CN221180419U - Wireless blood oxygen saturation monitoring probe assembly - Google Patents

Wireless blood oxygen saturation monitoring probe assembly Download PDF

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Publication number
CN221180419U
CN221180419U CN202420221388.7U CN202420221388U CN221180419U CN 221180419 U CN221180419 U CN 221180419U CN 202420221388 U CN202420221388 U CN 202420221388U CN 221180419 U CN221180419 U CN 221180419U
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China
Prior art keywords
blood oxygen
oxygen saturation
receiver
bluetooth
wireless
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CN202420221388.7U
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Chinese (zh)
Inventor
何少珊
卢建芬
卢燕婷
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Dongguan Maternal And Child Health Hospital
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Dongguan Maternal And Child Health Hospital
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Abstract

The utility model discloses a wireless blood oxygen saturation monitoring probe assembly, wherein a finger-clamping blood oxygen saturation meter matched with the wireless blood oxygen saturation is provided with a host controller and a receiver interface; the wireless blood oxygen saturation monitoring probe assembly comprises a Bluetooth transmitter, a Bluetooth receiver, a power supply, a probe main body and a blood oxygen sensor; when in use, the Bluetooth receiver is connected with the receiver interface of the finger clip type blood oxygen saturation meter in an inserting way; the front end part of the probe main body is provided with a main shell, the front end part of the main shell is provided with a USB charging plug, and a Bluetooth transmitter and a power supply are respectively arranged in the main shell; the middle part of main casing upper surface has seted up the receiver slot that up opening and are used for cartridge bluetooth receiver. Through the structural design, the utility model has the advantages of novel structural design and convenient use, and can effectively reduce the pairing error problem.

