CN209809386U - Game device for rope skipping - Google Patents

Game device for rope skipping Download PDF

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CN209809386U
CN209809386U CN201920217291.8U CN201920217291U CN209809386U CN 209809386 U CN209809386 U CN 209809386U CN 201920217291 U CN201920217291 U CN 201920217291U CN 209809386 U CN209809386 U CN 209809386U
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take
unit
control module
user
display
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邓成权
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Abstract

The utility model belongs to the technical field of the electronic game device technique and specifically relates to indicate a play device for rope skipping motion, it includes input device, display device, signal receiver and control module unit, input device is used for detecting user's input information, signal receiver is used for sending the input information that input device detected to the control module unit, display device is including rope skipping display element, rope skipping display element is equipped with luminous track, luminous track is equipped with at least one take-off position, luminous orbital luminous position is confirmed according to control signal to the control module unit, and when luminous position and take-off position coincide, instruct the user to take off the jump, the utility model discloses occupation space is little, can reach better motion effect and comfortable interactive rope skipping and experience.

Description

Game device for rope skipping
Technical Field
The utility model relates to an electronic game device technical field especially indicates a play device for rope skipping motion.
Background
With the improvement of living standard of people, due to busy work, many people lack of exercise relatively, so that sub-health and obesity are easily caused. Many people realize that body building and weight losing can be realized by doing aerobic exercises, for example, running and rope skipping are exercise modes adopted by many people, and can be carried out by one person, and the effect is particularly obvious and is well loved and accepted by the public.
With the rise of electronic devices, there are also related products available on the market that can provide assistance in running and rope-jumping activities, such as running machines, dancing machines and dance mats, in another way to solve the problem of the inability to exercise due to the small playing field available at home.
However, for rope skipping sports, the rope skipping games and the running games in the dancing blanket are more fresh in game playing, real, comfortable and continuous sports like real running and rope skipping cannot be performed, the sports strength cannot meet the normal requirement, the product cannot well solve the problem that similar rope skipping sports cannot be performed due to the fact that the bedroom space is too small, a computer or a television is required to be used together, equipment is complex, cost is high, experience is poor, the corresponding sports effect cannot be achieved, and the rope skipping game and the running games are not suitable for being used in real sports.
Disclosure of Invention
In order to solve the technical problem, the utility model provides a play device for rope skipping motion, this play device that moves occupation space is little, can reach better motion effect and comfortable interactive rope skipping and experience.
The utility model adopts the following technical scheme:
a game device for rope skipping comprises an input device, a display device, a signal receiving device and a control module unit;
the input device is used for detecting input information of a user, and the signal receiving device is used for sending the input information detected by the input device to the control module unit;
the display device comprises a skipping rope display unit, the skipping rope display unit is provided with a light-emitting track, the light-emitting track is provided with at least one take-off position, the control module unit is used for outputting a control signal and determining the light-emitting position of the light-emitting track, and when the light-emitting position is coincident with the take-off position, a user is instructed to take off.
The input device comprises a take-off detection unit for detecting the take-off information of a user, and the signal receiving device is used for transmitting the take-off information detected by the take-off detection unit to the control module unit.
The display device also comprises a motion data display unit, the control module unit counts the motion data of the user according to the take-off information and drives the motion data display unit to display the motion data of the user;
the motion data specifically includes: the number of successful user jumps, the calories consumed by the user, or the exercise time.
The skipping rope display unit is an LED screen, and the LED screen is an LED customized screen, an LED module screen and a rotary LED display screen.
Wherein, LED customization screen specifically includes: the PCB board and set up in the LED dot matrix of PCB board, the LED dot matrix includes a plurality of LED lamps, and a plurality of LED lamps constitute luminous track, a plurality of LED lamps of control module unit drive are lighted in turn, and when being lighted when the LED lamp that is in take-off position, instruct the user to take off a jump.
Wherein, rotatory LED display screen specifically includes: the LED lamp comprises a disc and a driving motor, wherein an output shaft of the driving motor is connected with the circle center of the disc, an LED lamp is arranged at the eccentric position of the disc, and the control module unit is used for controlling the rotating angle of the output shaft of the driving motor.
The display device also comprises a jump-up state indicating unit, and the control module unit outputs a control signal to the jump-up state indicating unit according to the jump-up information detected by the jump-up detection unit.
Wherein, the control module unit specifically includes:
the microprocessor is used for receiving an input signal of the input device and setting display parameters of the display device;
the counting module is used for counting the number of successful take-off of the user according to the take-off information;
and the sound playing module is used for playing prompt sound or music.
