WO2020258180A1 - 血压监护系统及其血压监护装置 - Google Patents
血压监护系统及其血压监护装置 Download PDFInfo
- Publication number
- WO2020258180A1 WO2020258180A1 PCT/CN2019/093348 CN2019093348W WO2020258180A1 WO 2020258180 A1 WO2020258180 A1 WO 2020258180A1 CN 2019093348 W CN2019093348 W CN 2019093348W WO 2020258180 A1 WO2020258180 A1 WO 2020258180A1
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- WIPO (PCT)
- Prior art keywords
- blood pressure
- pressure monitoring
- monitoring device
- fixed arm
- hook
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/02—Detecting, measuring or recording for evaluating the cardiovascular system, e.g. pulse, heart rate, blood pressure or blood flow
- A61B5/021—Measuring pressure in heart or blood vessels
Definitions
- the invention relates to the technical field of medical equipment, in particular to a blood pressure monitoring system and a blood pressure monitoring device thereof.
- vital sign monitoring devices are widely used, such as blood pressure monitoring devices (BP).
- BP blood pressure monitoring devices
- portable monitoring devices such as wristband monitoring devices
- the blood pressure monitoring device has multiple components such as a pump, a collection board, a main board, a display screen, and a housing.
- a blood pressure monitoring device composed of multiple components needs to be carried on the human body.
- the miniaturized layout of the blood pressure monitoring device is one of the important factors that determine whether it is easy to carry.
- the present invention provides a blood pressure monitoring device to facilitate a miniaturized layout.
- the invention also provides a blood pressure monitoring system.
- a blood pressure monitoring device including:
- a front shell assembly having a front shell and a display screen, and the front shell includes a frame part and a solid part that fix the display screen;
- a rear shell, a gas path accommodating cavity for accommodating the gas path component is formed between the rear shell and the solid part of the front shell; between the rear shell and the frame part of the front shell and the display screen Forming a main control board accommodating cavity for accommodating the main control board;
- the battery is arranged opposite to the back of the display screen.
- the present invention also provides a blood pressure monitoring system, including a parameter measurement cable and a blood pressure monitoring device, the blood pressure monitoring device being the blood pressure monitoring device according to any one of the above.
- a gas path containing cavity for accommodating gas path components is formed between the rear shell and the solid part of the front shell; the rear shell and the frame part of the front shell and A main control board accommodating cavity for accommodating the main control board is formed between the display screens, and the battery is arranged opposite to the back of the display screen.
- the thickness of the blood pressure monitoring device meets the thickness of the gas circuit component and the thickness of the superimposed component formed by the main control board, display screen and battery, and the length of the blood pressure monitoring device meets the length of one side of the gas circuit component and the main control board and display screen.
- the sum of the length of one side of the superimposed component formed by the battery and the battery (according to the actual installation position of the component).
- the width of the blood pressure monitoring device meets the length of the other side of the air circuit component and the superimposition formed by the main control board, display screen and battery The length of the other side of the component is sufficient.
- the present invention also provides a blood pressure monitoring system, including a blood pressure monitoring device, and the blood pressure monitoring device is any blood pressure monitoring device as described above. Since the above-mentioned blood pressure monitoring device has the above-mentioned technical effects, the blood pressure monitoring system with the above-mentioned blood pressure monitoring device should also have the same technical effects, which will not be repeated here.
- FIG. 1 is a schematic diagram of a three-dimensional structure of a blood pressure monitoring device provided by an embodiment of the present invention
- FIG. 2 is a schematic diagram of the explosive structure of a blood pressure monitoring device provided by an embodiment of the present invention
- FIG. 3 is a schematic diagram of the front view structure of a blood pressure monitoring device provided by an embodiment of the present invention.
- Fig. 4 is a schematic view of the first sectional structure along the A-A plane in Fig. 3;
- Figure 5 is a partial enlarged schematic diagram of the A1 part in Figure 4.
- FIG. 6 is a schematic structural diagram of an elastic sheet provided by an embodiment of the present invention.
- FIG. 7 is a schematic diagram of a partial enlarged structure of part A2 in FIG. 4;
- Fig. 8 is a schematic diagram of the second cut-away structure along the A-A plane in Fig. 3;
- Fig. 9 is a partial enlarged schematic diagram of the structure of part A3 in Fig. 8;
- Fig. 10 is a schematic view of the third sectional structure along the A-A plane in Fig. 3;
- Figure 11 is a partial enlarged schematic view of the A4 part of Figure 10;
- Fig. 12 is a schematic view of the sectional structure along the B-B plane in Fig. 3;
- Fig. 13 is a partial enlarged schematic diagram of the structure of part B1 in Fig. 12;
- Figure 14 is a schematic diagram of a partial enlarged structure of part B2 in Figure 12;
- FIG. 15 is a schematic diagram of a first structure of a front case provided by an embodiment of the present invention.
- 16 is a schematic diagram of a second structure of the front case provided by an embodiment of the present invention.
- 17 is a schematic diagram of the back structure of the front case provided by an embodiment of the present invention.
- Figure 18 is a schematic sectional view of the structure along the C-C plane in Figure 17;
- FIG. 19 is a schematic structural diagram of an NFC antenna provided by an embodiment of the present invention.
- FIG. 20 is a schematic diagram of the internal structure of a blood pressure monitoring device provided by an embodiment of the present invention.
- Figure 21 is a partial enlarged schematic diagram of part D in Figure 20;
- Fig. 22 is a schematic sectional view of the structure taken along the E-E plane in Fig. 20;
- Fig. 23 is a partial enlarged schematic diagram of part F in Fig. 22;
- FIG. 24 is a schematic diagram of a first structure of an antenna support structure provided by an embodiment of the present invention.
- 25 is a schematic diagram of a second structure of an antenna support structure provided by an embodiment of the present invention.
- FIG. 26 is a first structural diagram of a gas circuit assembly provided by an embodiment of the present invention.
- FIG. 27 is a schematic diagram of a second structure of a gas circuit assembly provided by an embodiment of the present invention.
- Figure 28 is a schematic side view of the structure of the air circuit assembly provided by an embodiment of the present invention.
- Figure 29 is a schematic sectional view of the structure taken along the F-F plane in Figure 28;
- FIG. 30 is a schematic diagram of a first three-dimensional structure of a gas path provided by an embodiment of the invention.
- FIG. 31 is a schematic diagram of a second three-dimensional structure of a gas path element provided by an embodiment of the present invention.
- FIG. 32 is a schematic diagram of a first structure of a gas path provided by an embodiment of the present invention.
- Figure 33 is a schematic sectional view of the structure taken along the G-G plane in Figure 32;
- Figure 34 is a schematic structural diagram of a gas nozzle provided by an embodiment of the present invention.