Description

Wireless blood oxygen saturation monitoring probe assembly
Technical Field
The utility model relates to the technical field of medical appliances, in particular to a wireless blood oxygen saturation monitoring probe assembly.
Background
Blood oxygen saturation is the percentage of the volume of oxyhemoglobin bound by oxygen in blood to the volume of total bound hemoglobin, i.e., the concentration of blood oxygen in blood, which is an important physiological parameter of the respiratory cycle, and indirectly reflects whether or not the body is deficient in oxygen and the degree of hypoxia. In order to continuously monitor the blood oxygen saturation of a patient, the prior art is commonly realized by a finger-clip type blood oxygen saturation meter (also called a finger-clip type blood oxygen meter or a finger-clip type blood oxygen meter), and the finger-clip type blood oxygen saturation meter is simple and convenient to operate, is noninvasive and can continuously monitor.
The finger clip type blood oxygen saturation meter comprises a finger clip type monitoring probe and a blood oxygen meter host, wherein a blood oxygen sensor for detecting the oxygen content in blood is arranged in the finger clip type monitoring probe, and the blood oxygen meter host comprises a display screen, a host controller and the like.
The patent number is: ZL201920622415.0, patent name: the utility model discloses a Chinese patent of a Bluetooth wireless blood oxygen saturation monitoring probe, which discloses the following technical scheme: the Bluetooth wireless blood oxygen saturation monitoring probe comprises a fingerstall type photoelectric sensor, a wireless communication box is arranged on the fingerstall type photoelectric sensor, a Bluetooth transmitting module and a power module are arranged in the wireless communication box, a signal input end of the Bluetooth transmitting module is connected with a signal output end of the fingerstall type photoelectric sensor, and the power module supplies power for the fingerstall type photoelectric sensor and the Bluetooth transmitting module; the Bluetooth transmitting module is provided with a Bluetooth receiving module matched with the Bluetooth transmitting module, and the Bluetooth receiving module and the fingerstall type photoelectric sensor are of a split type. In the use process of the Bluetooth wireless blood oxygen saturation monitoring probe, the finger-stall type photoelectric sensor is sleeved on the finger end of a patient, so that the photoelectric sensor in the finger-stall type photoelectric sensor monitors blood oxygen saturation, monitoring signals are sent to the Bluetooth receiving module through the Bluetooth transmitting module, and the Bluetooth receiving module is inserted on the monitor host through the PS/2 plug (namely, the Bluetooth receiving module is electrically connected with the host controller of the blood oxygen monitor host), so that signal transmission is realized.
It should be noted that the bluetooth wireless blood oxygen saturation monitoring probe has the following defects, in particular: the Bluetooth transmitting module and the Bluetooth receiving module must be paired for use, so that the oximeter host and the patient wearing the probe can be accurately paired, and the oximeter host can accurately acquire the blood oxygen data of the corresponding patient; however, in such a use environment of a hospital, there are cases where a plurality of patients need to perform blood oxygen monitoring at the same time, which requires medical staff to accurately pair the wireless monitoring probe with the blood oxygen meter host, and since the wireless monitoring probe part does not have a structure for storing the bluetooth receiving module, the wireless monitoring probe and the wireless receiving module are easy to be confused, which brings a certain trouble to practical medical care work.
Disclosure of utility model
The utility model aims to provide a wireless blood oxygen saturation monitoring probe assembly aiming at the defects of the prior art, and the wireless blood oxygen saturation monitoring probe assembly has novel structural design and convenient use and can effectively reduce the pairing error problem.
In order to achieve the above object, the present utility model is achieved by the following technical scheme.
The wireless blood oxygen saturation monitoring probe component is matched with a finger-clip type blood oxygen saturation meter for use, and the finger-clip type blood oxygen saturation meter is provided with a host controller and a receiver interface electrically connected with the host controller;
The wireless blood oxygen saturation monitoring probe assembly comprises a Bluetooth transmitter, a Bluetooth receiver, a power supply, a probe main body used for sleeving and clamping fingers of a patient in use and a blood oxygen sensor arranged on the probe main body; when in use, the Bluetooth receiver is connected with the receiver interface of the finger clip type blood oxygen saturation meter in an inserting way;
the front end part of the probe main body is provided with a main shell, the front end part of the main shell is provided with a USB charging plug which protrudes forwards and is used for charging a power supply, and a Bluetooth transmitter and the power supply are respectively arranged in the main shell;
the middle part of main casing upper surface has seted up the receiver slot that up opening and are used for cartridge bluetooth receiver.
