CN102125726B - Prescription machine control device for intelligent foot drop corrector - Google Patents
Prescription machine control device for intelligent foot drop corrector Download PDFInfo
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- CN102125726B CN102125726B CN201110087583A CN201110087583A CN102125726B CN 102125726 B CN102125726 B CN 102125726B CN 201110087583 A CN201110087583 A CN 201110087583A CN 201110087583 A CN201110087583 A CN 201110087583A CN 102125726 B CN102125726 B CN 102125726B
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Abstract
The invention discloses a prescription machine control device for an intelligent foot drop corrector, which comprises a main controller circuit, a communication interface circuit, a storage circuit, a displayer circuit and an operating keyboard circuit, wherein the main controller circuit is connected with the communication interface circuit, the storage circuit, the displayer circuit and the operating keyboard circuit; the communication interface circuit is connected with the displayer circuit, the operating keyboard circuit and the storage circuit; the displayer circuit is connected with the operating keyboard circuit and the storage circuit; and the operating keyboard circuit is connected with the storage circuit. The invention has the advantage that the device is light and simple in operation.
Description
Technical field
The present invention relates to a kind of Prescription apparatus control device of intelligent foot-drop corrector
Background technology
many patients cause nerve conduction retardance to occur and cause drop foot after suffering from apoplexy or other disease.It is one of the most general dysfunction in shank position that drop foot makes foot part of patient sagging.In this case, patient can not be normally through the crooked ankle of muscle joint, foot can not be lifted away from ground when swinging kick or walking, but drags on the ground, making walking that difficulty take place and falling easily and jeopardize the patient.The common Therapeutic Method that adopts of drop foot has physical therapy (foot thermotherapy, rehabilitation stretching, massage etc.), Drug therapy (oral spasmolytic medicine is perhaps injected creotoxin etc.) or operative treatment at present.Finished for Neurotherapeutic, recommended to adopt the appliance treatment.Present foot-drop corrector adopts mechanical system (machinery foot cover or mould of plastics etc.) more, and therapeutic process misery and effect are limited.Though in the past 60 years, (functional ecectricalstimulation, FES) system is used for auxiliary by exploitation or recovers by motion or perceptive function forfeiture injured or that disease causes functional electrical stimulation.Use FES can increase motor capacity, reduce spasm, improve cardio-pulmonary function, the naturopathy property motion that patient is participated in to promote functional rehabilitation.Up to date, FES only limits to use three kinds of methods: the electrode of somatic stimulation, transdermal stimulation and complete implantation belt lead.Therefore the present stimulation arm or the device of leg muscle all are to have manually or the complex device of automatic control switch, and the overwhelming majority need use under doctor's guidance.Though invented the non-portable stimulation appearance that has the complex calculation system, because restriction such as volume, weight, complicated operation degree and can't be applied to general patient.So the more convenient drop foot therapeutic instrument of a kind of use is badly in need of being developed
Summary of the invention
the purpose of this invention is to provide a kind of Prescription apparatus control device of intelligent foot-drop corrector in light weight and simple to operate.
The Prescription apparatus control device of
a kind of intelligent foot-drop corrector; It comprises: main controller circuit, communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; Main controller circuit is connected with communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; The communication interface circuit is connected with display circuit, operating keyboard circuit and memory circuitry; Display circuit is connected with memory circuitry with operating keyboard circuit, and operating keyboard circuit is connected with memory circuitry.
main controller circuit of the present invention is made up of single-chip microcomputer IC1, crystal oscillator IT1, capacitor C 3, C4, resistance R 2, R7; Wherein single-chip microcomputer IC1 is STC12C5A04S2; The end of crystal oscillator IT1 is connected with 14 feet of single-chip microcomputer IT1 with an end of capacitor C 4; One end of the other end of crystal oscillator IT1 and capacitor C 3 is connected with 15 feet of single-chip microcomputer IT1; The end of resistance R 2, R7 is connected with 4,10 feet of single-chip microcomputer IT1 respectively, and the other end of capacitor C 3, C4 is connected with memory circuitry, and the 18-25 of single-chip microcomputer IC1,31-44 foot are connected with display circuit; 16 feet of single-chip microcomputer IC1 are connected with memory circuitry, display circuit and communication interface circuit, and 38 feet of single-chip microcomputer IT1 are connected with operating keyboard circuit.
