WO2018218622A1 - 计步方法以及跑步机 - Google Patents

计步方法以及跑步机 Download PDF

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Publication number
WO2018218622A1
WO2018218622A1 PCT/CN2017/086885 CN2017086885W WO2018218622A1 WO 2018218622 A1 WO2018218622 A1 WO 2018218622A1 CN 2017086885 W CN2017086885 W CN 2017086885W WO 2018218622 A1 WO2018218622 A1 WO 2018218622A1
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WIPO (PCT)
Prior art keywords
fluctuation
treadmill
current
generated
unit
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PCT/CN2017/086885
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English (en)
French (fr)
Inventor
赵朝峰
何茂范
王建
Original Assignee
深圳市屹石科技股份有限公司
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Filing date
Publication date
Application filed by 深圳市屹石科技股份有限公司 filed Critical 深圳市屹石科技股份有限公司
Priority to PCT/CN2017/086885 priority Critical patent/WO2018218622A1/zh
Priority to CN201780000565.1A priority patent/CN107438461A/zh
Publication of WO2018218622A1 publication Critical patent/WO2018218622A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities

Definitions

  • the invention belongs to the field of sports equipment, and provides a step counting method and a treadmill.
  • a step counting method comprising the following steps:
  • the number of times the fluctuation is generated is sent to the user receiver in real time.
  • the method further comprises: pushing the patent information to the user when the number of times the fluctuation is generated is sent to the user receiving end.
  • the method further includes: when the number of times the fluctuation is generated is sent to the user receiving end, the technical usage data is sent to a data collection end preset by the manufacturer.
  • the method further comprises: stopping the number of times the fluctuation is generated to the user receiving end when the number of users turning off the technology exceeds a certain threshold.
  • the method further includes: when the number of times the user turns off the number of times the fluctuation is generated to the user receiving end exceeds a preset threshold, stopping sending the fluctuation to the user receiving end The number of times.
  • the embodiment of the invention also provides a treadmill, the treadmill comprising:
  • a recording unit for recording a fluctuation threshold of a current in a current detector built in the treadmill
  • a detecting unit configured to detect whether a current fluctuation is greater than a fluctuation threshold of a current in the current detector built in the treadmill;
  • a calculation unit wherein an input end thereof is connected to the recording unit and an output end of the detecting unit, and is configured to record the number of times the fluctuation occurs when the current fluctuation is greater than a fluctuation threshold of a current in the current detector built in the treadmill;
  • the step information sending unit has an input end connected to the output end of the calculating unit, and is configured to send the number of times the fluctuation is generated to the user receiving end in real time.
  • the treadmill further includes: an information pushing unit, wherein an input end is connected to an output end of the step information transmitting unit, and is configured to push to the user when the number of times the fluctuation is generated is sent to the user receiving end Patent information.
  • an information pushing unit wherein an input end is connected to an output end of the step information transmitting unit, and is configured to push to the user when the number of times the fluctuation is generated is sent to the user receiving end Patent information.
  • the treadmill further includes: a data collecting unit, wherein an input end is connected to an output end of the step information transmitting unit, and is configured to pre-order the number of times the wave is generated to the user receiving end
  • the data collection end is configured to send technical usage data.
  • the treadmill further comprises: a first technology deactivation unit, wherein an input end thereof is connected to an output end of the step information transmitting unit, and is configured to stop when the number of users who turn off the technology exceeds a certain threshold The number of times the fluctuation is generated is sent to the user receiving end.
  • a first technology deactivation unit wherein an input end thereof is connected to an output end of the step information transmitting unit, and is configured to stop when the number of users who turn off the technology exceeds a certain threshold The number of times the fluctuation is generated is sent to the user receiving end.
  • the treadmill further includes: a second technology deactivation unit, wherein an input end is connected to an output end of the step information transmitting unit, and is configured to: when the user turns off the sending to the user receiving end in a specific time When the number of times the fluctuation is generated exceeds a preset threshold, the number of times the fluctuation is generated is stopped to be sent to the user receiving end.
  • a second technology deactivation unit wherein an input end is connected to an output end of the step information transmitting unit, and is configured to: when the user turns off the sending to the user receiving end in a specific time When the number of times the fluctuation is generated exceeds a preset threshold, the number of times the fluctuation is generated is stopped to be sent to the user receiving end.
  • the invention can calculate the number of steps at a low cost and more accurately by checking the current fluctuations on the treadmill.
