Israel
Manufacturer/ Producer
Israel
FlexTC Thermal Forcing System stimulates DUT to the desired temperature by direct contact/conduction between a thermal head’s plunger and the DUT. Soldered down or socketed DUT’s are accessed through a selection of interfaces such as adapter plates, boom stands, vacuum and pneumatic systems. . Powerful stand-alone Thermal control unit, Features: o Greatest cooling power 21W@-40⁰C o Extended temperature range enable to reach easily -40⁰C or less at Tj o Fastest time to temperature ratio o Very short stabilize soak time o Excellent temp. stability 0.2⁰C o Operated by a smart controller which is accessed through a 7” color touch-screen with extensive menu o Can be remotely controlled via an Ethernet Flex TC System suits your device test at: o Your test bench o ATE in your lab. & can be seamlessly integrated in production with handlers and ATE’s o MaxTC can also be used to test multi-site DUT’s o Also as a thermal chuck with probe station
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Mechanical Devices is pleased to offer its customers with the first direct phase change TCU with DUAL head. Each head can be controlled individually. This DUAL head unit makes it possible to reduce the cost per workstation, saves space, reduces power consumption and heat emission in the laboratory or production hall. Temp. range: -30°C to 200°C Super economical Reduced cost per workstation Fully programmable for automation Fits 19″ rack cabinet Maintenance FREE Perfect for QSFP, QSFP-DD..
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Temperature Range -70°C to +175/200°C MaxTC Thermal Forcing System stimulates DUT to the desired temperature by direct contact/conduction between a thermal head’s plunger and the DUT. Soldered down or socketed DUT’s are accessed through a selection of interfaces such as adapter plates, boom stands, vacuum and pneumatic systems. Condensation FREE at cold test o Maintenance FREE system o Programmable with MATLAB, Lab VIEW, C++, VB, Lynux, Python & others o Cost effective due to low cost and high performance o Vibration FREE contact o Magnetic field FREE contact o PID overshooting control o Stand-alone plug and play system o No external chiller or compressed air is required o Software controlled transition rates o Suitable for testing any socketed or soldered devices o Environmentally friendly operation o ESD Safe product o Min and Max temperature safety lock o Can be seamlessly integrated with handlers and ATE
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MaxTC Power+ was designed with high power and flexibility in mind, allowing for customization to suit different package and interface variations. The system allows for forcing temperature across a wide range of high power device sizes and types, whether socketed or soldered to board. With state of the art design and technology the Max TC Power Plus unit stimulates DUT to the desired temperature precisely and consistency by direct contact with a powerful thermal head. Powerful stand-alone Thermal control unit features: o Cooling Power -40°C@400W (steady state) o Ramp Rate up to 120°C/Min o Temperature stability: ±0.5°C o Temperature Range -75⁰C to 200⁰C o Minor temperature overshooting at high power spikes o Fast recovery time at high power spikes o Replace LN2, Thermostream, Chillers and Chambers o Remote controlled MaxTC Power+ is a stand-alone, plug&play unit, requires only: o AC Input; MaxTC: 208-240 VAC; 1~ 50Hz /60Hz 20A o Plug Type: NEMA L6-20 or 30 o
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The TP platform system is a breakthrough product that introduced the use of refrigerant for active cooling & heating of components with no need of chiller, CDA, or consumable refrigerants such as liquid nitrogen and liquid carbon dioxide. It can be a perfect replacement system in the industry for uncompromising thermal and mechanical performance with a temperature ranging from -60 to 220°C. Each system contains a thermal chuck and a self-contained thermal control unit. Features: * Temperature range of -60°C to +220°C, * No LN2 or CO2 required * No chiller or CDA required * Temperature stability +/-0.1 * Fully programmable for automation * Quite & portable * Maintenance FREE
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Technichal data: Accuracy ± 3°C at -50°C to 20°C ± 1% or 1°C at 20°C to 500°C ± 1.5% or 2°C at 500°C to 1,000°C ± 2% at 1,000°C to 1,850°C Reproducibility ± 1.5°C at -50°C to 20°C ± 0.5% or ± 0.5°C at 20 °C to 1,000 °C ± 1% at 1,000°C to 1,850 °C Optical resolution (D:S): 75:1 Smallest measurement spot: 18 mm @ 1,350 mm Temperature range: -50°C to +1,850°C Reaction time: < 150 ms Spectral sensivity: 8 ~ 14 µm Laser class: Klasse 2 (II) Wavelength: 630 ~ 670 nm Power: <1 mW Display: LCD, monochrome Temperature range (contact-temperature sensor): 50°C to +300°C Accuracy (contact-temperature sensor): ±1,5% or ± 3°C Reproducibility (contact-temperature sensor): ± 1,5% Operating conditions (operation): 0°C to 50°C, 10% to 90% RH Operating conditions (storage): -10°C to 60°C, < 80% RH (non-condensing) Power supply (internal): 9 V IEC 6LR61 Power supply (external): via USB
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Temperature measuring strips, for example, are stuck to components that heat up under load. The measuring strip shows the maximum temperature reached after the component has cooled down. This means that the maximum temperature of the component can be read off quickly and inexpensively.
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FT water temperature controllers make it possible not only to cut down on the use of electrical power for heating (in fact, the heating elements remain off during steady-state operation), but they also make it possible to limit the cooling power spent on cooling by self-stabilizing through a process called Autotuning. This system also saves resources (water and energy) compared to units without them. They are designed to condition molds and cylinders for various industrial processes, including plastics and rubber molding and extrusion, and in the paper industry.
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Often the main critical issue for molding industries is not achieving the temperatures needed for their processes, but maintaining them over time. Hence the usefulness of temperature control units that not only send the fluids needed to do the job up to temperature, but are capable of subsequent self-tuning. This is the way FTT DC water temperature controllers operate, which wrap direct cooling to stabilize fluid grades after the desired temperature has been reached. This requires integration with a source of cooled water: a simple well or a chiller or cooling system (chiller or dry cooler). Our engineers are available to determine which cooling solution is the most effective and economical. Not only that. The management of these successive heating-cooling steps is easier when done with a touch screen: a feature with which FTT DC temperature controllers are equipped. Units in the FTT category are specially designed to condition molds.
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