display circuit of the present invention is made up of chip U61, resistance R 1, R4, capacitor C 10, C11, C61, C62, C63, potentiometer W1, audion T1 and adapter P1, J1, J2; Its chips U61 is 7805; The end of 0,1 foot of 1 foot of chip U61 and the adapter JK61 of memory circuitry and 4 feet of adapter J2, capacitor C 61, C62 is connected; The end of the end of 1 foot of 5 feet of 15 feet of 1 foot of 16 feet of 2 feet of chip U61 and the single-chip microcomputer IC1 of main controller circuit and the other end of resistance R 2 and the adapter JK61 in the communication interface circuit, the chip IC 2 in the communication interface circuit and an end of capacitor C 8, communication interface circuit chips U21,2,20 feet of adapter P1, adapter J2, resistance R 1, R2, capacitor C 10, C11, C63, capacitor C 62, the other end of C61, the end of potentiometer Q1, the emitter stage of audion T1 are connected; In 3 feet of chip U61 and the main controller circuit in 38 feet of single-chip microcomputer IC1, the memory circuitry end, 19 feet of adapter P1 and the other end of capacitor C 10, C11, C63 of capacitor C 2 be connected; The other end of resistance R 1 is connected with 1 foot of adapter P1; The other end of resistance R 4 is connected with 10 feet of single-chip microcomputer IC1; The colelctor electrode of audion T1 is connected with the other end of resistance R 7 in the main control circuit; The base stage of audion T1 is connected with the anode of diode D1 in the operating keyboard circuit; The other end of potentiometer W1 is connected with 3 feet of adapter P1; The adjustable side of potentiometer W1 is connected with 18 feet of adapter P1; The 1-8 foot of adapter J1 is connected with 3,2,1,44,43,42,41,40 feet of single-chip microcomputer IC1 respectively; 2,3 feet of adapter J2 are connected with 10,4 feet and 4,3 feet of adapter JK21 of adapter S1 in the communication interface circuit respectively, and the 4-17 foot of adapter P1 is connected with 32,33,34,25,24,23,22,21,20,19,18,35,36,37 feet of single-chip microcomputer IC1 respectively.
memory circuitry of the present invention is made up of chip IC 3, capacitor C 2, resistance R 21 and diode DW22; Wherein chip IC 3 is 24C16; 16 feet of the other end of capacitor C 3, C4 and single-chip microcomputer IC1 are connected with 1,2,3,4,7 feet of chip IC 3 in one end of the other end of capacitor C 2, resistance R 21, the anode of diode DW22, the main controller circuit; One end of capacitor C 2 is connected with 3 feet of display circuit chips U61; The end of resistance R 23, R25 is connected in 7 feet of the other end of resistance 21 and communication interface circuit chips U21 and the memory circuitry; Diode DW21 in the negative electrode of diode DW22 and the communication interface circuit, the negative electrode of DW23 are connected; 5 feet of chip IC 3 are connected with an end of resistance R 6 in the operating keyboard circuit with 13 feet of single-chip microcomputer IC1, and 6 feet of chip IC 3 are connected with an end of resistance R 5 in the operating keyboard circuit with 12 feet of single-chip microcomputer IC1, and 8 feet of chip IC 3 are connected with operating keyboard circuit.
