CN202355710U - An ultrasonic ache treatment apparatus - Google Patents

An ultrasonic ache treatment apparatus Download PDF

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Publication number
CN202355710U
CN202355710U CN2011204829523U CN201120482952U CN202355710U CN 202355710 U CN202355710 U CN 202355710U CN 2011204829523 U CN2011204829523 U CN 2011204829523U CN 201120482952 U CN201120482952 U CN 201120482952U CN 202355710 U CN202355710 U CN 202355710U
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CN
China
Prior art keywords
circuit
port
high frequency
ultrasonic
frequency
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Expired - Fee Related
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CN2011204829523U
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Chinese (zh)
Inventor
付玉瑞
宋福生
苏强华
何勇军
陈兆林
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SUONIKE ELECTRONIC CO Ltd MIANYANG CITY
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SUONIKE ELECTRONIC CO Ltd MIANYANG CITY
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Priority to CN2011204829523U priority Critical patent/CN202355710U/en
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Publication of CN202355710U publication Critical patent/CN202355710U/en
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Abstract

This utility model relates to an ultrasonic-signal-control field, especially to an ultrasonic ache treatment apparatus. In the view of problems existing in the prior art, the utility model provides an ultrasonic therapeutic instrument converting the high frequency electric energy to the ultrasonic energy to output. This apparatus can carry out supersonic therapy by making use of the mechanical effect, heat effect and physical and chemical effect that supersonic energy cause in the biologic tissue. This utility model is completed with all circuits connecting to each other, which will be applied to the ultrasonic-signal-control field.

