Anti-displacement step heart rate sensor
By designing the suction ring and anti-shift rack on the step heart rate sensor, the problem of sensor displacement during movement is solved, and the accuracy and real-time reflection of the heart rate test are achieved.
Patent Information
- Application Number
- CN202421855574.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-02
AI Technical Summary
Existing heart rate sensors are prone to shift during movement, resulting in inaccurate test results and inability to truly reflect heart rate changes.
An anti-displacement step heart rate sensor is designed. By installing a suction ring and a test ring core on the test ring for double suction, combining the connection structure between the anti-displacement rack and the step step, it ensures that the sensor does not shift during movement, and detects effective movement through the sensing area to improve the accuracy of the test.
Effectively fix the sensor, reduce displacement during exercise, improve the accuracy of heart rate test and data accuracy, and can reflect the heart rate changes during exercise in real time.
Smart Images

Figure CN223169731U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, and particularly relates to a step heart rate sensor for preventing displacement. Background Technique
[0002] With the progress of social conditions, in recent years, people's diet and quality of life have also been improved. While the improvement is achieved, people's exercise has not kept up, resulting in a doubling of the incidence of cardiovascular diseases in people. Therefore, the market demand for heart rate sensors is also increasing. In view of this, a step heart rate sensor for preventing displacement is specifically proposed.
[0003] The existing Chinese utility model patent with the reference grant publication number: CN208548349U discloses a heart rate sensor. The setting of this heart rate sensor is such that through a substrate and a housing fixed on the substrate, a photodiode, a semiconductor chip, and a signal processing chip are sequentially arranged in the housing from top to bottom. A groove is provided at a position of the bottom of the semiconductor chip opposite to the signal processing chip, and the signal processing chip is arranged in a cavity formed by the semiconductor chip and the substrate. The structure of the utility model is reasonable, avoiding the collapse or breakage of gold wires during the encapsulation process, reducing the defective rate of encapsulation, avoiding multiple die attach, and at the same time, in this design, no adhesive film is required to bond the devices, reducing the process complexity and effectively improving the working efficiency;
[0004] Although the above-mentioned heart rate sensor solves the problems of simple existing settings and can improve the working efficiency, in the actual detection process, if the device is not fixed, the test results will be deviated, resulting in large data fluctuations, and during the test, it is necessary to conduct tests according to different situations, especially considering the heart rate test during exercise, so as to more accurately reflect the real situation of the heart rate. Content of the Utility Model
[0005] The purpose of the utility model is to overcome the problems of anti-displacement and result accuracy during the test of the heart rate sensor in the prior art, and provides a step heart rate sensor for preventing displacement. This step heart rate sensor for preventing displacement solves the problem of preventing displacement during the test. To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A step heart rate sensor for preventing displacement, comprising:
[0007] A step position step, the step position step having a cuboid structure;
[0008] A test ring, the test ring being installed above and on the left side of the step position step, and the internal setting of the test ring can prevent inaccurate test results caused by movement during heart rate testing;
[0009] Anti-shift rack, the anti-shift rack is installed on the left outer side of the step, and the anti-shift rack and the step are arranged in a connected structure to prevent the step from moving.
[0010] Preferably, the step includes:
[0011] Step groove, the step groove is arranged above the surface of the step, and a sensor column is arranged behind the step, and an intermediate support cross block is installed in the middle of the sensor column;
[0012] Heart rate screen, the heart rate screen is arranged in the middle of the intermediate support cross block;
[0013] Wire-passing screw, the wire-passing screw is installed on the left and right sides of the sensor column, and a heart rate sensing wire is installed at one end of the wire-passing screw;
[0014] Ring storage hole, the ring storage hole is arranged on the upper front side of the sensor column;
[0015] Step internal hole, the step internal hole is installed on the left side of the step, and a baffle is arranged on the outside of the step internal hole.
[0016] Preferably, the step groove includes:
[0017] Intermediate groove, the intermediate groove is installed below the step groove, and an induction area is installed inside the intermediate groove, and a lower groove is arranged below the intermediate groove.
[0018] Preferably, the test ring includes:
[0019] Suction ring, the suction ring is arranged on the front surface of the test ring, and a test ring core is arranged around the inside of the test ring, and a ring sleeve is installed around the outside of the test ring core.
[0020] Preferably, the anti-shift rack includes:
[0021] Internal shift extension rack, the internal shift extension rack is arranged on the right side of the anti-shift rack, and hook blocks are arranged on the left and right sides in front of the internal shift extension rack, and a ground-gripping ring is arranged behind the hook blocks.
[0022] Preferably, the test ring core is fixed to the inside of the test ring through the ring sleeve, and the number of the test ring cores is 6, and the test ring and the wire-passing screw are electrically connected through the heart rate sensing wire.
[0023] Preferably, the width of the hook block is the same as that of the step internal hole, and the internal shift extension rack and the step are connected through the connection relationship between the hook block and the step internal hole.