communication interface circuit of the present invention is made up of chip IC 2, U21, adapter JK21, JK61, S1, S2, resistance R 24, capacitor C 6, C7, C8 and diode DW21, DW23, and wherein chip IC 2 is MAX232, and chip U21 is MA230; 15,16 feet of chip IC 2 are connected with 16,38 feet of single-chip microcomputer IC1 respectively; The 11-14 foot of chip IC 2 is connected with 1,7,2,8 feet of adapter S1 respectively, 1,3 foot shunt capacitance C6 of chip IC 2,4,5 foot shunt capacitance C7 of chip IC 2; Resistance R 25 1 ends are connected in 2 feet of chip IC 2 and the operating keyboard circuit; 6 feet of chip IC 2 connect an end of capacitor C 8, and the other end of capacitor C 8 connects 16 feet of single-chip microcomputer IC1, and 1,4 feet of chip U21 are 11,5 feet of connecting connector S1 respectively; 2,3 feet of chip U21 connect 31 feet of single-chip microcomputer IC1; 5,8 feet of chip U21 connect 16,38 feet of single-chip microcomputer IC1 respectively, and 6 feet of chip U21 are connected with an end of the anode of diode DW21, resistance R 24, and 7 feet of chip U21 are connected with the anode of diode DW23; The negative electrode of diode DW21, DW23 is connected with the negative electrode of diode DW22 in the memory circuitry; 6 feet of the other end connecting connector S1 of resistance R 24,0,2 feet of adapter JK61 connect 4 feet of the adapter J2 of display circuit, and 1 foot of adapter JK61 connects 16 feet of single-chip microcomputer IC1; 3,4 feet of adapter JK21 are 4,10 feet of connecting connector S1 respectively; 5 feet of adapter JK21 connect 16 feet of single-chip microcomputer IC1, and 1,2 feet of adapter S2 connect 9,8 feet of single-chip microcomputer IC1 respectively, 3 feet of the 3 foot connecting connector S1 of adapter S2 and 7 feet of single-chip microcomputer IC1; 9 feet of the 4 foot connecting connector S1 of adapter S2 and 5 feet of single-chip microcomputer IC1,12 feet of adapter S1 connect resistance R 25 in the operating keyboard circuit.
operating keyboard circuit of the present invention is made up of resistance R 5, R6, R22, R23, R25, capacitor C 1, C5, diode D1 and electric fuse F; The adjustable side of potentiometer W1 in the termination display circuit of diode D1 anode, electric fuse F; The other end, capacitor C 1, the other end of C5,8 feet of memory circuitry chips IC3 and 38 feet of single-chip microcomputer IC1 of the other end of the negative electrode of diode D1 and electric fuse F, resistance R 5, R6, R22 are connected; 4 feet of one termination single-chip microcomputer IC1 of capacitor C 1; 2 feet of one termination communication interface circuit chips IC2 of capacitor C 5; 6 feet of one termination communication interface circuit chips U21 of one end of resistance R 22 and resistance R 23; The other end of the other end of resistance R 23 and resistance R 25 is connected 7 feet of communication interface circuit chips U21; 12 feet of adapter S1 in the one termination communication interface circuit of resistance R 25, an end of resistance R 5 is connected with 6 feet of 12 feet of single-chip microcomputer IC1 with memory circuitry chips IC3, and an end of resistance R 6 is connected with 5 feet of 13 feet of single-chip microcomputer IC1 with memory circuitry chips IC3.
the present invention makes this installation weight light and simple to operate owing to adopted above technical scheme.
Description of drawings
Fig. 1 is a theory diagram of the present invention.
Fig. 2 is an electrical schematic diagram of the present invention.
The specific embodiment
the present invention is used to be provided with the operational factor of therapy apparatus, to the different patient setting as starting to control runtime values such as angle, pulse width, to reach the optimum operation effect.These combinations of parameters promptly are patient's treatment prescriptions.Transmit data through one 3 core communication cable between the present invention and the therapy apparatus.Chip U61 external power supply
Referring to Fig. 1,
A kind of Prescription apparatus control device of intelligent foot-drop corrector; It comprises: main controller circuit, communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; Main controller circuit is connected with communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; The communication interface circuit is connected with display circuit, operating keyboard circuit and memory circuitry; Display circuit is connected with memory circuitry with operating keyboard circuit, and operating keyboard circuit is connected with memory circuitry.
