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93 results found

  • ProDigitek

    Glove Box Feed-Through Kits (ProDigitek Product), Analytical cell, Corrosion cell, Glassware, Electrodes, Rotating electrodes, Spectroelectrochemistry, Quartz crystal analyzer, Battery holders, Cells for battery testing, Fuel cell, Connection accessories, Local probes accessories. ANR Technologies. ECHEM Accessories Home Products Electrochemistry ECHEM Accessories Product Range ECHEM Accessories We offer a wide range of accessories : Electrodes Electrochemical Cells Battery Holders Anode/Cathode Materials Battery Electrolytes Lab Equipment Fuel Cells Chemicals and Reagents Peristaltic Pumps We have everything you need for your E-CHEM lab needs Inquire now ANR Technologies E-CHEM Catalog Biologic E-CHEM Catalog More info Glove Box Feed-Through Kits More info Glove Box Feed-Through Kits NEW ITEM! PT2032-B-CCH8 Browse Our Range NEW ITEM! PT2032-B Browse Our Range NEW ITEM! PT 2032 - Premium 2032 Coin Cell Holder Browse Our Range

  • ProDigitek

    A laboratory furnace used specifically for the electrical characterization of materials and also for heat treatment between ambient temperature and 1100 °C. Home Products Electrochemistry Materials Research HTF-1100 Impedance Analyzers HTF-1100 High Temperature Furnace. A laboratory furnace used specifically for the electrical characterization of materials and also for heat treatment between ambient temperature and 1100 °C. Request a quote A reliable solution for high-temperature material testing. The HTF-1100 is a horizontal laboratory tube furnace dedicated to the electrical characterization of materials and for heat treatment in the range between ambient temperature and 1100 °C. The HTF-1100 is controlled by MT-Lab software when it is used with a MTZ-35 impedance analyzer. It can also be controlled manually through the programmable Watlow controller accessible on the front panel of the furnace. This controller facilitates the set-up and consequent monitoring of the furnace temperature during tests. The furnace accommodates many tubular High Temperature Sample Holders (HTSH-1100). A k-type thermocouple placed in the bottom of the furnace ensures the accurate control and measurement of the furnace temperature. The HTSH-1100 can operate under controlled environment conditions with inert or active gas (Ar, N2, O2, etc) and with variable pressures up to 2 bar relative. A quartz tube is supplied with the HTSH-1100 for performing measurements under controlled atmospheres. The HTSH-1100 base is fitted with a gas inlet/outlet for gas flow. A safety valve rated at 30 PSI limits the internal gas pressure to a maximum value of 2 bar relative. HTF-1100 Specifications Insulation material: Alumina Fiber Heating System: Super Kanthal 1350°C wire built in a cement cylinder Temperature Range: Ambient up to 1100°C Temperature Controller: PM6 Watlow PID controller Temperature Sensors: K-Type Thermocouple Temperature Control Accuracy: Better than +/-1°C Temperature scan: adjustable (from 0.1 °C/min to 20 °C/min) Safety Features: Emergency stop button; Buzzer sound alarm; Temperature safety limit HTF-1100 Brochure Material Testing Catalog