Wherein, the inside of main casing has installed the PCB circuit board, bluetooth transmitter the power the blood oxygen sensor USB charging plug respectively with PCB circuit board electric connection.
The Bluetooth receiver is a USB Bluetooth wireless receiver and is provided with a USB plug part;
the receiver interface of the finger-clip type blood oxygen saturation instrument is a USB interface;
When the wireless blood oxygen saturation monitoring probe component is matched with the finger-clip type blood oxygen saturation meter, the USB plug part of the Bluetooth receiver is inserted into the receiver interface of the finger-clip type blood oxygen saturation meter;
When the wireless blood oxygen saturation monitoring probe component is not used, the Bluetooth receiver is pulled out from the receiver interface of the finger-clip blood oxygen saturation meter, and the USB plug part of the Bluetooth receiver is embedded into the receiver slot of the main shell.
Wherein, the power supply is a rechargeable battery.
The probe body is an arc-shaped piece in an arc bending shape, and the arc-shaped piece is provided with a notch capable of enabling the arc-shaped piece to expand and contract adaptively;
The blood oxygen sensor is arranged on the inner wall of the arc-shaped piece, and the front end part of the arc-shaped piece is connected with the main shell.
The main shell comprises a bottom shell and a surface shell buckled at the upper end part of the bottom shell, the bottom shell and the arc-shaped piece are plastic pieces respectively, and the bottom shell and the arc-shaped piece are injection-molded into an integrated structure;
The inner space of the main shell is formed by the common enclosing of the bottom shell and the face shell.
Compared with the prior art, the utility model has the following beneficial effects:
1. When the wireless monitoring probe is not used, the Bluetooth receiver is combined with the probe part, and when the wireless monitoring probe is used, the Bluetooth receiver is separated from the probe part, so that the situation of mixing the wireless monitoring probe with the wireless receiving module when the wireless monitoring probe is used can be effectively avoided, and the convenience when the wireless monitoring probe is used is improved;
2. When the USB charging plug protrudes forwards from the front end part of the main shell, a medical staff can charge the power supply only by connecting the USB charging plug with a corresponding charger, so that the convenience of use is improved;
3. Therefore, the wireless blood oxygen saturation monitoring probe assembly has the advantages of novel structural design and convenience in use, and can effectively reduce the pairing error problem.
Drawings
The utility model will be further described with reference to the accompanying drawings, in which embodiments do not constitute any limitation of the utility model.
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic structural view of another view of the present utility model.
Fig. 3 is an exploded view of the present utility model.
Fig. 1 to 3 include:
1-a bluetooth receiver; 2-a probe body; 21-notch; 3-blood oxygen sensor; 4-a main housing; 41-a receiver slot; 42-bottom shell; 43-face shell; 5-USB charging plug.
Detailed Description
The utility model will be described with reference to specific embodiments.
In a first embodiment, as shown in fig. 1 to 3, a wireless blood oxygen saturation monitoring probe assembly is used in cooperation with a finger-clip type blood oxygen saturation meter (not shown), and the finger-clip type blood oxygen saturation meter is provided with a host controller (not shown) and a receiver interface (not shown) electrically connected with the host controller.
As shown in fig. 1 to 3, the wireless blood oxygen saturation monitoring probe assembly comprises a bluetooth transmitter (not shown), a bluetooth receiver 1, a power supply (not shown), a probe main body 2 for sleeving a finger of a patient in use, and a blood oxygen sensor 3 arranged on the probe main body 2; when in use, the Bluetooth receiver 1 is connected with the receiver interface of the finger clip type blood oxygen saturation meter in an inserting way.
Further, as shown in fig. 1 to 3, the front end portion of the probe body 2 is provided with a main housing 4, the front end portion of the main housing 4 is provided with a USB charging plug 5 protruding forward and used for charging a power supply, and a bluetooth transmitter and a power supply are respectively installed inside the main housing 4. It should be explained that the power source is a rechargeable battery.
Further, a receiver slot 41 which is opened upward is formed in the middle of the upper surface of the main housing 4 and is used for inserting the bluetooth receiver 1.
It should be noted that, the main housing 4 is internally provided with a PCB circuit board (not shown in the figure), and the bluetooth transmitter, the power supply, the blood oxygen sensor 3, and the USB charging plug 5 are electrically connected with the PCB circuit board respectively.
The wireless blood oxygen saturation monitoring probe assembly of the first embodiment will be described with reference to specific use procedures, specifically:
1. Before use, as shown in fig. 1 and 2, the bluetooth receiver 1 is inserted and fixed in the receiver slot 41 of the main housing 4, at this time, the bluetooth receiver 1 is combined with the probe part, and the bluetooth transmitter of the probe part is matched with the bluetooth receiver 1 inserted and fixed in the receiver slot 41;
