CN106178290B - Ultrasonic physiotherapeutic instrument - Google Patents
Ultrasonic physiotherapeutic instrument Download PDFInfo
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- CN106178290B CN106178290B CN201610528687.5A CN201610528687A CN106178290B CN 106178290 B CN106178290 B CN 106178290B CN 201610528687 A CN201610528687 A CN 201610528687A CN 106178290 B CN106178290 B CN 106178290B
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- liquid
- ultrasonic
- energy converter
- transmitting panel
- tube
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N7/00—Ultrasound therapy
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- Engineering & Computer Science (AREA)
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- Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
- Radiology & Medical Imaging (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
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- Thermotherapy And Cooling Therapy Devices (AREA)
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Abstract
The present invention provides a kind of ultrasonic physiotherapeutic instruments, including transducer architecture, liquid case and liquid pump;It is connected between the liquid case and liquid pump by liquid pipe, is equipped with coolant liquid in the liquid case;The transducer architecture includes at least ultrasonic transducer and transmitting panel, closed cavity is formed between the ultrasonic transducer and transmitting panel, the inlet and liquid outlet being connected to cavity are equipped in the ultrasonic transducer, the inlet is connected to by inlet tube with liquid pump, and the liquid outlet is connected to by outlet tube with liquid case;After the liquid pump is powered on, the coolant liquid in the liquid case is transported to cavity by liquid pump, inlet tube and inlet, passes through liquid outlet again into the coolant liquid in cavity, the outlet tube is transported to liquid case to form the cooling cycle based on coolant liquid.Whereby, ultrasonic physiotherapeutic instrument of the present invention can either control the temperature of the energy converter surface of emission, and not influence the conduction of ultrasonic wave, and then improve ultrasound physiotherapy effect.
Description
Technical field
The present invention relates to a kind of ultrasonic physiotherapeutic instruments.
Background technique
Unique curative effect of the ultrasonic technique in terms of medical treatment has obtained the generally approval of medical field, and is increasingly paid attention to by clinic
And use.Domestic and international medical expert is transported using ultrasonic technique in treatment limbs soft tissue injury, the rehabilitation of limbs chronic ache, limbs
Product achieves extraordinary curative effect in terms of dynamic rehabilitation, and ultrasonic therapy be extended to department of traditional Chinese medicine, orthopaedics, surgery, internal medicine, paediatrics,
Oncology, andrology, gynemetrics etc. are widely applied in clinic, achieve satisfied therapeutic effect.But current ultrasound physiotherapy
The temperature of the ultrasonic wave surface of emission of instrument is excessively high, it is difficult to which directly contact human skin causes therapeutic effect bad.
In summary, the existing technology has inconveniences and defects in actual use, so it is necessary to be improved.
Summary of the invention
For above-mentioned defect, the purpose of the present invention is to provide a kind of ultrasonic physiotherapeutic instruments, can either control energy converter
The temperature of the surface of emission, and the conduction of ultrasonic wave is not influenced, and then improves ultrasound physiotherapy effect.
To achieve the goals above, the present invention provides a kind of ultrasonic physiotherapeutic instrument, include at least transducer architecture, liquid case and
Liquid pump;
It is connected between the liquid case and the liquid pump by liquid pipe, is equipped with coolant liquid in the liquid case;
The transducer architecture includes at least ultrasonic transducer and transmitting panel, the ultrasonic transducer and the surface of emission
Closed cavity is formed between plate, is equipped with the inlet and liquid outlet being connected to the cavity, institute in the ultrasonic transducer
It states inlet to be connected to by inlet tube with the liquid pump, the liquid outlet is connected to by outlet tube with the liquid case;
The ultrasonic transducer emits ultrasonic wave and is transmitted outward by the transmitting panel after being powered on;
After the liquid pump is powered on, the coolant liquid in the liquid case passes through the liquid pump, the inlet tube and institute
It states inlet and is transported to the cavity, pass through the liquid outlet, the outlet tube again into the coolant liquid in the cavity
It is transported to the liquid case, to form the cooling cycle based on coolant liquid.
