CN213210786U - Medical treatment is deposited case control circuit with medicine - Google Patents
Medical treatment is deposited case control circuit with medicine Download PDFInfo
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- CN213210786U CN213210786U CN202022353318.1U CN202022353318U CN213210786U CN 213210786 U CN213210786 U CN 213210786U CN 202022353318 U CN202022353318 U CN 202022353318U CN 213210786 U CN213210786 U CN 213210786U
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Abstract
The utility model relates to the field of medical equipment, especially, relate to a case control circuit is deposited to medical treatment medicine. The utility model provides a medical treatment that can regularly indicate the user to take medicine deposits case control circuit. In order to solve the technical problem, the control circuit of the medical medicine storage box comprises a power supply circuit, a power switch, an astable multivibrator circuit, a delay circuit, a first key, a first indicator light circuit and the like; the output end of the power supply circuit is connected with the input end of the power switch, the output end of the power switch is connected with the input end of the astable multivibrator circuit, the output end of the astable multivibrator circuit is connected with the input end of the delay circuit, and the output end of the first key is connected with the input end of the delay circuit. The utility model discloses a power supply circuit, switch, astable multivibrator circuit, delay circuit, first button and the effect of first finger lamp circuit can remind the user to take medicine the time to arrive.
Description
Technical Field
The utility model relates to the field of medical equipment, especially, relate to a case control circuit is deposited to medical treatment medicine.
Background
After a patient is diagnosed and treated by a doctor, the doctor often prescribes some medicines to the patient to take the medicines regularly, and some patients, especially old patients, often forget to take the medicines because of poor memorability.
How to design a medical medicine storage box control circuit capable of regularly prompting a user to take medicine becomes a problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defect that some patients, especially the elderly patients, often forget to take medicines due to poor memorability, the technical problem to be solved is as follows: a medical drug storage box control circuit capable of regularly prompting a user to take a drug is provided.
The utility model provides a case control circuit is deposited to medicine for medical treatment, including power supply circuit, switch, astable multivibrator, delay circuit, first button and first finger lamp circuit, power supply circuit's output and switch's input are connected, switch's output and astable multivibrator's input are connected, astable multivibrator's output and delay circuit's input are connected, the output of first button is connected with delay circuit's input, delay circuit's output and first finger lamp circuit's input are connected.
In one embodiment, the self-adaptive time delay circuit further comprises a first potentiometer, an output end of the first potentiometer is connected with an input end of the astable multivibrator circuit, and the time delay time can be adjusted by adjusting the first potentiometer.
In one embodiment, the alarm device further comprises a triode drive circuit and a buzzer, wherein the output end of the delay circuit is connected with the input end of the triode drive circuit, the output end of the triode drive circuit is connected with the input end of the buzzer, and the buzzer is controlled through the triode drive circuit, so that a sound alarm can be provided after the delay time is up, and a user is prompted that the delay time is up.
In one embodiment, the medicine taking device further comprises a second switch, a change-over switch group and an LED display group, the output end of the power switch is connected with the input end of the second switch, the output end of the second switch is connected with the input end of the change-over switch group, the output end of the change-over switch group is connected with the input end of the LED display group, the LED display group is controlled through the second switch and the change-over switch group, and a user can automatically set the quantity of medicines required to be taken each time, so that the user is reminded of the dosage of the medicines taken each time.
In one embodiment, the power supply circuit, the power switch, the astable multivibrator circuit, the delay circuit, the first key and the first finger lamp circuit include a time-base integrated circuit NE555-U1, a time-base integrated circuit NE555-U2, a switch S1, a switch SW1, a first resistor R1, a second resistor R2, a third resistor R3, a tenth resistor R10, a first capacitor C1, a second capacitor C2, a third capacitor C3, a fourth capacitor C4 and a light emitting diode VD3, one end of the switch S1 is connected to +12V, the other end of the switch S1 is connected to the 4 pin and the 8 pin of the time-base integrated circuit NE555-U1, the 4 pin and the 8 pin of the time-base integrated circuit NE555-U2 and the anode of the light emitting diode VD 84, the 1 pin of the time-base integrated circuit NE555-U1 is grounded, and the 555-U1 pin and the time-base integrated circuit NE 6-U1 are connected to the power terminal of the time-U466, One end of a second resistor R2 is connected with one end of a first capacitor C1, the other end of the first capacitor C1 is grounded, the pin 3 of the time-base integrated circuit NE555-U1 is connected with one end of a third resistor R3, the pin 5 of the time-base integrated circuit NE555-U1 is connected with one end of a second capacitor C2, the other end of the second capacitor C2 is grounded, the pin 7 of the time-base integrated circuit NE555-U1 is respectively connected with one end of a first resistor R1 and the other end of a second resistor R2, the pin 1 of the time-base integrated circuit NE555-U2 is grounded, the pin 2 of the time-base integrated circuit NE-U2 is respectively connected with the pin 6 of the time-base integrated circuit 555-U2, the other end of the third resistor R3, one end of a third capacitor C3 and one end of a switch SW1, the other end of the switch SW1 is connected with the other end of the third capacitor C3, and the other end of the third capacitor C3 is grounded, the pin 3 of the time base integrated circuit NE555-U2 is connected with one end of a tenth resistor R10, the other end of the tenth resistor R10 is connected with the negative electrode of a light emitting diode VD3, the pin 5 of the time base integrated circuit NE555-U2 is connected with one end of a fourth capacitor C4, and the other end of the fourth capacitor C4 is grounded.