Description

A kind of ultrasonic pain therapy device
Technical field
This utility model relates to ultrasonic signal control field, relates in particular to a kind of digitalized ultrasonic pain therapy device.
Background technology
As everyone knows, soft tissue injury (or) chronic pain is one type of the hugest in medical domain illness, the scope that comprises is very wide, and the course of disease is touching, is regarded as the pertinacious disease that is difficult to cure by medical circle.At present, Therapeutic Method generally is to adopt:
1, Western medicine pain relieving: can only pain relieving, can not control pain, take for a long time and be prone to produce dependency and toxic and side effects, not only unhelpful and stimulating intestine and stomach, damage Liver and kidney.
2, naturopathy: naturopathy comprises ways such as electrotherapy, infrared ray radiation, thermotherapy, and all patients that did physical therapy all know, when doing physical therapy, can settle down, again can be same with in the past after not doing.
3, acupuncture and tuina-massage: basic identical with the naturopathy purpose.Be that clinical symptoms with alleviating patient is main, but not the radical cure means.
4, block therapy: being commonly called as " making anesthesia needle ", is exactly directly to be expelled to medicine in the canalis spinalis or around the nerve root, local anesthesia is to reach analgesic effect.Sealing drug effect symptom is later recovered again at once
5, operative treatment: because that indication requires is very strict, be fit to crowd's less than 5% of performing an operation clinically, the expense that adds is high, and wound is big, and convalescent period is long, and characteristics such as easy recurrence are so cannot popularize in an all-round way.
The utility model content
Technical problem to be solved by this invention is: to the problem of above-mentioned existence; Provide a kind of digitalized ultrasonic pain therapeutic equipment to convert high-frequency electrical energy into ultrasonic wave energy output; The mechanical effect, heat effect and the physical and chemical effect that utilize ultrasound wave in biological tissue, to have, the device that carries out ultrasonic therapeutic.
For achieving the above object, the technical scheme that this utility model adopts is:
A kind of ultrasonic pain therapy device; Comprise modular wafer ultrasonic therapeutic head, display control unit, processor, signal pulse circuit, high-frequency digital power amplifier, said coupling circuit; Said processor is connected with display control unit, coupling circuit one port, high-frequency digital power amplifier first port respectively; The coupling circuit another port is connected with signal pulse circuit one port; Signal pulse circuit another port is connected with high-frequency digital power amplifier second port, and high-frequency digital amplifier the 3rd port is connected with the modular wafer ultrasonic therapeutic head.
Said signal pulse circuit comprises crystal oscillator, frequency dividing circuit, modulation circuit, preamplifier; Said crystal oscillator, frequency dividing circuit, modulation circuit first port connect; Modulation circuit second port, preamplifier, high-frequency digital power amplifier second port connect, and modulation circuit the 3rd port is connected with coupling circuit.
Said coupling circuit comprise photo-coupler U, Zener diode D, audion Q, first resistance R 1, second resistance R 2 ,+12V power port, Vout outfan; Said processor first output port, processor second output port are connected with LMDS Light Coupled Device U second pin, LMDS Light Coupled Device U three-prong respectively; LMDS Light Coupled Device the 5th pin, LMDS Light Coupled Device U the 6th pin are connected with audion Q emitter stage, audion Q base stage respectively; LMDS Light Coupled Device U the 7th pin is connected with first resistance R, 1 one ends, Zener diode D positive pole respectively; First resistance R, 1 another port connects respectively+and 12V power port, second resistance R, 2 one ends connect; Diode cathode ground connection, second resistance R, 2 other ends are connected with audion Q colelctor electrode, and second resistance R, 2 other ends and transistor collector are as coupling circuit Vout outfan.
Said high-frequency digital power amplifier comprises high frequency amplifier, high frequency power source; The high frequency power source output terminal is connected with high frequency amplifier one input; Another input of signal pulse circuit and high frequency amplifier is connected; The high frequency amplifier outfan is connected with the first input of modular wafer ultrasonic therapeutic, and processor the 3rd port is connected with the high frequency power source input.
Said high frequency amplifier comprises coupling buffer circuit, power amplifier, high frequency transforming circuit; Said signal pulse circuit output end is linked in sequence with coupling buffer circuit, power amplifier, high frequency transforming circuit one input port; High frequency power source Ctrl output port is connected with another input of high frequency transforming circuit, and high frequency transforming circuit outfan is connected with the modular wafer ultrasonic therapeutic head.