- FIG. 35 is a schematic diagram of a second structure of a gas path provided by an embodiment of the present invention.
- Figure 36 is a schematic sectional view of the structure taken along the H-H plane in Figure 35;
- Fig. 37 is a schematic sectional view of the structure taken along the I-I plane in Fig. 35;
- FIG. 38 is a first structural diagram of a mounting frame provided by an embodiment of the present invention.
- 39 is a schematic diagram of a second structure of the mounting frame provided by the embodiment of the present invention.
- FIG. 40 is a schematic flowchart of a method for connecting a blood pressure monitoring device according to an embodiment of the present invention.
- FIG. 41 is a schematic diagram of a first connection structure between a blood pressure monitoring device and a battery according to an embodiment of the present invention.
- FIG. 42 is a schematic diagram of the first connection structure of a blood pressure monitoring device and an upgrade device provided by an embodiment of the present invention.
- FIG. 43 is a schematic diagram of a second connection structure between a blood pressure monitoring device and a battery according to an embodiment of the present invention.
- FIG. 44 is a schematic diagram of a second connection structure between a blood pressure monitoring device and an upgrade device provided by an embodiment of the present invention.
- the invention discloses a blood pressure monitoring device to facilitate a miniaturized layout.
- the invention also provides a blood pressure monitoring system.
- the embodiment of the present invention provides a blood pressure monitoring device, which includes a front housing assembly 1, a gas circuit assembly 2, a main control board 3, a rear housing 4, and a battery 5.
- the front housing assembly 1 has a front housing 12 and a display screen 11.
- 12 includes a frame part and a solid part for fixing the display screen 11; a gas path accommodating cavity for accommodating the gas path assembly 2 is formed between the solid part of the rear case 4 and the front case 12; the frame part of the rear case 4 and the front case 12 and A main control board accommodating cavity for accommodating the main control board 3 is formed between the display screens 11; the battery 5 is arranged opposite to the back of the display screen 11.
- a gas path accommodating cavity for accommodating the gas path assembly 2 is formed between the rear shell 4 and the solid part of the front shell 12; the rear shell 4 and the frame portion of the front shell 12 and the display screen 11
- a main control board 3 accommodating cavity for accommodating the main control board 3 is formed between, and the battery 5 is arranged opposite to the back of the display screen 11.
- the thickness dimension of the blood pressure monitoring device meets the thickness of the air circuit component 2 and the thickness of the superimposed component formed by the main control board 3, the display screen 11 and the battery 5.
- the length direction of the blood pressure monitoring device meets the length of one side of the air circuit component 2 and the main The sum of the length of one side of the superimposed component formed by the control board 3, the display 11 and the battery 5 (according to the actual installation position of the component), the width of the blood pressure monitoring device meets the length of the other side of the air circuit component 2 and the main control The length of the other side of the stacking assembly formed by the board 3, the display screen 11 and the battery 5 is sufficient.
- the gas path assembly 2 includes: a pump body 201; a valve body; a collection plate 205 with a sensor on the collection plate 205; a gas path component 202, which includes a gas-containing cavity
- the main body of the gas path and a plurality of gas nozzles communicating with the air chamber, the plurality of gas nozzles include a pump gas nozzle 2021 connected to the pump body 201, a connector gas nozzle 2022 connected to a connector of a blood pressure monitoring device, and a valve The valve air nozzle connected to the body and the sensor air nozzle connected to the sensor on the collection board 205.
- the pump body 201, the connector of the device, the valve body, and the sensor on the collecting plate 205 are all connected through the gas path to form an integrated gas path.
- the gas capacity assembly is effectively simplified.
- the structure further reduces the overall structure of the air-capacity assembly, and facilitates the miniaturization of the blood pressure detection device.
- valve air nozzle includes a first valve air nozzle 2023 connected with the first valve body 203 and a second valve air nozzle 2024 connected with the second valve body 204.
- the sensor gas nozzle includes a main sensor gas nozzle 2025 for connecting with the main sensor on the collection board 205 and a secondary sensor gas nozzle 2026 for connecting with the secondary sensor on the collection board 205.
- the orientation of the main sensor air nozzle 2025 and the secondary sensor air nozzle 2026 are the same. Through the above setting, the installation of the primary sensor and the secondary sensor is effectively facilitated.
- the orientation of the pump air nozzle 2021 and the valve air nozzle are the same or opposite.
- the axes of the pumping gas 100 and the valve body are parallel to each other, so that the pump body 201 and the valve body are laid flat and connected to the gas path member.
- the structure of the air containing assembly is effectively reduced.
- the orientation of the sensor air nozzle is perpendicular to the orientation of the pump air nozzle 2021; the orientation of the connector air nozzle 2022 is perpendicular to the orientation of the sensor air nozzle and the pump air nozzle 2021.
- the air circuit assembly 2 further includes a mounting frame 206; the mounting frame 206 has mounting positions for fixing the pump body 201, the valve body, the collecting plate 205 and the air circuit component 202.
- the installation frame 206 is provided to facilitate the assembly of the complete air circuit assembly 2.
- the mounting frame 206 includes a mounting frame bottom plate 2061 and a plurality of fixing arms arranged at an angle with the mounting frame bottom plate 2061 by bending.
- the above-mentioned mounting frame 206 can be formed by bending a sheet metal part or other bendable plates, which facilitates the processing of the mounting frame 206.
- the plurality of fixed arms include a fixed connecting arm fixedly connected with the rear shell 4 or the front shell 12; the fixed connecting arm has a mounting portion.
- the fixing of the mounting frame 206 and the rear shell 4 or the front shell 12 is completed by the installation part, and then the fixing of the air circuit assembly 2 in the housing of the blood pressure monitoring device is completed.
- the mounting part can be a mounting hole or a buckle.
- the fixed arm and the mounting frame bottom plate 2061 are perpendicular to each other. In order to ensure that the fixed arm and the mounting frame bottom plate 2061 form a structurally stable installation position, the installation stability of the pump body 201, the valve body, the collection plate 205, and the gas path member 202 is improved.
- the plurality of fixed arms include: a second fixed arm 2062, a third fixed arm 2063, a fifth fixed arm 2065, and a sixth fixed arm 2066 arranged on the edge of the mounting frame bottom plate 2061;
- the arm 2067 and the bottom plate 2061 of the mounting frame enclose the pump body fixing groove for fixing the pump body 201;
- the fourth fixed arm 2064, the third fixed arm 2063, the first fixed arm 2069 and the seventh fixed arm 2067 enclose the fixed gas path 202 Airway fixing groove;
- eighth fixed arm 2068, first fixed arm 2069, third fixed arm 2063, and second fixed arm 2062 enclose a valve body fixing groove for fixing the valve body;
- seventh fixed arm 2067 is away from the mounting frame bottom plate 2061
- the connection stability is further improved.
