WO2015135149A1 - 一种可控制温度的智能振动棒及智能振动棒温度控制系统 - Google Patents

一种可控制温度的智能振动棒及智能振动棒温度控制系统 Download PDF

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Publication number
WO2015135149A1
WO2015135149A1 PCT/CN2014/073251 CN2014073251W WO2015135149A1 WO 2015135149 A1 WO2015135149 A1 WO 2015135149A1 CN 2014073251 W CN2014073251 W CN 2014073251W WO 2015135149 A1 WO2015135149 A1 WO 2015135149A1
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WO
WIPO (PCT)
Prior art keywords
unit
temperature
intelligent
smart
main control
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PCT/CN2014/073251
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English (en)
French (fr)
Inventor
吕学刚
Original Assignee
深圳市无碍互动科技开发有限公司
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Application filed by 深圳市无碍互动科技开发有限公司 filed Critical 深圳市无碍互动科技开发有限公司
Priority to PCT/CN2014/073251 priority Critical patent/WO2015135149A1/zh
Publication of WO2015135149A1 publication Critical patent/WO2015135149A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H23/00Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
    • A61H23/02Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • A61H19/30Devices for external stimulation of the genitals
    • A61H19/34For clitoral stimulation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • A61H19/40Devices insertable in the genitals
    • A61H19/44Having substantially cylindrical shape, e.g. dildos
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/02Characteristics of apparatus not provided for in the preceding codes heated or cooled
    • A61H2201/0207Characteristics of apparatus not provided for in the preceding codes heated or cooled heated
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/02Characteristics of apparatus not provided for in the preceding codes heated or cooled
    • A61H2201/0221Mechanism for heating or cooling
    • A61H2201/0228Mechanism for heating or cooling heated by an electric resistance element
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/02Characteristics of apparatus not provided for in the preceding codes heated or cooled
    • A61H2201/0221Mechanism for heating or cooling
    • A61H2201/0228Mechanism for heating or cooling heated by an electric resistance element
    • A61H2201/0235Thermistors with Positive Temperature Coefficient [PTC]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/50Control means thereof
    • A61H2201/5007Control means thereof computer controlled
    • A61H2201/501Control means thereof computer controlled connected to external computer devices or networks
    • A61H2201/5015Control means thereof computer controlled connected to external computer devices or networks using specific interfaces or standards, e.g. USB, serial, parallel
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/50Control means thereof
    • A61H2201/5023Interfaces to the user
    • A61H2201/5043Displays
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/50Control means thereof
    • A61H2201/5058Sensors or detectors
    • A61H2201/5082Temperature sensors
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/50Control means thereof
    • A61H2201/5058Sensors or detectors
    • A61H2201/5084Acceleration sensors
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/50Control means thereof
    • A61H2201/5097Control means thereof wireless

Definitions

  • the invention relates to the field of sexual products, and particularly relates to an intelligent vibrating rod capable of controlling temperature and a temperature control system for an intelligent vibrating rod.
  • the existing vibrating rod controls the vibration mode and vibration intensity of the motor through several buttons on the vibrating rod.
  • the control mode is fixed, the function is single, there is no display interface, and the specific working mode cannot be displayed.
  • the user can only know the selected mode when using.
  • there is only one mode switching key cyclic switching mode and the single selection makes it difficult for the user to directly enter the mode that the user likes.
  • the existing vibrating bar surface The temperature cannot be artificially controlled and cannot be used well in use.
  • the technical problem to be solved by the present invention is to provide an intelligent vibrating rod and an intelligent vibrating rod temperature capable of controlling temperature in view of the defects of the prior art. Control System.
  • an intelligent vibrating rod temperature a control system comprising an intelligent vibrating rod and an intelligent terminal for controlling a surface temperature of the intelligent vibrating rod, the intelligent vibrating rod being connected to the intelligent terminal by wireless communication;
  • the smart vibrating bar includes a temperature sensor for collecting surface temperature data of the smart vibrating bar for transmitting temperature to the smart terminal And receiving the first radio frequency unit of the first control command, respectively, and the temperature a first main control unit connected to the first radio frequency unit and a temperature control unit connected to the first main control unit for adjusting a surface temperature of the smart vibrating rod according to a first control instruction;
  • the smart terminal includes means for receiving temperature data and Transmitting a second radio frequency unit of the first control command and connecting to the second radio frequency unit for processing the received temperature data for controlling the surface temperature of the smart vibrating bar The second control unit of the first control command.