  • FIG. 1 is a schematic flow chart of a step counting method according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view of a treadmill according to an embodiment of the present invention.
  • FIG. 1 is a schematic flow chart of a step counting method according to an embodiment of the present invention. For convenience of description, only parts related to the embodiment of the present invention are shown.
  • step S101 the fluctuation threshold of the current in the current detector built in the treadmill is recorded.
  • the threshold should be greater than the fluctuation threshold of the current under normal conditions.
  • step S102 it is detected whether the current fluctuation is greater than a fluctuation threshold of the current in the current detector built in the treadmill.
  • the fluctuation of the current generally comes from two aspects, one is a relatively slight fluctuation in the operation of the machine itself, and the other is a fluctuation due to user behavior.
  • the fluctuations in the user's behavior can be adjusted by setting a magnetic induction coil in the treadmill or a variable resistance that varies in resistance according to the user's pedaling, thereby causing a significant change in the current in the current detector.
  • the fluctuations caused by user behavior should be significantly larger than the slight fluctuations in the operation of the machine itself, and the preset current fluctuation threshold should also correspond to the current fluctuation caused by the user behavior, which should not be too large. It can't be too small.
  • step S103 when the current fluctuation is greater than the fluctuation threshold of the current in the current detector built in the treadmill, the number of times the fluctuation is generated is recorded.
  • the number of times the recording fluctuation is generated is 1, and when the time is detected once in a certain period of time (for example, one minute), the number of recordings is 2, This type of push.
  • step S104 the number of times the fluctuation is generated is transmitted to the user receiving end in real time.
  • the receiving end may be a treadmill display screen or a user's mobile phone, computer, or the like.
  • the invention can calculate the number of steps at a low cost and more accurately by checking the current fluctuations on the treadmill.
  • the patent information includes, but is not limited to, the status of the patent application of the technology, the patent application/right holder of the technology, the patent application number of the technology, the patent application date, and the like.
  • the patent information is editable, and can be dynamically pushed to the user according to the authorization of the patent application: the patent is being applied for, the patent authorization has been obtained, and the like.
  • the patent information is editable and can be dynamically pushed to the user according to the transfer of the patent application right/patent right: the current relevant right holder of the patent.
  • the pushing manner of the patent information may adopt a small frame display, a voice display, and the like, so that the user can perceive the push mode.
  • the invention can effectively protect the relevant rights of the patent (application) right holder by pushing the relevant patent information while realizing the function.
  • the patent application process and the post-authorization maintenance process will generate human and financial costs: such as replying to review opinions, paying license fees, etc., for core technologies (such as CDMA underlying technology) or market identification.
  • core technologies such as CDMA underlying technology
  • market identification For relatively high-tech technologies (such as sliding unlocking), the related costs are negligible, and the investment in these technologies is worthwhile, but such technologies are a minority after all, and more technologies have been verified by the market. The user's pain points or itch points cannot be touched, and the patent investment in these technologies is likely to cause cost waste.
  • the technical usage data is sent to a data collection end preset by the manufacturer.
  • the technology uses data for the user to use the data of the technology, that is, the data generated when the method completes the first few steps, the data includes the number of times the user uses the technology (eg, the first time using the technology within a certain period of time) Technology); the specific time point of using the technology; the user's related operations before and after using the technology can help the technology provider to better evaluate the market value of the technology, and better improve the technical data according to the feedback.
  • the solution is only the “user requirement” assumed in the research and development phase. For the actual use situation, especially for specific individual users, whether the solution has value or whether it can please a specific individual user is different according to the individual user. .
  • the “technique” in this embodiment specifically refers to several steps before this step.
  • FIG. 2 is a schematic structural view of a treadmill according to an embodiment of the present invention, where the treadmill includes:
  • a recording unit 21 configured to record a fluctuation threshold of a current in a current detector built in the treadmill
  • the detecting unit 22 is configured to detect whether the current fluctuation is greater than a fluctuation threshold of the current in the current detector built in the treadmill;
  • a calculation unit 23 having an input end connected to the output of the recording unit 21 and the detecting unit 22 for recording the fluctuation when the current fluctuation is greater than a fluctuation threshold of the current in the current detector built in the treadmill Number of times;
  • the step information transmitting unit 24 has an input end connected to the output end of the calculating unit 23 for transmitting the number of times the fluctuation is generated to the user receiving end in real time.