- the third fixed arm 2063 and the sixth fixed arm 2066 are fixed connecting arms fixedly connected to the rear shell 4 or the front shell 12. Mounting holes are provided on the two fixed arms.
- the third fixed arm 2063 is provided with a circular installation hole
- the sixth fixed arm 2066 is provided with a long installation hole (waist-shaped hole) to facilitate effective installation and fixation based on processing errors.
- the mounting frame 206 is a structure formed by bending a sheet metal part.
- the air nozzle is an elastic air nozzle. Through the above arrangement, the air tightness of the air-capacity component is effectively improved.
- the main body of the gas path has a mounting hole 20201 communicating with the air-containing cavity;
- the gas nozzle includes a connecting portion 20202 and an elastic connecting piece 20203 connected between the outer wall of the connecting portion 20202 and the inner wall of the mounting hole 20201.
- the cross section of the elastic connecting member 20203 is an arc structure recessed toward the inside of the air-containing cavity; the outer wall of the connecting portion 20202 is connected to one end of the arc structure, and the inner wall of the mounting hole 20201 is connected to the other end of the arc structure .
- the elastic connecting member 20203 is a ring structure, and the cross section of the elastic connecting member 20203 is a section taken along its radial direction.
- cross-section of the elastic connecting member 20203 it is also possible to set the cross-section of the elastic connecting member 20203 to be a plane or an undulating surface.
- the gas nozzle of the gas path component 202 and the gas path main body have an integrated structure.
- the gas path member 202 is preferably a rubber or plastic member, which can be integrally formed by injection molding.
- the main body of the gas path has an air containing cavity which is only connected to the gas nozzle, in order to facilitate processing, the main body of the gas path is a combined structure formed by connecting multiple main body parts.
- the gas path body includes three body parts connected accordingly; respectively is the first body part A provided with the pump air nozzle 2021, the first body part A is provided with the connector air nozzle 2022 and the sensor air nozzle.
- the second body part B is provided with the first body part C of the valve air nozzles (2023, 2024).
- first body part A and the first body part C can be an end cap structure, and the second body part B is a through structure.
- the contact surface between the rear shell 4 and the front shell 12 is a stepped surface.
- a waterproof pad is provided between the contact surface of the rear shell 4 and the front shell 12.
- the side wall of the battery 5 is provided with reinforcing ribs.
- the reinforcing rib and the portion of the side wall of the battery 5 where the reinforcing rib is not provided form a stepped surface; the rear case 4 has a stepped structure that matches the stepped surface.
- the blood pressure monitoring device provided by the embodiment of the present invention further includes an NFC antenna 7 and a connecting plate 8 installed on the inner wall of the physical part of the front shell 12; the NFC antenna 7 has a avoiding physical part The avoidance structure of the button opening. It can be understood that the NFC antenna 7 is connected to the connection board 8. In order to ensure that the buttons of the physical part do not interfere with the NFC antenna 7, the NFC antenna 7 has an avoiding structure to avoid the button opening of the physical part.
- the NFC antenna 7 is an "L" shaped antenna.
- the inner side of the "L"-shaped antenna forms an avoiding structure that avoids the button openings of the physical part. It can also be set to other structures, which will not be repeated here and are all within the scope of protection.
- an installation position for installing the battery 5 is provided on the outer wall of the rear shell 4. That is, the battery 5 is placed outside the housing of the blood pressure monitoring device.
- the shrapnel 32 By connecting the shrapnel 32 to the main control board 3, the shrapnel 32 passes through the escape hole on the back plate of the rear case 4, and is electrically connected to the battery 5 installed in the mounting structure outside the back plate.
- the mounting structure is a groove structure.
- the battery 5 is detachably installed on the installation position.
- the number of elastic pieces 32 are multiple and arranged in a straight line. It can be understood that there are also multiple electrical connection locations on the battery 5 and they correspond to the elastic pieces 32 one-to-one.
- the number of avoidance holes is multiple and corresponds to the elastic pieces 32 one to one.
- the avoiding hole is a strip hole, and a plurality of elastic pieces 32 can pass through the strip hole.
- a waterproof pad 12-4 capable of sealing the escape hole and the inner cavity of the rear shell 4 is further included; the waterproof pad 12-4 is disposed between the main control board 3 and the back plate of the rear shell 4.
- the waterproof pad 12-4 has a strip structure and is arranged on both sides of the escape hole; the two ends of the waterproof pad 12-4 are in sealed contact with the inner walls of the two side plates of the rear shell 4. That is, the waterproof pad 12-4 and the inner walls of the two side plates of the rear case 4 form a ring structure, and one end of the ring structure is the back plate of the rear case 4, and the part of the back plate with the escape hole is located in the ring structure.
- the other end of is the main control board part provided with the elastic sheet 32, therefore, the liquid flowing into the avoiding hole can only contact the main control board part in the middle of the ring structure, and cannot flow into the inner cavity of the rear shell 4.
- the waterproof pad 12-4 a ring structure, and the hollow part of the ring structure corresponds to the avoiding hole and the elastic piece 32, so that the elastic sheet 32 can pass through the hollow part and the avoiding hole of the waterproof pad 12-4 accordingly.
- the elastic sheet 32 includes an insertion section 321, a supporting section 322 and a conductive section 324.
- the insertion section 321 is inserted into the main control board 3;
- the support section 322 is connected to the insertion section 321 and is used to support the outer side of the main control board 3.
- the outer side of the main control board 3 faces the back of the main control board 3
- the conductive section 324 is connected to the support section 322 for conductive contact with the battery 5, and the conductive section 324 is a V-shaped plate.
- the insertion section 321 and the support section 322 are perpendicular to each other.
- the elastic piece 32 also includes a buffer section 323 connecting the conductive section 324 and the supporting section 322; the buffer section 323 is an arc-shaped plate, and the conductive section 324 and the supporting section 322 are respectively connected to the two ends of the arc-shaped plate. connection.
- the elastic piece 32 further includes a protective section 325 arranged at the free end of the conductive section 324; the protective section 325 is parallel to the main control board 32.
- One end of the conductive section 324 is connected to the supporting section 322, and the other end of the conductive section 324 is a free end.
- the shrapnel 32 is welded to the main control board 3. Through the above arrangement, the connection of the shrapnel 32 and the main control board 3 is facilitated.
- the blood pressure monitoring device further includes a fixing frame 6 detachably connected to the rear shell 41.
- the fixing frame 6 is used to fix the battery 5.
- the disassembly and assembly operations of the battery 5 are effectively facilitated.
