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Supplier: Terra Universal, Inc.
Description: Ideal for vacuum processing of large components and assemblies Durable aluminum construction ensures a long service life under heavy service One-inch wall thickness sustains vacuum levels to 29.9"Hg Optional castered stand supports chamber and pump
- Chamber / Component Type: Baseplate, Box / Degassing Chamber, Base / Service Well, Custom / Specialty Chamber, Glovebox / Weld Chamber, Feedthrough Collar, Load Lock Chamber, Surface Analysis / Universal
- Chamber Material: Aluminum, Other
- Cooling: Yes
- Flange / Fitting Types: Elastomeric (O-ring / Gasket), Threaded / NPT, Weld / Braze Stub, ISO-BF (Bolted), ISO-CF (Metal Seal), ISO-KF / ISO-NW (Small Clamped, <2"), ISO-MF (Multi-fastener / Universal), ANSI ASA, Conflat®
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Supplier: Terra Universal, Inc.
Description: 28"-diameter x 48"-long (711 mm x 1219 mm) chamber provides ample processing space for degassing large assemblies 0.375" (10 mm)-thick powder-coated steel chamber with 1" (25 mm)-thick aluminum door supports vacuum to 29.9" Hg 1" (25 mm)-thick polycarbonate viewing window
- Chamber / Component Type: Baseplate, Box / Degassing Chamber, Base / Service Well, Custom / Specialty Chamber, Glovebox / Weld Chamber, Feedthrough Collar, Load Lock Chamber, Surface Analysis / Universal
- Chamber Material: Aluminum, Stainless Steel, Steel, Other
- Cooling: Yes
- Flange / Fitting Types: Elastomeric (O-ring / Gasket), Threaded / NPT, Weld / Braze Stub, ISO-BF (Bolted), ISO-CF (Metal Seal), ISO-KF / ISO-NW (Small Clamped, <2"), ISO-MF (Multi-fastener / Universal), ANSI ASA, Conflat®
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Supplier: Douglas Electrical Components
Description: USB feedthroughs are used in vacuum and pressure applications for seamless data and power transfer. At Douglas Electrical Components, we provide hermetically sealed USB feedthroughs for these applications. Our USB vacuum feedthroughs combine multiple USB connectors
- Feedthrough Mount: Flange Mount:, Nut Mount
- Feedthrough Type: Electrical
- Temperature Range: -40 to 107 C
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Description: jackets and Mumetal shields. Please consult our Product Managers for exact capabilities. We offer a complete line of vacuum chamber accessories that include load locks, sample transfer and positioning devices, liquid and electrical feedthroughs, viewports and roughing
- Chamber / Component Type: Load Lock Chamber
- Chamber Material: Stainless Steel
- Vacuum / Pressure Range: High Vacuum (< 10-3, >10-8 torr)
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Description: Baseplates are available in a variety of sizes and can be used in combination with our Bell Jars and Feedthrough Collars. The baseplates are supplied with a smooth faced ASA flange which can bolt directly to the vacuum pump. Standard material construction is 304 SS with a glass bead
- Chamber / Component Type: Feedthrough Collar
- Chamber Material: Stainless Steel
- Height / Length: 6 inch
- Nominal Size (OD / Width): 12 inch, 18 inch, 24 inch
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Supplier: Douglas Electrical Components
Description: Douglas Electrical Components designs and manufactures hermetic power feedthroughs, offering reliable sealing solutions for a wide range of vacuum and pressure applications. We can also design power feedthroughs to handle high currents and voltages. Focusing on motors,
- Feedthrough Mount: Flange Mount:, Threaded Mount
- Feedthrough Type: Electrical
- Temperature Range: 200 C
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Supplier: Douglas Electrical Components
Description: Coaxial feedthroughs are designed to transmit signals and data in vacuum and pressurized environments including vacuum chambers, control cabinets, and gloveboxes. Coaxial feedthroughs feature two conductors sharing a common axis. The inner conductor carries small
- Feedthrough Mount: Flange Mount:, Nut Mount
- Feedthrough Type: Electrical
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Supplier: PTB Sales, Inc.