[0024] Compared with the prior art, the beneficial effects of the present utility model are:
[0025] 1. This kind of anti-displacement step heart rate sensor fully adheres to the body part through the suction ring installed on the surface of the test ring and the test ring core installed inside the test ring for double suction, further strengthening the suction ability and preventing displacement during testing.
[0026] 2. This kind of anti-displacement step heart rate sensor inserts the internal displacement extension frame into the internal hole of the step to connect the anti-displacement frame and the step, realizing the integrated setting between the step and the sensor column. In addition, a grip ring is provided inside the left side of the anti-displacement frame, which can be in full contact with the ground to avoid the machine shaking when people move up and down on the step. Furthermore, through the setting of the induction area, the movement range can be controlled to maintain effective motion testing, thus promoting effective testing and fixing the machine, improving the accuracy of the results. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of the overall structure of a kind of anti-displacement step heart rate sensor in an embodiment of the present utility model;
[0028] Figure 2 It is a schematic diagram of the internal fixed structure of the anti-displacement frame of a kind of anti-displacement step heart rate sensor in an embodiment of the present utility model;
[0029] Figure 3 It is a schematic diagram of the internal structure of the test ring of a kind of anti-displacement step heart rate sensor in an embodiment of the present utility model;
[0030] Figure 4 It is a schematic diagram of the internal structure of the step position groove of a kind of anti-displacement step heart rate sensor in an embodiment of the present utility model.
[0031] 1. Step; 2. Step position groove; 201. Intermediate groove; 202. Induction area; 203. Lower position groove; 3. Sensor column; 4. Intermediate support cross block; 5. Heart rate screen; 6. Wired screw; 7. Heart rate sensing wire; 8. Test ring; 801. Suction ring; 802. Test ring core; 803. Ring sleeve; 9. Ring storage hole; 10. Anti-displacement frame; 1001. Internal displacement extension frame; 1002. Hook block; 1003. Grip ring; 11. Internal hole of the step; 12. Baffle. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0033] Combined with the attached Figures 1-4 , in this embodiment, a step heart rate sensor that prevents displacement, step position step 1, step position step 1 has a cuboid structure; test ring 8, test ring 8 is installed above the left side of step position step 1, and the internal setting of test ring 8 can prevent inaccurate test results caused by movement during heart rate testing; anti-displacement frame 10, anti-displacement frame 10 is installed on the outer left side of step position step 1, and anti-displacement frame 10 and step position step 1 are set in a connected structure, which can prevent step position step 1 from moving.
[0034] Specifically, because movement occurs during the testing process, the internal structure of test ring 8 is used to make full contact with the body part, which can prevent displacement during testing;
[0035] To facilitate those skilled in the art to fully understand the specific structure and principle of step position step 1, further explanation is made for step position step 1. In this embodiment, step position step 1 includes: step position groove 2, step position groove 2 is arranged above the surface of step position step 1, and a sensor column 3 is arranged behind step position step 1, and an intermediate support cross block 4 is installed in the middle of sensor column 3; heart rate screen 5, heart rate screen 5 is arranged in the middle of intermediate support cross block 4; wire-passing screw 6, wire-passing screw 6 is installed on the left and right sides of sensor column 3, and a heart rate sensing wire 7 is installed at one end of wire-passing screw 6; storage ring hole 9, storage ring hole 9 is arranged on the upper front side of sensor column 3; step internal hole 11, step internal hole 11 is installed on the left side of step position step 1, and a baffle 12 is arranged outside step internal hole 11.
[0036] In step position step 1, the heart rate beating data is transmitted to heart rate screen 5 through the connection relationship between heart rate sensing wire 7 and test ring 8, and the change of heart rate along with the intensity of the movement situation can be observed in real time;
[0037] To facilitate those skilled in the art to fully understand the specific structure and principle of step position groove 2, further explanation is made for step position groove 2. In this embodiment, step position groove 2 includes: intermediate groove 201, intermediate groove 201 is installed below step position groove 2, and an induction area 202 is installed inside intermediate groove 201, and a lower groove 203 is arranged below intermediate groove 201.
[0038] In the step position groove 2, by means of the induction area 202 arranged below the step position groove 2, it can be determined whether a person is stepping on the step position step 1, which can detect effective and ineffective movements and make the data more accurate.
[0039] To facilitate a person skilled in the art to fully understand the specific structure and principle of the test ring 8, further description of the test ring 8 is made. In this embodiment, the test ring 8 includes: a suction ring 801, which is arranged on the front surface of the test ring 8, and a test ring core 802 is arranged around the inside of the test ring 8, and a ring sleeve 803 is installed around the outer surface of the test ring core 802; the test ring core 802 is fixed to the inside of the test ring 8 through the ring sleeve 803, and the number of the test ring cores 802 is 6. The test ring 8 is electrically connected to the transmission screw 6 through the heart rate sensing wire 7.
[0040] In the test ring 8, the suction ring 801 surrounds the test ring 8 in a 360-degree form and coincides, and the double suction mode of the test ring core 802 prevents the occurrence of partial movement.