Ultrasonic physiotherapeutic instrument according to the present invention, the ultrasonic transducer are equipped with for detecting in the cavity
The temperature detecting unit of the coolant liquid and the transmitting panel temperature;
The ultrasonic physiotherapeutic instrument further includes circuit control unit, the circuit control unit respectively with the ultrasonic waves
Energy device, the liquid pump and the temperature detecting unit are electrically connected, and the circuit control unit is by adjusting the liquid pump
Operating voltage and/or operating current control the flow velocity and flow of the coolant liquid, and then control the temperature of the transmitting panel.
Ultrasonic physiotherapeutic instrument according to the present invention, the ultrasonic transducer successively include energy converter front cover, piezoelectricity
Ceramic component and energy converter rear cover;
The cavity is formed between the energy converter front cover and the transmitting panel, the energy converter front cover is equipped with described
Temperature detecting unit.
Ultrasonic physiotherapeutic instrument according to the present invention is equipped between the energy converter front cover and the piezo ceramic element
First insulating trip is equipped with the second insulating trip between the energy converter rear cover and the piezo ceramic element.
The cross section of ultrasonic physiotherapeutic instrument according to the present invention, the energy converter front cover is greater than the piezoelectric ceramics group
The cross section of part and the energy converter rear cover, after the energy converter front cover is relative to the piezo ceramic element and the energy converter
The outer edge of lid protrusion is equipped with the inlet and the liquid outlet;It is convexly equipped with the first connecting tube on the inlet, described
One connecting tube is connected to the inlet tube;Be convexly equipped with the second connecting tube on the liquid outlet, second connecting tube and it is described go out
Liquid pipe connection.
Ultrasonic physiotherapeutic instrument according to the present invention, the transducer architecture further include rear shell and front housing, the ultrasound
Wave transducer is detachably secured in the rear shell, and the energy converter front cover extends except the rear shell, the transmitting
Energy converter front cover is stated in panel cover residence and the outer rim of the transmitting panel is resisted against in the outer rim of the rear shell;The surface of emission
The cavity is formed between plate and the energy converter front cover, and the contact position of the transmitting panel and the energy converter front cover carries out
Encapsulation process;State the outer rim and the front housing and the rear shell detachable connection of transmitting panel, institute in the front shell cover residence
Stating front housing is engraved structure, and the main body of the transmitting panel is extended except the front housing by the engraved structure.
Ultrasonic physiotherapeutic instrument according to the present invention, the transmitting panel are hemispherical.
Ultrasonic physiotherapeutic instrument according to the present invention, the rear shell of the transducer architecture are fixedly connected with a hand
Handle is in 40~60 degree of angles between the handle and the rear shell;It is hollow structure in the handle, and the handle is connected with outside
Casing;A part of the inlet tube and the outlet tube is accommodated in the hollow structure, the inlet tube and the liquid out
Another part of pipe is accommodated in the outer tube.
Ultrasonic physiotherapeutic instrument according to the present invention, the ultrasonic physiotherapeutic instrument further include having storage box, the storage
Control cabinet is equipped in box, the liquid case, the liquid pump and the circuit control unit are placed in the control cabinet;The control
Case is separated out one for accommodating the accommodation groove of the transducer architecture in the storage space that the storage box is formed.
Ultrasonic physiotherapeutic instrument according to the present invention, the storage box are equipped at least one control button, the control
Key processed and the circuit control unit are electrically connected;And/or
The storage box is equipped at least one display screen, and the display screen and the circuit control unit are electrically connected;
And/or
The storage box is equipped at least one touch screen, and the touch screen and the circuit control unit are electrically connected.