- one part of the fixing frame 6 and the rear housing 4 has a buckle 61, and the other part has a groove 41 that matches with the buckle 61; the end of the fixing frame 6 away from the buckle 61 is detachable from the rear housing 4 connection. It can be understood that the end of the fixing frame 6 away from the buckle 61 can also be referred to as the end of the fixing frame 6 away from the slot 41.
- the fixing frame 6 includes: a fixing frame main body 60 provided with a sliding groove extending from one end to the other end of the fixing frame main body 60;
- the sliding buckle 63 in the groove has a hook 631 at one end of the sliding buckle 63 away from the buckle 61;
- an elastic resetting part 62 is arranged in the sliding groove, and one end of the elastic resetting part 62 is in contact with the other end of the sliding buckle 63,
- the other end of the elastic reset component 62 is in contact with the bottom surface of the chute;
- the rear shell 4 has a hook connection part connected to the hook 631, and the hook 631 is connected to the hook connection part in the reset state of the sliding buckle 63;
- the blood pressure monitoring device also It includes a driving part for driving the sliding buckle 63 to retract.
- the driving part is a pressing part 632 provided on the sliding buckle 63, the pressing part 632 is located outside the hook 631;
- the hook connecting part is a hook connecting arm 42 that extends between the pressing part 632 and the hook 631, and the hook connecting arm 42
- the side facing the hook 631 has a groove for mating connection; when the hook 631 and the hook connecting portion are in a connected state, there is a gap between the pressing portion 632 and the hook connecting arm 42; when the pressing portion 632 is in contact with the hook connecting arm 42, The hook 631 is disengaged from the groove of the hook connecting arm 42.
- the fixing frame 6 includes: a fixing frame main body 60 provided with a sliding groove extending from one end to the other end of the fixing frame main body 60;
- the sliding buckle 63 in the groove has a hook 631 at one end of the sliding buckle 63 away from the buckle 61;
- an elastic resetting part 62 is arranged in the sliding groove, and one end of the elastic resetting part 62 is in contact with the other end of the sliding buckle 63,
- the other end of the elastic reset component 62 is in contact with the bottom surface of the chute;
- the rear shell 4 has a hook connection part connected to the hook 631, and the hook 631 is connected to the hook connection part in the reset state of the sliding buckle 63;
- the blood pressure monitoring device also It includes a driving part for driving the sliding buckle 63 to retract.
- the hook connecting portion is a connecting through hole 43 located on the rear housing 4
- the driving portion is a button 44 movably disposed in the connecting through hole 43
- a reset button 44 is provided between the inner side of the button 44 and the rear housing 4.
- the other end of the fixing frame 6 has a U-shaped elastic buckle 601, and the free end of the U-shaped elastic buckle 601 has a pressing portion 602; the rear shell 4 has a connecting groove 42.
- the U-shaped elastic buckle 601 can enter and exit the connecting groove 42 when the pressing portion 602 of this embodiment is pressed, and the U-shaped elastic buckle 601 is fixed in the connecting groove 42 when the pressing portion 602 is released.
- a switch button structure 200 is provided on the side of the display screen 1 away from the gas circuit assembly 2; the rear shell 4 has a button installation hole for the switch button structure 200 to be installed.
- the antenna support structure 100 there is an antenna support structure 100 between the switch button structure 200 and the display screen 1; the antenna support structure 100 has a sticking portion 110 for sticking an antenna and a support portion 120 for supporting the switch button structure 200 ;
- the rear shell 4 has an antenna mounting groove 401 for accommodating the antenna support structure 100.
- the antenna supporting structure 100 includes a sticking part 110 and a supporting part 120.
- the sticking part 110 has a surface for sticking the antenna 500; the supporting part 120 is used to support the surface of the switch button structure 200, and the supporting part 120 and the sticking part 110 are an integral structure.
- the sticking part 110 of the sticking antenna 500 and the supporting part 120 supporting the switch button structure 200 form an integrated structure.
- the antenna 500 is pasted on the sticking part 110, and then the antenna supporting structure is integrally installed in the mounting groove 301 of the housing 300 so that the supporting part 120 supports the switch button structure 200.
- the two components (antenna 500 and support 120) are combined, and then installed in the installation groove 301 of the housing 300, which effectively reduces the number of components installed in the housing 300 and increases The volume of the parts is easy to install, effectively reducing the difficulty of installation.
- the antenna support structure further includes a connecting part 130 connected between the sticking part 110 and the supporting part 120; the surface width of the connecting part 130 is smaller than the surface width of the sticking part 110.
- the antenna 500 has a sufficient sticking surface and the surface of the connecting portion 130 is a sticking surface for sticking the antenna 500. That is, the antenna 500 is pasted on the structure formed by the sticking part 110 and the connecting part 130.
- the front side of the connecting portion 130 is the sticking surface for sticking the antenna 500.
- the front side surface of the connecting portion 130 is a surface of the connecting portion 130 facing its installation direction.
- the antenna supporting structure has a matching structure for matching and positioning with the positioning structure in the mounting slot 401 of the housing 4.
- the matching structure of the antenna support structure is positioned in coordination with the positioning structure in the installation slot 401, which effectively prevents the antenna support structure from slipping out of the installation slot 401.
- the mating structure includes a first mating structure 111 and a second mating structure 121; the first mating structure 111 is used for mating and positioning with the first positioning structure in the mounting groove 401, and the first mating structure 111 is provided On the bottom surface of the sticking portion 110; the second matching structure 121 is used for cooperating and positioning with the second positioning structure in the mounting groove 401, and the second matching structure 121 is disposed on the surface of the supporting portion 120.
- the matching structure is a groove structure. Therefore, the positioning structure in the mounting groove 401 is a convex structure. By matching the positioning structure in the mounting slot 401 with the matching structure, the contact surface between the mounting slot 401 and the antenna support structure is effectively increased, and the protrusion structure is clamped by the groove structure to prevent the antenna support structure from being separated from the mounting slot 401 Slippage.
- the antenna support structure has a sliding guide structure for cooperating with the limit guide structure in the installation slot 401 of the housing 4.
- the sliding guide structure cooperates with the limit guide structure in the installation slot 401 to guide the installation of the sliding guide structure to the installation slot 401, which effectively improves the accuracy of the installation position of the antenna support structure.
- the sliding guide structure includes a first sliding guide structure 112 and a second sliding guide structure 122; the first sliding guide structure 112 is used to interact with the first limiting guide structure in the mounting groove 401 In cooperation with sliding, the first sliding guide structure 112 is provided on the bottom surface of the sticking part 110; the second sliding guide structure 122 is used to cooperate with the second limiting guide structure in the mounting groove 401 to slide, and the second sliding guide structure 122 is provided on the support part The underside of 120.