  • the smart vibrating bar further includes a power supply unit connected to the first main control unit for supplying power to the smart vibrating rod and a motor unit for controlling vibration of the intelligent vibrating rod, and for controlling the Intelligent vibrator a switching unit in an operating state; the power supply unit is connected to and powered by the motor unit.
  • the power supply unit includes a charging unit respectively connected to the first main control unit for charging the smart vibrating bar, a detecting unit for detecting the voltage of the intelligent vibrating bar circuit, and a smart vibration device for a power supply unit powered by a bar; the charging unit is connected to the first main control unit through the detecting unit, The power supply unit is connected to and powered by the temperature sensor.
  • the switch unit includes a mode switch for mode selection and an increase/decrease switch for controlling the vibration strength of the smart vibrator.
  • the smart vibrating bar includes a rod body, a rod grip for facilitating gripping, and a rod extension extending away from a side of the rod grip portion;
  • the motor unit includes a first motor and a second motor The first motor and the second motor are respectively disposed at the rod body and the rod extension.
  • the smart vibrating bar further comprises a temperature respectively connected to the first main control unit for storing temperature A storage unit of data, a clock unit for providing a clock signal, a power-on reset unit, and an LED lamp.
  • the smart terminal further includes a display unit for displaying current power and temperature data of the smart vibrator, An alarm unit for generating alarm information based on current power and a data input unit for inputting temperature data and vibration intensity data for automatic adjustment; said display unit The alarm unit and the data input unit are respectively connected to the second main control unit.
  • the smart terminal further includes an acceleration sensor connected to the second main control unit for collecting acceleration information of the smart terminal.
  • the second main control unit processes the acceleration information collected by the acceleration sensor to form a second control instruction for controlling the vibration of the intelligent vibrating rod.
  • the first radio frequency unit and the second radio frequency unit are connected by any one or more wireless transmission modes of Bluetooth, Wi-Fi, UWB, TD-SCDMA, ZigBee, DAB, DMB, and WiMax.
  • the invention also provides a temperature controllable An intelligent vibrating bar connected to the smart terminal by wireless communication, the smart vibrating bar comprising a temperature sensor for collecting surface temperature data of the smart vibrating bar, for transmitting temperature to the smart terminal Data and receiving a first radio frequency unit from the first control command of the smart terminal, respectively, and the temperature And a first main control unit connected to the first radio frequency unit and a temperature control unit connected to the first main control unit for adjusting the surface temperature of the smart vibrating rod according to the first control instruction.
  • the present invention has the following advantages: the invention can be used to sense the surface of the vibrating rod according to the temperature sensor on the intelligent vibrating rod. Temperature , generating a first control command for controlling a temperature control unit to adjust a surface temperature of the smart vibrating rod through a smart terminal wirelessly connected to the smart vibrating bar, While providing a good interface for the user, the user can adjust the temperature to be comfortable according to the user's needs, and better realize the user's experience and participation.
  • FIG. 1 is a block diagram showing the principle of an intelligent vibrating rod temperature control system in an embodiment of the present invention.
  • Fig. 2 is a circuit diagram of a first main control unit in an embodiment of the invention.
  • Fig. 3 is a circuit diagram of a temperature sensor and a temperature control unit in an embodiment of the invention.
  • FIG. 4 is a circuit diagram of a first radio frequency unit in an embodiment of the present invention.
  • Fig. 5 is a circuit diagram of a charging unit in an embodiment of the invention.
  • Figure 6 is a circuit diagram of a detecting unit in an embodiment of the present invention.
  • Figure 7 is a circuit diagram of a power supply unit in an embodiment of the present invention.
  • Figure 8 is a circuit diagram of a motor unit in an embodiment of the present invention.
  • Figure 9 is a circuit diagram of a switching unit in an embodiment of the present invention.