Ultrasonic physiotherapeutic instrument of the present invention includes transducer architecture, liquid case and liquid pump, is led between the liquid case and the liquid pump
Cross liquid pipe connection;The transducer architecture includes ultrasonic transducer and transmitting panel, the ultrasonic transducer and the surface of emission
Closed cavity is formed between plate, the ultrasonic transducer is equipped with the inlet and liquid outlet being connected to the cavity, described
Inlet is connected to liquid pump and liquid case respectively with liquid outlet, and the coolant liquid in the liquid case is under the pressure of liquid pump, in liquid
Pump, inlet, cavity, liquid outlet, outlet tube, forms the cooling cycle based on coolant liquid between liquid case at inlet tube, and then can be with
It controls cavity and emits the temperature of panel, so that the temperature is more suitable for and user's skin contact.Whereby, the present invention can control
The temperature of the energy converter surface of emission, and the conduction of ultrasonic wave is not influenced, and then improves ultrasound physiotherapy effect.
Detailed description of the invention
Fig. 1 is the preferred structure schematic diagram of ultrasonic physiotherapeutic instrument of the present invention;
Fig. 2 is the preferred structure partial sectional view of ultrasonic physiotherapeutic instrument of the present invention;
Fig. 3 is the preferred structure schematic diagram of the transducer architecture of ultrasonic physiotherapeutic instrument of the present invention;
Fig. 4 is the preferred structure cross-sectional view of the transducer architecture of ultrasonic physiotherapeutic instrument of the present invention;
Fig. 5 is another preferred structure schematic diagram of ultrasonic physiotherapeutic instrument of the present invention;
Fig. 6 is another preferred structure exploded view of ultrasonic physiotherapeutic instrument of the present invention;
Specific embodiment
In order to make the objectives, technical solutions, and advantages of the present invention clearer, with reference to the accompanying drawings and embodiments, right
The present invention is further elaborated.It should be appreciated that the specific embodiments described herein are merely illustrative of the present invention, and
It is not used in the restriction present invention.
As depicted in figs. 1 and 2, the present invention provides a kind of ultrasonic physiotherapeutic instrument 100, includes at least transducer architecture 10, liquid
Case 20 and liquid pump 30, in which:
It is connected between liquid case 20 and liquid pump 30 by liquid pipe 40, is equipped with coolant liquid in liquid case 20.The liquid case 20 is preferably
For water tank, the liquid pump 30 is preferably water pump, the coolant liquid can be water, is also possible to any other with cooling effect
Liquid, the liquid pipe 40 preferably use hose.
Transducer architecture 10 includes at least ultrasonic transducer 11 and transmitting panel 12, ultrasonic transducer 11 and the surface of emission
Closed cavity 13 is formed between plate 12, and the inlet being connected to cavity 13 and liquid outlet (figure are equipped in ultrasonic transducer 11
In do not show), inlet is connected to by inlet tube 50 with liquid pump 30, and liquid outlet passes through outlet tube 60 and is connected to liquid case 20, inlet tube
50 and outlet tube 60 preferably use hose.
Ultrasonic transducer 11 emits ultrasonic wave and is transmitted outward by transmitting panel 12 after being powered on.Emit panel 12
Heat can be generated, is directly contacted with human skin to carry out physical therapy to affected part.Preferably, transmitting panel 12 uses hemispherical,
Energy farthest contacts human skin area.
After liquid pump 30 is powered on, the coolant liquid in liquid case 20 is transported to sky by liquid pump 30, inlet tube 50 and inlet
Chamber 13, into the coolant liquid in cavity 13 passes through liquid outlet again, outlet tube 60 is transported to liquid case 20, to be formed based on coolant liquid
Cooling cycle.Specifically, liquid pump 30 generates pressure after being powered on, the coolant liquid in liquid case 20 passes through liquid pipe 40 due to pressure
It is transported to liquid pump 30, then cavity 13 is transported to by inlet tube 50 and inlet, cavity 13 can be filled completely by coolant liquid, and cavity
Coolant liquid in 13 can carry out the cooling temperature for making up to appropriate contact human skin to cavity 13 and transmitting panel 12, then
Into the coolant liquid in cavity 13 passes through liquid outlet again, outlet tube 60 is transported to liquid case 20, coolant liquid is so recycled repeatedly, is taken away
The heat that ultrasonic transducer 11 generates when working, and then form the cooling cycle based on coolant liquid.