Wherein the control module unit further comprises:
the photosensitive detection module is used for acquiring light intensity information of the ambient environment, and the microprocessor regulates and controls the display brightness of the display device according to the light intensity information;
the real-time clock module is used for generating timing data, and the microprocessor accesses the timing data and drives the display device to display time;
the heart rate detection module is used for detecting the heart rate of the user and outputting heart rate data to the microprocessor;
the display device further includes:
the take-off judgment display unit is provided with a plurality of grading luminous patterns, and the control module unit determines to light one of the grading luminous patterns according to the take-off information;
a time display unit for displaying time;
the fitness score display unit is used for displaying the exercise data of the user;
the take-off judgment display unit, the time display unit and the fitness grading display unit are all electrically connected with the control module unit.
The signal receiving device comprises a wireless communication unit which is used for receiving and transmitting wireless signals and is in wireless connection with the terminal equipment and/or the control module unit.
The utility model has the advantages that: the display device can be used for interacting with a user, the phenomenon that the picture is broken and the shaking is serious when a computer or a television is used for playing a rope skipping game to cause visual discomfort can be avoided, the rope shaking speed is higher than that when the computer or the television is used for displaying, interactive rope skipping can still be performed, and therefore higher exercise intensity can be provided, exercise interest can be stimulated, the user can exercise for a longer time, and the user can be helped to achieve an exercise target. Compared with the traditional rope skipping, the rope skipping mechanism has the advantages that the user does not need to shake the rope with both hands in the game movement, so that various actions favorable for movement can be properly performed according to the movement requirements of the user, the direction does not need to be distinguished when the user jumps, the jumping actions in the movement are more, the movement is easier, and the rope skipping mechanism can be used for continuously performing the rope skipping for a longer time. Compared with the existing electronic sports equipment, the multifunctional sports equipment can be used without a computer or a television, is convenient to carry and has strong interestingness.
Drawings
Fig. 1 is a schematic block diagram of the present invention;
fig. 2 is a schematic structural diagram of a control module unit according to the present invention;
fig. 3 is a schematic structural diagram of the LED customized screen of the present invention;
fig. 4 is a schematic structural diagram of the rotary LED display screen of the present invention.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and drawings, which are not intended to limit the present invention.
As shown in fig. 1 to 3, a game device for rope skipping includes an input device 2, a display device 1, a signal receiving device 4 and a control module unit 3, wherein the input device 2 is used for detecting input information of a user, and the signal receiving device 4 is used for sending the input information detected by the input device 2 to the control module unit 3;
the display device 1 comprises a skipping rope display unit 11, the skipping rope display unit 11 is provided with a light-emitting track 111, the light-emitting track 111 is provided with at least one take-off position, the control module unit 3 is used for outputting a control signal and determining the light-emitting position of the light-emitting track 111, and when the light-emitting position is coincident with the take-off position, a user is instructed to take off.
Specifically, the signal receiving device 4 may be an interface, a connector, a connecting wire, or a circuit on a PCB; for example, when the control module unit 3 is close to the input device 2, or the control module unit 3 of the present invention is integrated on the input device 2, the signal reception can be completed by a wire or a circuit on the PCB.
Further, the input device 2 may also include an input switch 22 or an input button for setting operation parameters, and some parameters of the game may be operated through the input device 2, such as adjusting the speed and direction of the swing rope.
Further, signal receiving device 4 still includes wireless communication unit for receiving and dispatching radio signal, with terminal equipment and/or control module unit wireless connection, it is specific, wireless communication unit is remote control module, bluetooth module, WIFI module, terminal equipment specifically includes electronic equipment such as cell-phone, handle, supporting remote controller, intelligent bracelet, and user's accessible terminal equipment sets up input device 2 and display device 1's operating parameter, for example start and set for display device 1's parameter through infrared remote controller or radio frequency remote controller, more specifically shows as the direction of rocking rate or rope skipping of setting for rope skipping. Secondly, the user can also be connected this game device and cell-phone through the bluetooth, transmits the motion data to cell-phone APP via the wireless communication unit, makes various motion data more detailed, and convenience of customers looks over.