In one embodiment, the first potentiometer includes a potentiometer VR1, the adjustable terminal of the potentiometer VR1 is connected to the other terminal of the switch S1, and the fixed terminal of the potentiometer VR1 is connected to the other terminal of the first resistor R1.
In one embodiment, the triode driving circuit and the buzzer comprise a fifth resistor R5, a sixth resistor R6, a PNP type triode Q1 and an alarm BZ1, wherein one end of the sixth resistor R6 is connected with pin 3 of a time-base integrated circuit NE555-U2, the other end of the sixth resistor R6 is connected with the base of the PNP type triode Q1, the emitter of the PNP type triode Q1 is connected with the other end of a switch S1, the collector of the PNP type triode Q1 is connected with one end of a fifth resistor R5, the other end of the fifth resistor R5 is connected with one end of an alarm BZ1, and the other end of the alarm BZ1 is grounded.
In one embodiment, the second switch, the change-over switch group and the LED display group include a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U3, a three-terminal voltage regulator LM7805-U4, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U5, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U6, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U7, a code-pulling switch S2, a switch S3, a code-pulling switch S4, a code-pulling switch S5, a code-pulling switch S6, an electrolytic capacitor EC1, an electrolytic capacitor EC2, a fifth capacitor C5, a sixth capacitor C6, a fourth resistor R4, a seventh resistor R7, an eighth resistor R8 and a ninth resistor R9, wherein a pin 1 of the three-terminal voltage regulators 7805-U4 is respectively connected with a positive terminal of the other terminal of the electrolytic capacitor S1, a positive terminal of the sixth capacitor EC2, a positive terminal of the sixth capacitor C7856 and a positive terminal of the sixth resistor LM 4, The cathode of an electrolytic capacitor EC2, one end of a fifth capacitor C5 and the cathode of an electrolytic capacitor EC1 are connected, 2 pins of three-terminal voltage regulators LM7805-U4 are grounded, 3 pins of the three-terminal voltage regulators LM7805-U4 are respectively connected with the other end of a fifth capacitor C5, the anode of an electrolytic capacitor EC1 and one end of a switch S3, the other end of the switch S3 is respectively connected with 8 pins of a code-shifting switch S2, 8 pins of a code-shifting switch S4, 8 pins of a code-shifting switch S5 and 8 pins of a code-shifting switch S6, 1 pin of the code-shifting switch S2 is respectively connected with 2 pins, 3 pins, 4 pins, 5 pins, 6 pins and 7 pins of a code-shifting switch S2, 1 pin of the code-shifting switch S8 is grounded, 9 pin of the code-shifting switch S6 is connected with one end of a fourth resistor R4, the other end of the fourth resistor R4 is connected with an SEG 7-SEY-7-segment DPU 7378-3, the 10 feet of the code pulling switch S2 are connected with the 7 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 11 feet of the code pulling switch S2 are connected with the 6 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 12 feet of the code pulling switch S2 are connected with the 5 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 13 feet of the code pulling switch S2 are connected with the 4 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 14 feet of the code pulling switch S2 are connected with the 3 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 15 feet of the code pulling switch S2 are connected with the 2 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, and the 16 feet of the code pulling switch S2 are connected with the common-positive 7-SEG-U-3, a pin 1 of the code pulling switch S4 is respectively connected with a pin 2, a pin 3, a pin 4, a pin 5, a pin 6 and a pin 7 of the code pulling switch S4, a pin 1 of the code pulling switch S4 is grounded, a pin 9 of the code pulling switch S4 is connected with one end of a seventh resistor R7, the other end of the seventh resistor R7 is connected with a pin 8 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 10 of the code pulling switch S4 is connected with a pin 7 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, a pin 11 of the code pulling switch S4 is connected with a pin 6 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 12 of the code pulling switch S4 is connected with a pin 5 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 13 of the code pulling switch S4 is connected with a total positive 7-SEG-U-73784, the 14 feet of the code pulling switch S4 are connected with the 3 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 15 feet of the code pulling switch S4 are connected with the 2 