As shown in Figure 3 to Figure 4, it is preferably provided on ultrasonic transducer 11 for detecting coolant liquid and the surface of emission in cavity 13
The temperature detecting unit 70 of the temperature of plate 12, the temperature detecting unit 70 can be temperature sensor or thermometer.
It is preferred that ultrasonic physiotherapeutic instrument 100 further includes circuit control unit 80, circuit control unit 80 respectively with ultrasound
Wave transducer 11, liquid pump 30 and temperature detecting unit 70 are electrically connected, the work that circuit control unit 80 passes through adjusting liquid pump 30
Make voltage and/or operating current to control the flow velocity and flow of coolant liquid, and then controls the temperature of transmitting panel 12, i.e., it is of the invention
The temperature of middle transmitting panel 12 is variable controllable.In fact, circuit control unit 80 specifically may include control circuit and ultrasound
Wave driving circuit etc..The temperature that only can control transmitting panel 12 can just promote transmitting panel 12 that can be grown with skin
Effective releasing of time effectively could carry out ultrasonic wave to certain positions of body for a long time and be passed to, accelerate cell movement, increase
Add cellular energy, promotes microcirculation.The tamper deposited in effective unclogging, keeps skin and pore cleaner, reduces skin
Skin class disease can control the temperature of transmitting panel 12 to adapt to different physical feelings and different diseases.Existing ultrasonic wave
Heat has no idea to contact.The structure of ultrasonic physiotherapeutic instrument 100 of the present invention not only can control the temperature of the energy converter surface of emission, but also not shadow
Ring the conduction of ultrasonic wave.
Preferably, ultrasonic transducer 11 successively includes energy converter front cover 111, piezo ceramic element 112 and energy converter
Rear cover 113.Cavity 13 is formed between energy converter front cover 111 and transmitting panel 12, energy converter front cover 111 is equipped with temperature detection list
Member 70 detects the temperature of coolant liquid and transmitting panel 12 in cavity 13 by temperature detecting unit 70.
Preferably, the first insulating trip 114 is equipped between energy converter front cover 111 and piezo ceramic element 112, after energy converter
The second insulating trip 115 is equipped between lid 113 and piezo ceramic element 112.Pass through the first insulating trip 114 and the second insulating trip 115
Electric leakage when can prevent piezoelectric ceramics from puncturing, plays double shielding, it is ensured that safety.
The cross section of energy converter front cover 111 is greater than the cross section of piezo ceramic element 112 and energy converter rear cover 113, transducing
Device front cover 111 is equipped with inlet and liquid outlet relative to the outer edge that piezo ceramic element 112 and energy converter rear cover 113 protrude.
The first connecting tube 116 is convexly equipped on inlet, the first connecting tube 116 is connected to inlet tube 50.The second company is convexly equipped on liquid outlet
Adapter tube 117, the second connecting tube 117 are connected to outlet tube 60.First connecting tube 116 and the second connecting tube 117 are preferably stereoplasm tube,
Metal can be used or hard plastic is made.And inlet tube 50 and outlet tube 60 are preferably soft pipe, and the system such as soft rubber can be used
At.The purpose of first connecting tube 116 and the setting of the second connecting tube 117, is easy for inlet tube 50 and outlet tube 60 and ultrasonic waves
The inlet of energy device 11 is connected to liquid outlet.
Preferably, transducer architecture 10 further includes rear shell 118 and front housing 119, and ultrasonic transducer 11 is detachable solid
Due in rear shell 118, and energy converter front cover 111 extends except rear shell 118, and transmitting panel 12 covers energy converter front cover 111 simultaneously
And the outer rim for emitting panel 12 is resisted against in the outer rim of rear shell 118.Preferably, rear shell 118 is equipped with a screw rod 122, ultrasound
Wave transducer 11 is screwed onto rear shell 118 by the screw rod 122.