  • ProDigitek

    As a leader in this field, BioLogic has over 30 years of experience of developing equipment designed to give researchers a cutting-edge. Originally dedicated to rapid kinetics measurements, BioLogic now also develops, integrates and manufactures a wide range of instrumentation for steady-state spectroscopy including spectropolarimeters. Home Products Active Technologies Arbitrary Waveform Generators AWG-5000 Waveform Generator Range ARB RIDER AWG-5000 ARBITRARY WAVEFORM GENERATOR World’s Fastest 16 Bit Arbitrary Waveform Generator The ARB Rider AWG-5000 is the world’s fastest 16 bit Arbitrary Waveform Generator: 6.16 GS/s real time update rate (12.32 GS/s in RF mode) and 16 bit vertical resolution. Available in 2, 4 or 8 channel models, Arb Rider AWG-5000 is the fastest AFG (Arbitrary Function Generator) in the world, reaching up to 2 GHz sine wave. Thanks to Simple Rider software, AWG-5000 offers best in class performances and extremely easy to use interface . 2 GHz bandwidth, up to 5Vpp output range and up to 4 Gsample memory depth, makes the AWG-5000 is the ideal choice for Physics Experiments, Quantum computers, and Aerospace & Defense applications. Thanks to the integrated up conversion functionality (RF MODE) it’s possible generate signals up to 6 GHz No Compromise on analog performances: the fast rise time of 110ps can be achieved at maximum amplitude of 5Vpp. Up to 32 digital channel option, combined with 2, 4 or 8 analog channels make the AWG-5000 a full featured mix signal generator . It’s now possible generate up to 8 analog signals fully synchronized with 32 digital lines (LVTTL or LVDS standards). A dedicated intra-chassis synchronization bus, allow multi-instrument synchronization up to 4 units: 32 analog channels and 128 digital channels for the most powerful mixed signal generator in the world. Models 7" Capacitive Touch Screen Display Soft Keyboard 8 SMA Differential Analog Output Connectors 4 SMA Marker Outputs 2 SMA Trigger Inputs Get a Quote Pulses for All Your Needs Whether it is generating a complex pulse train, a series of radar pulses, pulsed RF signals with impairments, Gaussian pulses,multi-level pulses, double pulses for IGBT/Mosfet experiments, pulses for Advanced Research and Quantum computing, the AWG-5000 is the ideal partner for all your most complex tests and cutting-edge applications. Highlights Up to 5Vpp into 50 Ohm Pulse Amplitude with ± 2.5V hardware offset 110 ps Rise and Fall Time Minimum Pulse Width: 230 ps Shape easily your Pulse Transitions Quantum Computing and RF Wireless The AWG-5000 is the right choice for the frontier of science and technology experiments and cutting-edge challenges like Quantum, High Energy Physics, Optical and RF Wireless Communication. The AWG-5000 Series instrument can create virtually any signal – analog or digital, ideal or distorted, standard or custom. You can easily build complex RF/IF/IQ waveform or generate serial data streams on your PC and transfer it to the AWG. Highlights Minimum delay between Trigger In and Analog Out Up to 32 analog channels and 128 digital channels fully synchronized Built-in sequencer with conditional/unconditional/dynamic jump features, two independent Trigger Inputs, up to 4 Marker outputs Radar, LiDAR Design and EW Wideband radar and electronic warfare systems need high fidelity signals to replicate real-world situations and complex environment scenarios. Moreover, nowadays automotive solutions need to create accurate and reliable tests to prove safety under a variety of test conditions is key: LiDAR is one of the strategic components for these kinds of solutions. Key Features Generate Radar test signals with excellent spurious performance Create Electronic Warfare complex scenarios with up to 16384 sequencer entries and Advanced Sequencer conditional/unconditional jumps. Build up LiDAR signal testing for aerospace & defense, automotive and mobile devices solutions Create test waveforms using the Waveform Editor software or import them using third-party applications like MatLab, Labview, .NET languages, etc. Multi-Instrument Synchronization You can synchronize up to 4 units to build a system made of 32 analog channels and 128 digital channels fully synchronized and integrated with the True-Arb software. Main Features Synchronize up to 4 units: 32 Analog channels and 128 Digital channels Affordable price per channel Easy to use Multi-Instrument control through True-Arb software Technical Specifications 6.16 GS/s, 16 Bit Vertical Resolution Minimum Edge time down to 110 ps Maximum dynamic range up to 5Vpp into 50 ohms Up to 4 Gpts per Channel up to 32 Digital Channels synchronous with analog Channels SW User Interfaces: Simple Rider for AFG mode and Simple True Arb for AWG mode Waveform Editor: Powerful and Easy The Waveform Editor allows you to create easily the most complex shapes for your radar pulses, physical research pulses, real-world signals, and complex environment signals. It is included in the standard software package. Key Features Generate easily the most complex analog and digital signals Create your waveforms remotely on your PC Full integration with the True-Arb software Test With Confidence Software User Interface Key Features Download Documents Superior Testing RF Signal Generation 7″ Touch Screen display and Soft Keyboard 2, 4 or 8 Analog Channels + 8 Digital Channels (optional) Full synchronization between analog and digital channels Advanced sequencer and waveform editor included in the basic price Create Easily waveforms and pulses with Simple Rider UI Get a Quote

