CN205374314U - Mycoplasma detector - Google Patents
Mycoplasma detector Download PDFInfo
- Publication number
- CN205374314U CN205374314U CN201521065037.9U CN201521065037U CN205374314U CN 205374314 U CN205374314 U CN 205374314U CN 201521065037 U CN201521065037 U CN 201521065037U CN 205374314 U CN205374314 U CN 205374314U
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- plate
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- hatching
- master controller
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Abstract
The utility model discloses a mycoplasma detector, hatch the device including main control unit and sample test, the device is hatched including hatching the board and installing at the hot plate of hatching plate bottom side and install the photoelectricity board and photoelectric detection board of hatching the relative both sides of board to sample test, be equipped with temperature sensor on the hot plate, have the LED light source on the photoelectricity board, have color sensor on the photoelectric detection board, hatch the board and be equipped with the inspection hole that the sample test tube was put the hole and was corresponded, the hot plate is to hatching the panel heating, photoelectricity board emitted light passes the inspection hole and the downthehole sample test tube of putting is put to the sample test tube, shines the board to photoelectric detection. The utility model discloses utilize hot plate, temperature sensor controlling the constancy of temperature that test tube in the hole was put to the test tube, utilize photoelectricity inboard light to pass through inspection hole and sample reagent bottle, the testing result is judged to change through photoelectric detection board, color sensor discernment colour, compares visual recognition and has reduced the error, the efficiency of having compared the improvement great in manual operation.
Description
Technical field
This utility model belongs to medical treatment detection apparatus technical field, relates to a kind of detector, particularly a kind of mycoplasma pneumoniae detector.
Background technology
Mycoplasma pneumoniae is a kind of microorganism between virus and antibacterial, is the pathogen of mankind's mycoplasma pneumonia.Mycoplasma pneumoniae pathogenic is likely to the infected, the anaphylaxis of pathogen or its metabolite is relevant.After mycoplasma pneumoniae is sucked by respiratory tract, attach to host respiratory surface epithelial cell, it is suppressed that ciliary movement and destruction epithelial cell.The diagnosis of domestic mycoplasma pneumoniae relies primarily on Serologic detection and pathogen culture.
Progressively adopt the method diagnosis of pneumonia mycoplasma of pathogen culture at present both at home and abroad, and define 3 hours/6 hours quick detection kit.The such as application number of document disclosed in it is CN201410118844 Chinese invention patent application open " a kind of mycoplasma pneumoniae culture identification reagent and preparation method thereof " (publication number: CN103849673A), mycoplasma pneumoniae rapid detection kit relatively traditional detection method is adopted to have greatly improved, as more convenient in operation, detect more rapid etc..But current test kit is all by manual detection, therefore unavoidable appearance is as uneven in application of sample, and detectable holds improper artificial operating error such as grade.Additionally also can there is bigger deviation by artificial naked eyes interpretation in the testing result of enzyme chromogenic reaction.Therefore manual detection efficiency is too low, also can there is sentence read result inaccurate.
Utility model content
The purpose of this utility model is in that to overcome existing technical deficiency, there is provided a kind of operating efficiency high, reduce the mycoplasma pneumoniae detector of operating error, when adopting mycoplasma pneumoniae quick detection reagent to check mycoplasma pneumoniae for medical institutions, replace the operation manually carrying out incubation, printing, result judgement.
The purpose of this utility model can be achieved through the following technical solutions:
Detection of mycoplasma instrument, including master controller, sample detection incubating device, display screen, printer and the external shell carrying above-mentioned parts, described sample detection incubating device includes hatching plate and being arranged on the hot plate hatching plate bottom side and be arranged on the electro-optical package and Photoelectric Detection plate of hatching plate opposite sides;Described hot plate is provided with temperature sensor, electro-optical package has LED light source, Photoelectric Detection plate has color sensor, hatches plate and is provided with sample tube and puts the detection hole of hole and correspondence;Described hot plate is to hatching plate heating;Described electro-optical package is launched light and is put, through detection hole and sample tube, the sample tube put in hole, exposes to Photoelectric Detection plate.