When the rope skipping device works, the control module unit 3 outputs a control signal and determines the light-emitting position of the light-emitting track 111, and when the light-emitting position is overlapped with the take-off position, a user is instructed to take off and complete one rope skipping action. The display device 1 can be used for interacting with a user, the phenomenon that the picture is broken and shakes seriously to cause visual discomfort when a computer or a television is used for playing a rope skipping game can be avoided, the rope shaking speed is higher than that when the computer or the television is used for displaying, interactive rope skipping can still be performed, and therefore higher exercise intensity can be provided. Compared with the traditional rope skipping, the rope skipping mechanism has the advantages that the user does not need to shake the rope with both hands in the game movement, so that various actions favorable for movement can be properly performed according to the movement requirements of the user, the direction does not need to be distinguished when the user jumps, the jumping actions in the movement are more, the movement is easier, and the rope skipping mechanism can be used for continuously performing the rope skipping for a longer time. Compared with the existing electronic sports equipment, the multifunctional sports equipment can be used without a computer or a television, is convenient to carry and has strong interestingness.
Specifically, the control module unit 3 is integrated in the display device 1, and of course, the control module unit 3 is integrated in the input device 2, wherein only a wireless transceiver for transceiving wireless signals needs to be added to the display device 1, and the rope skipping display unit 11 and the motion data display unit 12 can be wirelessly connected with the control module unit 3 via the wireless transceiver, so that the details are not repeated here.
In this embodiment, the input device 2 includes a take-off detection unit 21 for detecting take-off information of a user, the signal receiving device 4 is configured to transmit the take-off information detected by the take-off detection unit 21 to the control module unit 3, the display device 1 further includes a motion data display unit 12, and the control module unit 3 counts the number of times that the user successfully takes off according to the take-off information, and drives the motion data display unit 12 to display the number of times that the user successfully takes off. Specifically, the jumping detection unit 21 may be a slightly larger on-off key similar to that of a dancing blanket, or an optical jumping sensor, a weight detection sensor, or a foot touch screen similar to that used in a dancing machine. When a user jumps, the jump detection unit 21 detects the user jump and sends jump information to the control module unit 3 through the signal receiving device 4, the control module unit 3 compares the jump information with an indication jump signal displayed by the jump rope display unit 11 to judge whether the jump rope passes or not, if the jump rope passes, the control module unit 3 accumulates the times of successful jump of the user and drives the motion data display unit 12 to display the times of successful jump of the user, so that the motion amount of the rope jump motion is more clear and interesting, wherein when the motion data display unit 12 is used for displaying the calorie or the motion time consumed by the user, the working principle is consistent with the principle, and the description is omitted here. Preferably, the exercise data display unit 12 may be a nixie tube.
In this embodiment, the skipping rope display unit 11 is an LED screen, and the LED screen is an LED customized screen, an LED module screen, or a rotating LED display screen. Specifically, LED dot matrix module screen among the prior art that LED module screen adopted, in the in-service use, because the particularity of rope skipping motion, the user need be continuous to do the jump action when carrying out rope skipping game motion, however, people's eyes then can not be too close to display device 1, and eyes can feel display device 1 and rock at very big within range otherwise, influence vision and motion, the dizziness still appears easily. Therefore, in actual use, the distance between the display device 1 and the input device 2 is not less than 1.3 m. Further, when the human body performs rope skipping, the head of the human body generates large movement, and if the display device 1 is too small, eyes cannot see the rope swinging track displayed by the display device 1 clearly, or the eyes have visual fatigue, so that the rope skipping movement effect is influenced or the eyes cannot raise the interest. Therefore, the size of the display device 1 is 10cm to 40 cm.
It should be noted that when the rope skipping display unit 11 is formed by using the LED module screen, the refresh frequency of the LED module screen should be set as high as possible, generally greater than 400HZ, so that a better display effect can be achieved.
In this embodiment, LED customization screen specifically includes the PCB board and sets up in the LED dot matrix of PCB board, and the LED dot matrix includes a plurality of LED lamps, and a plurality of LED lamps constitute luminous track 111, a plurality of LED lamps of control module unit 3 drive are lighted in turn, and when the LED lamp that is in take-off position was lighted, the instruction user takes off a jump.
Specifically, the number of the LED lamps is not limited, the number of the LED lamps forming the width of the light emitting track in parallel is also not limited, in this embodiment, the number of the LED lamps is preferably 128, the width of the light emitting track is a single row of LED lamps, as shown in fig. 3, the 128 LED lamps are distributed on the circuit board according to a certain pattern track, and when the control module unit 3 works, the control module unit is provided with an LED driving circuit, and the LED driving circuit is used for driving the 128 LED lamps to be sequentially turned on, so that the 128 LED lamps form horse lamps, and when the LED lamps at the take-off position are turned on, it is indicated that a user takes off a jump.