Referring to Fig. 2,
Main controller circuit of the present invention is made up of single-chip microcomputer IC1, crystal oscillator IT1, capacitor C 3, C4, resistance R 2, R7; Wherein single-chip microcomputer IC1 is STC12C5A04S2; The end of crystal oscillator IT1 is connected with 14 feet of single-chip microcomputer IT1 with an end of capacitor C 4; One end of the other end of crystal oscillator IT1 and capacitor C 3 is connected with 15 feet of single-chip microcomputer IT1; The end of resistance R 2, R7 is connected with 4,10 feet of single-chip microcomputer IT1 respectively, and the other end of capacitor C 3, C4 is connected with memory circuitry, and the 18-25 of single-chip microcomputer IC1,31-44 foot are connected with display circuit; 16 feet of single-chip microcomputer IC1 are connected with memory circuitry, display circuit and communication interface circuit, and 38 feet of single-chip microcomputer IT1 are connected with operating keyboard circuit.
display circuit of the present invention is made up of chip U61, resistance R 1, R4, capacitor C 10, C11, C61, C62, C63, potentiometer W1, audion T1 and adapter P1, J1, J2; Its chips U61 is 7805; The end of 0,1 foot of 1 foot of chip U61 and the adapter JK61 of memory circuitry and 4 feet of adapter J2, capacitor C 61, C62 is connected; The end of the end of 1 foot of 5 feet of 15 feet of 1 foot of 16 feet of 2 feet of chip U61 and the single-chip microcomputer IC1 of main controller circuit and the other end of resistance R 2 and the adapter JK61 in the communication interface circuit, the chip IC 2 in the communication interface circuit and an end of capacitor C 8, communication interface circuit chips U21,2,20 feet of adapter P1, adapter J2, resistance R 1, R2, capacitor C 10, C11, C63, capacitor C 62, the other end of C61, the end of potentiometer Q1, the emitter stage of audion T1 are connected; In 3 feet of chip U61 and the main controller circuit in 38 feet of single-chip microcomputer IC1, the memory circuitry end, 19 feet of adapter P1 and the other end of capacitor C 10, C11, C63 of capacitor C 2 be connected; The other end of resistance R 1 is connected with 1 foot of adapter P1; The other end of resistance R 4 is connected with 10 feet of single-chip microcomputer IC1; The colelctor electrode of audion T1 is connected with the other end of resistance R 7 in the main control circuit; The base stage of audion T1 is connected with the anode of diode D1 in the operating keyboard circuit; The other end of potentiometer W1 is connected with 3 feet of adapter P1; The adjustable side of potentiometer W1 is connected with 18 feet of adapter P1; The 1-8 foot of adapter J1 is connected with 3,2,1,44,43,42,41,40 feet of single-chip microcomputer IC1 respectively; 2,3 feet of adapter J2 are connected with 10,4 feet and 4,3 feet of adapter JK21 of adapter S1 in the communication interface circuit respectively, and the 4-17 foot of adapter P1 is connected with 32,33,34,25,24,23,22,21,20,19,18,35,36,37 feet of single-chip microcomputer IC1 respectively.
memory circuitry of the present invention is made up of chip IC 3, capacitor C 2, resistance R 21 and diode DW22; Wherein chip IC 3 is 24C16; 16 feet of the other end of capacitor C 3, C4 and single-chip microcomputer IC1 are connected with 1,2,3,4,7 feet of chip IC 3 in one end of the other end of capacitor C 2, resistance R 21, the anode of diode DW22, the main controller circuit; One end of capacitor C 2 is connected with 3 feet of display circuit chips U61; The end of resistance R 23, R25 is connected in 7 feet of the other end of resistance 21 and communication interface circuit chips U21 and the memory circuitry; Diode DW21 in the negative electrode of diode DW22 and the communication interface circuit, the negative electrode of DW23 are connected; 5 feet of chip IC 3 are connected with an end of resistance R 6 in the operating keyboard circuit with 13 feet of single-chip microcomputer IC1, and 6 feet of chip IC 3 are connected with an end of resistance R 5 in the operating keyboard circuit with 12 feet of single-chip microcomputer IC1, and 8 feet of chip IC 3 are connected with operating keyboard circuit.