  • the working principle is: the recording unit 21 records the fluctuation threshold of the current in the current detector built in the treadmill; the detecting unit 22 detects whether the current fluctuation is greater than the fluctuation threshold of the current in the current detector built in the treadmill; when the current fluctuation When the fluctuation threshold of the current in the current detector built in the treadmill is greater than the fluctuation threshold of the current in the current detector built in the treadmill, the calculation unit 23 records the number of times the fluctuation is generated; the step information transmitting unit 24 transmits the number of times the fluctuation is generated to the user receiving end in real time.
  • the embodiment of the present invention further includes an information pushing unit, and an input end thereof is connected to an output end of the step information transmitting unit 24, and is configured to push to the user when the number of times the wave is generated is sent to the user receiving end.
  • Patent information is provided.
  • the embodiment of the present invention further includes a data collecting unit, and an input end thereof is connected to an output end of the step information transmitting unit 24, and is configured to pre-process the number of times the wave is generated to the user receiving end.
  • the data collection end is configured to send technical usage data.
  • the embodiment of the present invention further includes a first technology deactivation unit, and an input end thereof is connected to an output end of the step information transmitting unit 24, and is configured to stop when the number of users who turn off the technology exceeds a certain threshold. The number of times the fluctuation is generated is sent to the user receiving end.
  • the embodiment of the present invention further includes a second technology deactivation unit, and an input end thereof is connected to an output end of the step information transmitting unit 24, and is configured to: when the user turns off the sending to the user receiving end within a specific time When the number of times the fluctuation is generated exceeds a preset threshold, the number of times the fluctuation is generated is stopped to be sent to the user receiving end.
  • a second technology deactivation unit an input end thereof is connected to an output end of the step information transmitting unit 24, and is configured to: when the user turns off the sending to the user receiving end within a specific time
  • the number of times the fluctuation is generated exceeds a preset threshold
  • the invention can calculate the number of steps at a low cost and more accurately by checking the current fluctuations on the treadmill.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

一种计步方法,包括如下步骤:记录跑步机内置的电流检测器中电流的波动阈值;检测当前的波动是否大于跑步机内置的电流检测器中电流的波动阈值;当当前的波动大于跑步机内置的电流检测器中电流的波动阈值时,记录波动产生的次数;将波动产生的次数实时发送到用户接收端。还公开了一种跑步机。

Description