[0041] To facilitate a person skilled in the art to fully understand the specific structure and principle of the anti-displacement frame 10, further description of the anti-displacement frame 10 is made. In this embodiment, the anti-displacement frame 10 includes: an internal displacement extension frame 1001, which is arranged on the right side of the anti-displacement frame 10, and hook blocks 1002 are arranged on the left and right sides in front of the internal displacement extension frame 1001, and a ground-gripping ring 1003 is arranged behind the hook blocks 1002; the width of the hook blocks 1002 is the same as that of the internal hole of the step 11, and the internal displacement extension frame 1001 is connected to the step position step 1 through the connection relationship between the hook blocks 1002 and the internal hole of the step 11.
[0042] In the anti-displacement frame 10, the anti-displacement frame 10 is inserted into the internal hole of the step 11 to connect the step position step 1 and the sensor column 3. With the setting of the ground-gripping ring 1003 in full contact with the ground, the displacement of the whole machine can be prevented.
[0043] Working principle: First, insert the hook block 1002 in front of the anti-displacement rack 10 into the inner hole 11 of the step, so as to connect the anti-displacement rack 10 and the step 1. In this way, an integrated setting is achieved among the step 1, the anti-displacement rack 10 and the sensor column 3, preventing displacement during testing. Then, make the gripping ring 1003 fully contact the ground. Then people can stand on the step 1. Immediately place the suction ring 801 and the test ring core 802 at the test site. The suction ability is improved through the double suction mode to avoid displacement during movement, which can increase the accuracy of the test. Then, when people move on the step 1, the induction area 202 can sense the number of steps stepped on and effectively conduct detection. During movement, the heart rate screen 5 can reflect the situation in each time period in real time. When the test is completed, remove the suction ring 801 and the test ring core 802, and place the test ring 8 on the ring storage hole 9. In this way, the entire usage process of the anti-displacement step heart rate sensor is completed.
[0044] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacement on some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A step heart rate sensor that prevents displacement, characterized in that, Comprising: A step (1), the step (1) having a cuboid structure; A test ring (8), the test ring (8) being installed above the left side of the step (1), and the internal arrangement of the test ring (8) can prevent inaccurate test results caused by movement during heart rate testing; An anti-displacement frame (10), the anti-displacement frame (10) being installed on the outer left side of the step (1), and the anti-displacement frame (10) and the step (1) being connected to prevent the step (1) from moving.
2. A step heart rate sensor with anti-displacement according to claim 1, characterized in that: The step (1) comprises: A step groove (2), the step groove (2) being arranged above the surface of the step (1), and a sensor column (3) being arranged behind the step (1), and an intermediate support cross block (4) being installed in the middle of the sensor column (3); A heart rate screen (5), the heart rate screen (5) being arranged in the middle of the intermediate support cross block (4); Wire-passing screws (6), the wire-passing screws (6) being installed on the left and right sides of the sensor column (3), and a heart rate sensing wire (7) being installed at one end of the wire-passing screws (6); A ring storage hole (9), the ring storage hole (9) being arranged on the upper front side of the sensor column (3); An internal hole of the step (11), the internal hole of the step (11) being installed on the left side of the step (1), and a baffle (12) being arranged outside the internal hole of the step (11).
3. A step heart rate sensor with anti-displacement according to claim 2, characterized in that: The step groove (2) comprises: An intermediate groove (201), the intermediate groove (201) being installed below the step groove (2), and an induction area (202) being installed inside the intermediate groove (201), and a lower groove (203) being arranged below the intermediate groove (201).
4. A step heart rate sensor with anti-displacement according to claim 1, characterized in that: The test ring (8) comprises: A suction ring (801), the suction ring (801) being arranged on the front surface of the test ring (8), and test ring cores (8) being arranged around the inside of the test ring (8), and ring sleeves (803) being installed around the outer surface of the test ring cores (8).
5. A step heart rate sensor with anti-displacement according to claim 1, characterized in that: The anti-displacement frame (10) comprises: An internal displacement extension frame (1001), the internal displacement extension frame (1001) being arranged on the right side of the anti-displacement frame (10), and hook blocks (1002) being arranged on the left and right sides in front of the internal displacement extension frame (1001), and a gripping ring (1003) being arranged behind the hook blocks (1002).
6. A step heart rate sensor with anti-displacement according to claim 2 or 4, characterized in that: The test ring core (802) is fixed to the inner side of the test ring (8) through a loop ring sleeve (803), and the number of the test ring cores (802) is six. An electrical connection relationship is formed between the test ring (8) and the wire transmission screw (6) through a heart rate sensing wire (7).
7. A step heart rate sensor for preventing displacement according to claim 2 or 5, wherein: The hook block (1002) and the step internal hole (11) have the same width, and the internal displacement extension frame (1001) is connected to the step position step (1) through the connection relationship between the hook block (1002) and the step internal hole (11).
Citation Information
Patent Citations
Rhythm of heart sensor
CN208548349U