Description: Ask for current price; this one is on consignment. Balzers BAK 1350 C vacuum chamber is made of stainless steel with inside dimensions of approximately a 52 inch cube. A cryopump assures an oil free vacuum and high pumping speed for water. The base plate and top plate have
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Supplier: Conax Technologies
Description: Guide) Voltage: To 8000 VDC Amperage: To 525 Available Without Electrode Application Ideas: Bare electrical feedthrough for vacuum furnaces, liquid level probes, transformers, environmental chamber power leads, etc. Electrically and/or thermally isolate electrodes, tubes or
- Feedthrough Mount: Threaded Mount
- Feedthrough Type: Electrical
- Temperature Range: -185 to 232 C
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Supplier: Conax Technologies
Description: Wires Easily Assembled or Replaced In Field Pressure*: Vacuum to 8,000 PSI (551 bar) Voltage: To 2000 VDC Amperage: To 400 Available Without Electrode Application Ideas: Bare electrical feedthrough for vacuum furnaces, liquid level probes, transformers, environmental
- Feedthrough Mount: Threaded Mount
- Feedthrough Type: Electrical
- Temperature Range: -185 to 870 C
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Supplier: Douglas Electrical Components
Description: Face seal housings are designed to create a hermetic, air-tight seal between two surfaces to maintain pressure or vacuum pressure. It is a common electrical feedthrough interface for passing cables or connectors through a panel or enclosure. Electrical feedthroughs with a face
- Feedthrough Type: Electrical
- Temperature Range: 200 C
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Supplier: Conax Technologies
Description: Transformer and motor power, conduit box feedthroughs, pressure and vacuum chamber power and instrument feedthroughs, etc. Features: Stainless Steel Fitting For Gas or Liquid Easy Installation -No "Potting" Seals 1 to 12 Wires Pressure
- Feedthrough Mount: Threaded Mount
- Feedthrough Type: Electrical
- Temperature Range: -185 to 232 C
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Supplier: Conax Technologies
Description: Like the EGT Gland, Conax Technologies HEGPK Glands electrically and/or thermally isolate single electrodes, tubes or temperature sensors for use in vacuum furnaces, liquid level probes, transformers, environmental chambers, power leads and more. These bare electrical
- Feedthrough Mount: Threaded Mount
- Feedthrough Type: Electrical
- Temperature Range: 0.0 to 480 C
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Description: The SAC-12 is a standard platform vacuum chamber designed for surface science studies. The geometric design offers maximum flexibility for various experiments and includes 17 different ports for feedthroughs, viewports, manipulators, gauges, etc.