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 16 feet of the code pulling switch S4 are connected with the 1 foot of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 1 foot of the code pulling switch S5 is respectively connected with the 2 feet, the 3 feet, the 4 feet, the 5 feet, the 6 feet and the 7 feet of the code pulling switch S5, the 1 foot of the code pulling switch S5 is grounded, the 9 foot of the code pulling switch S5 is connected with one end of an eighth resistor R8, the other end of the eighth resistor R8 is connected with the 8 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the other end of the code pulling switch S5 is connected with the common-7-SEG-U6, the 11 feet of the code pulling switch S5 are connected with the 6 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 12 feet of the code pulling switch S5 are connected with the 5 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 13 feet of the code pulling switch S5 are connected with the 4 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 14 feet of the code pulling switch S5 are connected with the 3 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 15 feet of the code pulling switch S5 are connected with the 2 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 16 feet of the code pulling switch S5 are connected with the 1 foot of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, and the 1 foot of the code pulling switch S6 is connected with the 2 and the 2 feet of, The 4 pin, the 5 pin, the 6 pin and the 7 pin are connected, the 1 pin of the code pulling switch S6 is grounded, the 9 pin of the code pulling switch S6 is connected with one end of a ninth resistor R9, the other end of the ninth resistor R9 is connected with the 8 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 10 pin of the code pulling switch S6 is connected with the 7 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 11 pin of the code pulling switch S6 is connected with the 6 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 12 pin of the code pulling switch S6 is connected with the 5 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 13 pin of the code pulling switch S6 is connected with the 4 pin of a total positive 7-SEG-U3, and the code pulling switch S6-7-SEG-U73742 is connected with the total positive 7-SEG-U7, the pin 15 of the code pulling switch S6 is connected with the pin 2 of the total-sun 7-segment light-emitting nixie tube DPY-7-SEG-U7, and the pin 16 of the code pulling switch S6 is connected with the pin 1 of the total-sun 7-segment light-emitting nixie tube DPY-7-SEG-U7.
The beneficial effects of the utility model reside in that: the utility model can remind the user of the time for taking medicine through the functions of the power supply circuit, the power switch, the astable multivibrator circuit, the delay circuit, the first key and the first indicator light circuit; the delay time can be adjusted through the action of the first potentiometer; through the action of the triode driving circuit and the buzzer, a sound alarm can be provided after the delay time is up, so that a user is prompted that the delay time is up; through the effect of second switch, change over switch group and LED display group, the user can set by oneself the quantity that needs to take medicine at every turn to this reminds the dose size of the medicine that the user took when taking medicine at every turn.
Drawings
Fig. 1 is a circuit block diagram of the present invention.
Fig. 2 is a schematic circuit diagram of the present invention.
Labeled as: the LED display circuit comprises a power supply circuit 1, a power supply switch 2, an astable multivibrator circuit 3, a time delay circuit 4, a first potentiometer 5, a first key 6, a triode driving circuit 7, a buzzer 8, a first indicator light circuit 9, a second switch 10, a change-over switch group 11 and an LED display group 12.
Detailed Description
The present invention will be described in further detail with reference to the attached drawings and the detailed description, but the scope of protection and the application of the present invention are not limited thereto.
Example 1
The utility model provides a case control circuit is deposited to medicine for medical treatment, as shown in figure 1, including power supply circuit 1, switch 2, astable multivibrator circuit 3, delay circuit 4, first button 6 and first finger lamp circuit 9, power supply circuit 1's output and switch 2's input are connected, switch 2's output is connected with astable multivibrator circuit 3's input, astable multivibrator circuit 3's output is connected with delay circuit 4's input, first button 6's output is connected with delay circuit 4's input, delay circuit 4's output is connected with first finger lamp circuit 9's input.