Described hot plate, temperature sensor, electro-optical package, Photoelectric Detection plate are each coupled electrically to master controller.
Described plate of hatching is provided with three groups, and often group is hatched plate and is provided with five sample tubes and puts hole, and often group is hatched both sides corresponding to plate and is provided with detection hole.
Described external shell is assembled by base and shell and constitutes, and shell is provided with display screen installing hole, printer installing hole and three groups hatch plate hole, hatches plate hole and is fitted with port lid, and port lid and shell are rotationally connected.
Described base is installed master controller;Described display screen installing hole, printer installing hole correspondence install display screen and printer;Display screen and printer are electrically connected respectively to master controller;Plate is hatched in described plate hole correspondence installation of hatching.
The described shell hatching plate hole locations place is marked with numeral numbering and reagent bottle placing direction labelling.
The numerical value of described master controller reading temperature sensor, is analyzed calculating by touching the set temperature value of display screen input with user by the numerical value of temperature sensor, controls heater plate function.
The control end electrical connection of described master controller and relay, the switch terminals of relay electrically connects with hot plate power supply and hot plate respectively.
Described master controller sends to the LED light source on electro-optical package and opens control signal, and LED light source is lit, and light arrives Photoelectric Detection plate after sample reagent bottle;After the color sensor numerical value of Photoelectric Detection plate respective channel has been read in main control, main control sends closing control signal to the LED light source of this passage on electro-optical package, and LED light source is closed.
Described master controller electrically connects with display screen, and the parameter information of instrument, sample message, patient information data are input in master controller by display screen, and the data such as testing result, Instrument working state are shown by master controller by display screen.
The beneficial effects of the utility model: this utility model utilizes hot plate, temperature sensor to control test tube and puts the temperature constant of test tube in hole;Utilize in electro-optical package light transmitted through detection hole and sample reagent bottle, by Photoelectric Detection plate, the change of color sensor identification color and judge testing result, compare naked eyes identification and decrease error, be greatly improved efficiency compared to manual operation.
Accompanying drawing explanation
This utility model is further described below in conjunction with accompanying drawing for the ease of it will be appreciated by those skilled in the art that.
Fig. 1 is this utility model shell mechanism schematic diagram;
Fig. 2 is this utility model understructure schematic diagram;
Fig. 3 is that this utility model hatches plate schematic top plan view;
Fig. 4 is that this utility model hatches plate A-A to schematic cross-section;
Fig. 5 is that this utility model hatches plate elevational schematic view;
Fig. 6 is that this utility model hatches plate side schematic side view;
Fig. 7 is that this utility model hatches plate opposite side schematic side view;
Fig. 8 is this utility model parts connection diagram.