Said high frequency transforming circuit comprises FET Q2, high frequency transformer T; Said high frequency power source output Ctrl signal end is connected with FET Q2 grid; FET Q2 source ground; FET Q2 drain electrode is connected with the former limit of high frequency transformer one port, another termination of the former limit of high frequency transformer+V power supply, and the transformator secondary is connected with the modular wafer ultrasonic therapeutic head.
A kind of ultrasonic pain therapy device also comprises circulating water device, and said chiller is connected with processor, modular wafer ultrasonic therapeutic head respectively.
Can find out that from the architectural feature of above-mentioned this utility model its advantage is
Utilize inactive mechanical ultrasound wave, in tissue, have good penetrance, the characteristics of gathering property, use hyperacoustic mechanical effect, heat effect, cavitation effect to realize therapeutic purposes.And hyperacoustic penetration depth and ultransonic frequency, modulating frequency, output acoustic power and therapeutic effect have confidential relation.Through above design, can reach supersonic frequency, modulating frequency, output acoustic power control purpose, have treatment flexible setting for parameters, operating aspect, satisfy the requirement of treatment.And
(1) input impedance of photoelectrical coupler is very little, have only hundreds of ohm, and the impedance of interference source is bigger, is generally 105~106 Ω.Can know according to voltage divider principle, even the amplitude of interference voltage is bigger, can be very little but be fed to the noise voltage of photoelectrical coupler input, can only form very faint electric current, can not make diode luminous owing to there are enough energy, thereby be suppressed.
(2) there is not electrical link between the input circuit of photoelectrical coupler and the output loop, not altogether yet; Between distribution capacity minimum, and insulation resistance is very big, so loop various jamming incoherent signals on one side all are difficult to be fed to another side through photoelectrical coupler, has avoided the generation of the interfering signal of common-impedance coupling.
(3) photoelectrical coupler can play good safety guarantee effect, even break down when external equipment, even during the input signal cable short circuit, also can not damage instrument.Because can bear several kilovolts high pressure between the input circuit of LMDS Light Coupled Device and the output loop.
(4) the response speed of photoelectrical coupler is exceedingly fast, and it is responded has only about 10 μ s time delay, is suitable for responding the very high occasion of rate request.
(5) modulating frequency of the 1.7MHz behind radio frequency power amplifier is mated through high frequency transformer and ultrasonic transducer, to reach maximum ultrasound emission usefulness.Characteristics are: high frequency transformer do not generate heat, not hot, and the high pressure that can bear 4000V can reach national safety standard.
(6) be that the modulating frequency of 1.7MHz is after radio frequency power amplifier carries out voltage, electric current amplifies through frequency dividing circuit with the frequency signal frequency division of crystal oscillator in the signal pulse circuit.Guide sound output is: send signal by processor; Control solid-state relay, carry out height, in, end voltage transitions, characteristics are: separate the ground of processor and power supply ground; Can not influence performance of processors when carrying out resistance test, can not damage the components and parts of processor.
Description of drawings
This utility model will explain through example and with reference to the mode of accompanying drawing, wherein:
Fig. 1 is this utility model hardware elementary diagram;
Fig. 2 is the coupling circuit schematic diagram;
Fig. 3 is the signal pulse circuit theory diagrams;
Fig. 4 high frequency amplifier schematic diagram;
Fig. 5 is a high frequency transforming circuit schematic diagram.
The specific embodiment
For the purpose, technical scheme and the advantage that make this utility model is clearer,, this utility model is further elaborated below in conjunction with accompanying drawing and embodiment.Should be appreciated that specific embodiment described herein only in order to explanation this utility model, and be not used in qualification this utility model.
Whole device work process is: be main control with the processor; Parameters such as the control signal impulse circuit produces (2Hz, 4Hz, 6Hz) modulating frequency, treatment time, beginning, suspend, stop; The sound output of control high-frequency digital power amplifier realizes the control of whole device.