After the medical medicine storage box control circuit is connected with the power supply circuit 1, a user presses the power switch 2, the medical medicine storage box control circuit is powered on, then the user starts the delay circuit 4 by pressing the first key 6, and after the delay time is over, the first indicator light circuit 9 is lightened to remind the user of the time for taking medicine.
Example 2
In addition to embodiment 1, as shown in fig. 1, the apparatus further includes a first potentiometer 5, an output terminal of the first potentiometer 5 is connected to an input terminal of the astable multivibrator circuit 3, and the delay time can be adjusted by adjusting the first potentiometer 5.
The delay time can be adjusted by adjusting the first potentiometer 5.
Example 3
On the basis of embodiment 2, as shown in fig. 2, the electronic device further includes a transistor driving circuit 7 and a buzzer 8, the output end of the delay circuit 4 is connected to the input end of the transistor driving circuit 7, the output end of the transistor driving circuit 7 is connected to the input end of the buzzer 8, and the buzzer 8 is controlled by the transistor driving circuit 7, so that a sound alarm can be provided after the delay time is up, and the user is prompted that the delay time is up.
The buzzer 8 is controlled by the triode driving circuit 7, and a sound alarm can be provided after the delay time is up, so that a user is prompted that the delay time is up.
Still include second switch 10, change over switch group 11 and LED and show group 12, switch 2's output is connected with second switch 10's input, second switch 10's output and change over switch group 11 input are connected, change over switch group 11's output and LED show that the input of group 12 is connected, show group 12 through second switch 10 and change over switch group 11 control LED, the user can set up by oneself that the quantity that needs to take the medicine at every turn is what to this reminds the user when taking the medicine at every turn to take the dosage size of medicine.
The LED display group 12 is controlled by the second switch 10 and the change-over switch group 11, so that the user can set the quantity of the medicine to be taken each time, and the user is reminded of the dosage of the medicine to be taken each time the medicine is taken.
The power supply circuit 1, the power switch 2, the astable multivibrator circuit 3, the delay circuit 4, the first key 6 and the first finger lamp circuit 9 comprise a time base integrated circuit NE555-U1, a time base integrated circuit NE555-U2, a switch S1, a switch SW1, a first resistor R1, a second resistor R2, a third resistor R3, a tenth resistor R10, a first capacitor C1, a second capacitor C2, a third capacitor C3, a fourth capacitor C4 and a light emitting diode VD3, one end of the switch S1 is connected with a power supply terminal +12V, the other end of the switch S1 is respectively connected with the 4 pins and the 8 pins of the time base integrated circuit NE555-U1, the 4 pins and the 8 pins of the time base integrated circuit NE555-U2 and the anode of the light emitting diode VD3, the 1 pin of the time base integrated circuit NE555-U1 is grounded, and the 462 pin of the time base integrated circuit NE 466-U1-U466 is respectively connected with the time base integrated circuit NE 466-U378 pin of the time base integrated circuit NE, One end of a second resistor R2 is connected with one end of a first capacitor C1, the other end of the first capacitor C1 is grounded, the pin 3 of the time-base integrated circuit NE555-U1 is connected with one end of a third resistor R3, the pin 5 of the time-base integrated circuit NE555-U1 is connected with one end of a second capacitor C2, the other end of the second capacitor C2 is grounded, the pin 7 of the time-base integrated circuit NE555-U1 is respectively connected with one end of a first resistor R1 and the other end of a second resistor R2, the pin 1 of the time-base integrated circuit NE555-U2 is grounded, the pin 2 of the time-base integrated circuit NE-U2 is respectively connected with the pin 6 of the time-base integrated circuit 555-U2, the other end of the third resistor R3, one end of a third capacitor C3 and one end of a switch SW1, the other end of the switch SW1 is connected with the other end of the third capacitor C3, and the other end of the third capacitor C3 is grounded, the pin 3 of the time base integrated circuit NE555-U2 is connected with one end of a tenth resistor R10, the other end of the tenth resistor R10 is connected with the negative electrode of a light emitting diode VD3, the pin 5 of the time base integrated circuit NE555-U2 is connected with one end of a fourth capacitor C4, and the other end of the fourth capacitor C4 is grounded.
The first potentiometer 5 comprises a potentiometer VR1, the adjustable end of the potentiometer VR1 is connected with the other end of the switch S1, and the fixed end of the potentiometer VR1 is connected with the other end of the first resistor R1.