- Chamber Material: Stainless Steel
- Chamber / Component Type: Surface Analysis / Universal
- Flange / Fitting Types: Conflat®
- Height / Length: 15.5 inch
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Supplier: CoorsTek
Description: , industrial equipment, and consumer appliances. FEEDTHROUGHS CoorsTek provides custom ceramic-to-metal feedthrough assemblies for passing energy or materials between the outside and inside of hermetically-sealed chambers. These feedthroughs combine electrical insulation
- Feedthrough Mount: Flange Mount
- Feedthrough Type: Electrical, Fluid
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Supplier: Palomar Technologies, Inc
Description: Overview The SST 1200 is a table top vacuum and pressure furnace designed for process development and low volume production of flux-free and void-free soldered joints in microelectronic packages and components. The station is easy to use and designed for a wide variety of soldering
- Application: Brazing / Soldering, Curing, Other
- Configuration: Top Loading
- Controller Type: Programmable
- Height: 483 mm
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Description: Baseplates are available in a variety of sizes and can be used in combination with our Bell Jars and Feedthrough Collars. The baseplates are supplied with a smooth faced ASA flange which can bolt directly to the vacuum pump. Standard material construction is 304 SS with a glass bead
- Chamber / Component Type: Baseplate
- Chamber Material: Stainless Steel
- Height / Length: 4 inch
- Nominal Size (OD / Width): 12 inch, 18 inch, 24 inch
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Supplier: Palomar Technologies, Inc
Description: Overview The SST 1200 is a table top vacuum and pressure furnace designed for process development and low volume production of flux-free and void-free soldered joints in microelectronic packages and components. The station is easy to use and designed for a wide variety of soldering
- Temperature Range: 842 F
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Supplier: Inductotherm Group
Description: Hot zone shields are overlapped and spaced to permit easy escape of gases from the work assembly to provide optimum vacuum performance. The tank walls of the furnace are maintained in a hot condition to prevent condensation of atmospheric moisture when the chamber door is open
- Application: Brazing / Soldering
- Height: 550 to 2100 mm
- Length (Chamber / Tube): 610 to 7000 mm
- Width / Tube O.D.: 425 to 1500 mm
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Supplier: Cole-Parmer
Description: Use these two-wire feedthroughs to make connections inside vessels or chambers. Use with probes with miniconnectors. Feedthroughs withstand vacuum conditions or pressures to 100 psi. Stainless steel and epoxy construction. Temperature range: -40 to 250
F (-40 to - Sensed Temperature: -40 to 250 F
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Supplier: Cole-Parmer
Description: Use these two-wire feedthroughs to make connections inside vessels or chambers. Use with probes with miniconnectors. Feedthroughs withstand vacuum conditions or pressures to 100 psi. Stainless steel and epoxy construction. Temperature range: -40 to 250
F (-40 to - Sensed Temperature: -40 to 250 F
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Supplier: Cole-Parmer
Description: Use these two-wire feedthroughs to make connections inside vessels or chambers. Use with probes with miniconnectors. Feedthroughs withstand vacuum conditions or pressures to 100 psi. Stainless steel and epoxy construction. Temperature range: -40 to 250
F (-40 to - Basic Element Used: Thermocouple
- Sensed Temperature: -40 to 250 F
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Supplier: Agilent Technologies - Vacuum Products
Description: The Agilent VacIon Plus 75 pump is a 75 L/s ion pump used in ultrahigh and extreme high vacuum applications in academic and high-energy physics (HEP) research. It delivers increased pumping speed in the same compact size as other VacIon Plus medium ion pumps, ideal for large chamber
- Application: Analytical / Scientific, Medical / Laboratory, Semiconductor Manufacturing
- Configuration: Individual Vacuum Pump
- High Vacuum / UHV Pump Technology: Ion
- Pumping Speed: 159 CFM
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Supplier: Denton Vacuum
Description: The Bench Top Turbo high vacuum thin film deposition system that achieves an ultimate base vacuum in the 3x10-6 torr range. And the the system fits on your countertop. Get More for Less Cost The Bench Top Turbo IV features a large baseplate that accommodates more feedthroughs,
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Supplier: Newport MKS
Description: to fit into existing manual stages and other opto-mechanical components as direct replacement for manual micrometers. Featuring a space-saving design ideal for limited space in vacuum chambers, the LTA motor and lead screw are mounted side-by-side. This not only reduces the actuator
- Rated Speed: 0.0098 in/sec
- Stroke or X-Axis Travel: 0.9843 inch
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Supplier: Newport MKS