  • ProDigitek

    Dual absorbance fluorescence spectrometer for rapid kinetics. A simple, fast and sensitive rapid kinetics spectrometer featuring a minimum 10µs time resolution and nM sensitivity. Home Products Kinetics and Spectroscopy MOS200 – MOS200M Product Overview MOS200 – MOS200M Dual absorbance fluorescence spectrometer for rapid kinetics. A simple, fast and sensitive rapid kinetics spectrometer featuring a minimum 10µs time resolution and nM sensitivity Request a quote Dual absorbance/fluorescence spectrometer. Stopped-flow systems have now reached dead time specifications well below one millisecond. There is, therefore, a need for detectors able to measure the signal on a microsecond time scale and with the highest signal to noise possible in order to save precious samples. Fluorescence and absorbance changes have been the most popular detection modes in rapid kinetics because these techniques are usually easy to set-up and are also highly sensitive. Modern spectrometers now use a single detector for absorbance and fluorescence measurements. The detection is made using a high-sensitivity photomultiplier tube (PMT) optimized for the full wavelength range of the spectrometer. The switch from absorbance to fluorescence is made in a few seconds. A second detector is available as an option for simultaneous absorbance/fluorescence measurements, or to extend the detection range to FRET fluorescence, dual fluorescence or T-format anisotropy. Speed and sensitivity. The MOS-200 is a simple, fast and sensitive rapid kinetics spectrometer. With its minimum 10µs time resolution and nM sensitivity, it is the ideal instrument for stopped-flow studies. Multi-time base acquisition modes are available so complex reactions with different steps can be followed easily. A motorized monochromator version (MOS-200/M) also exists for excitation scanning and multi-wavelength experiments, and its double light source allows the user to switch from steady-state to rapid kinetics almost instantaneously. MOS-200 brochure

  • ProDigitek

    As a leader in this field, BioLogic has over 30 years of experience of developing equipment designed to give researchers a cutting-edge. Originally dedicated to rapid kinetics measurements, BioLogic now also develops, integrates and manufactures a wide range of instrumentation for steady-state spectroscopy including spectropolarimeters. Active Technologies Home Products Active Technologies Pulse Generators Pulse Generator Range Pulse Generators FAST PULSE GENERATOR: RISE TIME FASTER THAN 70 PS The modular structure of the systems allows to build a Multi Channel Pulse Generator in a compact form factor. Active Technologies Pulse Generators can be used to set up continuous or triggered pulse streams and offers flexibility to address the most challenging applications like: big physics automated testing microwaves modulators wireless communication medical and chemistry. The combination of: fast edge generation excellent dynamic range easy to use user interface go perfectly on large experiments areas such: colliders lasers modulations detectors strips silicon emulation. Radar or Sonar systems perfectly match with these generators to better test and prove complex detection systems. Active Technologies Fast Pulse Generator solutions allow to generate sub nano second pulses as well as wide amplitude pulses up to 24V Pulse Generators – Key Features Fast Pulse Generator: 70 ps Rise/Fall time @ 5Vpp Experiment areas: colliders, lasers modulations, detectors and strips silicon emulation. Double, triple, quadruple pulse mode Sub-nano second pulse generation Adavced research, Radar and Lidar applications SELECT A MODEL BELOW FOR FURTHER INFORMATION Pulse Rider PG–1000 Arb Rider AWG–5000 Arb Rider AWG-4000 Arb Rider AWG-2000 AWG-1102 / 1104 What frequency should a pulse generator be? The fast pulse generators are able to create high bandwidth pulses with fast rise and fall times combined with high voltage amplitudes. The PG-1000 offers 5 Vpp pulse amplitude and 70 ps of rise and fall time. What are the main applications for pulse generators? The pulse generators are highly used in semiconductor test, aerospace & defense, Lidar and Radar testing, Advanced Research and Big Physics applications,optical and non-volatile memory testing. Pulse Rider PG–1000

  • ProDigitek

    Request a Quote or Get in Touch today Contact us Home Contact Us Request a quote Enter contact details First name* Email* Last name* Phone number* Organisation* Address* City/Suburb* Address (2) State or Territory* State or Territory Message* Request a Quote Thanks for submitting! ProDigitek 98-100 Station Rd, Seven Hills NSW 2147, Australia +61 2 9674 4222