communication interface circuit of the present invention is made up of chip IC 2, U21, adapter JK21, JK61, S1, S2, resistance R 24, capacitor C 6, C7, C8 and diode DW21, DW23, and wherein chip IC 2 is MAX232, and chip U21 is MA230; 15,16 feet of chip IC 2 are connected with 16,38 feet of single-chip microcomputer IC1 respectively; The 11-14 foot of chip IC 2 is connected with 1,7,2,8 feet of adapter S1 respectively, 1,3 foot shunt capacitance C6 of chip IC 2,4,5 foot shunt capacitance C7 of chip IC 2; Resistance R 25 1 ends are connected in 2 feet of chip IC 2 and the operating keyboard circuit; 6 feet of chip IC 2 connect an end of capacitor C 8, and the other end of capacitor C 8 connects 16 feet of single-chip microcomputer IC1, and 1,4 feet of chip U21 are 11,5 feet of connecting connector S1 respectively; 2,3 feet of chip U21 connect 31 feet of single-chip microcomputer IC1; 5,8 feet of chip U21 connect 16,38 feet of single-chip microcomputer IC1 respectively, and 6 feet of chip U21 are connected with an end of the anode of diode DW21, resistance R 24, and 7 feet of chip U21 are connected with the anode of diode DW23; The negative electrode of diode DW21, DW23 is connected with the negative electrode of diode DW22 in the memory circuitry; 6 feet of the other end connecting connector S1 of resistance R 24,0,2 feet of adapter JK61 connect 4 feet of the adapter J2 of display circuit, and 1 foot of adapter JK61 connects 16 feet of single-chip microcomputer IC1; 3,4 feet of adapter JK21 are 4,10 feet of connecting connector S1 respectively; 5 feet of adapter JK21 connect 16 feet of single-chip microcomputer IC1, and 1,2 feet of adapter S2 connect 9,8 feet of single-chip microcomputer IC1 respectively, 3 feet of the 3 foot connecting connector S1 of adapter S2 and 7 feet of single-chip microcomputer IC1; 9 feet of the 4 foot connecting connector S1 of adapter S2 and 5 feet of single-chip microcomputer IC1,12 feet of adapter S1 connect resistance R 25 in the operating keyboard circuit.
operating keyboard circuit of the present invention is made up of resistance R 5, R6, R22, R23, R25, capacitor C 1, C5, diode D1 and electric fuse F; The adjustable side of potentiometer W1 in the termination display circuit of diode D1 anode, electric fuse F; The other end, capacitor C 1, the other end of C5,8 feet of memory circuitry chips IC3 and 38 feet of single-chip microcomputer IC1 of the other end of the negative electrode of diode D1 and electric fuse F, resistance R 5, R6, R22 are connected; 4 feet of one termination single-chip microcomputer IC1 of capacitor C 1; 2 feet of one termination communication interface circuit chips IC2 of capacitor C 5; 6 feet of one termination communication interface circuit chips U21 of one end of resistance R 22 and resistance R 23; The other end of the other end of resistance R 23 and resistance R 25 is connected 7 feet of communication interface circuit chips U21; 12 feet of adapter S1 in the one termination communication interface circuit of resistance R 25, an end of resistance R 5 is connected with 6 feet of 12 feet of single-chip microcomputer IC1 with memory circuitry chips IC3, and an end of resistance R 6 is connected with 5 feet of 13 feet of single-chip microcomputer IC1 with memory circuitry chips IC3.