For example, as shown in fig. 3, 128 LED lamps are distributed on the PCB at intervals in a ring shape to form a circular light emitting track 111, where the take-off position is preset by a program, for example, it is set that when a first LED lamp is turned on, it indicates a user to take off, and when the user takes off, the take-off detection unit 21 of the input device 2 correspondingly detects the take-off information of the user, and the control module unit 3 receives the take-off information to count the number of take-offs of the user; or the control module unit 3 performs corresponding display processing according to the received take-off information, for example, when it is detected for one or more times that the take-off information of the user does not coincide with the take-off position set by the program, the control module unit outputs a control signal to make the light-emitting position of the light-emitting track pause, blink, or change the color, count the number of take-off, etc., so that the system is more interesting. Secondly, the utility model discloses a control module unit 3 can dispose to light a plurality of LED lamps simultaneously, and its theory of operation is: when the LED lamps in the upper semicircular area of the circular luminous track 111 are all lighted, the user does not jump, when the LED lamps in the lower semicircular area of the circular luminous track 111 are all lighted, the user jumps, the display structure is similar to a rope skipping picture which is in rope swinging, the rope skipping picture is closer to the real rope skipping motion vision, the visual effect is good, the jump positions can be multiple, namely, when the 128 LED lamps are refreshed in turn, the user can jump for multiple times, secondly, the control module unit 3 controls the lighting frequency of the LED lamps, the rope skipping rate is similar to the control, the game method is enriched, the game interest is increased, and the practicability is high. Secondly, the shape of the luminous surface of the LED lamp is also set to be rectangular or circular.
In this embodiment, the rotating LED display screen specifically includes: the LED lamp comprises a disc 112 and a driving motor, wherein an output shaft 113 of the driving motor is connected with the circle center of the disc 112, an LED lamp is arranged at the eccentric position of the disc 112, and the control module unit 3 is used for controlling the rotation angle of the output shaft 113 of the driving motor.
Specifically, driving motor adopts step motor, disc 112 can be by the plastic preparation that the quality is lighter, step motor electricity is connected with step motor drive circuit, in operation, microprocessor accessible serial ports, or I2C bus serial ports etc., output display signal is data M of representing the angular position, singlechip on the display device receives angular position data M, and drive step motor through step motor drive circuit, make step motor pass through the motor spindle, drive disc 112, make the LED lamp on disc 112 go to on the corresponding angular position, realize the demonstration of rope, in order to enable the angle data that the singlechip on the display device correctly discerned the LED lamp, can install hall element on display device, or infrared correlation pipe etc., carry out the angle zero calibration processing. The stepper motor may be a low voltage powered micro stepper motor, such as a 0.9 degree step-by-step micro stepper motor.
In other embodiments, the light emission can also be obtained by forming holes on the disk 112, that is, a backlight source is installed behind the disk 112, and then the holes are formed on the disk 112 to obtain light transmission, so that the holes are used for forming light emitting points or light emitting patterns instead of the LED lamps, i.e., the LED lamps installed on the disk 112 can be omitted; the disc 112 is made of a non-light-tight material, and the backlight source can be composed of a plurality of light-emitting LED lamps or a light-emitting source similar to an LED plane lamp is used as the backlight source; and better display effect is obtained.
In this embodiment, the display device 1 further includes a jump-up state indicating unit 16, and the control module unit 3 outputs a control signal to the jump-up state indicating unit 16 according to the jump-up information detected by the jump-up detecting unit.
The jump-up state indicating unit 16 is provided with two jump-up indicating lamps, specifically, one of the two jump-up indicating lamps is turned on when the user does not jump up, the other jump-up indicating lamp is turned on when the user jumps up, and the user can see the own jump-up state at any time in the game, so that the use is convenient. Of course, in other embodiments, the jump-up indicator light may also be a light-emitting indicator pattern.
In this embodiment, the control module unit 3 specifically includes:
a microprocessor 31 for receiving the input signal of the input device 2 and setting the display parameters of the display device 1;
the counting module 32 is used for counting the number of successful take-off of the user according to the take-off information;
a sound playing module 34, configured to play a prompt sound or music; specifically, the sound playing module 34 may be implemented by an MP3 sound chip cooperating with a field sound device, the MP3 sound chip may adopt a GD5600 chip, and in practical applications, when the counting module 32 counts successfully, the sound playing module 34 may play a prompt sound, so that the user can sense whether the rope skipping is successful, so that the user can adjust the take-off state of the user, and in addition, the sound playing module 34 may play music at the same time to cooperate with the user to move better.