Description: with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays or other high-radiation applications, we offer versions with Kapton-coated wire extensions. Ultra-compact Design The small footprint of
- Blocked Force: 13 N
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Supplier: Newport MKS
Description: -Loop Picomotor actuator. Teflon or Kapton Wires All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays
- Blocked Force: 22 N
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Supplier: Newport MKS
Description: , consider a Vacuum Compatible Closed-Loop Picomotor actuator. Teflon or Kapton Wires All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber
- Blocked Force: 22 N
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Supplier: 3X Ceramic Parts Company Limited
Description: ; High voltage accelerator; High-voltage feedthrough; Housing for X-ray image intensifier; Sensors Technology ; Kicker chamber; Vacuum chamber; Ceramic purity Selection: Ceramic purity 99% alumina ceramic is normally selected for its properties
- Material Type: Alumina / Aluminum Oxide
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Description: Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs Fittings and the lining of the plasma chamber Nonferrous metal and alloy nozzles Thermocouple protection tubes and sheath Boron doping wafers
- Material Type: Aluminum Nitride, Boron Nitride
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Description: Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs Fittings and the lining of the plasma chamber Nonferrous metal and alloy nozzles Thermocouple protection tubes and sheath Boron doping wafers
- Density: 1.5 to 1.6 g/cc
- Material Type: Aluminum Nitride, Boron Nitride
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Description: most molten metals Extremely high working temperature Applications High-temperature furnace setter plates Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs
- Material Type: Boron Nitride
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Description: Applications High-temperature furnace setter plates Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs Fittings and the lining of the plasma chamber Nonferrous metal and alloy
- Material Type: Boron Nitride
- Shape / Form: Tube / Sheath - Immersion (Closed End)
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Featured Products Top
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Douglas Electrical Components manufactures hermetic electrical feedthroughs using CF (ConFlat®) flanges to provide reliable vacuum sealing for demanding applications. CF flanges use a clamping mechanism that compresses a copper gasket between the chamber wall and the feedthrough, creating a (read more)
Browse Electrical Feedthroughs Datasheets for Douglas Electrical Components -
where a vacuum must be maintained. These feedthroughs are essential in scenarios where maintaining the integrity of the vacuum environment is crucial, such as in vacuum chambers, high-vacuum furnaces, and space simulation facilities. The circular design offers a compact and efficient solution for (read more)
Browse Industrial Ceramic Materials Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
Vacuum Chamber: A robust, stainless steel vessel, often cylindrical or spherical, designed to withstand full atmospheric pressure differential. It includes numerous ports for electrical, fluid, and instrumentation feedthroughs, as well as (read more)
Browse Environmental Test Chambers and Rooms Datasheets for Guangdong Atmars Industry Co., Limited -
/or thermally isolate single electrodes, tubes or temperature sensors for use in vacuum furnaces, liquid level probes, transformers, environmental chambers, power leads and more for a variety of industries. These bare electrical (read more)
Browse Electrical Feedthroughs Datasheets for Conax Technologies -
Face seal housings are designed to create a hermetic, air-tight seal between two surfaces to maintain pressure or vacuum pressure. It is a common electrical feedthrough interface for passing cables or connectors through a panel or enclosure. Electrical feedthroughs with a face seal use (read more)
Browse Feedthroughs Datasheets for Douglas Electrical Components -
Douglas Electrical Components provides hermetic feedthrough solutions for the demanding requirements of space simulation facilities, where vacuum performance, reliability, and fast delivery are critical. Major facilities across North America rely on Douglas products such as OptiSeal™, (read more)
Browse Feedthroughs Datasheets for Douglas Electrical Components -
, Conax has two great solutions covering virtually any power feedthrough requirement. Our power series compression seal fittings are simple and reliable mechanical pressure and vacuum seal fittings to supply high voltage or current to your equipment and protect your environment. Single (read more)
Browse Feedthroughs Datasheets for Conax Technologies -
) Feedthroughs seal on insulated lead wire for use in transformers, motors, conduit boxes and pressure/vacuum chambers and as power or instrument feedthroughs. The soft sealant technology seals (read more)
Browse Electrical Feedthroughs Datasheets for Conax Technologies -