The triode drive circuit 7 and the buzzer 8 comprise a fifth resistor R5, a sixth resistor R6, a PNP type triode Q1 and an alarm BZ1, one end of the sixth resistor R6 is connected with the 3 pins of the time-base integrated circuit NE555-U2, the other end of the sixth resistor R6 is connected with the base of the PNP type triode Q1, the emitter of the PNP type triode Q1 is connected with the other end of the switch S1, the collector of the PNP type triode Q1 is connected with one end of the fifth resistor R5, the other end of the fifth resistor R5 is connected with one end of the alarm BZ1, and the other end of the alarm BZ1 is grounded.
The second switch 10, the change-over switch group 11 and the LED display group 12 comprise a common anode 7-segment light-emitting nixie tube DPY-7-SEG-U3, a three-terminal voltage stabilizer LM7805-U4, a common anode 7-segment light-emitting nixie tube DPY-7-SEG-U5, a common anode 7-segment light-emitting nixie tube DPY-7-SEG-U6, a common anode 7-segment light-emitting nixie tube DPY-7-SEG-U7, a code-pulling switch S2, a switch S3, a code-pulling switch S4, a code-pulling switch S5, a code-pulling switch S6, an electrolytic capacitor EC1, an electrolytic capacitor EC2, a fifth capacitor C5, a sixth capacitor C6, a fourth resistor R4, a seventh resistor R7, an eighth three-terminal resistor R8 and a ninth resistor R9, a pin LM7805-U4 is respectively connected with the other end of the electrolytic capacitor S1, the positive electrode capacitor EC2 and a third end LM 8653 and a third end of the sixth capacitor LM 828653 are respectively connected with the other end of the voltage stabilizer, The cathode of an electrolytic capacitor EC2, one end of a fifth capacitor C5 and the cathode of an electrolytic capacitor EC1 are connected, 2 pins of three-terminal voltage regulators LM7805-U4 are grounded, 3 pins of the three-terminal voltage regulators LM7805-U4 are respectively connected with the other end of a fifth capacitor C5, the anode of an electrolytic capacitor EC1 and one end of a switch S3, the other end of the switch S3 is respectively connected with 8 pins of a code-shifting switch S2, 8 pins of a code-shifting switch S4, 8 pins of a code-shifting switch S5 and 8 pins of a code-shifting switch S6, 1 pin of the code-shifting switch S2 is respectively connected with 2 pins, 3 pins, 4 pins, 5 pins, 6 pins and 7 pins of a code-shifting switch S2, 1 pin of the code-shifting switch S8 is grounded, 9 pin of the code-shifting switch S6 is connected with one end of a fourth resistor R4, the other end of the fourth resistor R4 is connected with an SEG 7-SEY-7-segment DPU 7378-3, the 10 feet of the code pulling switch S2 are connected with the 7 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 11 feet of the code pulling switch S2 are connected with the 6 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 12 feet of the code pulling switch S2 are connected with the 5 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 13 feet of the code pulling switch S2 are connected with the 4 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 14 feet of the code pulling switch S2 are connected with the 3 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 15 feet of the code pulling switch S2 are connected with the 2 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U3, and the 16 feet of the code pulling switch S2 are connected with the common-positive 7-SEG-U-3, a pin 1 of the code pulling switch S4 is respectively connected with a pin 2, a pin 3, a pin 4, a pin 5, a pin 6 and a pin 7 of the code pulling switch S4, a pin 1 of the code pulling switch S4 is grounded, a pin 9 of the code pulling switch S4 is connected with one end of a seventh resistor R7, the other end of the seventh resistor R7 is connected with a pin 8 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 10 of the code pulling switch S4 is connected with a pin 7 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, a pin 11 of the code pulling switch S4 is connected with a pin 6 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 12 of the code pulling switch S4 is connected with a pin 5 of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U5, a pin 13 of the code pulling switch S4 is connected with a total positive 7-SEG-U-73784, the 14 feet of the code pulling switch S4 are connected with the 3 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 15 feet of the code pulling switch S4 are connected with the 2 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 16 feet of the code pulling switch S4 are connected with the 1 foot of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U5, the 1 foot of the code pulling switch S5 is respectively connected with the 2 feet, the 3 feet, the 4 feet, the 5 feet, the 6 feet and the 7 feet of the code pulling switch S5, the 1 foot of the code pulling switch S5 is grounded, the 9 foot of the code pulling switch S5 is connected with one end of an eighth resistor R8, the other end of the eighth resistor R8 is connected with the 8 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the other end of the code pulling switch S5 is connected with the common-7-SEG-U6, the 11 feet of the code pulling switch S5 are connected with the 6 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 12 feet of the code pulling switch S5 are connected with the 5 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 13 feet of the code