Systems And Methods With Auxiliary Control Boards Having Interface Devices
US-2024393848-A1 · Nov 28, 2024 · US
US2016306403A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016306403-A1 |
| Application number | US-201615194270-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 27, 2016 |
| Priority date | Feb 21, 2012 |
| Publication date | Oct 20, 2016 |
| Grant date | — |
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Official abstract text for this publication.
Embodiments of the invention are directed toward systems and methods that execute legacy semiconductor applications using a non-legacy controller. In some embodiments a hardware abstraction layer and/or an emulator can be used to provide communication between a non-legacy operating system and legacy components including legacy applications. In some embodiments various methods and/or devices can be used to emulate and/or translate communications between legacy and non-legacy components.
Opening claim text (preview).
What is claimed is: 1 . A power supply system for a semiconductor processing system, the power supply system comprising: an AC adapter electrically coupled to an AC power source, the AC adapter configured to convert AC power from the AC power source to DC power; a processing tool adapter electrically coupled to the AC power source and a semiconductor processing tool, the processing tool adapter configured to provide power to the semiconductor processing tool; a DC control system adapter electrically coupled to the AC adapter and a semiconductor processing control system, wherein the DC control system adapter is configured to provide DC power to the semiconductor processing control system, and wherein the semiconductor processing control system is configured to control the semiconductor processing tool; a DC fan adapter electrically coupled to the AC adapter and a fan subsystem, the DC fan adapter configured to provide power to the fan subsystem; and a power supply control subsystem configured to monitor power drawn by at least one of the AC adapter, the processing tool adapter, the DC control system adapter, or the DC fan adapter. 2 . The power supply system of claim 1 , further comprising a DC battery adapter electrically coupled to the AC adapter and a battery, the DC battery adapter configured to provide power to the battery. 3 . The power supply system of claim 2 , wherein the power supply control subsystem is configured to control charging of the battery. 4 . The power supply system of claim 2 , wherein the power supply control subsystem is configured to control load switching of the battery. 5 . The power supply system of claim 1 , wherein the power supply control subsystem is configured to: monitor a deviation of the power drawn by the AC adapter, the processing tool adapter, the DC control system adapter, or the DC fan adapter from a standard power drawn by the corresponding adapter; and determine whether the AC adapter, the processing tool adapter, the DC control system adapter, the DC fan adapter, the semiconductor processing tool, the semiconductor processing control system, or the fan subsystem functions properly, based on the deviation. 6 . The power supply system of claim 1 , wherein the power supply control subsystem is configured to monitor a power consumption by at least one of the semiconductor processing tool, the semiconductor processing control system, or the fan subsystem. 7 . The power supply system of claim 1 , wherein the power supply control subsystem is configured to monitor temperatures within at least one of the fan subsystem or the semiconductor processing control system. 8 . The power supply system of claim 1 , wherein the power supply control subsystem is configured to monitor a fan speed of one or more fans within the fan subsystem. 9 . The power supply system of claim 8 , wherein the power supply control subsystem is further configured to turn off the semiconductor processing control system when the fan subsystem fails. 10 . The power supply system of claim 1 , wherein the semiconductor processing control system is an external control system. 11 . The power supply system of claim 1 , wherein the DC power from the AC adapter includes DC power at two or more different levels. 12 . The power supply system of claim 1 , further comprising an uninterruptible power source configured to provide short term power supply to the semiconductor processing control system when the DC power from the AC adapter drops below a threshold level. 13 . The power supply system of claim 12 , wherein the uninterruptible power source includes a capacitor bank. 14 . The power supply system of claim 12 , wherein the power supply control subsystem comprises a control logic configured to manage a power supply transition between the uninterruptible power source and the DC power from the AC adapter. 15 . The power supply system of claim 1 , wherein the power supply control subsystem comprises a control logic configured to: detect a sustained loss of the DC power from the AC adapter; and send an alert signal to the semiconductor processing control system such that the semiconductor processing control system can shut down properly without loss of data. 16 . The power supply system of claim 1 , wherein the power supply control subsystem comprises a fail-safe logic configured to shut down the power supply system when a system error is detected. 17 . The power supply system of claim 1 , wherein the power supply control subsystem comprises a communication adapter communicatively coupled to the semiconductor processing control system for communications between the power supply control subsystem and the semiconductor processing control system. 18 . The power supply system of claim 1 , wherein the power supply control subsystem is configured to monitor parameters selected from the list consisting of overall power status, DC bus voltages, DC bus load currents, incoming line parameters, fan temperatures, power supply subsystem temperature, control system temperature, control system CPU core loading, Backplane bus activity, and overall machine state.
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