APPARATUS FOR CRYOLIPOLYSIS Russian patent published in 2020 - IPC A61B18/00 A61B18/02 A61H39/06 

Abstract RU 2724847 C1

FIELD: medicine.

SUBSTANCE: invention refers to devices allowing therapeutic effect on patient by means of vacuum and preset temperature, and can be used in various fields of medicine, particularly in cosmetology. Cryolipolysis apparatus consists of apparatus working head, compressed purified air source, two two-way solenoid valves, temperature sensor, vacuum meter, control board with LCD-monitor and interface, two Ranque-Hilsch vortex tubes connected to cleaned compressed air source by standard bayonet connection. First Ranque-Hilsch vortex tube generating the cold flow is connected by one end by means of a heat-insulated hose with quick-detachable connections to the working nozzle of the apparatus through a temperature sensor and other end is connected to compressed purified air source by means of standard bayonet connection through two-way solenoid valve. Second vortex tube generating vacuum is connected by one end by means of reinforced hose with quick-detachable connections with working nozzle of apparatus through vacuum meter and other end is connected to compressed purified air source by means of standard bayonet connection through two-way solenoid valve. Control board with LCD-monitor and interface is microcomputer having input ports connected to temperature sensor, vacuum meter and monitor interface, and output ports docked with two-way solenoid valves and monitor interface.

EFFECT: device provides simplicity of design, absence of moving parts of source of temperature and vacuum, which increases reliability of device, and also provides wide range of operating temperatures; wherein temperature and vacuum source does not require electric energy.

1 cl, 1 dwg

Similar patents RU2724847C1

Title Year Author Number
VORTEX THERMOSTAT MRT 2019
  • Voronchikhin Sergej Gennadevich
  • Tuev Mikhail Alekseevich
RU2715946C1
VORTEX APPARATUS FOR THERMOSTATIC CONTROL OF BLOOD DURING ARTIFICIAL CIRCULATION 2020
  • Tuev Mikhail Alekseevich
  • Voronchikhin Sergei Gennadevich
RU2742069C1
PORTABLE THERMOSTATIC UNIT 2018
  • Tuev Mikhail Alekseevich
  • Voronchikhin Sergej Gennadevich
RU2699187C1
SURGICAL SUCTION DEVICE 2019
  • Tuev Mikhail Alekseevich
  • Voronchikhin Sergej Gennadevich
RU2699972C1
VORTEX INSUFFLATOR 2018
  • Tuev Mikhail Alekseevich
  • Voronchikhin Sergej Gennadevich
RU2695626C1
METHOD FOR IMITATION DUMMY FIRING 2022
  • Nikonov Sergei Vladimirovich
  • Shitkov Fedor Valentinovich
RU2791752C1
FUEL GAS HEATING METHOD OF GAS COMPRESSOR UNIT 2020
  • Medvedeva Oksana Nikolaevna
  • Astashev Sergej Igorevich
RU2732864C1
METHOD AND DEVICE FOR HYDRO-VACUUM MASSAGE CARRYING OUT 2009
  • Miroshnikov Aleksej Ivanovich
  • Miroshnikov Sergej Alekseevich
  • Dmitrichev Andrej Vjacheslavovich
RU2405525C1
NATURAL AND ASSOCIATED PETROLEUM GASES DEEP COOLING DEVICE 2017
  • Ishmurzin Abubakir Akhmadullovich
  • Yamaliev Vil Uzbekovich
  • Makhmutov Rustam Afrailevich
  • Miyassarov Ruslan Fuarisovich
RU2655349C1
GAS DISTRIBUTION STATION 2002
  • Gromov V.S.
  • Dobrjanskij V.L.
  • Zaretskij Ja.V.
  • Korotkov L.V.
  • Krivosheev A.I.
  • Rysev V.V.
  • Serazetdinov F.Sh.
  • Serazitdinov R.Sh.
  • Jakunin I.A.
RU2225567C1

RU 2 724 847 C1

Authors

Voronchikhin Sergej Gennadevich

Tuev Mikhail Alekseevich

Dates

2020-06-25Published

2019-12-23Filed