pulling switch S5 are connected with the 4 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 14 feet of the code pulling switch S5 are connected with the 3 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 15 feet of the code pulling switch S5 are connected with the 2 feet of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, the 16 feet of the code pulling switch S5 are connected with the 1 foot of a common positive 7-segment light-emitting nixie tube DPY-7-SEG-U6, and the 1 foot of the code pulling switch S6 is connected with the 2 and the 2 feet of, The 4 pin, the 5 pin, the 6 pin and the 7 pin are connected, the 1 pin of the code pulling switch S6 is grounded, the 9 pin of the code pulling switch S6 is connected with one end of a ninth resistor R9, the other end of the ninth resistor R9 is connected with the 8 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 10 pin of the code pulling switch S6 is connected with the 7 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 11 pin of the code pulling switch S6 is connected with the 6 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 12 pin of the code pulling switch S6 is connected with the 5 pin of a total positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 13 pin of the code pulling switch S6 is connected with the 4 pin of a total positive 7-SEG-U3, and the code pulling switch S6-7-SEG-U73742 is connected with the total positive 7-SEG-U7, the pin 15 of the code pulling switch S6 is connected with the pin 2 of the total-sun 7-segment light-emitting nixie tube DPY-7-SEG-U7, and the pin 16 of the code pulling switch S6 is connected with the pin 1 of the total-sun 7-segment light-emitting nixie tube DPY-7-SEG-U7.
After medical treatment is deposited case control circuit and is connected power supply circuit 1, the user presses switch 2, this moment medical treatment is deposited case control circuit and is switched on, subsequently the user is through pressing first button 6, with this start-up delay circuit 4, the user is through adjusting first potentiometre 5 simultaneously, can adjust the delay time, after the delay time is over, first finger lamp circuit 9 lights, triode drive circuit 7 control buzzer 8, provide sound alarm, with this time of reminding the user to take the medicine, the user can also control LED display group 12 through second switch 10 and change over switch group 11 simultaneously, the user can set by oneself the quantity of the medicine that needs to take at every turn, with this when reminding at every turn, can also remind the user the dosage size of the medicine of taking.
The above-described embodiments are provided to enable persons skilled in the art to make or use the invention, and many modifications and variations may be made to the above-described embodiments by persons skilled in the art without departing from the inventive concept of the present invention, so that the scope of the invention is not limited by the above-described embodiments, but should be accorded the widest scope consistent with the innovative features set forth in the claims.
Claims (8)
1. The utility model provides a case control circuit is deposited to medicine for medical treatment, is including power supply circuit (1), switch (2), astable multivibrator circuit (3) and delay circuit (4), the output of power supply circuit (1) is connected with switch (2)'s input, switch (2)'s output and the input of astable multivibrator circuit (3) are connected, the output of astable multivibrator circuit (3) is connected with the input of delay circuit (4), characterized by, still including first button (6) and first finger lamp circuit (9), the output of first button (6) is connected with the input of delay circuit (4), the output of delay circuit (4) is connected with the input of first finger lamp circuit (9).
2. A medical drug storage box control circuit according to claim 1, further comprising a first potentiometer (5), wherein an output of the first potentiometer (5) is connected to an input of the astable multivibrator circuit (3), and wherein the delay time is adjustable by adjusting the first potentiometer (5).
3. The control circuit of claim 2, further comprising a transistor driving circuit (7) and a buzzer (8), wherein the output terminal of the delay circuit (4) is connected to the input terminal of the transistor driving circuit (7), the output terminal of the transistor driving circuit (7) is connected to the input terminal of the buzzer (8), and the buzzer (8) is controlled by the transistor driving circuit (7) to provide an audible alarm after the delay time has elapsed, thereby prompting the user that the delay time has elapsed.
4. The medical medicine storage box control circuit according to claim 3, further comprising a second switch (10), a switch group (11) and an LED display group (12), wherein the output end of the power switch (2) is connected with the input end of the second switch (10), the output end of the second switch (10) is connected with the input end of the switch group (11), the output end of the switch group (11) is connected with the input end of the LED display group (12), the LED display group (12) is controlled by the second switch (10) and the switch group (11), and a user can set the number of medicines to be taken each time by himself/herself, so as to remind the user of the dosage of the medicines to be taken each time when the medicine is taken.
