CN2774541Y - Automatic controller for transfusion - Google Patents
Automatic controller for transfusion Download PDFInfo
- Publication number
- CN2774541Y CN2774541Y CN 200420056902 CN200420056902U CN2774541Y CN 2774541 Y CN2774541 Y CN 2774541Y CN 200420056902 CN200420056902 CN 200420056902 CN 200420056902 U CN200420056902 U CN 200420056902U CN 2774541 Y CN2774541 Y CN 2774541Y
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- CN
- China
- Prior art keywords
- circuit
- chip microcomputer
- data processing
- motor
- transfusion
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
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- Infusion, Injection, And Reservoir Apparatuses (AREA)
Abstract
The utility model discloses an automatic controller for transfusion, which belongs to the field of medical appliances. The provided automatic controller for transfusion automatically controls the flow rate and drop number of transfusion and has more functions of displaying, controlling and warning. The automatic controller comprises a machine body, wherein the front side of the machine body has a display and a fixing chamber; a clamping device, an infrared luminous tube, a receiving tube are arranged in the fixing chamber; a control circuit and an actuating mechanism are arranged in the machine body. The utility model can realize the integrative functions of measurement, timing monitoring and automatic control.
Description
Technical field
This utility model belongs to a kind of medical apparatus and instruments, particularly relates to a kind of device of controlling infusion flow and dripping speed.
Background technology
Clinical transfusion adopts the adjusting that the armstrong's patent mode is carried out the switching degree of tube for transfusion at present, drips speed and flow thereby adjust, and precision is not high, drips speed and flow and is difficult to accurate setting.It is not high that existing transfusion controller also exists automaticity, shows that statistical item is few, cost an arm and a leg etc., though can realize the control of amount of infusion to a certain extent, complicated operation, and also precision is not high, shows that statistical item is few.During operation mistake, can only show error code, the medical worker to look into description and just can find mistake and correcting method according to error code.And could continue after will righting a wrong to infuse.
Summary of the invention
This utility model has overcome at present control and the existing deficiency of existing automatic transfusion device manually, and a kind of have multiple function, stable and high-precision transfusion automatic controller are provided.
The technical solution of the utility model is: this utility model comprises body, there is display in the body front, body one side is provided with drip chamber fixed chamber and clamping device, internal body is provided with control circuit and actuator, top one side of drip chamber fixed chamber is equipped with the infraluminescence pipe, opposite side is equipped with receiving tube, actuator comprises motor, the motor tailing axle is equipped with by grating wheel and infrared transmitting tube, the corner control pick off that receiving tube is formed, motor shaft matches with decelerator and gear train, connect with gear train drive screw opposite side that joins and the automatic valve bulk phase that is positioned at conduit, the automatic valve external body has a positioning block, relative with locating piece should have two position sensors, automatically valve body is near the nut of gear train one side for matching with drive screw, automatically valve inner has a spring, spring between nut and automatic valve head, the infraluminescence pipe on drip chamber fixed chamber top, receiving tube, motor corner control pick off, position sensor and motor all are connected with control circuit.
Control circuit comprises button inputting circuits, display, data processing circuit, single-chip microcomputer, motor, drive circuit and warning circuit, manual input circuit links to each other with the single-chip microcomputer input, the single-chip microcomputer outfan links to each other with sound light alarming circuit, display circuit, motor-drive circuit respectively, data processing circuit is connected alternately with single-chip microcomputer, data processing circuit links to each other with testing circuit, wherein input detects pulse signal to data processing circuit to the test section, and testing circuit is imported detected signal to data processing circuit.Data processing circuit comprises from single-chip microcomputer input pulse signal makes pulse signal amplify and export to the pulse amplifier of testing circuit, by the dropping liquid signal of the testing circuit input electronic filter in data processing circuit successively, signal amplifier, shaping circuit is to single-chip microcomputer, the motor angular signal of actuator input is the signal amplifier in data processing circuit successively, shaping circuit is to single-chip microcomputer, single-chip microcomputer outputs control signals to the motor-drive circuit of data processing circuit to actuator, power control circuit in the data processing circuit is connected with comparison circuit and exports single-chip microcomputer to, single-chip microcomputer outputs signal to the light drive circuit of data processing circuit, sound-driving circuit, light drive circuit, sound-driving circuit exports the acousto-optic indicator to.Warning circuit comprises sound alarm circuit and optical alarm circuit.There are dropping liquid display lamp, voice guard in the device front.Guide groove be shaped as rectangle.The both sides, top of drip chamber fixed chamber are equipped with luminous tube and receiving tube respectively.Display device is a lattice lcd display, is connected to the single-chip microcomputer delivery outlet by display interface.