- the surface of the antenna support structure and its bottom surface are inclined to each other; the distance between the surface and the bottom surface decreases in the direction approaching the front side of the antenna support structure; the front side of the antenna support structure It is the side of the antenna support structure facing its installation direction.
- This embodiment includes an antenna 500, a switch button structure 200, and a housing 4. It also includes any antenna support structure 100 as described above; the antenna support structure 100 is disposed in the mounting slot 401 of the housing 4, and the antenna support structure 100 The sticking part 110 sticks the antenna 500, and the supporting part 120 supports the switch button structure 200. Since the above-mentioned antenna support structure has the above-mentioned technical effects, the vital signs monitoring device with the above-mentioned antenna support structure should also have the same technical effects, which will not be repeated here.
- a key gasket 400 is installed in the mounting hole on the housing 4 corresponding to the switch key structure 200, and the switch key structure 200 is located on the side of the key gasket 400 facing the inside of the housing 4
- one of the front shell 12 and the rear shell 4 is provided with a convex structure for pressing the main control board 3 to the other shell.
- the main control board 3 is located between the rear shell 4 and the front shell 12.
- the protruding structure on one housing presses the main housing against the other during the process of fixing the rear housing 4 and the front housing 12 to each other.
- the control board 3 is fixed between the rear shell 4 and the front shell 12 by pressing force. Compared with the prior art, the operation of fixing the main control board 3 with screws is avoided, thereby avoiding the damage of the board.
- the raised structure and the housing provided with the raised structure are an integral structure. Through the above settings, the number of parts is effectively reduced.
- the protruding structure is located on the side of the front shell 12 facing the main control board 3. It is also possible to arrange the protruding structure on the side of the rear shell 4 facing the main control board 3.
- the raised structure is located on the inner frame of the front shell 12.
- the protruding structure can be located between the front shell 12 and the rear shell 4 as a whole, avoiding interference with external components.
- the inner frame of the front case 1 is where the screen is installed.
- the protruding structure is a peripheral pressing structure pressed along the peripheral edge of the main control board 3.
- the convex structure is pressed along the circumferential edge of the front shell 12, which ensures the pressing operation of the main control board 3, and also facilitates the contact between the convex structure and the edge of the main control board 3, and avoids the convex structure and the main control board. 3.
- the intermediate components contact.
- the peripheral pressing structure includes a plurality of protrusions distributed along the circumference of the main control board 3.
- the number of bumps is four; they are respectively the first bump 124 that presses the upper edge of the main control board 3, the second bump 123 that presses the side edge of the main control board 3, and the press The third bump 122 tightly pressing the lower edge of the main control board 3 and the fourth bump 124 pressing the other side edge of the main control board 3.
- the number of bumps can also be set to other numbers.
- the peripheral pressing structure is a ring frame; the ring frame presses the peripheral edge of the main control board 3.
- the pressing surface of the protruding structure has an escape groove 1221; the escape groove 1221 can accommodate the convex portion 31 on the pressing surface of the main control board 3.
- the convex portion 31 may be a component or a connection structure on the main control board 3.
- the embodiment of the present invention also provides a blood pressure monitoring system, including a parameter measuring cable and a blood pressure monitoring device, the blood pressure monitoring device being any blood pressure monitoring device as described above. Since the above-mentioned blood pressure monitoring device has the above-mentioned technical effects, the blood pressure monitoring system with the above-mentioned blood pressure monitoring device should also have the same technical effects, which will not be repeated here.
- an embodiment of the present invention provides a method for connecting a blood pressure monitoring device, including:
- S1 The multifunctional interface of the blood pressure monitoring device is connected to external equipment
- the connection method of the blood pressure monitoring device provided by the embodiment of the present invention is provided with a multi-function interface unit, which determines the type of the external device and performs corresponding signal transmission according to the type of the external device. This effectively avoids setting up multiple interfaces to connect to their corresponding external devices. On the basis of satisfying the connection between the blood pressure monitoring device and the external equipment, the number of interfaces is effectively reduced.
- the blood pressure monitoring device and multiple external devices can be completed only through the multi-function interface.
- the connection of the equipment avoids the setting of multiple connectors or cables, which is convenient for maintenance and identification.
- the interface occupies the setting space of the blood pressure monitoring device to facilitate the miniaturization of the blood pressure monitoring device, which is especially suitable for portable medical blood pressure monitoring devices. Of course, it can also be applied to other types of blood pressure monitoring devices.
- common external devices are the battery 5 and the upgrade device a30.
- both the battery 5 and the upgrade equipment a30 can transmit power signals (power supply) and communication signals to the blood pressure monitoring device. Therefore, S2 determines the type of external equipment, the external equipment is a battery or upgrade equipment; S3 according to the type of external equipment in the transmission of corresponding signals, the corresponding signals include communication signals and power signals. That is, in the transmission of the corresponding signal according to the type of the external device, the corresponding signal includes the communication signal and the power signal.
- the communication signal is upgrading information; the power signal a31 of the upgrading equipment a30 realizes power supply to the blood pressure monitoring device a10.
- the communication signal is information such as the power of the battery 5; the battery 5 supplies power to the blood pressure monitoring device a10 through the power signal a21.
- the multifunctional interface a11 is the elastic piece 32 provided on the main control board 3.
- the elastic piece 32 on the main control board 3 has a needle-like structure.
- S2 determines the type of external equipment, the equipment signal a23 of the external equipment obtained by the blood pressure monitoring device determines the type of the external equipment; the equipment signal a23 includes low-level electrical signals and high-level electrical signals; when the external equipment acquired by the blood pressure monitoring device When the device signal a23 of is a low-level electrical signal, the external device is determined to be a battery; when the device signal a23 of the external device acquired by the blood pressure monitoring device is a high-level electrical signal, the external device is determined to be an upgraded device.
- the determination of the type of the external device can be completed through the acquired device signal a23.
- the multifunctional interface a11 of the blood pressure monitoring device a10 is connected to the battery 5.
- the battery 5 supplies power to the blood pressure monitoring device a10 through the power signal a21, and the device signal a23 of the battery 5 is set to Low level.
- the blood pressure monitoring device a10 is the master device, communicates with the battery 5 through the communication signal a22 of the multi-function interface a11, and reads information such as the power of the battery 5 as the slave device . And the read information is analyzed and processed by the processing calculation unit a12, and then displayed on the display unit a13 or sent to the central station or bedside monitor.
- the display portion a13 is the above-mentioned display screen 11.
- the blood pressure monitoring device a10 needs to be upgraded in software, connect the upgrade device a30 to the multifunctional interface a11 of the blood pressure monitoring device a10, and the power signal a31 of the upgrade device a30 realizes power supply to the blood pressure monitoring device a10.