Preferably, emit and form cavity 13 between panel 12 and energy converter front cover 111, and emit panel 12 and energy converter
The contact position of front cover 111 is sealed processing, as shown in Fig. 2, it is preferred that in the contact position of transmitting panel 12 and energy converter front cover 111
Sealant 121 is set.Front housing 119 covers the outer rim and front housing 119 and 118 detachable connection of rear shell of transmitting panel 12, preceding
Shell 119 is engraved structure, and the main body of transmitting panel 12 is extended except front housing 119 by engraved structure.Preferably, the surface of emission
Plate 12 is hemispherical, so that the energy that ultrasonic transducer 11 generates can farthest contact human skin area.
The rear shell 118 of transducer architecture 10 is fixedly connected with a handle 120, between handle 120 and rear shell 118 in 40~
60 degree of angles, the angle can farthest adapt to the different parts of contact body.Preferably, between handle 120 and rear shell 118
Angle be 50 degree.It is hollow structure in handle 120, and handle 120 is connected with outer tube (not shown).Inlet tube 50 and go out
A part of liquid pipe 60 is accommodated in hollow structure, and another part of inlet tube 50 and outlet tube 60 is accommodated in outer tube.It needs
, it is noted that since ultrasonic transducer 11 needs to be electrically connected circuit control unit 80, so as to by circuit control unit 80
It controls and by circuit control unit 80 or other power supply power supplies.Therefore, ultrasonic transducer 11 with circuit control unit 80
Or live wire is connected between other power supplys, which can be accommodated in handle 120 and outer tube.
As shown in Figure 5 to Figure 6, ultrasonic physiotherapeutic instrument 100 is equipped with control in storage box 90 it is also preferable to include there is storage box 90
Case 91, liquid case 20, liquid pump 30 and circuit control unit 80 are placed in control cabinet 91.The receipts that control cabinet 91 is formed in storage box 90
It receives and is separated out one in space for accommodating the accommodation groove 92 of transducer architecture 10.In the operating condition, by the transducing in accommodation groove 92
Device structure 10 is taken out;And in a non-operative state, transducer architecture 10 is put back into accommodation groove 92 and carries out storage preservation.
The storage box 90 is preferably cubic type, and compact is carried convenient for user.Certainly, the shape of storage box 90 is unlimited,
Various designs can be carried out according to actual needs.
Preferably, at least one control button 93, at least one display screen 94 and/or extremely can be equipped on storage box 90
A few touch screen, in which:
The control button 93 is electrically connected with circuit control unit 80, and control button 93 can be switch control, function
It can control part etc., user can realize switch control, the function control etc. to ultrasonic physiotherapeutic instrument 100 by control button 93.
The display screen 94 is electrically connected with circuit control unit 80, and the display screen 94 can show ultrasonic physiotherapeutic instrument
100 current working status etc., it is preferred that display screen 94 can the transmitting panel that detects of real-time display temperature detecting unit 70
12 Current Temperatures, so as to user manually adjusted by control button 93 operating voltage and/or the operating current of liquid pump 30 with
The flow velocity and flow of coolant liquid are controlled, and then controls the temperature of transmitting panel 12.
The touch screen and circuit control unit 80 are electrically connected.The touch screen can collect control function and display function
It is integrated, can completely or partially replace above-mentioned control button 93 and display screen 94.
Certainly, also settable other function unit or structural unit, such as indicator light, handle, latch fitting etc. on storage box 90.
In conclusion ultrasonic physiotherapeutic instrument of the present invention includes transducer architecture, liquid case and liquid pump, the liquid case and the liquid
It is connected between pump by liquid pipe;The transducer architecture includes ultrasonic transducer and transmitting panel, the ultrasonic transducer
Closed cavity is formed between transmitting panel, the ultrasonic transducer is equipped with the inlet being connected to the cavity and out liquid
Mouthful, the inlet is connected to liquid pump and liquid case respectively with liquid outlet, pressure of the coolant liquid in the liquid case in liquid pump
Under, the cooling cycle based on coolant liquid is formed between liquid pump, inlet tube, inlet, cavity, liquid outlet, outlet tube, liquid case,
And then can control cavity and emit the temperature of panel, so that the temperature is more suitable for and user's skin contact.Whereby, of the invention
The temperature of the energy converter surface of emission can be controlled, and does not influence the conduction of ultrasonic wave, and then improves ultrasound physiotherapy effect.
