gives results quickly and facilitates a large cleaning area.Large Cleaning AreaDespite the small footprint of the unit itself, there is a large illumination area. The tray can accommodate wafers with up to 153 mm diameter (6 inch), which allows for the cleaning of a wide array of samples, including:Microscope slides、6-Inch wafer、AFM tips、Diced substrates、Petri dishes and more.The maximum recommended substrate thickness is 12 mm.Simple to Use InterfaceThe bright LCD display and tactile keypad provide a simple interface. With the easy-to-use built-in software, it only takes a short time to start cleaning your samples.Using the buttons on the front of the unit, it is easy to control the cleaning time. The built-in software continuously monitors the temperature inside the system; the panel can show temperature readings for the tray, UV lamp, and electronics. This makes it easy to make sure that delicate samples do not overheat.UV Light SpecificationsDimensions and WeightMaterials and FinishUser InterfaceSafety FeaturesPower SupplyCertification and Standards LED Measurement System Simplify LED IVL characterisation for rapid resultsA long-term and low cost LED characterisation and lifetime measurement systemThe Ossila LED Measurement System provides a low cost and complete solution for performing current-voltage-luminance (IVL or JVL) characterisation of LEDs. The device holder has built-in light sensors to allow for illuminance, luminance, and white count measurements. To simplify device testing, the software will also calculate the current and power efficiency of your LED. Lifetime mode, meanwhile, measures the performance of the LED over an extended time under a constant voltageKey FeaturesRapid CharacterisationOur intuitive software (included) makes it easy to take current-voltage-luminance measurements. The system records illuminance, luminance and white count. To speed up the characterisation process, the system will then calculate both the current efficiency and power efficiency of your LED.Quick and EasyPlug in the system, install the PC software, and you're ready to go! The Ossila LED Measurement System has been designed by research scientists to address the frustrations associated with measuring and characterising LEDs. The intuitive interface and clean design make the system simple and easy-to-use.Wide Measurement RangeThe built-in Source Measure Unit is capable of delivering voltages between -10 V and +10 V, with a maximum resolution of 170 μV, measuring currents from as low as ±10 nA up to ±200 mA, and illuminance up to 100 klx.Measure Device StabilityBy applying a constant voltage and measuring the current, luminance, and efficiency over an extended period of time, the stability of LEDs can be tracked and analysed.Intuitive SoftwareOur intuitive PC software (included) makes it faster and easier to characterise LEDs. Create and save settings profiles, plot your data in real time, and export the results as a CSV file.Measurement Specifications Solar Simulator Discover the Class AAA Solar Simulator for Small-Area Solar CellsReliable LED light source for fast and consistent solar cell testing at an excellent priceCompact and low price, the Ossila Solar Simulator is ideal for characterizing small-area solar cells, providing:Excellent AAA spectral distribution over a 15 mm diameter areaABA classification over a 25 mm diameter area (IEC 60904-9:2020 International Standard)Stable and reliable output, easily achieving Class A temporal stabilityRequires zero maintenance and minimal warm up time.Just plug it in, turn it on, and start measuring.You can buy on its own to be easily integrated into your solar cell testing lab - or as part of our solar cell I-V test systems (available as a solar cell testing kit) to equip your laboratory with a fully integrated PV characterization system.LED LampThe Ossila Solar Simulator uses light-emitting diodes to generate its light output. The advantages of LEDs over arc-lamp or incandescent alternatives include:High efficiencyLong operating lifetimeHigh temporal stabilityZero maintenanceSpectral tunabilityVirtually zero warm-up timeOzone-freeNo explosion riskThese many advantages of LED light sources result in a solar simulator that can reliably and accurately reproduce the solar spectrumModular DesignThe modular design of the Ossila Solar Simulator gives you the freedom to create a solar testing system that fits into your laboratory. There are various accessories and kits designed around the solar simulator, to suit different substrates, device architecture and measurement needs.This includes the Ossila Solar Simulator Lamp alone for custom mounting, the height adjustable system for use with your existing test setup and the Solar Simulator packaged with our manual/automated solar cell IV test system for complete solar cell measurement.Easy-to-Use SoftwareThere is no special programming or set up needed for the Ossila Solar Simulator to deliver dependable, high-quality solar irradiance. In most cases, all you need to do is plug it in and turn it on. By default, the lamp will deliver a calibrated output optimized to meet the solar spectrum.However, our free, downloadable software allows