- the device signal a33 is set to a high level.
- the upgrade device a30 is the main device to upgrade the software of the blood pressure monitoring device a10.
- the communication signal a32 of the multifunctional interface a11 is connected to the upgrade device a30, and is used to transmit upgrade information.
- the measuring part a14 for measuring the parameters of human vital signs may also be provided separately from the blood pressure monitoring device a10, and the measuring part a14 is connected to the blood pressure monitoring device a10 through the multifunctional interface part a11.
- the external device is the measurement unit a14; in S3, according to the type of the external device, the corresponding signal is transmitted, and the corresponding signal includes the communication signal and the measurement parameter signal.
- the communication signal may be a specific type signal of the measuring part a14, and the measurement parameter signal is an information signal detected by the measuring part a14 after measuring the human body. That is, in the transmission of the corresponding signal according to the type of the external device, the corresponding signal includes the communication signal and the measurement parameter signal.
- the communication signal is the upgrade information
- the measurement parameter signal is an external measuring part a14 for measuring human vital signs parameters and is transmitted to the blood pressure monitoring device a10 Information. That is, the measurement unit a14 is connected to the multifunctional interface a11 of the blood pressure monitoring device a10.
- the communication protocol includes the type information of the external device. Therefore, the external device type can be determined in other ways.
- the communication protocol of the external device obtained by the blood pressure monitoring device a10 is used to determine the type of the external device. That is, when different external devices are connected to the blood pressure monitoring device a10, the different external devices can be distinguished and identified through the communication protocol.
- the blood pressure monitoring device a10 serves as the main communication device to communicate with the external connection device, and the communication protocol is performed in accordance with the agreed format, which contains the type information of the external device.
- the blood pressure monitoring device 10 performs different operations according to different acquired equipment types.
- the external device type information is obtained through the communication protocol in the obtained communication signal a22.
- the type of the recognized external device is battery 5
- the battery power information is read and displayed on the display part; the multifunctional interface a11 of the blood pressure monitoring device a10 is connected to the battery 5, and the battery 5 communicates with the blood pressure monitoring device a10 through the power signal a21 powered by.
- the external device type information is obtained through the communication protocol in the acquired communication signal a22.
- the upgrade device a30 device the upgrade state is performed and data is received to complete the device upgrade.
- the upgrading equipment a30 is connected with the multifunctional interface a11 of the blood pressure monitoring device a10, and the power signal a31 of the upgrading equipment a30 realizes power supply to the blood pressure monitoring device a10.
- the type of blood pressure monitoring device can also be manually determined.
- the type of the external device in determining the type of the external device, the type of the external device is determined through the input information obtained by the blood pressure monitoring device. Among them, the input information is manually input information. Manually input the type of external equipment, which can be to set the corresponding button or control switch on the blood pressure monitoring device. After manually inputting the type of the external device into the blood pressure monitoring device, the multifunctional interface a11 of the blood pressure monitoring device a10 can transmit corresponding signals according to the type of the external device.
- the embodiment of the present invention also provides a blood pressure monitoring device, which includes a processing calculation unit a12 and a multifunctional interface unit a11 for connecting with external equipment; the multifunctional interface unit a11 is connected with the processing calculation unit a12; and the multifunctional interface unit a11 It has a detection unit that can be used to detect the type of external equipment and a transmission unit that can perform signal transmission.
- the blood pressure monitoring device provided by the embodiment of the present invention is provided with a multifunctional interface part a11, which is connected to the processing calculation part a12, and the multifunctional interface part a11 includes a detection part and a transmission part.
- the processing calculation unit a12 can detect the type of the external device through the detection unit, and switch its state so that the external device is connected to the blood pressure monitoring device through the transmission unit and performs signal transmission. Through the above settings, it is effectively avoided that multiple interfaces are connected to their corresponding external devices. On the basis of satisfying the connection between the blood pressure monitoring device and the external equipment, the number of interfaces is effectively reduced, and the blood pressure monitoring device can be completed only through the multifunctional interface.
- connection with multiple external devices avoids the setting of multiple connectors or cables, which is convenient for maintenance and identification. Moreover, by reducing the number of interfaces, the interface occupies the setting space of the blood pressure monitoring device to facilitate the miniaturization of the blood pressure monitoring device, which is especially suitable for portable medical blood pressure monitoring devices. Of course, it can also be applied to other types of blood pressure monitoring devices.
- the detection unit is a device connection unit that can be used to detect the device signal of the external device; when the blood pressure monitoring device detects that the device signal of the external device is a low-level electrical signal through the detection unit, the external device is determined to be a battery ; When the blood pressure monitoring device detects that the device signal of the external device is a high-level electrical signal through the detection unit, the external device is determined to be an upgraded device.
- the transmission unit in the multifunctional interface unit 11 of the blood pressure monitoring device transmits signals with the external device.
- the external device is the battery 5, and the device signal a23 detected by the blood pressure monitoring device a10 is a low-level electrical signal.
- the external device is an upgraded device a30, and the device signal a33 detected by the blood pressure monitoring device a10 is a low-level electrical signal.
- the detection part and the transmission part are the same connection part on the multifunctional interface part; the blood pressure monitoring device detects the communication protocol of the external device through the connection part to determine the type of the external device. As shown in Figs. 19 and 20, there is no need to transmit the device signal a23 between the blood pressure monitoring device a10 and the external device.
- the communication protocol can be obtained only by the communication signal (a22, a32), and then the type of the external device can be determined.
- the multi-function interface part a11 is a multi-needle interface; at least one needle in the multi-needle interface is a detection part, and at least one needle is a transmission part.
- the multifunctional interface part a11 can also be set to other structures, which will not be repeated here and all are within the protection scope.
- the transmission part also includes a power signal transmission part that transmits the power signal a21; the power signal transmission part is connected to the components that need power supply in the blood pressure monitoring device.
- the external device may also be the measuring unit a14 for measuring human vital sign parameters, that is, the multifunctional interface a11 is used for connecting with the measuring unit a14 for measuring human vital sign parameters.
- the transmission unit also includes a measurement parameter transmission unit that transmits the measurement parameter signal; the measurement parameter transmission unit is connected to the measurement unit a14.
- the battery 5 can be used as a built-in component of the blood pressure monitoring device. It is also possible to provide multiple multifunctional interface parts a11 on the blood pressure monitoring device, which are respectively connected to one or more of the battery 5, the measurement part a14, and the upgrade equipment a30.
- the blood pressure monitoring device further includes a measuring part a14 for measuring human vital sign parameters; the measuring part a14 is connected to the processing and calculating part a12.
- the blood pressure monitoring device further includes a display part a13.