Certainly, the present invention can also have other various embodiments, without deviating from the spirit and substance of the present invention, ripe
It knows those skilled in the art and makes various corresponding changes and modifications, but these corresponding changes and change in accordance with the present invention
Shape all should fall within the scope of protection of the appended claims of the present invention.
Claims (7)
1. a kind of ultrasonic physiotherapeutic instrument, which is characterized in that include at least transducer architecture, liquid case and liquid pump;
It is connected between the liquid case and the liquid pump by liquid pipe, is equipped with coolant liquid in the liquid case;
The transducer architecture include at least ultrasonic transducer and transmitting panel, the ultrasonic transducer and transmitting panel it
Between form closed cavity, be equipped with the inlet and liquid outlet being connected to the cavity in the ultrasonic transducer, it is described into
Liquid mouth is connected to by inlet tube with the liquid pump, and the liquid outlet is connected to by outlet tube with the liquid case;
The ultrasonic transducer emits ultrasonic wave and is transmitted outward by the transmitting panel after being powered on;
After the liquid pump is powered on, the coolant liquid in the liquid case by the liquid pump, the inlet tube and it is described into
Liquid mouth is transported to the cavity, passes through the liquid outlet, outlet tube conveying again into the coolant liquid in the cavity
To the liquid case, to form the cooling cycle based on coolant liquid;
The ultrasonic transducer is equipped with the temperature for detecting coolant liquid described in the cavity and the transmitting panel temperature
Spend detection unit;
The ultrasonic physiotherapeutic instrument further includes circuit control unit, the circuit control unit respectively with the ultrasonic wave transducer
Device, the liquid pump and the temperature detecting unit are electrically connected, the work that the circuit control unit passes through the adjusting liquid pump
Make voltage and/or operating current to control the flow velocity and flow of the coolant liquid, and then controls the temperature of the transmitting panel;
The ultrasonic transducer successively includes energy converter front cover, piezo ceramic element and energy converter rear cover;
The cavity is formed between the energy converter front cover and the transmitting panel, the energy converter front cover is equipped with the temperature
Detection unit;
The cross section of the energy converter front cover is greater than the cross section of the piezo ceramic element and the energy converter rear cover, described to change
Energy device front cover is equipped with the inlet and institute relative to the outer edge that the piezo ceramic element and the energy converter rear cover protrude
State liquid outlet;The first connecting tube is convexly equipped on the inlet, first connecting tube is connected to the inlet tube;The liquid out
It is convexly equipped with the second connecting tube on mouthful, second connecting tube is connected to the outlet tube.
2. ultrasonic physiotherapeutic instrument according to claim 1, which is characterized in that the energy converter front cover and the piezoelectric ceramics
It is equipped with the first insulating trip between component, the second insulating trip is equipped between the energy converter rear cover and the piezo ceramic element.
3. ultrasonic physiotherapeutic instrument according to claim 1, which is characterized in that the transducer architecture further includes rear shell with before
Shell, the ultrasonic transducer are detachably secured in the rear shell, and the energy converter front cover extend the rear shell it
Outside, the transmitting panel covers the energy converter front cover and the outer rim for emitting panel is resisted against the outer rim of the rear shell
On;The cavity is formed between the transmitting panel and the energy converter front cover, and before the transmitting panel and the energy converter
The contact position of lid is sealed processing;The outer rim of transmitting panel is stated in the front shell cover residence and the front housing and the rear shell can
Be detachably connected with, the front housing be engraved structure, it is described transmitting panel main body by the engraved structure extend it is described before
Except shell.
4. ultrasonic physiotherapeutic instrument according to claim 3, which is characterized in that the transmitting panel is hemispherical.
