Gyrotron Power Supply Stabilization Circuit for Constant Beam Voltage
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Solution Overview
Problem
Conventional gyrotron power supply devices require complex and expensive control systems to maintain stable voltage, leading to increased manufacturing and operation costs, which hinders efficient oscillation and stability.
Innovation Solution
A power supply device for gyrotron incorporating body and anode power supply stabilization circuits with resistors to maintain a predetermined output voltage, using linear regulator circuits to stabilize input/output voltages, thereby reducing complexity and cost.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If complex feedback control systems are used to stabilize power supply voltage, then voltage stability is improved, but device complexity and manufacturing cost increase
Solution Approach 1:
The patent introduces a stabilization circuit as an intermediary component between the main power supply and the body power supply. This circuit includes a series transistor and parallel transistor that act as mediators to automatically stabilize the voltage without requiring complex feedback control systems. The stabilization circuit provides a simple yet effective voltage reference and regulation mechanism that eliminates the need for expensive and complex control means while maintaining voltage stability.
Solution Approach 2:
The stabilization circuit is designed to automatically maintain stable voltage through self-regulating mechanisms. The circuit uses the inherent properties of the transistors and resistors to automatically adjust and stabilize the voltage without external intervention or complex control algorithms. This self-service approach simplifies the control system while ensuring reliable voltage stability for the gyrotron operation.
2Reliability
If complex feedback control is implemented to prevent overcurrent, then operational stability is improved, but operation cost increases
Solution Approach 1:
The stabilization circuit acts as an intermediary that automatically prevents overcurrent conditions through its inherent circuit design. The series transistor and parallel transistor configuration naturally limits current flow and prevents overcurrent without requiring expensive active control systems. This intermediary circuit provides passive protection that reduces operation costs while maintaining operational stability.
3Productivity
If high voltage stability is maintained through conventional power supply devices, then oscillation efficiency is improved, but manufacturing cost increases
Solution Approach 1:
The patent introduces a stabilization circuit as an intermediary component that provides the necessary voltage stability for high oscillation efficiency at low cost. This circuit includes simple components such as transistors and resistors that can be easily manufactured and integrated into the power supply system. The stabilization circuit ensures that the voltage remains stable during gyrotron operation, thereby maintaining high oscillation efficiency without requiring expensive power supply devices.
Solution Approach 2:
The stabilization circuit uses inexpensive components such as transistors and resistors that can be easily replaced if needed. These cheap components provide the necessary voltage stability function without requiring expensive power supply equipment. The use of low-cost components significantly reduces manufacturing cost while maintaining the voltage stability required for high oscillation efficiency in the gyrotron.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The device achieves stable and efficient gyrotron operation by maintaining constant beam voltage, improving oscillation efficiency, reducing manufacturing and operation costs, and enabling downsizing of components.
Implementation Method 1
a body power supply stabilization circuit supplying a stable voltage to the power supply circuit, the linear regulator circuit including a series transistor and a parallel transistor
Implementation Method 2
the linear regulator circuit including a series transistor and a parallel transistor
Implementation Method 3
an anode power supply stabilization circuit maintaining an input/output voltage varying between an electron gun side supply line of the main power supply in the main voltage circuit and an anode side supply line of the anode power supply in the anode voltage circuit at a predetermined output voltage
Data Source
AI summary
A main power supply 51 supplies power to a main voltage circuit 5 applying a voltage to an electron gun unit 2a and a collector unit 26, a body power supply 31 supplies power to a body voltage circuit 3 applying a voltage to a body unit 25 and the collector unit 26, and a body power supply stabilization circuit 33 maintains an input/output voltage varying between an electron gun side supply line 51b of the main power supply 51 in the main voltage circuit 5 and a body side supply line 31b of the body power supply 31 in the body voltage circuit 3 at a predetermined output voltage.