The beneficial effects of the utility model are: key in predetermined system owing to adopt, can realize human computer conversation such as parameter setting.Infrared sensor and control system are for implementing to control number of infusion drops automatically and accuracy provides assurance.By the motor and the high speed reducing ratio of high-speed, high precision, low voice decelerator, the rotary angle transmitter that grating and infrared emission receiving sensor are formed, buffer spring, the location actuator that push rod and position sensor are formed reaches fast accurately location.Lattice lcd display can show various literal and figure.Auxiliary circuit also can provide the operation Control-Menu and send alarm and corresponding solution except that finishing whole control around computer reached.Comprise: open manually-operated gate, the drip chamber liquid level is too high, actual flow does not reach the setting flow, and tube for transfusion is not put into the tram and restarted, self check and mechanical disorder, and transfusion is finished, the electric weight deficiency, charging is finished.Computer can be reserved continuous development and enrich and the space of improving multiple function.The characteristics of native system make it real becoming and have multiple function, stable and high-precision transfusion automatic controller.
Description of drawings
Fig. 1 is a front schematic view of the present utility model;
Fig. 2 is actuator figure of the present utility model;
Fig. 3 is the schematic block circuit diagram of automatic control circuit;
Fig. 4 is the block diagram of data processing circuit;
The circuit diagram of Fig. 5 this utility model automatic control circuit.
The specific embodiment
Below in conjunction with drawings and Examples control procedure of the present utility model is further described:
When turning on the power switch, it is bright that light emitting diode sends power supply indicator, and system at first carries out self check, self check by after enter menu parameter duty be set, can require relevant parameter is set according to reality like this, enter duty.Self check not by or make mistakes in the course of the work, system will show error message, and this wrong method is corrected in prompting.When entering actual working state light emitting diode will show the dropping liquid situation both every flicker once, and every one of buzzer is rung once, also can not ring, and is decided by setting.When reporting to the police, buzzer can send continuous beeping sound and warn.Control procedure is: by single-chip microcomputer P2
6Mouth sends low level signal, and this moment, source current was through R2
8, D
8Luminous tube is to P2
6Mouthful, D
8Shinny.If P2
6Mouth sends a high level signal, and electric current will be cut off, and luminous tube extinguishes.Dropping liquid signal and power supply signal are together with a circuit.When sound alarm circuit need send interrupted beeping sound, at first by P2
7Mouth is sent a high level signal, thereby drives Q
2Conducting, electric current is through Q
2, buzzer to ground, make the buzzer sounding.As single-chip microcomputer P2
7The a succession of pulse signal of mouth output, this equipment will send a string beeping sound and report to the police.
Single-chip microcomputer is to the control of matrix display: to account for the I/0 mouth more because of this equipment, so this equipment adopts the indirect addressing mode for the control of display.During work by P
0Data are sent in oral instructions, P
2Control signal is sent in oral instructions.Thereby vacate more I/0 mouth, both guaranteed control, guaranteed that again colourful function and hommization show other parts.
Button control has partly adopted matrix to add interrupt circuit, can cause that all " keyboard interrupt " causes keyboard scan as long as press any key and touch any position sensor.And the execution relative program, thereby finish function corresponding and task.When not having button and touching position sensor, single-chip microcomputer will not be affected.Available more time is finished intelligent task.