计步方法以及跑步机 技术领域
本发明属于运动器材领域,提供了一种计步方法以及跑步机。
背景技术
健身在现代生活中越来越重要,每一个人的健身标准都有不同,以跑步为例,有人以时间为标准,每天需要跑够多少时间;有人以热能消耗量为标准,每天需要消耗多少热能;有人以运动强度为标准,每天需要在规定时间内跑完多少公里数;同时,也有人以步数标准,比如每天要跑够或者走过多少步。
现有的市面上的跑步机已经能够较为精确的测定公路、热能的方面的信息,但目前对于步数没有较好的测定方法,原因是不同的人跑步时步伐有较大差异,即使是同一个人在不同的时间段内跑步时,其步伐差异也较大,这种情况下,要准确测定跑步的步伐往往成本较大。
综上,特针对目前跑步机上测定跑步步伐准确率低、成本较大等问题,特提出一种解决方案,以便于以低成本的方式,较为精确的测定跑步的步数。
技术问题
本发明实施例针对目前跑步机上测定跑步步伐准确率低、成本较大等问题,特提出一种解决方案,以便于以低成本的方式,较为精确的测定跑步的步数。
技术解决方案
本发明是这样实现的:一种计步方法,包括以下步骤:
记录跑步机内置的电流检测器中电流的波动阈值;
检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;
当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数;
将所述波动产生的次数实时发送到用户接收端。
优选地,所述方法还包括:向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
优选地,所述方法还包括:向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
优选地,所述方法还包括:当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
优选地,所述方法还包括:当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
本发明实施例还提供了跑步机,所述跑步机包括:
记录单元,用于记录跑步机内置的电流检测器中电流的波动阈值;
检测单元,用于检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;
计算单元,其输入端与所述记录单元以及检测单元的输出端连接,用于当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数;
计步信息发送单元,其输入端与所述计算单元的输出端连接,用于将所述波动产生的次数实时发送到用户接收端。
优选地,所述跑步机还包括:信息推送单元,其输入端与所述计步信息发送单元的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
优选地,所述跑步机还包括:数据采集单元,其输入端与所述计步信息发送单元的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
优选地,所述跑步机还包括:第一技术停用单元,其输入端与所述计步信息发送单元的输出端连接,用于当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
优选地,所述跑步机还包括:第二技术停用单元,其输入端与所述计步信息发送单元的输出端连接,用于当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
有益效果
该发明通过检验跑步机上的电流波动,从而能低成本且较为精确地计算步数。
附图说明
图1是本发明实施例提供的一种计步方法的流程示意图;
图2是本发明实施例提供的跑步机的结构示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
图1是本发明实施例提供的一种计步方法的流程示意图,为了便于说明,只示出了与本发明实施例相关的部分。
在步骤S101中, 记录跑步机内置的电流检测器中电流的波动阈值。
在本实施例中,所述阈值应该大于常态下电流的波动阈值。
在步骤S102中, 检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值。
在本实施例中,电流的波动一般来自于两个方面,一个是机械本身运转过程中的较为轻微的波动,另一个是因为用户行为产生的波动。而用户行为产生的波动可以通过在跑步机中设置磁感应线圈、或者根据用户的踩踏而令电阻变化的可变电阻来调节电流的输出,从而令电流检测器中的电流产生明显的变化。
在此需要指出,因为用户行为产生的波动应该明显大于机械本身运转过程中较为轻微的波动,而预设的电流波动阈值也应该与所述用户行为产生的电流波动相呼应,既不能太大,也不能太小。
在步骤S103中,当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数。
在本发明的实施例中,当检测到一次大于阈值的电流波动时,记录波动产生的次数为1,在一定的时间段内(如一分钟),又检测到一次时,记录次数为2,以此类推。
在步骤S104中,将所述波动产生的次数实时发送到用户接收端。
所述接收端可以为跑步机显示屏或者用户的手机、电脑等。
该发明通过检验跑步机上的电流波动,从而能低成本且较为精确地计算步数。
此外,在实际中,专利权的权利归属比较难以为用户所认识和辨别。比如:一个培训教材或者一部电影里面,会明确的将“版权归特定人所有”的字样告知给用户;商标也以其显著的字或图的特征,在与其他标样区别的同时,也代表着商标权人以及商标权人生产的相关产品。但专利则不然,除了如“滑动解锁”等有限几个专利外,用户很难看到某一专利就知道该专利的申请/权利人。
这种情况所带来的严重后果是:
1、专利权的保护难度大,一项好的技术出来后,马上就被复制;
2、专利权/申请人通过专利彰显自己的产品特色的效果差,因为用户也分不清楚某一技术与专利权/申请人的联系。
针对于上述问题,作为本发明的一个实施例,向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
所述专利信息包括但不限于:该技术的专利申请状态,该技术的专利申请/权利人、该技术的专利申请号、专利申请日等信息。
所述专利信息是可编辑的,可以根据专利申请的授权与否,向用户动态推送:正在申请专利、已获得专利授权等信息。
所述专利信息是可编辑的,可以根据专利申请权/专利权的转让情况,向用户动态推送:该专利的当前相关的权利人。
所述专利信息的推送方式,可以采取小框显示、语音显示等让用户能够感知的推送方式。
该发明通过实现功能的同时推送相关专利信息,能够有效保护专利(申请)权人的相关权益。
考虑到技术使用的同时,专利的申请过程和授权后的维护过程都会产生人力、财力上的成本:如答复审查意见、缴纳授权费等,对于核心技术(如:CDMA的底层技术)或市场认同度比较高的技术(如:滑动解锁)而言,那么相关成本就可以忽略不计,对于这些技术的投入是值得的,但这类技术毕竟是少数,更多的技术经过市场验证后,其实并不能触及用户的痛点或痒点,而对这些技术的专利投入,就容易造成成本的浪费。