2. In use, the Bluetooth receiver 1 is pulled out of the receiver slot 41 of the main shell 4, the Bluetooth receiver 1 is inserted into the receiver interface position of the finger-clip type blood oxygen saturation meter required to be used, the probe main body 2 is sleeved at the finger position of a patient and the blood oxygen sensor 3 is enabled to contact the finger of the patient, at the moment, the wireless blood oxygen saturation monitoring probe component adopting the blood oxygen data of the patient is accurately matched and corresponds to the finger-clip type blood oxygen saturation meter, in the process, the acquired blood oxygen data of the patient acquired by the blood oxygen sensor 3 is sent to the Bluetooth receiver 1 through the Bluetooth transmitter, the Bluetooth receiver 1 feeds back the received blood oxygen data of the patient to the host controller, and the finger-clip type blood oxygen saturation meter displays real-time blood oxygen information of the patient through the corresponding display screen so as to realize continuous long-time monitoring of the blood oxygen of the patient;
3. After the Bluetooth receiver 1 is used, after blood oxygen monitoring of a patient is completed, the Bluetooth receiver 1 is pulled out of a receiver interface of the finger-clip type blood oxygen saturation meter, and the removed Bluetooth receiver 1 is reinserted into a receiver slot 41 of the main shell 4, so that matching correspondence between the Bluetooth receiver 1 used later and a probe part is ensured.
The use process of the wireless blood oxygen saturation monitoring probe assembly according to the first embodiment can be known, when the wireless blood oxygen saturation monitoring probe assembly is not used, the bluetooth receiver 1 and the probe part are combined together, and when the wireless blood oxygen saturation monitoring probe assembly is used, the bluetooth receiver 1 and the probe part are separated, so that the situation that the wireless monitoring probe and the wireless receiving module are mixed when being used can be effectively avoided, and the convenience when the wireless blood oxygen saturation monitoring probe assembly is used is improved.
In addition, the first USB charging plug 5 of this embodiment protrudes forward from the front end of the main housing 4, and when in use, a medical staff only needs to connect the USB charging plug 5 with a corresponding charger to charge the power supply, so as to improve the convenience of use.
Therefore, it can be seen from the above-mentioned situation that, through the above-mentioned structural design, the wireless blood oxygen saturation monitoring probe assembly of the first embodiment has the advantages of novel structural design and convenient use, and can effectively reduce the pairing error problem.
As shown in fig. 1 to 3, the second embodiment is different from the first embodiment in that: the Bluetooth receiver 1 is a USB Bluetooth wireless receiver, and the Bluetooth receiver 1 is provided with a USB plug part; the receiver interface of the finger clip type blood oxygen saturation instrument is a USB interface.
It should be explained that, when the wireless blood oxygen saturation monitoring probe assembly is used in cooperation with the finger-clip type blood oxygen saturation meter, the USB plug of the bluetooth receiver 1 is inserted into the receiver interface of the finger-clip type blood oxygen saturation meter.
When the wireless oximetry probe assembly is not in use, the Bluetooth receiver 1 is pulled out from the receiver interface of the finger-clip type oximetry, and the USB plug of the Bluetooth receiver 1 is inserted into the receiver slot 41 of the main housing 4.
As shown in fig. 1 to 3, the third embodiment is different from the first embodiment in that: the probe body 2 is an arc-shaped member in a circular arc bending shape, and the arc-shaped member is provided with a notch 21 capable of expanding and contracting the arc-shaped member adaptively; the blood oxygen sensor 3 is mounted on the inner wall of the arc-shaped member, and the front end of the arc-shaped member is connected with the main housing 4.
It should be noted that, the probe body 2 of the third embodiment adopts an arc-shaped member structural design, and the arc-shaped member can realize adaptive expansion and contraction deformation through the notch 21, so that the probe body 2 of the third embodiment is suitable for wearing clips with fingers of different thicknesses, so as to improve the applicability of use.
As shown in fig. 1 to 3, the fourth embodiment is different from the first embodiment in that: the main shell 4 comprises a bottom shell 42 and a surface shell 43 buckled at the upper end part of the bottom shell 42, wherein the bottom shell 42 and the arc-shaped piece are plastic pieces respectively, and the bottom shell 42 and the arc-shaped piece are injection-molded into an integrated structure; the inner space of the main casing 4 is surrounded by the bottom casing 42 and the face casing 43.
The foregoing is merely exemplary of the present utility model, and those skilled in the art should not be considered as limiting the utility model, since modifications may be made in the specific embodiments and application scope of the utility model in light of the teachings of the present utility model.