In this embodiment, the control module unit 3 further includes:
the photosensitive detection module 35 is used for acquiring light intensity information of the surrounding environment, and the microprocessor 31 regulates and controls the display brightness of the display device 1 according to the light intensity information;
the real-time clock module 36 is used for generating timing data, and the microprocessor 31 accesses the timing data and drives the display device 1 to display time;
the heart rate detection module 37 is configured to receive heart rate data of the terminal device and process the heart rate data;
specifically, the utility model also comprises a photosensitive detection module 35 for the light intensity information of the surrounding environment, and the microprocessor 31 automatically adjusts the display brightness of the display device 1 according to the light intensity information, so that the game picture display with better brightness can still be carried out under different ambient light; the photosensitive detection module 35 may be a photo resistor, a photo triode, or the like.
Further, the real-time clock module 36 can be a DS1302 clock chip, when the game is not played, the microprocessor 31 can access the timing data of the real-time clock module 36, and display the real-time through the display device 1 after processing, so that more practical functions can be achieved.
Furthermore, the heart rate detection module 37 is used for detecting the heart rate of the user and outputting heart rate data to the microprocessor 31, the microprocessor 31 processes the heart rate data, the rope swinging rate displayed on the display device 1 is automatically adjusted, the heart rate of the user in motion is stabilized within a certain range, and the health and weight loss are facilitated. However, the utility model discloses a structure is not limited to this, and this game equipment can also pass through wireless communication unit and connect intelligent bracelet, detects user's rhythm of the heart through intelligent bracelet.
In this embodiment, the display device 1 further includes:
the take-off judgment display unit 14 is provided with a plurality of grading luminous patterns, and the control module unit 3 determines to light one of the grading luminous patterns according to the take-off information;
a time display unit 13 for displaying time;
the fitness score display unit 15 is used for displaying a score result made by the microprocessor according to the motion data of the user;
the take-off judgment display unit 14, the time display unit 13 and the fitness score display unit 15 are all electrically connected with the control module unit 3.
Specifically, the number of the scoring light-emitting patterns is three, light-emitting diodes are arranged in the three scoring light-emitting patterns, the light-emitting diodes are connected with the microprocessor 31, the three scoring light-emitting patterns are designed into different shapes and respectively represent three different judgment results of early take-off, qualified take-off and slow take-off, in the rope skipping game, when a user interactively jumps each time, the microprocessor 31 makes a corresponding judgment result according to take-off information and lights the light-emitting diodes of the scoring light-emitting patterns, and therefore the rope skipping game plays a better guiding role for part of users who just start to learn the rope skipping game.
Specifically, the fitness scoring display unit 15 may be formed by a plurality of light-emitting patterns, light-emitting diodes are installed in the light-emitting patterns, the shapes of the light-emitting patterns may be designed as stars, moons, and the like, the light-emitting diodes are connected with the microprocessor 31, the microprocessor 31 may detect the exercise data of the user every day by reading the timing data of the real-time clock module 36, and then perform fitness scoring, for example, after the number of skipping ropes reaches a certain number, one more light-emitting diode is lighted, and when the user does not exercise, the lighting of one more light-emitting diode is reduced, so that the user can understand the current rope skipping fitness exercise condition.
In addition, this game device's use is not restricted to foretell mode, for example, the user is using the utility model discloses when carrying out the rope skipping motion, can set up the display parameter after, can be according to the luminous orbit in the rope skipping display element 11, carry out interactive rope skipping according to the rope skipping beat of setting for, of course, can set up the rope shaking speed that is suitable for the rope skipping motion of oneself according to the actual motion needs of oneself in the motion, can carry out long-time interactive rope skipping motion, make the motion rhythm of the heart reach more suitable scope, can reach body-building or losing weight purpose. In addition, the user can record the rope skipping movement speed data corresponding to the movement heart rate of the user before the user can call the rope skipping movement speed data when the user uses the rope skipping movement speed data next time, so that the movement is simpler and more effective, and people who often trip feet on the rope skipping can also better perform rope skipping game movement, at the moment, the rope skipping detection unit 21 can be omitted, and all technical characteristics in the embodiment can be freely combined according to actual needs.