针对于这个问题,在本发明的一个实施例中,向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
所述技术使用数据为用户使用该技术的数据,即所述方法走完前几个步骤时产生的数据,所述数据包括用户使用该技术的次数(如在一定时间内是第几次使用该技术);使用该技术的具体时间点;使用该技术前后用户的相关操作等有助于技术提供方更好的评价技术的市场价值,并根据所述反馈更好的改进技术的数据。
从而在实现本发明基本功能的同时,也可以方便厂家及时有效的采集相关技术的使用情况。
此外,该方案仅仅是研发阶段所假设的“用户需求”,针对于实际使用情况,尤其针对于特定个体用户,该方案是否具有价值或者能否取悦特定个体用户则根据个体用户的不同有所区别。
这对该问题,在本发明的一个实施例中,当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
本实施例中的“该项技术”,特指本步骤之前的几个步骤。
当关闭该项技术的用户的数量超过特定阈值时,说明该项技术的市场认可度较低,属于有特殊需要的小众技术,所以暂停该项技术的使用,如果特定用户需要,再通过设置自行开启。
从而使得该项技术能够贴合市场需要:在大多数用户停用该项技术时,终止该项技术的应用。
同时,对于个体用户而言,该方案是否具有价值或者能否取悦特定个体用户则根据个体用户的不同有所区别。
所以,在本发明的一个实施例中,当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
这样,就可以根据用户的具体使用情况,自动调整该项技术的应用。
图2是本发明实施例提供的跑步机的结构示意图,所述跑步机包括:
记录单元21,用于记录跑步机内置的电流检测器中电流的波动阈值;
检测单元22,用于检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;
计算单元23,其输入端与所述记录单元21以及检测单元22的输出端连接,用于当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数;
计步信息发送单元24,其输入端与所述计算单元23的输出端连接,用于将所述波动产生的次数实时发送到用户接收端。
其工作原理是:记录单元21记录跑步机内置的电流检测器中电流的波动阈值;检测单元22检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,计算单元23记录所述波动产生的次数;计步信息发送单元24将所述波动产生的次数实时发送到用户接收端。
优选地,本发明实施例还包括信息推送单元,其输入端与所述计步信息发送单元24的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
优选地,本发明实施例还包括数据采集单元,其输入端与所述计步信息发送单元24的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
优选地,本发明实施例还包括第一技术停用单元,其输入端与所述计步信息发送单元24的输出端连接,用于当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
优选地,本发明实施例还包括第二技术停用单元,其输入端与所述计步信息发送单元24的输出端连接,用于当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
该发明通过检验跑步机上的电流波动,从而能低成本且较为精确地计算步数。
以上仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种计步方法,其特征在于,所述方法包括如下步骤:
    记录跑步机内置的电流检测器中电流的波动阈值;
    检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;
    当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数;
    将所述波动产生的次数实时发送到用户接收端。
  2. 如权利要求1所述的计步方法,其特征在于,所述方法还包括:
    向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
  3. 如权利要求1所述的计步方法,其特征在于,所述方法还包括:
    向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
  4. 如权利要求1所述的计步方法,其特征在于,所述方法还包括:
    当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
  5. 如权利要求1所述的计步方法,其特征在于,所述方法还包括:
    当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
  6. 一种跑步机,其特征在于,所述跑步机包括:
    记录单元,用于记录跑步机内置的电流检测器中电流的波动阈值;
    检测单元,用于检测当前的波动是否大于所述跑步机内置的电流检测器中电流的波动阈值;
    计算单元,其输入端与所述记录单元以及检测单元的输出端连接,用于当当前的波动大于所述跑步机内置的电流检测器中电流的波动阈值时,记录所述波动产生的次数;
    计步信息发送单元,其输入端与所述计算单元的输出端连接,用于将所述波动产生的次数实时发送到用户接收端。
  7. 如权利要求6所述的跑步机,其特征在于,所述跑步机还包括:
    信息推送单元,其输入端与所述计步信息发送单元的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向用户推送专利信息。
  8. 如权利要求6所述的跑步机,其特征在于,所述跑步机还包括:
    数据采集单元,其输入端与所述计步信息发送单元的输出端连接,用于向所述用户接收端发送所述波动产生的次数时,向厂家预设的数据采集端发送技术使用数据。
  9. 如权利要求6所述的跑步机,其特征在于,所述跑步机还包括:
    第一技术停用单元,其输入端与所述计步信息发送单元的输出端连接,用于当关闭该项技术的用户的数量超过特定阈值时,停止向所述用户接收端发送所述波动产生的次数。
  10. 如权利要求6所述的跑步机,其特征在于,所述跑步机还包括:
    第二技术停用单元,其输入端与所述计步信息发送单元的输出端连接,用于当用户在特定时间内关闭向所述用户接收端发送所述波动产生的次数的次数超过预设的阈值时,停止向所述用户接收端发送所述波动产生的次数。
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