As shown in Figure 1; A kind of ultrasonic pain therapy device; Comprise modular wafer ultrasonic therapeutic head, display control unit; It is characterized in that also comprising processor, signal pulse circuit, high-frequency digital power amplifier, the said circuit that closes of coupling, said processor is connected with display control unit, coupling circuit one port, high-frequency digital power amplifier first port respectively, and the coupling circuit another port is connected with signal pulse circuit one port; Signal pulse circuit another port is connected with high-frequency digital power amplifier second port, and high-frequency digital amplifier the 3rd port is connected with the modular wafer ultrasonic therapeutic head.
1, signal pulse circuit
As shown in Figure 2, the signal pulse circuit comprises crystal oscillator, frequency dividing circuit, modulation circuit, preamplifier.The signal pulse circuit comprises crystal oscillator, frequency dividing circuit, modulation circuit, preamplifier; Said crystal oscillator, frequency dividing circuit, modulation circuit first port connect; Modulation circuit second port, preamplifier, high-frequency digital power amplifier second port connect, and modulation circuit the 3rd port is connected with coupling circuit.Crystal oscillator is used to produce high-frequency signal.Frequency dividing circuit is used for the high-frequency signal frequency division with the crystal oscillator generation, fractional frequency signal and modular wafer ultrasonic therapeutic head operating frequency coupling.Modulation circuit is used to receive the fractional frequency signal that frequency dividing circuit produces, and receiving processor is modulated output through the controlled frequency signal that coupling circuit sends simultaneously.Preamplifier is used for the modulation circuit output signal is carried out voltage amplification; And export amplification voltage signal to the high-frequency digital power amplifier.Crystal oscillator, frequency dividing circuit, modulation circuit one input port connect successively; Another input port of coupling circuit and modulation circuit is connected, the modulation circuit output port is connected with the preamplifier input, and preamplifier output is connected with the high-frequency digital power amplifier.Crystal oscillator (model is TPS2813) produces the high-frequency signal of 6.78MHz, is 1.7MHz (consistent with the operating frequency of modular wafer ultrasonic therapeutic head) frequency signal through frequency dividing circuit; Processor produces control signal (can export 2Hz, 4Hz, 6Hz among the design) through the Vout port of coupling circuit simultaneously; Crystal oscillator through the frequency of frequency division output and the processor controlled frequency signal through the coupling circuit transmission jointly as the input signal of modulation circuit (model TPS2814); The signal of modulation circuit output amplifies signal amplitude through preamplifier (model is TPS2811), at last signal is sent into the high-frequency digital power amplifier.
2, coupling circuit
Of Fig. 3; Coupling circuit comprise photo-coupler U, Zener diode D, audion Q, first resistance R 1, second resistance R 2 ,+12V, Vout outfan; Said processor first output port, processor second output port are connected with LMDS Light Coupled Device U second pin, LMDS Light Coupled Device U three-prong respectively; LMDS Light Coupled Device the 5th pin, LMDS Light Coupled Device U the 6th pin are connected with audion Q emitter stage, audion Q base stage respectively; LMDS Light Coupled Device U the 7th pin is connected with first resistance R, 1 one ends, Zener diode D are anodal respectively, and first resistance R, 1 another port connects respectively+12V power port, second resistance R, 2 one ends connection, diode cathode ground connection; Second resistance R, 2 other ends are connected with audion Q colelctor electrode, and second resistance R, 2 other ends and transistor collector are as coupling circuit Vout outfan.
Through 2HZ, 4HZ, the 6HZ frequency control signal that processor produces, deliver to LMDS Light Coupled Device U tripod, LMDS Light Coupled Device U crus secunda is connected with the ground of processor part, constitutes the loop.LMDS Light Coupled Device U the 5th foot, LMDS Light Coupled Device U the 6th foot and signal pulse circuit part constitute the loop.LMDS Light Coupled Device U the 7th foot provides a reference voltage.The 2HZ that produces when processor, 4HZ, when the 6HZ FREQUENCY CONTROL signal of telecommunication is sent into the tripod input of photoelectrical coupler U; The inner light-emittingdiode of photoelectrical coupler is through electric current and luminous; Produce electric current after the inner light-sensitive element of photoelectrical coupler receives illumination, LMDS Light Coupled Device U the 5th, 6 foot conductings change the voltage between audion Q base stage and the audion Q emitter stage; Make and audion Q collector voltage just obtain 2HZ, 4HZ, 6HZ voltage to frequency through the output of Vout port.
3, high-frequency digital power amplifier