- the display part a13 can be connected to the processing calculation part a12 or other components in the blood pressure monitoring device for limiting corresponding information.
- the information detected or processed by the blood pressure monitoring device can be displayed on the display a13.
- the display a13 can be displayed. For example, when the external device is the battery 5, the battery 5 is connected to the blood pressure monitoring device through the multifunctional interface a11, and the display a13 can The corresponding battery level is displayed.
- the blood pressure monitoring device may not include the display unit a13.
- the blood pressure monitoring device also includes a wireless communication component, and the wireless communication component is used for a wireless communication component that communicates with an external display. Through the above settings, the information detected or processed by the blood pressure monitoring device can also be displayed on the external display for easy observation by the operator.
- the display a13 (and the external display) can be a display screen or a display lamp.
- the blood pressure monitoring device in this embodiment is a portable medical blood pressure monitoring device (blood pressure monitoring device).
- blood pressure monitoring device blood pressure monitoring device
- multi-function interface part a11 thereon, and it is connected to an external device through the multi-function interface part a11.
- two or more multifunctional interface parts can also be provided.
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Abstract
Description
Claims (31)
- 一种血压监护装置,其特征在于,包括:前壳组件(1),所述前壳组件(1)具有前壳(12)及显示屏(11),所述前壳(12)包括固定所述显示屏(11)的框体部分及实体部分;气路组件(2);主控板(3);后壳(4),所述后壳(4)与所述前壳(12)的实体部分之间形成容纳所述气路组件(2)的气路容纳腔;所述后壳(4)与所述前壳(12)的框体部分及所述显示屏(11)之间形成容纳所述主控板(3)的主控板容纳腔;电池(5),所述电池(5)与所述显示屏(11)的背面相对设置。
- 如权利要求1所述的血压监护装置,其特征在于,所述气路组件(2)包括:泵体(201);阀体;采集板(205),所述采集板(205)上具有传感器;气路件(202),所述气路件(202)包括具有一个气容腔体的气路主体及多个与所述气容腔体连通的气嘴,多个所述气嘴中包含与所述泵体(201)连接的泵气嘴(2021)、与所述血压监护装置的连接器连接的连接器气嘴(2022)、与所述阀体连接的阀气嘴及与所述采集板(205)上的所述传感器连接的传感器气嘴。
- 如权利要求2所述的血压监护装置,其特征在于,所述气路组件(2)还包括安装架(206);所述安装架(206)上具有用于固定所述泵体(201)、所述阀体、所述采集板(205)及所述气路件(202)的安装位。
- 如权利要求3所述的血压监护装置,其特征在于,所述安装架(206)包括安装架底板(2061)及通过弯折与所述安装架底板(2061)呈夹角设置的 多个固定臂。
- 如权利要求4所述的血压监护装置,其特征在于,多个所述固定臂中包括与所述后壳(4)或所述前壳(12)固定连接的固定连接臂;所述固定连接臂上具有安装部。
- 如权利要求4所述的血压监护装置,其特征在于,所述固定臂与所述安装架底板(2061)相互垂直。
- 如权利要求4所述的血压监护装置,其特征在于,多个所述固定臂包括:设置于所述安装架底板(2061)边缘的第二固定臂(2062)、第三固定臂(2063)、第五固定臂(2065)及第六固定臂(2066);设置于所述安装架底板(2061)中的第一固定臂(2069)、第四固定臂(2064)、第七固定臂(2067)及第八固定臂(2068);所述第四固定臂(2064)、所述第五固定臂(2065)、所述第六固定臂(2066)、所述第八固定臂(2068)、所述第七固定臂(2067)及所述安装架底板(2061)围呈固定所述泵体(201)的泵体固定槽;所述第四固定臂(2064)、所述第三固定臂(2063)、所述第一固定臂(2069)及所述第七固定臂(2067)围呈固定所述气路件(202)的气路件固定槽;所述第八固定臂(2068)、所述第一固定臂(2069)、所述第三固定臂(2063)及所述第二固定臂(2062)围呈固定所述阀体的阀体固定槽;所述第七固定臂(2067)远离所述安装架底板(2061)的一端具有固定所述采集板(205)的固定勾。
- 如权利要求7所述的血压监护装置,其特征在于,所述第二固定臂(2062)、所述第三固定臂(2063)、所述第五固定臂(2065)及所述第六固定臂(2066)中至少两个固定臂为与所述后壳(4)或所述前壳(12)固定连接的固定连接臂。
- 如权利要求4所述的血压监护装置,其特征在于,所述安装架(206)为钣金件通过弯折形成的结构。
- 如权利要求2所述的血压监护装置,其特征在于,所述气嘴为弹性气嘴。
- 如权利要求10所述的血压监护装置,其特征在于,所述气路主体上具有连通所述气容腔体的安装孔(20201);所述气嘴包括连接部(20202)及连接所述连接部(20202)的外壁与所述安装孔(20201)的内壁之间的弹性连接件(20203)。
- 如权利要求11所述的血压监护装置,其特征在于,所述弹性连接件(20203)的截面为向所述气容腔体内侧凹陷的弧形结构;所述连接部(20202)的外壁连接于所述弧形结构的一端,所述安装孔(20201)的内壁连接于所述弧形结构的另一端。
- 如权利要求2-10任一项所述的血压监护装置,其特征在于,所述气路件(202)的所述气嘴与所述气路主体为一体式结构。
- 如权利要求1所述的血压监护装置,其特征在于,所述后壳(4)与所述前壳(12)的接触面为阶梯面。
- 如权利要求1所述的血压监护装置,其特征在于,所述后壳(4)与所述前壳(12)的接触面之间设置有防水垫。
- 如权利要求1所述的血压监护装置,其特征在于,所述电池(5)的侧壁上具有加强筋。
- 如权利要求16所述的血压监护装置,其特征在于,所述加强筋与所述电池(5)的侧壁未设置加强筋的部分形成阶梯面;所述后壳(4)具有与所述阶梯面相配合的阶梯结构。