Thermal vacuum chamber (TVAC) testing requires reliable transmission of power, signal, and data without compromising strict vacuum conditions. Hermetic feedthroughs are essential to maintain chamber integrity, especially as testing environments grow more complex. Douglas Electrical Components (read more)
Browse Feedthroughs Datasheets for Douglas Electrical Components -
Hermetic electrical feedthroughs are critical for Thermal Vacuum Chambers (TVAC), which simulate the extreme conditions of space for testing aerospace systems. These chambers can be extremely large and require reliable power, signal, and data transmission without compromising vacuum integrity (read more)
Browse Feedthroughs Datasheets for Douglas Electrical Components
Conduct Research Top
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When Wire Feedthroughs Make Sense
Engineers who work with pressure and vacuum chambers usually reach for off-the-shelf sealed bulkhead connectors when they need to pass power and signal wires through the chamber wall. And while these connectors may seem like the best or only way to breach the chamber walls, they can actually drive
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Meeting Feedthrough Challenges on the A-3 Test Stand
The purpose of this paper is to share the experience and knowledge that engineers at NASA and Douglas Electrical have gained regarding the specification of hermetic seals and feedthroughs used in engine test stand vacuum chamber applications. This paper looks specifically at the experience
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The six challenges of specifying and procuring hermetic feedthroughs for space simulation
The purpose of this white paper is to share the details and knowledge that engineers at Douglas Electrical have gained over the years regarding the specification and sourcing of hermetic seals and feedthroughs used in space simulation vacuum chamber applications. Having worked with most major space
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Lean Initiative Enables U.S. Manufacturer to Stay Competitive, and Stay Onshore
The purpose of this white paper is to share the details and knowledge that engineers at Douglas Electrical have gained over the years regarding the specification and sourcing of hermetic seals and feedthroughs used in space simulation vacuum chamber applications. Having worked with most major space
More Information Top
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http://dspace.mit.edu/bitstream/handle/1721.1/16872/51686398-MIT.pdf?sequence=2
The probe is attached to a flange so that it can be mounted on one of the vacuum chamber feedthroughs .
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http://dspace.mit.edu/bitstream/handle/1721.1/90781/891568158-MIT.pdf?sequence=2
Vacuum chamber Feedthroughs .
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Low‐cost physical analysis techniques for the failure analysis of semiconductor components
We use specific test fixtures and vacuum chamber feedthroughs to be able to analyse integrated circuits in various packages up to 68 pins.
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Observation of higher order quadrupole excitation frequencies in a linear ion trap
Excitation amplitudes varied between 0 and 27 Vp-p and were measured at the vacuum chamber feedthroughs (A pole, B pole to ground).
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http://dspace.mit.edu/bitstream/handle/1721.1/62966/719481428-MIT.pdf?sequence=2
Tony Busalacchi helped provide vacuum chamber feedthroughs and assisted the heat pipe construction.
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Wafer-level radiometric performance testing of uncooled microbolometer arrays
Both of these systems have been installed on the vacuum prober using appropriate vacuum chamber feedthroughs to connect the probe card inside the vacuum chamber to the external IRXCAM electronics.
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Design, performance, and reliability of a high-angular-resolution wide-angular-range large-aperture fully-automated UV scatterometer
All vacuum-compatible instruments and stages are remotely controlled through the vacuum chamber feedthroughs .
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Multi-atom resonant photoemission and the development of next-generation software and high-speed detectors for electron spectroscopy
entirely with in the vacuum chamber and the number of vacuum chamber feedthroughs .
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Temperature dependence of minority hole mobility in n+ -GaAs measured with a new variable temperature technique
The lead design eliminates imped- ance mismatches at vacuum chamber feedthroughs and minimizes heat load on the system.
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Photovoltaic Manufacturing Cost and Throughput Improvements for Thin-Film CIGS-Based Modules; Phase II Annual Subcontract Technical Report, July 1999 - August ...
The optical fibers and wires for the electronics pass out of the vacuum chamber in feedthroughs in the bottom right of the picture.
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