5. The control circuit of medical medicine storage box according to claim 4, wherein said power supply circuit (1), power switch (2), astable multivibrator circuit (3), delay circuit (4), first key (6) and first indicator light circuit (9) comprise time base integrated circuit NE555-U1, time base integrated circuit NE555-U2, switch S1, switch SW1, first resistor R1, second resistor R2, third resistor R3, tenth resistor R10, first capacitor C1, second capacitor C2, third capacitor C3, fourth capacitor C4 and light emitting diode 3, one end of said switch S1 is connected to power supply terminal +12V, the other end of said switch S1 is connected to 4 pins, 8 pins of time base integrated circuit NE555-U1, 4 pins, 8 pins of time base integrated circuit NE555-U2 and positive electrode VD3 of light emitting diode VD 32, the 1 pin of the time-base integrated circuit NE555-U1 is grounded, the 2 pins of the time-base integrated circuit NE555-U1 are respectively connected with the 6 pin of the time-base integrated circuit NE555-U1, one end of a second resistor R2 and one end of a first capacitor C1, the other end of the first capacitor C1 is grounded, the 3 pin of the time-base integrated circuit NE555-U1 is connected with one end of a third resistor R3, the 5 pin of the time-base integrated circuit NE555-U1 is connected with one end of a second capacitor C2, the other end of the second capacitor C2 is grounded, the 7 pin of the time-base integrated circuit NE555-U1 is respectively connected with one end of the first resistor R1 and the other end of a second resistor R2, the 1 pin of the time-base integrated circuit NE555-U2 is grounded, the 2 pins of the time-base integrated circuit NE555-U2 are respectively connected with the 6 pin of the time-base integrated circuit NE555-U2 and the other end of the third resistor R3, One end of a third capacitor C3 is connected with one end of a switch SW1, the other end of the switch SW1 is connected with the other end of the third capacitor C3, the other end of the third capacitor C3 is grounded, a pin 3 of the time-base integrated circuit NE555-U2 is connected with one end of a tenth resistor R10, the other end of the tenth resistor R10 is connected with the cathode of the light-emitting diode VD3, a pin 5 of the time-base integrated circuit NE555-U2 is connected with one end of a fourth capacitor C4, and the other end of the fourth capacitor C4 is grounded.
6. A control circuit for a medical drug storage case as claimed in claim 5, wherein the first potentiometer (5) comprises a potentiometer VR1, the adjustable terminal of the potentiometer VR1 is connected to the other terminal of the switch S1, and the fixed terminal of the potentiometer VR1 is connected to the other terminal of the first resistor R1.
7. The control circuit of claim 6, wherein said transistor driving circuit (7) and buzzer (8) comprise a fifth resistor R5, a sixth resistor R6, a PNP transistor Q1 and an alarm BZ1, one end of said sixth resistor R6 is connected to pin 3 of the time base integrated circuit NE555-U2, the other end of said sixth resistor R6 is connected to the base of the PNP transistor Q1, the emitter of said PNP transistor Q1 is connected to the other end of the switch S1, the collector of said PNP transistor Q1 is connected to one end of the fifth resistor R5, the other end of said fifth resistor R5 is connected to one end of the alarm BZ1, and the other end of said alarm BZ1 is grounded.