The control procedure of automatic infusion control is as follows: by single-chip microcomputer P1
0The pulse signal that mouth sends is through pulse amplifier Q
1Drive the back and promote D
1, D
2, D
3Send infrared pulse signal first to drip chamber.When dropping liquid passes through, the dropping liquid signal will be modulated on the pulse signal by D
4, D
5, D
6Receive, through C
1Every directly.Again through U2
AAfter signal amplifier amplifies, again by U2
RThe low pass filter of forming.Remaining dropping liquid signal behind the filtering high-frequency impulse.This dropping liquid signal is via operational amplifier U3
AInput single-chip microcomputer T1 mouth carries out timer counter after the shaping circuit shaping of forming.What single-chip microcomputer drew drip chamber thus drips number or flow, will draw positive negative difference after this number or flow and the flow of presetting are compared.Single-chip microcomputer will be according to the difference size of preset flow and measured discharge, direction and size that the control motor rotates.
The actuating mechanism controls process is as follows: when needs are opened automatic valve, and single-chip microcomputer P1
4When mouth is changed to high level, drive Q
5, Q
4, Q
10, Q
9Conducting is just changeed motor.Power is through decelerator, driving gear, and driven gear, driving screw rod just changes.Because automatically valve body is bonded by bolt and screw rod, the forward rotation of screw rod must drive automatic valve body and prolong guide pipe and open the direction motion to returning.When they moved to default position, the locating piece on-position pick off on the valve body sent to single-chip microcomputer TXD mouth and opens the signal that puts in place automatically, with P1
4Mouth is changed to the low level motor to be stopped.
When needs are closed automatic valve, single-chip microcomputer P1
5Mouth output high level drives Q
11, Q
6, Q
8, Q
7Transistor turns, make the motor counter-rotating, through decelerator, driving gear, driven gear drive the screw rod counter-rotating, because buffer spring and automatic valve body are bonded by bolt and screw rod, the backward rotation of screw rod must drive buffer spring and automatically valve body prolonging guide pipe and moving to closing direction, along with the compression of buffer spring, valve head also strengthens gradually to the pressure of tube for transfusion automatically, up to turn-offing tube for transfusion.When buffer spring moved to default pressure with automatic valve body, the locating piece on the valve body was connected to pass and is put pick off K automatically
6Send to single-chip microcomputer RXD mouth and to close the signal that puts in place.This moment single-chip microcomputer P1
5The mouth output low level drives Q
11, Q
6, Q
8, Q
7Transistor is closed, and motor is stopped, and finishes tube for transfusion automatic valve closing motion.
The process that single-chip microcomputer detects the motor gyration is: a grating wheel is housed on the rear axle of motor, and dividing equably on the grating wheel has 18 gratings, average 20 ° one on grating.Respectively adorn an infrared transmitting tube and infrared receiving tube in the both sides of grating wheel, infrared transmitting tube is launched infrared light by grating wheel to receiving tube always.When halo rotated with motor, 20 ° of revolutions were just sent out a signal to infrared receiving tube, and this signal is through U2
DAmplify integer and be behind the discernible signal of single-chip microcomputer input single-chip microcomputer INT1 mouth and count and compare, just produce the signal of control motor rotation.
Single-chip microcomputer constantly receives the fluid flow rate signal of detection and the angular signal that rotary angle transmitter sends, and single-chip microcomputer constantly calculates and controls motor and rotates, till reaching the flow that will control.
The power pack of this device, the power supply of this equipment have three kinds of modes: (1) by 110 volts one 240 volts, 50-60Hz is by charger, to this equipment charge and power supply.(2) directly insert attaching plug to this equipment charge and power supply by 12 volts of direct currents.(3) directly by this equipment charge lithium battery power supply.Because this equipment needs the DC voltage of 5V, the work of lithium battery is the 2.9-4.2 volt, along with battery consumption voltage will be more and more lower.In order to ensure that this equipment provides a stable voltage, this equipment is by the power supply of lithium electricity the time, by U5
AThe boost DC-DC translation circuit that integrated circuit, MC34063A are formed provides the DC voltage of a 5V all the time to this equipment.When supply voltage is again up to 12 volts when in charging, exceeded the normal power supply voltage of this equipment.The reduction voltage circuit of forming by WY integrated circuit 7805.The voltage that will exceed this equipment stabilizes to the 5V running voltage of this equipment.Power circuit can be worked this equipment in the scope of 2.7-12 volt.
