Showing posts with label Puck Heater. Show all posts
Showing posts with label Puck Heater. Show all posts

Custom Engineering Solution: Custom 300mm Vacuum Puck Heater

Custom 300mm Vacuum Puck Heater

Optimizing Thermal Uniformity at 400°C Under Severe Spatial Constraints


Executive Summary

A leading semiconductor fabricator faced critical yield losses due to thermal non-uniformity and severe physical footprint limitations within their vacuum deposition chamber. The legacy incumbent heating assembly was too thick and featured an overly bulky vacuum feedthrough design that interfered with internal mechanics.

Engineering delivered a custom, low-profile 300mm Vacuum Puck Heater utilizing 304 Stainless Steel (304SS) and a novel vacuum side-mounted flange design. 

The solution achieved a +/- 1.5⁰C   thermal uniformity profile at 400°C, maintained high-vacuum integrity at 5 x 10 ̄⁹ and eliminated chamber interference, and increased operational throughput by 14%.

Technical Challenges
  • Spatial Limitations: Standard bottom-mount heating assemblies interfered with existing lower-chamber robotic substrate handling mechanisms.
  • Incumbent Failure: The competitor's part was physically too thick, and its large vacuum feedthrough footprint blocked critical internal clearances.
  • Thermal Target: The process required a continuous, stable operating temperature of 400°C.
  • Uniformity Metric: Strict process windows demanded a total thermal variance of less than 3% across the entire 300mm substrate surface.
  • Vacuum Integrity: High-vacuum compliance required low-outgassing materials capable of operating continuously at 5 x 10 ̄⁹ without structural deformation.
The Engineering Solution

Technical parameter Legacy incumbent / competitor limitation BCE custom engineering solution Quantified technical & operational benefit
Physical profile / thickness Assembly too thick; blocked critical internal clearances Ultra-low profile 300mm puck design 100% clearance of vertical zone beneath the puck; zero robotic interference
Vacuum feedthrough design Overly bulky footprint; interfered with lower-chamber robotics Proprietary, ultra-compact side-mounted flange assembly Single minimized custom side port routing; completely bypasses bottom clearance traps
Thermal uniformity at 400°C High thermal variance causing critical wafer yield losses Multi-zone, high-density resistive heating element layout Achieved +/- 1.5°C thermal uniformity
Vacuum leak integrity Outgassing and deformation issues under high vacuum Stress-relieved 304SS body with custom fittings Maintained stable ultra-high vacuum environment at 5 × 10-9
Operational efficiency Slow stabilization times and mechanical interference bottlenecks Optimized thermal ramping and reliable mechanical clearances 14% increase in overall operational throughput

Custom 300mm Vacuum Puck Heater

Advanced Material Selection
Engineers selected 304 Stainless Steel (304SS) for the low-profile puck body. This material provides an optimal balance of thermal conductivity, high mechanical strength at 400°C, and excellent corrosion resistance under vacuum conditions. 

Ultra-Compact Vacuum Side-Mounted Flange

To bypass the bottom-chamber clearance restrictions and overcome the competitor's bulky layout, engineering designed a proprietary side-mounted flange assembly. This ultra-compact configuration routed all electrical feedthroughs and internal thermometry horizontally through a single minimized custom side port.
  • Footprint Reduction: Cleared 100% of the vertical clearance zone beneath the puck by eliminating excess thickness.
  • Vacuum Integrity: Maintained a stable environment at 5 x 10 ̄⁹ using custom vacuum fittings.