Detailed description of the invention
Detection of mycoplasma instrument, including master controller, sample detection incubating device, display screen, printer and the external shell carrying above-mentioned parts;
As shown in Figure 1 and Figure 2, external shell is assembled by base 1 and shell 2 and constitutes, shell 2 is provided with display screen installing hole 3, printer installing hole 4 and three groups hatch plate hole 5, hatch plate hole 5 and be fitted with port lid, port lid and shell 2 are rotationally connected, and display screen is corresponding with printer is arranged on display screen installing hole 3, printer installing hole 4 position;
Master controller is fixed on base 1, and display screen and printer are wired to master controller, referring to Fig. 8;
Referring to Fig. 3~Fig. 7, sample detection incubating device includes three groups and hatches plate 6 and be separately mounted to often group and hatch the hot plate 9 of plate bottom side and being arranged on and hatch electro-optical package 11 and the Photoelectric Detection plate 12 of plate opposite sides, hot plate 9 is provided with temperature sensor 10, electro-optical package 11 has LED bulb, Photoelectric Detection plate 12 has color sensor, hot plate, temperature sensor and electro-optical package, Photoelectric Detection plate are connected to master controller each through wire, referring to Fig. 8;
Hatching plate 6 correspondence for three groups and be arranged on the shell hatching plate hole 5 position, often group is hatched plate and is provided with five sample tubes and puts hole 7, and often group is hatched both sides corresponding to plate and is provided with detection hole 8;
It is corresponding with the position of Photoelectric Detection plate 12 and each detection hole that sample tube puts electro-optical package 11 corresponding to both sides, hole 7, color sensor identification sample tube puts the sample reagent reactant color change in hole 7, and result of determination is transmitted to master controller, judge testing result according to color change and show on a display screen;
The hot plate 9 that bottom side is corresponding, ensure that sample tube puts hole temperature constant, hot plate adopts the resistance wire on printed circuit board (PCB) to be heated, the startup of main controller controls hot plate and stopping, and the temperature on test tube arranging apparatus is sent to master controller by temperature sensor in real time.
Electro-optical package 11 is arranged in sample tube and puts the lower position in hole, so that light can pass the position, middle and lower part of sample tube, the light of electro-optical package 11LED lamps emission is incident in detection hole at a certain angle, and transmission enters sample reagent bottle, Photoelectric Detection plate is at sample reagent bottle back location, color sensor on Photoelectric Detection plate is prior art, can recognise that reacted color changes thus judging testing result and by internal controller, testing result being sent into display screen.
The printer electrically connected with master controller facilitates operator display result to be printed.
It is marked with numeral numbering and reagent bottle placing direction labelling at the shell hatching plate hole 5 position, when display result, the numeral numbering that testing result is corresponding can be shown.
This utility model operating efficiency is high, operating error reduces, sample reagent test tube is put into after test tube puts hole, utilizing hot plate to keep constant temperature certain time (about 37 DEG C), question response passes through change the result of determination of color sensor identification color after completing.
The master controller numerical value by the real-time reading temperature sensor of one-wire agreement, the numerical value of temperature sensor is when the temperature value of preincubation plate, the numerical value of temperature sensor is analyzed calculating by touching the set temperature value of display screen input by master controller again with user, if the numerical value that Current Temperatures sensor obtains is more than user's setting value, master controller is shut off heater plate function, if the numerical value that Current Temperatures sensor obtains is less than user's setting value, master controller turns on heater plate function.
The control end electrical connection of master controller and relay, the switch terminals of relay electrically connects with hot plate power supply and hot plate respectively.When master controller judges whether to open heating function through temperature analysis, master controller sends connection signal to relay, and the switch terminals Guan Bi of relay, hot plate power supply is connected by relay switch end with hot plate, and hot plate begins to warm up.When main control judges whether to close heating function through temperature analysis, master controller sends cut-off signal to relay, and the switch terminals of relay disconnects, and hot plate power supply and hot plate are disconnected by relay switch end, and hot plate stops heating.
When the sample incubation of certain sense channel completes, master controller sends to this channel LED light source on electro-optical package and opens control signal, and LED light source is lit, and light arrives Photoelectric Detection plate after sample reagent bottle.After the color sensor numerical value of Photoelectric Detection plate respective channel has been read in main control, main control sends closing control signal to the LED light source of this passage on electro-optical package, and LED light source is closed.
After the sample incubation of certain sense channel completes, master controller reads the color sensor numerical value of respective channel on Photoelectric Detection plate, and after having read, master controller sends the control signal cutting out LED light source to electro-optical package.
Master controller electrically connects with touching display screen, and the data such as the parameter information of instrument, sample message, patient information are input in master controller by touch screen.The data such as testing result, Instrument working state are shown by master controller by display screen.
Above content is only to this utility model structure example and explanation; described specific embodiment is made various amendment or supplements or adopt similar mode to substitute by affiliated those skilled in the art; without departing from the structure of utility model or surmount the scope that present claims book is defined, protection domain of the present utility model all should be belonged to.