The above-mentioned embodiment is the utility model discloses the implementation scheme of preferred, in addition, the utility model discloses can also realize by other modes, any obvious replacement is all within the protection scope of the utility model under the prerequisite that does not deviate from this technical scheme design.

Claims (10)

1. A play set for rope skipping activities, characterized by: comprises an input device, a display device, a signal receiving device and a control module unit;
the input device is used for detecting input information of a user, and the signal receiving device is used for sending the input information detected by the input device to the control module unit;
the display device comprises a skipping rope display unit, the skipping rope display unit is provided with a light-emitting track, the light-emitting track is provided with at least one take-off position, the control module unit is used for outputting a control signal and determining the light-emitting position of the light-emitting track, and when the light-emitting position is coincident with the take-off position, a user is instructed to take off.
2. A play set for rope skipping according to claim 1, wherein: the input device comprises a take-off detection unit for detecting the take-off information of a user, and the signal receiving device is used for transmitting the take-off information detected by the take-off detection unit to the control module unit.
3. A game apparatus for rope skipping according to claim 2, wherein: the display device also comprises a motion data display unit, the control module unit counts motion data of a user according to the take-off information and drives the motion data display unit to display the motion data of the user;
the motion data specifically includes: the number of successful user jumps, the calories consumed by the user, or the exercise time.
4. A play set for rope skipping according to claim 1, wherein: the skipping rope display unit is an LED screen which is an LED customized screen, an LED module screen and a rotary LED display screen.
5. A game apparatus for rope skipping according to claim 4, wherein: the LED customized screen specifically comprises: the PCB board and set up in the LED dot matrix of PCB board, the LED dot matrix includes a plurality of LED lamps, and a plurality of LED lamps constitute luminous track, a plurality of LED lamps of control module unit drive are lighted in turn, and when being lighted when the LED lamp that is in take-off position, instruct the user to take off a jump.
6. A game apparatus for rope skipping according to claim 4, wherein: rotatory LED display screen specifically includes: the LED lamp comprises a disc and a driving motor, wherein an output shaft of the driving motor is connected with the circle center of the disc, an LED lamp is arranged at the eccentric position of the disc, and the control module unit is used for controlling the rotating angle of the output shaft of the driving motor.
7. A game apparatus for rope skipping according to claim 2, wherein: the display device also comprises a jump-up state indicating unit, and the control module unit outputs a control signal to the jump-up state indicating unit according to the jump-up information detected by the jump-up detection unit.
8. A game apparatus for rope skipping according to claim 2, wherein: the control module unit specifically includes:
the microprocessor is used for receiving an input signal of the input device and setting display parameters of the display device;
the counting module is used for counting the number of successful take-off of the user according to the take-off information;
and the sound playing module is used for playing prompt sound or music.
9. A play set for rope skipping according to claim 8, wherein: the control module unit further includes:
the photosensitive detection module is used for acquiring light intensity information of the ambient environment, and the microprocessor regulates and controls the display brightness of the display device according to the light intensity information;
the real-time clock module is used for generating timing data, and the microprocessor accesses the timing data and drives the display device to display time;
the heart rate detection module is used for detecting the heart rate of the user and outputting heart rate data to the microprocessor;
the display device further includes:
the take-off judgment display unit is provided with a plurality of grading luminous patterns, and the control module unit determines to light one of the grading luminous patterns according to the take-off information;
a time display unit for displaying time;
the fitness scoring display unit is used for displaying a scoring result made by the microprocessor according to the motion data of the user;
the take-off judgment display unit, the time display unit and the fitness grading display unit are all electrically connected with the control module unit.
10. A play set for rope skipping according to claim 1, wherein: the signal receiving device comprises a wireless communication unit which is used for receiving and transmitting wireless signals and is in wireless connection with the terminal equipment and/or the control module unit.
CN201920217291.8U 2019-02-19 2019-02-19 Game device for rope skipping Active CN209809386U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112642095A (en) * 2021-01-11 2021-04-13 上海龙旗科技股份有限公司 Wearable device-based cordless skipping rope detection method, device and equipment
CN112973131A (en) * 2021-04-16 2021-06-18 上海跳与跳信息技术合伙企业(有限合伙) Rope skipping game control system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112642095A (en) * 2021-01-11 2021-04-13 上海龙旗科技股份有限公司 Wearable device-based cordless skipping rope detection method, device and equipment
CN112973131A (en) * 2021-04-16 2021-06-18 上海跳与跳信息技术合伙企业(有限合伙) Rope skipping game control system

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