The high-frequency digital power amplifier comprises high frequency amplifier, high frequency power source.The high frequency power source output terminal is connected with high frequency amplifier one input; Another input of signal pulse circuit and high frequency amplifier is connected; The high frequency amplifier outfan is connected with the first input of modular wafer ultrasonic therapeutic, and processor the 3rd port is connected with the high frequency power source input.The high-frequency digital power amplifier is the signal after the modulation { to be amplified signal amplitude } through preposition amplification deliver to power amplifier again and carry out voltage, electric current and amplify.Be coupled to the secondary of high frequency transformer to signal through high frequency transformer, produce concussion with the modular wafer ultrasonic therapeutic head and carry out the electroacoustic conversion, send power ultrasonic and treat through ultrasonic transducer.
As shown in Figure 4; High frequency amplifier comprises coupling buffer circuit, power amplifier, high frequency transforming circuit; Comprise coupling buffer circuit, power amplifier, high frequency transforming circuit; Said signal pulse circuit output end is linked in sequence with coupling buffer circuit, power amplifier, high frequency transforming circuit one input port, and high frequency power source Ctrl output port is connected with another input of high frequency transforming circuit, and high frequency transforming circuit outfan is connected with the modular wafer ultrasonic therapeutic head.The coupling buffer circuit is used for passing through isolation processing after the shaping of signal pulse circuit output signal; Power amplifier is used for coupling buffer circuit processing signals is carried out voltage, electric current enlarging function; The high frequency transforming circuit is that the modulation signal that power amplifier is exported is coupled to the secondary and modular wafer ultrasonic therapeutic head coupling work of high frequency transformer; The signal pulse circuit output end is linked in sequence with coupling buffer circuit, power amplifier, high frequency transforming circuit one input port; High frequency power source Ctrl output port is connected with another input of high frequency transforming circuit, and high frequency transforming circuit outfan is connected with the modular wafer ultrasonic therapeutic head.
As shown in Figure 5; The high frequency transforming circuit comprises FET Q2, high frequency transformer T; Said high frequency power amplifier input end signal is connected with FET Q2 grid; FET Q2 source ground, FET Q2 drain electrode are connected with the former limit of high frequency transformer one port, another port, limit and be connected with power port at the beginning of the high frequency transformer.Transformator time limit is connected with the modular wafer ultrasonic therapeutic head.
High frequency power source comprises solid-state relay, electromagnetic relay, rectifier bridge, filter regulator circuit.Solid-state relay, electromagnetic relay are used to select power input voltage; Rectifier bridge is a DC voltage with the AC signal rectification; Filter regulator circuit carries out filtering, voltage stabilizing to the pulsating direct current of rectifier bridge output, obtains pressing than galvanic current.
4. display control unit
Realize having the man machine interface (HMI) of visualized operation through touch screen and key circuit, make the setting of treatment parameter more quick and convenient with adjustment.
5. processor
Adopt chips such as ARM7, ARM9, FPGA, single-chip microcomputer to realize.
6. modular wafer ultrasonic therapeutic probe
The modular wafer ultrasonic therapeutic head is by processor control high-frequency digital power amplifier and then the work of control combination formula wafer ultrasonic therapeutic head emission wafer; The emission wafer is focus type or plane ultrasonic transducer, and optional frequency is formed ultrasonic therapeutic head at the wafer of any Frequency point of 0.2MHz~2MHz ± 20% or multi-frequency point.For example: the ultrasonic therapeutic head of 0.2 MHz, 0.5MHz, 1MHz, 2MHz etc., reach the needed working method of treatment different parts, being implemented in has multiple radiation pattern optional on the ultrasonic transducer, and user friendly operation improves therapeutic efficiency
7. circulating water device
Effect is that the modular wafer ultrasonic therapeutic head is cooled off; Temperature with the transducer in the modular wafer ultrasonic therapeutic probe produces lowers temperature through recirculated water, simultaneously; Recirculated water has good ultrasonic penetration property; Reduce ultrasonic loss, prolonged the working life of transducer, thereby reached the purpose of effective treatment.
Disclosed all characteristics in this description except mutually exclusive characteristic, all can make up by any way.
Disclosed arbitrary characteristic in this description (comprising any accessory claim, summary and accompanying drawing) is only if special narration all can be replaced by other equivalences or the alternative features with similar purpose.That is, only if special narration, each characteristic is an example in a series of equivalences or the similar characteristics.