Specify with embodiment below:
The red pulse tube D of place in the detecting unit
1, D
2, D
7Adopt the red place transmitting tube of 3DV50 model.Received signal pipe D
3, D
4, D
5Adopt the infrared receiving diode of 5GLB type, its output is through C
1The low pass filter U2 of the data processing section in straight back and control unit
ALink, wherein U2
AAdopt TLV2324 type operational amplifier, and with the signal amplifier U2 that adopts same model
BWith signal transformation circuit U3
ALink.Face U3
AThe 15th foot of last and single-chip microcomputer: the T1 mouth links, and at last the dropping liquid signal is passed to single-chip microcomputer, carries out counting statistics.Angular signal pick off in the performance element, D
10Adopt 3DV50 type infrared external reflection pipe and D
9Infrared receiving tube adopts their output of 5GLB type infrared receiving tube through capacitance C
14With amplification shaper U2
DAdopt TLVZ324 type operational amplifier to link.The 13rd foot (the INTI mouth links to each other) that its output is connected to single-chip microcomputer calculates the motor anglec of rotation.
The power control part branch: power supply adopts SL-8210AS type lithium battery, the DC/DC integrated circuit U5 in booster circuit
AAdopt MC34063A, its output is connected with whole power pack, and the battery of 3.6-4.2V is maintained 5V.And the integrated circuit WY of live part adopts 7805 three terminal regulators, and its output had both also linked to each other with power pack to battery charge, and the dc voltage stability with 6-12V when charging is 5V.The battery electric quantity testing circuit of being made up of TLV2324 type operational amplifier is by U3
B, U3
D, U2
C, U3
CForm the level Four comparator, wherein U3
BOutput and single-chip microcomputer 26 foot (P2
3Mouthful) link to each other U3
DOutput and single-chip microcomputer 8 foot (P1
7Mouthful) link to each other U2
COutput and single-chip microcomputer 7 foot (P1
6Mouthful) link to each other U
3COutput links to each other with single-chip microcomputer 16 feet (WR mouth), finishes the detection to the electrical equipment electric weight.
Button K in the control unit
1, K
2, K
3With the position sensor K in the actuator
4, K
5Respectively with the 2nd foot (P of single-chip microcomputer
11Mouthful) the 3rd foot (P
12Mouthful) the 4th foot (P
13Mouthful) link to each other with the 12nd foot (INTO mouth), form the key-press matrix circuit, realize that button interrupts control signal.
By single-chip microcomputer the 28th foot (P2
7Mouth) signal of output and employing C1815 transistor Q
2Connect, the output back promotes buzzer and sends alarm signal.Signal by single-chip microcomputer the 14th foot (TO mouth) output links to each other with adopting high brightness LED Φ 3 light-emitting diodes casts, makes LED flash finish the luminous signal indication.
Claims (7)
1, a kind of transfusion automatic controller, comprise body (1), there is display (2) in body (1) front, body (1) one side is provided with drip chamber fixed chamber (3) and clamping device (4), internal body is provided with control circuit and actuator, it is characterized in that: top one side of drip chamber fixed chamber (3) is equipped with infraluminescence pipe (5), opposite side is equipped with receiving tube (6), actuator comprises motor (7), the motor tailing axle is equipped with by grating wheel (8) and infrared transmitting tube (9), the corner control pick off that receiving tube (10) is formed, motor shaft matches with decelerator (11) and gear train (12), link to each other with the automatic valve body (15) that is positioned at conduit (14) with drive screw (13) opposite side that gear train (12) joins, automatically there is a positioning block (16) valve body (15) outside, (16) piece is relative should two position sensors (17) with locating, automatically valve body (15) is near the nut (18) of gear train (12) one sides for matching with drive screw (13), automatically there is a spring (19) valve body (15) inside, spring (19) is positioned between nut (18) and the automatic valve head (20), the infraluminescence pipe (5) on drip chamber fixed chamber (3) top, receiving tube (6), motor corner control pick off, position sensor and motor (1) all are connected with control circuit.