- 如权利要求1所述的血压监护装置,其特征在于,还包括安装于所述前壳(12)的实体部分内壁上的NFC天线(7)及与所述NFC天线(7)连接的连接板(8);所述NFC天线(7)具有避让所述实体部分的按键开孔的避让结构。
- 如权利要求18所述的血压监护装置,其特征在于,所述NFC天线(7)为“L”形天线。
- 如权利要求1所述的血压监护装置,其特征在于,所述后壳(4)的外壁上设置有用于安装所述电池(5)的安装位。
- 如权利要求20所述的血压监护装置,其特征在于,所述主控板(3)上且用于与所述电池(5)导电连接的弹片(32),所述弹片(32)的一端与所述主控板(3)上的电路连接,其另一端为自由端;所述后壳(4)上具有供所述弹片(32)穿过的避让孔。
- 如权利要求20所述的血压监护装置,其特征在于,所述电池(5)可拆卸地安装于所述安装位上。
- 如权利要求22所述的血压监护装置,其特征在于,还包括用于固定所述电池(5)且与所述后壳(11)可拆卸连接地固定架(6)。
- 如权利要求23所述的血压监护装置,其特征在于,所述固定架(6)及所述后壳(4)中的一个部件上具有卡扣(61),另一个部件上具有与所述卡扣(61)相配合的卡槽(41);所述固定架(6)远离所述卡扣(61)的一端与所述后壳(4)可拆卸连接。
- 如权利要求24所述的血压监护装置,其特征在于,所述固定架(6)包括:固定架主体(60),所述固定架主体(60)上设置有沿其一端到其另一端延伸的滑槽;滑动设置于所述滑槽中的滑动卡扣(63),所述滑动卡扣(63)远离所述卡扣(61)的一端具有挂钩(631);设置于所述滑槽中的弹性复位部件(62),所述弹性复位部件(62)的一端与所述滑动卡扣(63)的另一端相接触,所述弹性复位部件(62)的另一端与所述滑槽的槽底面相接触;所述后壳(4)上具有与所述挂钩(631)相连接的挂钩连接部,所述滑动卡扣(63)复位状态下所述挂钩(631)与所述挂钩连接部连接;所述血压监护装置还包括带动所述滑动卡扣(63)回缩的带动部。
- 如权利要求25所述的血压监护装置,其特征在于,所述带动部为设置于所述滑动卡扣(63)上的按压部(632),所述按压部(632)位于所述挂钩(631)的外侧;所述挂钩连接部为伸入所述按压部(632)与所述挂钩(631)之间的挂钩连接臂(42),所述挂钩连接臂(42)朝向所述挂钩(631)的一面具有与其配合连接的凹槽;在所述挂钩(631)与所述挂钩连接部出于连接状态时,所述按压部(632)与所述挂钩连接臂(42)之间具有间隙;所述按压部(632)与所述挂钩连接臂(42)接触时,所述挂钩(631)由所述挂钩连接臂(42)的凹槽中脱离;或,所述挂钩连接部为位于所述后壳(4)上的连接通孔(43),所述带动部为可移动地设置于所述连接通孔(43)内的按钮(44),所述按钮(44)的内侧面与所述后壳(4)之间具有复位所述按钮(44)的弹性部件(45);在所述挂钩(631)与所述连接通孔(43)出于连接状态时,所述按钮(44)处于复位状态;所述按钮(44)向所述弹性部件(45)按压时,所述挂钩(631)与所述连接通孔(43)分离。
- 如权利要求24所述的血压监护装置,其特征在于,所述固定架(6)的另一端具有U形弹性扣(601),所述U形弹性扣(601)的自由端具有按压部(602);所述后壳(4)上具有连接槽(42),在按压所述按压部(602)时所述U形弹性扣(601)能够进出所述连接槽(42),在放松所述按压部(602)时所述U形弹性扣(601)固定于所述连接槽(42)中。
- 如权利要求1所述的血压监护装置,其特征在于,所述显示屏(1)远离所述气路组件(2)的一侧设置有开关按键结构(200);所述后壳(4)上具有供所述开关按键结构(200)安装的按键安装孔。
- 如权利要求28所述的血压监护装置,其特征在于,所述开关按键结构(200)与所述显示屏(1)之间具有天线支撑结构(100);所述天线支撑结构(100)具有用于粘贴天线的粘贴部(110)及用于支撑所述开关按键结构(200)的支撑部(120);所述后壳(4)上具有用于容纳所述天线支撑结构(100)的天线安装槽(401)。
- 如权利要求1所述的血压监护装置,其特征在于,所述前壳(12)与所述后壳(4)中的一个壳体上设置有用于将所述主控板(3)向另一个壳体压紧的凸起结构。
- 一种血压监护系统,包括参数测量线缆及血压监护装置,其特征在于,所述血压监护装置为如权利要求1-30任一项所述的血压监护装置。
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| CN201990001276.8U CN216823432U (zh) | 2019-06-27 | 2019-06-27 | 血压监护系统及其血压监护装置 |
| PCT/CN2019/093348 WO2020258180A1 (zh) | 2019-06-27 | 2019-06-27 | 血压监护系统及其血压监护装置 |
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| PCT/CN2019/093348 WO2020258180A1 (zh) | 2019-06-27 | 2019-06-27 | 血压监护系统及其血压监护装置 |
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| WO2020258180A1 true WO2020258180A1 (zh) | 2020-12-30 |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114245626A (zh) * | 2021-12-23 | 2022-03-25 | 深圳市思肯三维科技发展有限公司 | 一种家用美容仪 |
| CN115105217A (zh) * | 2022-06-28 | 2022-09-27 | 惠州市源医科技有限公司 | 一种智能插件式母婴监护仪 |
| CN116327141A (zh) * | 2021-12-24 | 2023-06-27 | 深圳市理邦精密仪器股份有限公司 | 监护设备 |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2020258179A1 (zh) * | 2019-06-27 | 2020-12-30 | 深圳迈瑞生物医疗电子股份有限公司 | 穿戴式生理参数监测系统及其穿戴式生理参数监测装置 |
| CN112969410A (zh) * | 2019-06-27 | 2021-06-15 | 深圳迈瑞生物医疗电子股份有限公司 | 心电监护系统及其心电监护装置 |
| CN116889387B (zh) * | 2023-07-04 | 2024-04-12 | 东莞一测科技有限公司 | 移动电子血压计及组装方法 |
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| CN203138469U (zh) * | 2013-03-15 | 2013-08-21 | 北京东方泰华投资有限公司 | 一种便携式无线电子血压计 |
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| CN114245626A (zh) * | 2021-12-23 | 2022-03-25 | 深圳市思肯三维科技发展有限公司 | 一种家用美容仪 |
| CN114245626B (zh) * | 2021-12-23 | 2023-11-03 | 深圳市思肯三维科技发展有限公司 | 一种家用美容仪 |
| CN116327141A (zh) * | 2021-12-24 | 2023-06-27 | 深圳市理邦精密仪器股份有限公司 | 监护设备 |
| CN115105217A (zh) * | 2022-06-28 | 2022-09-27 | 惠州市源医科技有限公司 | 一种智能插件式母婴监护仪 |
| CN115105217B (zh) * | 2022-06-28 | 2023-03-10 | 惠州市源医科技有限公司 | 一种智能插件式母婴监护仪 |
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| CN216823432U (zh) | 2022-06-28 |
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