Claims (6)

1. The wireless blood oxygen saturation monitoring probe component is matched with a finger-clip type blood oxygen saturation meter for use, and the finger-clip type blood oxygen saturation meter is provided with a host controller and a receiver interface electrically connected with the host controller;
The wireless blood oxygen saturation monitoring probe assembly comprises a Bluetooth transmitter, a Bluetooth receiver (1), a power supply, a probe main body (2) used for sleeving and clamping fingers of a patient in use and a blood oxygen sensor (3) arranged on the probe main body (2); when in use, the Bluetooth receiver (1) is in plug-in connection with a receiver interface of the finger clip type blood oxygen saturation meter;
The method is characterized in that: the front end part of the probe main body (2) is provided with a main shell (4), the front end part of the main shell (4) is provided with a USB charging plug (5) protruding forwards and used for charging a power supply, and a Bluetooth transmitter and the power supply are respectively arranged in the main shell (4);
The middle part of the upper surface of the main shell (4) is provided with a receiver slot (41) which is opened upwards and is used for inserting the Bluetooth receiver (1).
2. A wireless blood oxygen saturation monitoring probe assembly according to claim 1, wherein: the inside of main casing (4) has installed the PCB circuit board, bluetooth transmitter the power supply blood oxygen sensor (3) USB charging plug (5) respectively with PCB circuit board electric connection.
3. A wireless blood oxygen saturation monitoring probe assembly according to claim 1, wherein: the Bluetooth receiver (1) is a USB Bluetooth wireless receiver, and the Bluetooth receiver (1) is provided with a USB plug part;
the receiver interface of the finger-clip type blood oxygen saturation instrument is a USB interface;
when the wireless blood oxygen saturation monitoring probe component is matched with the finger-clip type blood oxygen saturation meter, the USB plug part of the Bluetooth receiver (1) is inserted into the receiver interface of the finger-clip type blood oxygen saturation meter;
When the wireless blood oxygen saturation monitoring probe component is not used, the Bluetooth receiver (1) is pulled out from a receiver interface of the finger-clip blood oxygen saturation meter, and a USB plug part of the Bluetooth receiver (1) is embedded into a receiver slot (41) of the main shell (4).
4. A wireless blood oxygen saturation monitoring probe assembly according to claim 1, wherein: the power supply is a rechargeable battery.
5. A wireless blood oxygen saturation monitoring probe assembly according to claim 1, wherein: the probe body (2) is an arc-shaped piece in an arc-shaped curved shape, and the arc-shaped piece is provided with a notch (21) which can enable the arc-shaped piece to expand and contract adaptively;
The blood oxygen sensor (3) is arranged on the inner wall of the arc-shaped piece, and the front end part of the arc-shaped piece is connected with the main shell (4).
6. A wireless blood oxygen saturation monitoring probe assembly according to claim 5, wherein: the main shell (4) comprises a bottom shell (42) and a surface shell (43) buckled at the upper end part of the bottom shell (42), the bottom shell (42) and the arc-shaped piece are plastic pieces respectively, and the bottom shell (42) and the arc-shaped piece are injection-molded into an integral structure;
the inner space of the main shell (4) is formed by the common enclosing of the bottom shell (42) and the surface shell (43).
CN202420221388.7U 2024-01-30 2024-01-30 Wireless blood oxygen saturation monitoring probe assembly Active CN221180419U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420221388.7U CN221180419U (en) 2024-01-30 2024-01-30 Wireless blood oxygen saturation monitoring probe assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420221388.7U CN221180419U (en) 2024-01-30 2024-01-30 Wireless blood oxygen saturation monitoring probe assembly

Publications (1)

Publication Number Publication Date
CN221180419U true CN221180419U (en) 2024-06-21

Family

ID=91516442

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420221388.7U Active CN221180419U (en) 2024-01-30 2024-01-30 Wireless blood oxygen saturation monitoring probe assembly

Country Status (1)

Country Link
CN (1) CN221180419U (en)

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