2, transfusion automatic controller according to claim 1, it is characterized in that: control circuit comprises button inputting circuits, display, data processing circuit, single-chip microcomputer, motor, drive circuit and warning circuit, manual input circuit links to each other with the single-chip microcomputer input, the single-chip microcomputer outfan respectively with sound light alarming circuit, display circuit, motor-drive circuit links to each other, data processing circuit is connected alternately with single-chip microcomputer, data processing circuit links to each other with testing circuit, wherein input detects pulse signal to data processing circuit to the test section, and testing circuit is imported detected signal to data processing circuit.
3, transfusion automatic controller according to claim 2, it is characterized in that: data processing circuit comprises from single-chip microcomputer input pulse signal makes pulse signal amplify and export to the pulse amplifier of testing circuit, by the dropping liquid signal of the testing circuit input electronic filter in data processing circuit successively, signal amplifier, shaping circuit is to single-chip microcomputer, the motor angular signal of actuator input is the signal amplifier in data processing circuit successively, shaping circuit is to single-chip microcomputer, single-chip microcomputer outputs control signals to the motor-drive circuit of data processing circuit to actuator, power control circuit in the data processing circuit is connected with comparison circuit and exports single-chip microcomputer to, the single-chip microcomputer input signal is to the light drive circuit of data processing circuit, sound-driving circuit, light drive circuit, sound-driving circuit exports the acousto-optic indicator to.
4, transfusion automatic controller according to claim 2, it is characterized in that: warning circuit comprises sound alarm circuit and optical alarm circuit.
5, the dress device is controlled in transfusion according to claim 1 automatically, it is characterized in that: the both sides, top of drip chamber fixed chamber are equipped with a pair of luminous tube and receiving tube respectively.
6, the dress device is controlled in transfusion according to claim 1 automatically, it is characterized in that: the both sides, top of drip chamber fixed chamber are equipped with two pairs of luminous tubes and receiving tube respectively.
7, the dress device is controlled in transfusion according to claim 1 automatically, it is characterized in that: the both sides, top of drip chamber fixed chamber are equipped with three pairs of luminous tubes and receiving tube respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420056902 CN2774541Y (en) | 2004-11-05 | 2004-11-05 | Automatic controller for transfusion |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420056902 CN2774541Y (en) | 2004-11-05 | 2004-11-05 | Automatic controller for transfusion |
Publications (1)
Publication Number | Publication Date |
---|---|
CN2774541Y true CN2774541Y (en) | 2006-04-26 |
Family
ID=36748841
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 200420056902 Expired - Fee Related CN2774541Y (en) | 2004-11-05 | 2004-11-05 | Automatic controller for transfusion |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN2774541Y (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109224200A (en) * | 2018-11-06 | 2019-01-18 | 仁化县启航电子科技有限公司 | A kind of wireless points dropping liquid amount monitored over time alarm system |
CN110947057A (en) * | 2018-09-26 | 2020-04-03 | 南京锐爵电子科技有限公司 | Infusion monitoring alarm blocking device |
-
2004
- 2004-11-05 CN CN 200420056902 patent/CN2774541Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110947057A (en) * | 2018-09-26 | 2020-04-03 | 南京锐爵电子科技有限公司 | Infusion monitoring alarm blocking device |
CN109224200A (en) * | 2018-11-06 | 2019-01-18 | 仁化县启航电子科技有限公司 | A kind of wireless points dropping liquid amount monitored over time alarm system |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C57 | Notification of unclear or unknown address | ||
DD01 | Delivery of document by public notice |
Addressee: Ma Yunfeng Document name: Notification of Termination of Patent Right |
|
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20060426 |