8. The control circuit of the medical medicine storage box according to claim 7, wherein the second switch (10), the switch group (11) and the LED display group (12) comprise a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U3, three-terminal voltage regulators LM7805-U4, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U5, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U6, a common-anode 7-segment light-emitting nixie tube DPY-7-SEG-U7, a code-pulling switch S2, a switch S3, a code-pulling switch S4, a code-pulling switch S5, a code-pulling switch S6, an electrolytic capacitor EC1, an electrolytic capacitor EC2, a fifth capacitor C5, a sixth capacitor C6, a fourth resistor R4, a seventh resistor R7, an eighth resistor R8, a ninth resistor R9, a pin LM 27-LM 27 and a pin 4 of the other terminal voltage regulators, The anode of an electrolytic capacitor EC2 is connected with one end of a sixth capacitor C6, the 2 pins of three-terminal voltage regulators LM7805-U4 are respectively connected with the other end of the sixth capacitor C6, the cathode of the electrolytic capacitor EC2, one end of a fifth capacitor C5 and the cathode of the electrolytic capacitor EC1, the 2 pins of the three-terminal voltage regulators LM7805-U4 are grounded, the 3 pins of the three-terminal voltage regulators LM7805-U4 are respectively connected with the other end of the fifth capacitor C5, the anode of the electrolytic capacitor EC1 and one end of a switch S3, the other end of the switch S3 is respectively connected with the 8 pin of a code-pulling switch S2, the 8 pin of a code-pulling switch S4, the 8 pin of a code-pulling switch S5 and the 8 pin of a code-pulling switch S6, the 1 pin of the code-pulling switch S2 is respectively connected with the 2 pins, the 3 pins, the 4 pins, the 5 pins, the 6 pins and the 7 pins of the code-pulling switch S465, the first end of the code-pulling switch S2 is connected with the fourth pin 57324, the other end of the fourth resistor R4 is connected with the 8 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 10 pin of the code-pulling switch S2 is connected with the 7 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 11 pin of the code-pulling switch S2 is connected with the 6 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 12 pin of the code-pulling switch S2 is connected with the 5 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 13 pin of the code-pulling switch S2 is connected with the 4 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 14 pin of the code-pulling switch S2 is connected with the 3 pin of the common-positive 7-segment lighting nixie tube DPY-7-SEG-U3, the 15 pin of the code-switch S2 is connected with the common-positive 7-SEG-U3 pin of the common-U, the 16 pin of the code pulling switch S2 is connected with the 1 pin of a common positive 7-segment light emitting nixie tube DPY-7-SEG-U3, the 1 pin of the code pulling switch S4 is respectively connected with the 2 pin, the 3 pin, the 4 pin, the 5 pin, the 6 pin and the 7 pin of the code pulling switch S4, the 1 pin of the code pulling switch S4 is grounded, the 9 pin of the code pulling switch S4 is connected with one end of a seventh resistor R7, the other end of the seventh resistor R7 is connected with the 8 pin of a common positive 7-segment light emitting nixie tube DPY-7-SEG-U7, the 10 pin of the code pulling switch S4 is connected with the 7 pin of a common positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the 11 pin of the code pulling switch S4 is connected with the 6 pin of a common positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the pin of the code pulling switch S4 is connected with the common positive 7-SEG-U73784, the pin 13 of the code pulling switch S4 is connected with the pin 4 of a common-positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the pin 14 of the code pulling switch S4 is connected with the pin 3 of a common-positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the pin 15 of the code pulling switch S4 is connected with the pin 2 of a common-positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the pin 16 of the code pulling switch S4 is connected with the pin 1 of a common-positive 7-segment light emitting nixie tube DPY-7-SEG-U5, the pin 1 of the code pulling switch S5 is respectively connected with the pin 2, the pin 3, the pin 4, the pin 5, the pin 6 and the pin 7 of the code pulling switch S5, the pin 1 of the code pulling switch S5 is grounded, the pin 9 of the code switch S5 is connected with one end of an eighth resistor R3, the other end of the common-positive resistor R8 is connected with the pin 3-SEG-7-SEG-U84, the 10 feet of the code pulling switch S5 are connected with the 7 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, the 11 feet of the code pulling switch S5 are connected with the 6 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, the 12 feet of the code pulling switch S5 are connected with the 5 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, the 13 feet of the code pulling switch S5 are connected with the 4 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, the 14 feet of the code pulling switch S5 are connected with the 3 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, the 15 feet of the code pulling switch S5 are connected with the 2 feet of the common-positive 7-segment light emitting nixie tube DPY-7-SEG-U6, and the 16 feet of the code pulling switch S5 are connected with the common-positive 7-SEG-U-6, a pin 1 of the code pulling switch S6 is respectively connected with a pin 2, a pin 3, a pin 4, a pin 5, a pin 6 and a pin 7 of the code pulling switch S6, a pin 1 of the code pulling switch S6 is grounded, a pin 9 of the code pulling switch S6 is connected with one end of a ninth resistor R9, the other end of the ninth resistor R9 is connected with a pin 8 of a common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, a pin 10 of the code pulling switch S6 is connected with a pin 7 of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, a pin 11 of the code pulling switch S6 is connected with a pin 6 of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, a pin 12 of the code pulling switch S6 is connected with a pin 5 of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, a pin 13 of the code pulling switch S6 is connected with a common-positive 7-SEG-U7, the 14 feet of the code pulling switch S6 are connected with the 3 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, the 15 feet of the code pulling switch S6 are connected with the 2 feet of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7, and the 16 feet of the code pulling switch S6 are connected with the 1 foot of the common-positive 7-segment light-emitting nixie tube DPY-7-SEG-U7.
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