Claims (1)
1. the Prescription apparatus control device of an intelligent foot-drop corrector; It is characterized in that it comprises: main controller circuit, communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; Main controller circuit is connected with communication interface circuit, memory circuitry, display circuit and operating keyboard circuit; The communication interface circuit is connected with display circuit, operating keyboard circuit and memory circuitry; Display circuit is connected with memory circuitry with operating keyboard circuit, and operating keyboard circuit is connected with memory circuitry; Described main controller circuit is made up of single-chip microcomputer IC1, crystal oscillator IT1, capacitor C 3, C4, resistance R 2, R7; Wherein single-chip microcomputer IC1 is STC12C5A04S2; The end of crystal oscillator IT1 is connected with 14 feet of single-chip microcomputer IT1 with an end of capacitor C 4; One end of the other end of crystal oscillator IT1 and capacitor C 3 is connected with 15 feet of single-chip microcomputer IT1; The end of resistance R 2, R7 is connected with 4,10 feet of single-chip microcomputer IT1 respectively, and the other end of capacitor C 3, C4 is connected with memory circuitry, and the 18-25 of single-chip microcomputer IC1,31-44 foot are connected with display circuit; 16 feet of single-chip microcomputer IC1 are connected with memory circuitry, display circuit and communication interface circuit, and 38 feet of single-chip microcomputer IT1 are connected with operating keyboard circuit; Described display circuit is made up of chip U61, resistance R 1, R4, capacitor C 10, C11, C61, C62, C63, potentiometer W1, audion T1 and adapter P1, J1, J2; Its chips U61 is 7805; The end of 0,1 foot of 1 foot of chip U61 and the adapter JK61 of memory circuitry and 4 feet of adapter J2, capacitor C 61, C62 is connected; The end of the end of 1 foot of 5 feet of 15 feet of 1 foot of 16 feet of 2 feet of chip U61 and the single-chip microcomputer IC1 of main controller circuit and the other end of resistance R 2 and the adapter JK61 in the communication interface circuit, the chip IC 2 in the communication interface circuit and an end of capacitor C 8, communication interface circuit chips U21,2,20 feet of adapter P1, adapter J2, resistance R 1, R2, capacitor C 10, C11, C63, capacitor C 62, the other end of C61, the end of potentiometer Q1, the emitter stage of audion T1 are connected; In 3 feet of chip U61 and the main controller circuit in 38 feet of single-chip microcomputer IC1, the memory circuitry end, 19 feet of adapter P1 and the other end of capacitor C 10, C11, C63 of capacitor C 2 be connected; The other end of resistance R 1 is connected with 1 foot of adapter P1; The other end of resistance R 4 is connected with 10 feet of single-chip microcomputer IC1; The colelctor electrode of audion T1 is connected with the other end of resistance R 7 in the main control circuit; The base stage of audion T1 is connected with the anode of diode D1 in the operating keyboard circuit; The other end of potentiometer W1 is connected with 3 feet of adapter P1; The adjustable side of potentiometer W1 is connected with 18 feet of adapter P1; The 1-8 foot of adapter J1 is connected with 3,2,1,44,43,42,41,40 feet of single-chip microcomputer IC1 respectively; 2,3 feet of adapter J2 are connected with 10,4 feet and 4,3 feet of adapter JK21 of adapter S1 in the communication interface circuit respectively, and the 4-17 foot of adapter P1 is connected with 32,33,34,25,24,23,22,21,20,19,18,35,36,37 feet of single-chip microcomputer IC1 respectively; Described memory circuitry is made up of chip IC 3, capacitor C 2, resistance R 21 and diode DW22; Wherein chip IC 3 is 24C16; 16 feet of the other end of capacitor C 3, C4 and single-chip microcomputer IC1 are connected with 1,2,3,4,7 feet of chip IC 3 in one end of the other end of capacitor C 2, resistance R 21, the anode of diode DW22, the main controller circuit; One end of capacitor C 2 is connected with 3 feet of display circuit chips U61; The end of resistance R 23, R25 is connected in 7 feet of the other end of resistance 21 and communication interface circuit chips U21 and the memory circuitry; Diode DW21 in the negative electrode of diode DW22 and the communication interface circuit, the negative electrode of DW23 are connected; 5 feet of chip IC 3 are connected with an end of resistance R 6 in the operating keyboard circuit with 