BCE Hi Temperature Puck Heater - 200mm

BCE Hi Temperature Puck Heater - 200mm

Background:

Industrial & semiconductor applications require high heat in a centralized location. BCE designed a heater platen with the goal of 900⁰C operation, fast ramp & soak of at least 800⁰C. When tested in our BCE Lab in Hayward California, we were able to push this heater further and achieved upwards of 1,050°C

Ramp Time:
  • Test#1 23°C to 800°C, 29 Min. (without Insulation)
  • Test#2 23°C to 800°C, 13 Min. (with 2" Insulation)
  • Test#3 23°C to 900°C, 17 Min. (with 2” Insulation)
  • Test#4 23°C to 950°C, 18 Min. (with 2” Insulation)
  • Test#5 23°C to 1,000°C,19 Min. (with 2” Insulation)

Temp. Uniformity:

After the heater stabilized from 800⁰C to 950⁰C, the surface thermocouple on the edge to the internal thermocouple (approximately 180⁰ away), there was a 1% to 2% delta.

Scope:
  • Material: 304 Stainless Steel with Inconel Heat Source
  • Stainless Steel CF or KF flanges of various sizes, with heat sink near heater outlet
  • 200mm Ø x 0.50” Thick
  • Vacuum, He Leak Test available
  • 700VDC, Hi-pot, 1mA current leakage
  • 5mΩ @ 500VDC prior to shipping

Outcome:

Ramped heater from 23°C to 1,000°C in 19 min. under 2” thick ceramic fiber insulation. The heater was held at this temperature for 1 hour, and it intermittently hit 1,050°C.

This video shows a test in atmosphere with no insulation which is less efficient but more interesting to look at.

BCE does not recommend operation above 900C as this can drastically impact the life of the assembly. Furthermore, high-temperature operations should be in a vacuum/oxygen-free environment, and use of insulation is advised.

BCE Mfg.
21060 Corsair Blvd. Hayward, CA 94545
510-274-1990

The BCE Hi-Temp Puck Heater


Introducing the Hi-Temp Puck Heater

The demand for high temperature applications in various industries such as vacuum chambers, laboratories, green energy, and 3D printing has led to the development of the innovative Hi-Temp Puck Heater. Designed to deliver exceptional performance and precision, this compact heating solution is capable of reaching temperatures up to an impressive 1,000°C, with intermittent temperatures exceeding 1,100°C.

BCE Hi-Temp Puck Heater

Unmatched Performance and Reliability

One of the key highlights of the Hi-Temp Puck Heater is its remarkable temperature range, spanning from 50°C to +1,000°C, making it suitable for a wide range of industrial applications. Whether you need consistent high heat or intermittent bursts of extreme temperature, this heater has got you covered with a built-in thermocouple for precise temperature control.   

Constructed with high-grade stainless steel, the Hi-Temp Puck Heater ensures durability and longevity. Its compact design, measuring just 2.5" in diameter and 0.56" thick, allows for easy integration into existing systems without compromising space or efficiency.

Versatile Flange Options

To accommodate different setups and requirements, the Hi-Temp Puck Heater offers stainless steel CF or KF flanges in various sizes. This versatility ensures seamless compatibility with a range of vacuum chambers and other industrial equipment.

Reliable Testing and Certification

Prior to shipping, each Hi-Temp Puck Heater undergoes rigorous testing to ensure quality and reliability. The heaters are subjected to vacuum and helium leak tests, guaranteeing their suitability for high-pressure and demanding environments. Furthermore, the units undergo a 700VDC hi-pot test with a 1mA current leakage inspection to ensure electrical safety. With a resistance of 5mΩ at 500VDC, these heaters are built to perform consistently and reliably.

Unprecedented Heating Performance

In a recent application conducted at our BCE Lab in Hayward, California, we put the Hi-Temp Puck Heater to the test. The customer's specific requirements called for rapid heating and temperature stability. To exceed expectations, we pushed the heater to its limits, achieving an impressive ramp-up from 27°C to 1,000°C in just 15 minutes. This remarkable heating capability was facilitated by a 1" thick ceramic fiber insulation, ensuring optimal heat retention. Even more impressive, the heater maintained a steady temperature of 1,000°C for a duration of one hour, with intermittent temp to 1,100°C. You can witness the exceptional performance of the Hi-Temp Puck Heater in action by watching the video below.

https://bcemfg.com
510-274-1990