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Method for waking up fission clock-in prompt clock

A clock and clock-in technology, which is applied in the direction of program control design, instruments, electrical digital data processing, etc., can solve the problems of high power consumption, affecting the timing accuracy of the whole machine, and affecting the standby time of the whole machine, so as to reduce energy consumption, Improve the standby time and ensure the effect of normal work

Pending Publication Date: 2022-03-11
深圳次元波动网络技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The existing fission check-in reminder clock wake-up module is always in the working state during the timing process, consumes a lot of power, seriously affects the standby time of the whole machine, and during the timing process, a large number of interrupt codes and system errors will be generated from time to time. Cache, which seriously affects the timing accuracy of the whole machine

Method used

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  • Method for waking up fission clock-in prompt clock

Examples

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Embodiment 1

[0019] A method for waking up a fission check-in reminder clock, comprising the following steps:

[0020] 1. Set the main loop in the clock wake-up module, set the specified time in the main loop, and the clock starts counting. During the timing, the clock wake-up module is in a standby state to reduce energy consumption;

[0021] 2. When the specified time has not yet arrived, when the timing is manually intervened, the timing will be interrupted, and the timing will start according to the new timing;

[0022] 3. After the timing time arrives, the clock wake-up module will send a prompt message to the system. After the prompt is completed, the clock wake-up module will continue the timing work of the next cycle;

[0023] 4. During the timing process, when the timing is interrupted for no reason due to system failure or power failure accident, after the failure is eliminated, the clock wake-up module will continue to time;

[0024] 5. Set a sub-loop in the clock wake-up modul...

Embodiment 2

[0027] A method for waking up a fission check-in reminder clock, comprising the following steps:

[0028] 1. Set the main loop in the clock wake-up module, and set the specified time in the main loop. The time is 3 hours, and the clock starts counting. During the timing, the clock wake-up module is in a standby state to reduce energy consumption;

[0029] 2. When the specified time has not arrived, for example, the time has only passed 1 hour, when the timing is manually intervened, the timing will be interrupted, and the timing will start according to the new timing;

[0030] 3. After the timing time arrives, the clock wake-up module will send a prompt message to the system. After the prompt is completed, the clock wake-up module will continue the timing work of the next cycle;

[0031] 4. During the timing process, when the timing is interrupted for no reason due to system failure or power failure accident, after the failure is eliminated, the clock wake-up module will conti...

Embodiment 3

[0035] A method for waking up a fission check-in reminder clock, comprising the following steps:

[0036] 1. Set the main loop in the clock wake-up module, and set the specified time in the main loop. The time is 1 hour, and the clock starts counting. During the timing, the clock wake-up module is in a standby state to reduce energy consumption;

[0037] 2. When the specified time has not arrived, for example, the time has only passed half an hour, when the timing is manually intervened, the timing will be interrupted, and the timing will start according to the new timing;

[0038] 3. After the timing time arrives, the clock wake-up module will send a prompt message to the system. After the prompt is completed, the clock wake-up module will continue the timing work of the next cycle;

[0039] 4. During the timing process, when the timing is interrupted for no reason due to system failure or power failure accident, after the failure is eliminated, the clock wake-up module will ...

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Abstract

The invention discloses a fission clock-in prompt clock awakening method, which comprises the following steps of: 1, setting a main cycle in a clock awakening module, setting specified time in the main cycle, starting timing by a clock, and enabling the clock awakening module to be in a standby state in a timing process so as to reduce energy consumption; 2, when the specified time is not reached and the timing time is manually intervened, timing is interrupted, and timing is started according to the new timing time; 3, after the timing time is up, the clock wake-up module sends prompt information to the system, and after the prompt is finished, the clock wake-up module continues the timing work of the next cycle; 4, in the timing process, when timing is interrupted without any reason due to system faults or power failure accidents, the clock awakening module continues timing after the faults are removed; and 5, an auxiliary loop is arranged in the clock wake-up module, and the auxiliary loop is used for monitoring whether the main loop runs normally or not and is responsible for clearing interrupt codes and system cache generated in the timing process of the main loop, so that smooth proceeding of the main loop is guaranteed. According to the fission clock-in prompt clock awakening method, the clock awakening module is in the standby state during timing, energy consumption can be remarkably reduced, and the standby time of the whole machine is prolonged; through the design of the auxiliary circulation, normal work of the main circulation can be effectively guaranteed.

Description

technical field [0001] The invention relates to a clock wake-up method, in particular to a clock wake-up method for fission check-in reminder. Background technique [0002] The existing fission check-in reminder clock wake-up module is always in the working state during the timing process, consumes a lot of power, seriously affects the standby time of the whole machine, and during the timing process, a large number of interrupt codes and system errors will be generated from time to time. Cache seriously affects the timing accuracy of the whole machine. Contents of the invention [0003] The purpose of the present invention is to provide a method for waking up a fission check-in reminder clock to solve the problems raised in the above-mentioned background technology. [0004] To achieve the above object, the present invention provides the following technical solutions: [0005] A method for waking up a fission check-in reminder clock, comprising the following steps: [0...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F1/3237G06F9/4401
CPCG06F9/4418G06F1/3237
Inventor 张贵军
Owner 深圳次元波动网络技术有限公司
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