e-beam
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* [[Determining tooling factor]] | * [[Determining tooling factor]] | ||
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- | ====Vacuum Anneal ==== | ||
- | A vacuum anneal will clean your chips of organics, leave you with better contact resistances (80-95% decreases), and can partially restore a leaky gate oxide. The process works with platinum and gold electrodes. Be aware: gold electrodes seem to have less adhesion to SiO2 following a vacuum anneal. This can be seen when contacting the electrodes in the probe station. Be aware: vacuum anneals sometimes create ~μm sized ' | ||
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- | * Click //Vent chamber to ATM//, and open up the chamber | ||
- | * Load your samples onto the 3x3" substrate heater ' | ||
- | * Be sure that the thermocouple wire extending from the steel conduit is in direct contact with the heater tabletop | ||
- | * Close the chamber | ||
- | * Click //Pump chamber to high vac// | ||
- | * Pour some liquid nitrogen into the plastic funnel when the system switches to the diffusion pump | ||
- | * Ensure that the heater' | ||
- | *To adjust the set point, hold ★ and press the ↑ or ↓ arrows | ||
- | * Plug in the heater' | ||
- | * Adjust the set point in increments of 50-100 °C by holding ★ and pressing the ↑ arrow. Allow the pressure to return to ~μTorr range between increments. | ||
- | *Release ★ to see the current temperature | ||
- | *Be sure to ramp up slowly, because there is a time delay between when the coil heats up and when the thermocouple actually reads the change. This is because the thermocouple and the coil are separated by an insulator (quartz). If you ramp up quickly the coil may reach very high temperatures (and break) even though the thermocouple reports a low temp. To avoid these problems, ramp slowly to allow plenty of time for heat to move through the quartz plate and be measured by the thermocouple. | ||
- | *While ramping up the heater will ' | ||
- | * Set the set point to < 20 °C once you reach your desired temperature | ||
- | * Suggested ramp up value for platinum or gold electrodes: 600 °C | ||
- | * Unplug the heater' | ||
- | * Allow the samples and heater to cool down | ||
- | * Click //Vent chamber to ATM// when the temperature is < 200 °C | ||
- | * Should take ~30 minutes | ||
- | * Open the chamber and collect your samples | ||
- | * Shutting down the system | ||
- | * Close the chamber and click //Shut down system// | ||
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- | ====Substrate heater ==== | ||
- | We've used a Q-series panel heater from [[http:// | ||
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- | We've used a part that was custom-made for Chris Tasker in the past (part #: OSU-3-3-120-I). The specs are 3x3x3" | ||
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- | It has two 1/4 - 20 stainless steel mounting studs on the back so that it can easily be fixed in place. There are two stainless steel terminals exiting the back of the heater and you would connect your leads to those terminals. The heater can be run either face up or face down. | ||
e-beam.txt · Last modified: 2025/07/21 13:46 by ethanminot