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A test tube carrier scheduling method

A scheduling method and test tube technology, applied in the field of medical devices, can solve the problems of standby waiting, the inability to accumulate test tube carriers in space capacity, affecting the detection efficiency of the assembly line system, etc., and achieve the effect of reducing energy consumption and reducing travel distance.

Active Publication Date: 2022-08-05
深圳市爱康生物科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to overcome the deficiencies in the prior art, the present invention provides a test tube carrier scheduling method to solve the following problems in the prior art: when the detection speed of the upstream analysis equipment in the laboratory assembly line system is greater than the detection speed of the downstream analysis and detection equipment When the transmission track is limited by the space capacity, too many test tube carriers cannot be piled up, and if the test tube carriers on the transmission track cannot be transported to the downstream analysis equipment in time, the upstream analysis equipment must be forced to wait / stop detection, affecting Improve the overall detection efficiency of the pipeline system

Method used

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Experimental program
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Effect test

Embodiment 1

[0060] A test tube carrier scheduling method is characterized by the control unit of the assembly line, such as figure 1 and figure 2 Show, the flow water line includes transmission orbit 1. Blocking device 2. At least one cache passage, temporary storage device 3. Analysis equipment and the control unit, which is installed on the transmission track 1, the transmission track is located on the transmission track 1, which is located on the transmission orbit. Between the upstream analysis equipment and the downstream analysis equipment, the indigenous channel is between the transmission track and the downstream analysis equipment. Vertical connection with transmission rail 1, the temporary deposit device is used to temporarily deposit test tubes; it should be explained that the upstream analysis equipment and downstream analysis equipment refer to The front -end detection and analysis equipment and the back -end detection and analysis equipment, the setting of the setting of the num...

Embodiment 2

[0066] like figure 2 It shows that the temporary device includes a number of temporary storage channels set up in parallel settings. The starting end and end, the starting end of the temporary channel is set with the first -place detection switch and the first promotion mechanism, which is set on the end of the temporary channel with a second -place detection switch and the second promotion mechanism. The two adjacent temporary storage channels are set in center symmetrical settings; the method of controlling unit control test tube carriers enter the temporary deposit device include:

[0067] Set the temporary passage near the upstream analysis equipment as the first temporary channel 301, set the temporary storage channel near the downstream analysis equipment as the last temporary channel 302, set between the first temporary passage and the last temporary passage The temporary storage channel is the intermediate temporary channel. In this embodiment, the number of temporary chan...

Embodiment 3

[0075] like Figure 4 Show, the method also includes:

[0076] When the number of test tubes on the cache channel does not reach the set number and the test tube rack is not available on the transmission orbit, the first temporarily storage channel at the beginning of the temporarily stored channel is The end temporary storage channel set on the end of the test tube carrier to the end of the motion to the end of the motion to the end of the motion to the end is the second place to detect the induction range of the test and switch 315. Control the unit to control the transmission track 1 to transmit the test tube carrier to the cache channel; need It shows that under this status conditions, the control unit controls the first promotion mechanism on the start end of the end -of -the -point temporary channel to promote the distance from the test tube carrier to the motion. It is understood as the test tube rack on the front end of the last temporary channel (that is, the test tube rac...

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Abstract

The invention discloses a test tube carrier scheduling method, which includes a control unit applied to an assembly line, the assembly line includes a transmission track, a blocking device, at least one buffer channel, a temporary storage device, an analysis device and the control unit. The temporary storage channel is used to temporarily store the test tube carriers, which can avoid the situation that the transport track and the buffer channel are limited by the space capacity and cannot accumulate too many test tube carriers. During storage, the motion path of the test tube carrier is a "U-shaped" or "serpentine"-like path. The control unit determines whether the number of test tube carriers on the buffer channel reaches the set number and whether there are test tube carriers to enter on the transmission track. to flexibly control the set distance that the first push mechanism on the initial end of the final temporary storage channel pushes the test tube carrier to move in the Y direction, so as to minimize the first push mechanism on the initial end of the final temporary storage channel. The travel distance of the back-and-forth reciprocating motion reduces energy consumption.

Description

Technical field [0001] The invention involves the field of medical device technology, especially a test tube rack scheduling method. Background technique [0002] In the existing technology, multiple analysis equipment has been publicly connected to form an assembly line, so as to handle the samples to be tested in batches. In general, users only need to place samples with samples and logo sample containers and logo with samples at the starting position. / Or sample carriers, the above sample container and / or sample carrier flow with the transmission rack, according to the preset test items and analysis equipment of the samples, and the current status decide Where to transport it. [0003] The detection speed of the analysis equipment in the automatic transmission of the assembly line system is usually inconsistent. For example, the existing assembly line system contains enzyme -free analyzers and the blood type analyzer located in the downstream of the enzyme free analyzer, the e...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N35/00G01N35/02G01N35/04
Inventor 刘付旭光
Owner 深圳市爱康生物科技股份有限公司