Claims (8)
1. detection of mycoplasma instrument, including master controller, sample detection incubating device, display screen, printer and the external shell carrying above-mentioned parts, it is characterised in that: described sample detection incubating device includes hatching plate (6) and being arranged on the hot plate (9) hatching plate bottom side and be arranged on the electro-optical package (11) and Photoelectric Detection plate (12) of hatching plate opposite sides;Described hot plate (9) is provided with temperature sensor (10), electro-optical package has LED light source on (11), Photoelectric Detection plate has color sensor on (12), hatches plate (6) and is provided with sample tube and puts the detection hole (8) of hole (7) and correspondence;Described hot plate (9) is to hatching plate (6) heating;Described electro-optical package (11) is launched light and is put, through detection hole (8) and sample tube, the sample tube put in hole (7), exposes to Photoelectric Detection plate (12).
2. detection of mycoplasma instrument according to claim 1, it is characterised in that described hot plate, temperature sensor, electro-optical package, Photoelectric Detection plate are each coupled electrically to master controller.
3. detection of mycoplasma instrument according to claim 1, it is characterized in that, described plate (6) of hatching is provided with three groups, and often group is hatched plate and is provided with five sample tubes and puts hole (7), and often group is hatched both sides corresponding to plate and is provided with detection hole (8).
4. detection of mycoplasma instrument according to claim 1, it is characterized in that, described external shell is assembled by base (1) and shell (2) and constitutes, shell (2) is provided with display screen installing hole (3), printer installing hole (4) and three groups hatch plate hole (5), hatching plate hole (5) and be fitted with port lid, port lid and shell (2) are rotationally connected.
5. detection of mycoplasma instrument according to claim 4, it is characterised in that install master controller on described base (1);Described display screen installing hole (3), printer installing hole (4) correspondence install display screen and printer;Display screen and printer are electrically connected respectively to master controller;Described corresponding installation of plate hole (5) of hatching hatches plate (6).
6. detection of mycoplasma instrument according to claim 4, it is characterised in that the described shell hatching plate hole (5) position is marked with numeral numbering and reagent bottle placing direction labelling.
7. detection of mycoplasma instrument according to claim 5, it is characterised in that the control end electrical connection of described master controller and relay, the switch terminals of relay electrically connects with hot plate power supply and hot plate respectively.
8. detection of mycoplasma instrument according to claim 1, it is characterized in that, described master controller electrically connects with display screen, the parameter information of instrument, sample message, patient information data are input in master controller by display screen, and testing result, Instrument working state data are shown by master controller by display screen.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201521065037.9U CN205374314U (en) | 2015-12-16 | 2015-12-16 | Mycoplasma detector |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521065037.9U CN205374314U (en) | 2015-12-16 | 2015-12-16 | Mycoplasma detector |
Publications (1)
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CN205374314U true CN205374314U (en) | 2016-07-06 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201521065037.9U Expired - Fee Related CN205374314U (en) | 2015-12-16 | 2015-12-16 | Mycoplasma detector |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105403562A (en) * | 2015-12-16 | 2016-03-16 | 合肥泰特信息科技有限责任公司 | Mycoplasma detector |
CN108826072A (en) * | 2018-07-16 | 2018-11-16 | 王思远 | A kind of diode illuminating device for microorganism detection |
-
2015
- 2015-12-16 CN CN201521065037.9U patent/CN205374314U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105403562A (en) * | 2015-12-16 | 2016-03-16 | 合肥泰特信息科技有限责任公司 | Mycoplasma detector |
CN108826072A (en) * | 2018-07-16 | 2018-11-16 | 王思远 | A kind of diode illuminating device for microorganism detection |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160706 Termination date: 20171216 |
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CF01 | Termination of patent right due to non-payment of annual fee |