Claims (7)

1. ultrasonic pain therapy device; Comprise modular wafer ultrasonic therapeutic head, display control unit; It is characterized in that also comprising processor, signal pulse circuit, high-frequency digital power amplifier, said coupling circuit; Said processor is connected with display control unit, coupling circuit one port, high-frequency digital power amplifier first port respectively; The coupling circuit another port is connected with signal pulse circuit one port, and signal pulse circuit another port is connected with high-frequency digital power amplifier second port, and high-frequency digital amplifier the 3rd port is connected with the modular wafer ultrasonic therapeutic head.
2. a kind of ultrasonic pain therapy device according to claim 1; It is characterized in that said signal pulse circuit comprises crystal oscillator, frequency dividing circuit, modulation circuit, preamplifier; Said crystal oscillator, frequency dividing circuit, modulation circuit first port connect; Modulation circuit second port, preamplifier, high-frequency digital power amplifier second port connect, and modulation circuit the 3rd port is connected with coupling circuit.
3. a kind of ultrasonic pain therapy device according to claim 1 and 2; It is characterized in that said coupling circuit comprise photo-coupler (U), Zener diode (D), audion (Q), first resistance (R1), second resistance (R2) ,+12V power port, Vout outfan; Said processor first output port, processor second output port are connected with LMDS Light Coupled Device (U) second pin, LMDS Light Coupled Device (U) three-prong respectively; LMDS Light Coupled Device the 5th pin, LMDS Light Coupled Device (U) the 6th pin are connected with audion (Q) emitter stage, audion (Q) base stage respectively; LMDS Light Coupled Device (U) the 7th pin is connected with first resistance (R1) end, Zener diode (D) positive pole respectively; First resistance (R1) another port connects respectively+and 12V power port, second resistance (R2) end connect; Diode cathode ground connection; Second resistance (R2) other end is connected with audion (Q) colelctor electrode, and second resistance (R2) other end and transistor collector are as coupling circuit Vout outfan.
4. a kind of ultrasonic pain therapy device according to claim 3; It is characterized in that said high-frequency digital power amplifier comprises high frequency amplifier, high frequency power source; The high frequency power source output terminal is connected with high frequency amplifier one input; Another input of signal pulse circuit and high frequency amplifier is connected, and the high frequency amplifier outfan is connected with the first input of modular wafer ultrasonic therapeutic, and processor the 3rd port is connected with the high frequency power source input.
5. a kind of ultrasonic pain therapy device according to claim 4; It is characterized in that said high frequency amplifier comprises coupling buffer circuit, power amplifier, high frequency transforming circuit; Said signal pulse circuit output end is linked in sequence with coupling buffer circuit, power amplifier, high frequency transforming circuit one input port; High frequency power source Ctrl output port is connected with another input of high frequency transforming circuit, and high frequency transforming circuit outfan is connected with the modular wafer ultrasonic therapeutic head.
6. a kind of ultrasonic pain therapy device according to claim 5; It is characterized in that said high frequency transforming circuit comprises FET (Q2), high frequency transformer (T); Said high frequency power source output Ctrl signal end is connected with FET (Q2) grid, FET (Q2) source ground, and FET (Q2) drain electrode is connected with the former limit of high frequency transformer one port; Another termination of the former limit of high frequency transformer+V power supply, the transformator secondary is connected with the modular wafer ultrasonic therapeutic head.
7. according to the described a kind of ultrasonic pain therapy device of one of claim 1 to 6, it is characterized in that also comprising circulating water device, said chiller is connected with processor, modular wafer ultrasonic therapeutic head respectively.
CN2011204829523U 2011-11-29 2011-11-29 An ultrasonic ache treatment apparatus Expired - Fee Related CN202355710U (en)

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Application Number Priority Date Filing Date Title
CN2011204829523U CN202355710U (en) 2011-11-29 2011-11-29 An ultrasonic ache treatment apparatus

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Application Number Priority Date Filing Date Title
CN2011204829523U CN202355710U (en) 2011-11-29 2011-11-29 An ultrasonic ache treatment apparatus

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106533430A (en) * 2016-10-14 2017-03-22 北京东方计量测试研究所 Relay security protection system and method applicable to programmable switching adapter
CN109224325A (en) * 2018-08-17 2019-01-18 广州合舜医疗器械有限公司 A kind of finishing impression instrument driving circuit

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106533430A (en) * 2016-10-14 2017-03-22 北京东方计量测试研究所 Relay security protection system and method applicable to programmable switching adapter
CN106533430B (en) * 2016-10-14 2019-11-26 北京东方计量测试研究所 A kind of relay safety system and method applied to program-controlled adapter
CN109224325A (en) * 2018-08-17 2019-01-18 广州合舜医疗器械有限公司 A kind of finishing impression instrument driving circuit

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120801

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CF01 Termination of patent right due to non-payment of annual fee