you to control the LED outputs individually as well as change the total irradiance output. You can also control the lamp using a serial command library. This can be useful for specialist measurements or non-conventional spectral output (e.g. indoor PV measurement, low light intensity conditions, etc).Compact Design, Adaptable FunctionalityThe Ossila solar simulator has a very small footprint, so is perfect for high-density laboratories. It can also be used in closer spaces where space is limited, such as a glove box*, a dry box or in a laminar flow hood.The Solar Simulator comes with its own optical breadboard, so it can be placed on any work top. However, both the stand and breadboard can be fixed to a larger optical bench surface if desired.General SpecificationSolar Simulator ClassificationHow are Solar Simulators Classified?There are several different recognized standards for classifying solar simulators, each of which is published by a different standards organization (IEC, ATSM, or JIS). Although there are slight differences between the standards, they all classify solar simulators based upon their performance in three key areas. These areas are:Spectral match to a standardized solar spectrumSpatial Non-uniformityTemporal instabilitySolar simulators receive a grade A to C in each of these areas. The better the performance, the higher the rating. The latest IEC 60904-9:2020 standard, and the one which we follow, also allows for an A+ classification in each field. Solar Cell I-V Test System Solar Cell I-V Test SystemAll Measurement Equipment, Price Reductions and Sales, Solar SimulatorsPart of the Institute of Physics award-winning Ossila Solar Cell Prototyping platform, the Ossila Solar Cell I-V System is a low-cost solution for reliable characterization of photovoltaic devices. The PC software (included with all variants of the system) measures the current-voltage curve of a solar cell and then automatically calculates key device properties. In addition, I-V measurements can be performed periodically over time to track the stability of these properties.The system is available with either manual or automatic pixel switching (if you are using one of Ossila's substrate systems), or without a test board for use with your own substrate and testing system or if you already own one of our test boards.Calculates Device PropertiesThe included PC software automatically calculates key properties of solar cells from the measured I-V curves. These properties include: the power conversion efficiency (PCE), fill factor (FF), short-circuit current density (Jsc), open-circuit voltage (Voc), maximum power (Pmax), shunt resistance (Rsh), and series resistance (Rs).Rapid CharacterizationIf you are using one of our substrate systems, the Solar Cell I-V System can be purchased with a multiplexing test board (just select the 'automated' variant of your choice in the drop-down list), which enables automatic pixel switching. As an added bonus, the temperature and light will also be recorded during the measurement!Easy-to-UseJust plug in the system, install the PC software, and you're ready to go! The intuitive interface and clean design makes the Solar Cell I-V System easy-to-use, simplifying the characterization of solar cells.Wide Measurement RangeThe built-in source measure unit is capable of delivering voltages between -10 V and +10 V, with a maximum resolution of 170 μV, and measuring currents from as low as ±10 nA up to ±200 mA.Measure Device StabilityBy performing repeated current-voltage measurements over an extended period of time, the stability of key device properties can be tracked.Multiple System Types AvailableChoose from our range of system types (automated, manual, or source measure unit only) depending on your requirements. Contact Angle Goniometer Rapid contact angle and surface tension measurements with easy, accurate analysisOptimise inks and coatings efficiently with HD recording and intuitive PC softwareKey FeaturesSimple to UseThe system comes complete with PC software that provides a simple and intuitive interface for contact angle and surface tension measurements. We also provide user guides and videos to help you get the most out of your experiments.Compact SizeThe small footprint of the system lets you perform measurements in labs even when space is lacking. With a total bench area of 10 cm x 30 cm, you won't need to devote a whole desk to a single piece of equipment.Easier Ink OptimisationA low price and small size makes it possible for labs to have multiple systems. This enables constant access to contact angle and surface tension measurements, without needing to wait in line for a colleague to finish using it. The continuous feedback you gain from in-line measurements will speed up your ink formulation process.High-Resolution VideoTake quality videos of your droplets using the high-resolution camera and a specially selected imaging lens. Watch and edit your videos and images however you like by exporting them as .avi and .png files.Rapid Image CaptureThe high frame rate of the system allows you to study the wetting process in detail, and gain increased insight into film formation.Contact Angle Goniometer |