  • ProDigitek

    An extremely flexible sample accommodation platform, designed to take as wide a range of sample configurations as possible to meet the needs of the end user. The design of the Environmental TriCell™ system means it can be used with Scanning Kelvin Probe (SKP), Localized Electrochemical Impedance Spectroscopy (LEIS), Scanning Vibrating Electrode Technique (SVET), and Scanning Droplet Cell (SDC) measurements, on BioLogic’s modular M470 scanning electrochemical workstation. Home Products Electrochemistry SECM Accessories µTriCell™ Request a quote Cells µTriCell™ Electrochemical cell to be used with Scanning Electrochemical Microscopy on the M470 The µTriCell™ incorporates an extremely flexible sample accommodation platform to meet the needs of the end user. It has been designed to take various sample configurations whilst still maintaining easy electrical connections for SECM measurements. The µTriCellTM has a small volume to reduce the amount electrolyte required for scanning probe electrochemistry experiments. It still provides the user with a clear view of the probe and sample for easy experimental setup. The integrated tilt correction allows users to adjust the position of samples without moving or adjusting the scanning head, helping to ensure the strongest signal throughout a SECM experiment. The µTriCellTM is made from a PEEK cell body with quartz glass viewing window which allows viewing access for the video microscopy system VCAM3 It is mounted on a support pillar with an M6 fixing screw end, which can be screwed directly into the M470 optical table or fixed into a baseplate with a standard optical grid, to provide a high level of experiment flexibility. The cell offers the following features: Easy sample access and connection External level adjustment. Accommodation of a wide range of samples (32 mm and non-standard options). Platinum counter electrode and a Ag/AgCl reference electrode. O-ring seals – Fluoro-elastomer Viton. The µTriCell™ is supplied as a complete kit consisting of the main µTriCell body and mounting post, 32 PEEK mm blanks and area reducing blanks, O-rings and connection leads. It also includes reference electrodes and counter electrode. Replacement spares and consumables for the cell are available. The µTriCellTM PTFE body is compatible with the ic-SECM cell assembly. The µTriCellTM mounting plate is compatible for use with the Foil Cell . Electrochemistry Accessories Catalog SKP Specifications Cell diameter: 26 mm Cell height: 15.5 mm Cell volume: 7 mL Cell body: PEEK

  • ProDigitek

    The unmatched combination of Speed & Speed. A booster pack designed specifically for battery pack characterizations. Continuous maximum current of +/-30 A extendable by +/-120 Home Products Electrochemistry Boosters HCV-3048 Premium Range HCV-3048 The unmatched combination of Speed & Speed. A booster pack designed specifically for battery pack characterizations. Continuous maximum current of +/-30 A extendable by +/-120 The HCV-3048 booster is designed for battery pack characterizations. The continuous maximum current of +/-30 A for a single unit can be extended up to +/-120 A by connecting four units in parallel. Thanks to the wide bandwidth of HCV-3048, EIS measurements can be performed up to 500 kHz. The instrument configuration can be easily modified, in-situ, to meet the end user’s specific requirements. The instrument does not need to be sent back to the factory to be upgraded thanks to the plug and play capability of the booster modules. The EC-Lab® interface will automatically detect any new configuration ensuring that the transition to the new upgrade occurs seamlessly. Request a quote HCV-3048 Specifications ±30 A / 0-48 V Up to ±120 A with 4 unit in parallel EIS measurement up to 500 kHz HCV-3048 Brochure Electrochemisty Instrument Catalog

  • ProDigitek

    An extended range of booster modules for Premium range workstations. ​ The high modularity of our state-of-the-art Premium range workstations enables users to easily upgrade their instrument with a comprehensive range of “plug n’ play” boosters, or choose them as options at point of purchase. Home Products Electrochemistry Potentiostats Premium Boosters Premium Range Boosters for Premium Potentiostats Request a quote An extended range of booster modules for Premium range workstations. The high modularity of our state-of-the-art Premium range workstations enables users to easily upgrade their instrument with a comprehensive range of “plug n’ play” boosters, or choose them as options at point of purchase. Each booster has its own specifications and is targeted at application areas, which include Batteries/Fuel cells, Photovoltaic/Solar and Electrolysis. The available booster options are ±1 A/±48 V, ±2 A/±30 V, ±4 A/[-3;14] V, ±10 A/[-1;6] V. The booster boards can be placed in parallel to increase the maximum current of a particular channel. Please note that the different booster models cannot be mixed in parallel together to increase both voltage and current. For example, with the multi-channel VSP-300 and VMP-300 chassis up to 5 booster modules (in the VSP-300) and 15 booster modules (in the VMP-300) can be set in parallel. The maximum current in the VMP-300 is 150 A. The instrument configuration can be easily changed on-site by the end-user. The instrument does not need to be sent back to the factory to be upgraded thanks to the plug and play capability of the booster modules. The EC-Lab® control software package will automatically and immediately detect the new configuration facilitating the set-up of the upgraded device. Booster Specifications: Internal kit: ±1 A/ ±48 V ±2 A/ ±30 V ±4 A/ [-3; 14] V ±10 A/ [-1; 6] V ; (up to 150 A in parallel) EIS capability Electrochemisty Instrument Catalog Electrochemistry Accessories Catalog

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