5. ultrasonic physiotherapeutic instrument according to claim 3, which is characterized in that the rear shell of the transducer architecture is fixed
It is connected with a handle, is in 40~60 degree of angles between the handle and the rear shell;It is hollow structure in the handle, and described
Handle is connected with outer tube;A part of the inlet tube and the outlet tube is accommodated in the hollow structure, the feed liquor
Another part of pipe and the outlet tube is accommodated in the outer tube.
6. described in any item ultrasonic physiotherapeutic instruments according to claim 1~5, which is characterized in that the ultrasonic physiotherapeutic instrument is also
Include storage box, control cabinet is equipped in the storage box, the liquid case, the liquid pump and the circuit control unit are placed in
In the control cabinet;The control cabinet is separated out one for accommodating the energy converter knot in the storage space that the storage box is formed
The accommodation groove of structure.
7. ultrasonic physiotherapeutic instrument according to claim 6, which is characterized in that the storage box is equipped at least one control
Key, the control button and the circuit control unit are electrically connected;And/or
The storage box is equipped at least one display screen, and the display screen and the circuit control unit are electrically connected;And/or
The storage box is equipped at least one touch screen, and the touch screen and the circuit control unit are electrically connected.
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CN201610528687.5A CN106178290B (en) | 2016-07-07 | 2016-07-07 | Ultrasonic physiotherapeutic instrument |
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CN201610528687.5A CN106178290B (en) | 2016-07-07 | 2016-07-07 | Ultrasonic physiotherapeutic instrument |
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CN106178290A CN106178290A (en) | 2016-12-07 |
CN106178290B true CN106178290B (en) | 2019-03-19 |
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CN106579721A (en) * | 2017-01-18 | 2017-04-26 | 奉化市必达机械制造有限公司 | Painting tool receiving box with air pump |
KR102003037B1 (en) * | 2018-11-01 | 2019-07-24 | 주식회사 코러스트 | Ultrasound apparatus of body cavity insertable type having circulation structure of ultrasound transmitting medium |
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CN101224165A (en) * | 2007-01-15 | 2008-07-23 | 松下电工株式会社 | Ultrasonic transducer and skin care device with same |
CN103386170A (en) * | 2013-08-12 | 2013-11-13 | 南京大学 | Ultrasonic waveguide provided with cooling system |
CN203525096U (en) * | 2013-09-11 | 2014-04-09 | 蔡啸谷 | Ultrasonic atomization eye therapeutic equipment |
CN203634664U (en) * | 2013-11-19 | 2014-06-11 | 重庆海扶医疗科技股份有限公司 | Device for cooling ultrasonic therapy head |
CN104013431A (en) * | 2014-06-12 | 2014-09-03 | 苏州森斯凌传感技术有限公司 | Ultrasonic probe circulating cooling system with NET transmission control conducted by host |
CN105688338A (en) * | 2016-04-06 | 2016-06-22 | 江苏雷奥生物科技有限公司 | Feedback type medical device |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
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US7834522B2 (en) * | 2007-08-03 | 2010-11-16 | Mr Holdings (Hk) Limited | Diagnostic ultrasound transducer |
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2016
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Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101224165A (en) * | 2007-01-15 | 2008-07-23 | 松下电工株式会社 | Ultrasonic transducer and skin care device with same |
CN103386170A (en) * | 2013-08-12 | 2013-11-13 | 南京大学 | Ultrasonic waveguide provided with cooling system |
CN203525096U (en) * | 2013-09-11 | 2014-04-09 | 蔡啸谷 | Ultrasonic atomization eye therapeutic equipment |
CN203634664U (en) * | 2013-11-19 | 2014-06-11 | 重庆海扶医疗科技股份有限公司 | Device for cooling ultrasonic therapy head |
CN104013431A (en) * | 2014-06-12 | 2014-09-03 | 苏州森斯凌传感技术有限公司 | Ultrasonic probe circulating cooling system with NET transmission control conducted by host |
CN105688338A (en) * | 2016-04-06 | 2016-06-22 | 江苏雷奥生物科技有限公司 | Feedback type medical device |
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