13 feet of single-chip microcomputer IC1, and 6 feet of chip IC 3 are connected with an end of resistance R 5 in the operating keyboard circuit with 12 feet of single-chip microcomputer IC1, and 8 feet of chip IC 3 are connected with operating keyboard circuit; Described communication interface circuit is made up of chip IC 2, U21, adapter JK21, JK61, S1, S2, resistance R 24, capacitor C 6, C7, C8 and diode DW21, DW23, and wherein chip IC 2 is MAX232, and chip U21 is MA230; 15,16 feet of chip IC 2 are connected with 16,38 feet of single-chip microcomputer IC1 respectively; The 11-14 foot of chip IC 2 is connected with 1,7,2,8 feet of adapter S1 respectively, 1,3 foot shunt capacitance C6 of chip IC 2,4,5 foot shunt capacitance C7 of chip IC 2; Resistance R 25 1 ends are connected in 2 feet of chip IC 2 and the operating keyboard circuit; 6 feet of chip IC 2 connect an end of capacitor C 8, and the other end of capacitor C 8 connects 16 feet of single-chip microcomputer IC1, and 1,4 feet of chip U21 are 11,5 feet of connecting connector S1 respectively; 2,3 feet of chip U21 connect 31 feet of single-chip microcomputer IC1; 5,8 feet of chip U21 connect 16,38 feet of single-chip microcomputer IC1 respectively, and 6 feet of chip U21 are connected with an end of the anode of diode DW21, resistance R 24, and 7 feet of chip U21 are connected with the anode of diode DW23; The negative electrode of diode DW21, DW23 is connected with the negative electrode of diode DW22 in the memory circuitry; 6 feet of the other end connecting connector S1 of resistance R 24,0,2 feet of adapter JK61 connect 4 feet of the adapter J2 of display circuit, and 1 foot of adapter JK61 connects 16 feet of single-chip microcomputer IC1; 3,4 feet of adapter JK21 are 4,10 feet of connecting connector S1 respectively; 5 feet of adapter JK21 connect 16 feet of single-chip microcomputer IC1, and 1,2 feet of adapter S2 connect 9,8 feet of single-chip microcomputer IC1 respectively, 3 feet of the 3 foot connecting connector S1 of adapter S2 and 7 feet of single-chip microcomputer IC1; 9 feet of the 4 foot connecting connector S1 of adapter S2 and 5 feet of single-chip microcomputer IC1,12 feet of adapter S1 connect resistance R 25 in the operating keyboard circuit; Described operating keyboard circuit is made up of resistance R 5, R6, R22, R23, R25, capacitor C 1, C5, diode D1 and electric fuse F; The adjustable side of potentiometer W1 in the termination display circuit of diode D1 anode, electric fuse F; The other end, capacitor C 1, the other end of C5,8 feet of memory circuitry chips IC3 and 38 feet of single-chip microcomputer IC1 of the other end of the negative electrode of diode D1 and electric fuse F, resistance R 5, R6, R22 are connected; 4 feet of one termination single-chip microcomputer IC1 of capacitor C 1; 2 feet of one termination communication interface circuit chips IC2 of capacitor C 5; 6 feet of one termination communication interface circuit chips U21 of one end of resistance R 22 and resistance R 23; The other end of the other end of resistance R 23 and resistance R 25 is connected 7 feet of communication interface circuit chips U21; 12 feet of adapter S1 in the one termination communication interface circuit of resistance R 25, an end of resistance R 5 is connected with 6 feet of 12 feet of single-chip microcomputer IC1 with memory circuitry chips IC3, and an end of resistance R 6 is connected with 5 feet of 13 feet of single-chip microcomputer IC1 with memory circuitry chips IC3.
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1602819A (en) * | 2004-11-03 | 2005-04-06 | 西安交通大学 | Portable multifunctional cervical spondylopathy therapeutic equipment |
CN101551277A (en) * | 2009-05-18 | 2009-10-07 | 胡业林 | Array type multipoint temperature monitoring system |
CN101947153A (en) * | 2010-08-21 | 2011-01-19 | 赵智博 | Wearable intelligent foot drop corrector and correction method |
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2011
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Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1602819A (en) * | 2004-11-03 | 2005-04-06 | 西安交通大学 | Portable multifunctional cervical spondylopathy therapeutic equipment |
CN101551277A (en) * | 2009-05-18 | 2009-10-07 | 胡业林 | Array type multipoint temperature monitoring system |
CN101947153A (en) * | 2010-08-21 | 2011-01-19 | 赵智博 | Wearable intelligent foot drop corrector and correction method |
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