An assembly which provides for the transfer of electrical power, gases or fluids from outside a hermetic chamber to the inside. Feedthroughs can provide both a hermetic seal and electrical isolation from the chamber wall. Feedthroughs are sometimes referred to as 'pass-throughs'.
CeramTec feedthroughs provide the solutions for applications requiring hermeticity and electrical isolation.
Items |
9809-01-W Weld or Braze Installation Instrumentation/Power Feedthrough List Price $53.30
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9809-02-W 11.5 Ampere (A) Conductor Current Rating and Weld or Braze Installation Instrumentation/Power Feedthrough List Price $25.55
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9297-03-W 1 Pin and 1.1 Ampere (A) Conductor Current Rating and Weld Installation Instrumentation/Power Feedthrough List Price $35.10
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9297-01-W 1 Pin and 5 Ampere (A) Conductor Current Rating and Weld Installation Instrumentation/Power Feedthrough List Price $32.83
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9297-06-W 1 Pin and 8.5 Ampere (A) Conductor Current Rating and Weld Installation Instrumentation/Power Feedthrough List Price $35.58
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Direct Current (DC) Voltage Rating | N/A 500 V | N/A 500 V | N/A 1 kV | N/A 1 kV | N/A 1 kV | |||||
Temperature Range | N/A -80 to 450 ºC | N/A -80 to 450 ºC | N/A -269 to 450 ºC | N/A -269 to 450 ºC | N/A -269 to 450 ºC | |||||
Pressure at 20 Degree Celsius (ºC) Temperature | N/A 2500 psig172 bar | N/A 2500 psig172 bar | N/A 3500 psig241 bar | N/A 3500 psig241 bar | N/A 3500 psig241 bar | |||||
Number of Pins | N/A | N/A | N/A 1 | N/A 1 | N/A 1 | |||||
Installation |
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Braze Weld |
N/A Braze Weld | N/A Weld | N/A Weld | N/A Weld | |||||
Installation Size | N/A | |||||||||
Flange Size | N/A | |||||||||
Welding Type | N/A Electron Beam (E-Beam) Welding Laser Welding Pulse-Tungsten Inert Gas (TIG) Welding Tungsten Inert Gas (TIG) Welding | |||||||||
Conductor Current Rating1 | N/A | N/A 11.5 A | N/A 1.1 A | N/A 5 A | N/A 8.5 A | |||||
Conductor Material | N/A | N/A | N/A 304 Stainless Steel | N/A Nickel | N/A Molybdenum | |||||
Housing Material | N/A Kovar® | N/A Kovar® | N/A 304 Stainless Steel | N/A 304 Stainless Steel | N/A 304 Stainless Steel | |||||
Pin Material | N/A Molybdenum | N/A Molybdenum | N/A | N/A | N/A | |||||
Tube Material | N/A Kovar® | N/A Kovar® | N/A | N/A | N/A | |||||
Insulation Material | N/A Alumina Ceramic | |||||||||
Magnetic Material | N/A true | N/A true | N/A false | N/A true | N/A false | |||||
Dimension A | N/A | |||||||||
Dimension B | N/A | |||||||||
Dimension C | N/A | |||||||||
Additional Information |
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In addition to remaining leak-free in high and ultra-high vacuum, many of Ceramaseal® feedthroughs can accommodate:
A feedthrough is basically defined by the requirements for installation, insulation, and conductor material. The method of interconnection is flexible and left to the customer’s discretion. A selection of push on contacts can be found in the Accessories section of this catalog. |
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In addition to remaining leak-free in high and ultra-high vacuum, many of Ceramaseal® feedthroughs can accommodate:
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In addition to remaining leak-free in high and ultra-high vacuum, many of Ceramaseal® feedthroughs can accommodate:
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In addition to remaining leak-free in high and ultra-high vacuum, many of Ceramaseal® feedthroughs can accommodate:
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In addition to remaining leak-free in high and ultra-high vacuum, many of Ceramaseal® feedthroughs can accommodate:
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Extreme/Custom Design |
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Applications |
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A few of the many applications in which these feedthroughs are commonly used are:
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A few of the many applications in which these feedthroughs are commonly used are:
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A few of the many applications in which these feedthroughs are commonly used are:
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A few of the many applications in which these feedthroughs are commonly used are:
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A few of the many applications in which these feedthroughs are commonly used are:
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New Products |
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Accessories |
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Part Number - 11288-02-X |
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Part Number - 11288-02-X Description - Accepts wire up to 0.032 [0.81] Material - Beryllium Copper Type - 0.032 Crimp Contacts Part Number - 14461-04-A Description - Accepts wire up to 0.030 [0.76] Material - Stainless Steel - Gold Plated Type - 0.042 Crimp Contacts |
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Part Number - 11288-02-X Description - Accepts wire up to 0.032 [0.81] Material - Beryllium Copper Type - 0.032 Crimp Contacts Part Number - 14461-04-A Description - Accepts wire up to 0.030 [0.76] Material - Stainless Steel - Gold Plated Type - 0.042 Crimp Contacts |
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Part Number - 11288-02-X Description - Accepts wire up to 0.032 [0.81] Material - Beryllium Copper Type - 0.032 Crimp Contacts Part Number - 14461-04-A Description - Accepts wire up to 0.030 [0.76] Material - Stainless Steel - Gold Plated Type - 0.042 Crimp Contacts |
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Part Number - 11288-02-X Description - Accepts wire up to 0.032 [0.81] Material - Beryllium Copper Type - 0.032 Crimp Contacts Part Number - 14461-04-A Description - Accepts wire up to 0.030 [0.76] Material - Stainless Steel - Gold Plated Type - 0.042 Crimp Contacts |
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Features |
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Accelerators Cryogenics Fusion High Current High Energy Physics High Temperature High Voltage Laser Technology Microwave Nuclear Photovoltaic Semiconductor Equipment Superconductivity Ultra-High Vacuum |
N/A Accelerators Cryogenics Fusion High Current High Energy Physics High Temperature High Voltage Laser Technology Microwave Nuclear Photovoltaic Semiconductor Equipment Superconductivity Ultra-High Vacuum | N/A Accelerators Cryogenics Fusion High Current High Energy Physics High Temperature High Voltage Laser Technology Microwave Nuclear Photovoltaic Semiconductor Equipment Superconductivity Ultra-High Vacuum | N/A Accelerators Cryogenics Fusion High Current High Energy Physics High Temperature High Voltage Laser Technology Microwave Nuclear Photovoltaic Semiconductor Equipment Superconductivity Ultra-High Vacuum | N/A Accelerators Cryogenics Fusion High Current High Energy Physics High Temperature High Voltage Laser Technology Microwave Nuclear Photovoltaic Semiconductor Equipment Superconductivity Ultra-High Vacuum | |||||
Note |
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Current carrying capacity of the tubular feedthroughs varies based on the coolant used and the flow rate. |
N/A Current carrying capacity of the tubular feedthroughs varies based on the coolant used and the flow rate. | N/A | N/A | N/A | |||||
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