  • Figure 10 is a circuit diagram of a memory cell in an embodiment of the present invention.
  • Figure 11 is a circuit diagram of a clock unit in an embodiment of the present invention.
  • Figure 12 is a circuit diagram of a power-on reset unit in an embodiment of the present invention.
  • Figure 13 is a schematic view showing the structure of an intelligent vibrating rod according to an embodiment of the present invention.
  • Intelligent vibrating rod 101, first main control unit; 102, first radio frequency unit; 103, temperature sensor; 104, temperature Control unit; 105, power supply unit; 1051, charging unit; 1052, detecting unit; 1053, power supply unit; 106, motor unit; 1061, first motor; 1062, second motor; 107, switching unit; 1071, mode switch; 1072, increase and decrease switch; 108, memory unit; 109, clock unit; 110, power-on reset unit; 111, LED light; 120, the head of the rod; 121, the grip of the rod; 122, the extension of the rod; 2. Intelligent terminal; 201, second main control unit; 202, second radio frequency unit; 203, display unit; 204, alarm unit; 205, data input unit; 206, acceleration sensor.
  • Fig. 1 is a block diagram showing the principle of the intelligent vibrating rod temperature control system of the present embodiment.
  • the control system includes an intelligent vibrating bar 1 and a smart terminal 2 for controlling the surface temperature of the smart vibrating bar 1, and the smart vibrating bar 1 and the smart terminal 2 are connected by wireless communication.
  • the smart vibrating bar 1 includes a temperature sensor 103 for collecting surface temperature data of the smart vibrating bar 1 for transmitting to the smart terminal 2. Temperature data and receiving the first RF unit 102 of the first control command, respectively, and temperature a first main control unit 101 connected to the first radio frequency unit 102 by the sensor 103, and a temperature connected to the first main control unit 101 for adjusting the surface temperature of the smart vibrating rod 1 according to the first control command Control unit 104.
  • the smart terminal 2 includes a second radio frequency unit 202 for receiving temperature data and transmitting a first control command, and a second radio frequency unit 202 for receiving the temperature
  • the data is processed into a second main control unit 201 for controlling the first control command of the surface temperature of the smart vibrating bar 1.
  • the temperature sensor 103 on the surface of the smart vibrating bar 1 collects the surface temperature of the smart vibrating bar 1 And processed by the first main control unit 101, sent to the smart terminal 2 through the first radio frequency unit 102, and the second main control unit 201 of the smart terminal 2 processes the temperature data to control the intelligent vibration surface temperature.
  • the first control command is sent to the smart vibrating bar 1 through the second radio frequency unit 202, and the first main control unit 101 controls the temperature control unit 104 to adjust the temperature of the surface of the smart vibrating bar 1 according to the received first control command. .
  • first radio frequency unit 102 and the second radio frequency unit 202 can be connected by any one or more wireless transmission modes of Bluetooth, Wi-Fi, UWB, TD-SCDMA, ZigBee, DAB, DMB, WiMax.
  • Fig. 2 is a circuit diagram of the first main control unit 101 in the present embodiment.
  • the first main control unit 101 includes a first main control chip U1
  • the first main control chip U1 is provided with a plurality of interfaces for connecting with other units.
  • Fig. 3 is a circuit diagram of the temperature sensor 103 and the temperature control unit 104 in the present embodiment.
  • Temperature sensor 103 includes The other end of the PTC thermistor R27, the resistor R26, and the PTC thermistor R27 connected to the first main control chip are grounded, and the other end of the resistor R26 is connected to the VCC3V3 output from the power supply unit 1053.
  • Temperature control unit 104 includes a resistor R8, a transistor Q4, a resistor wire JP5 and a resistor R3 connected in sequence; the other end of the resistor R8 is connected to the first master chip U1, and the other end of the resistor R3 is connected to the power supply unit 1053; when the first master The chip U1 receives the first control command, the transistor Q4 of the temperature control unit 104 is turned on, and the control wire JP5 is heated to achieve the purpose of adjusting the surface temperature of the smart vibrating bar 1.
  • the first RF unit 102 includes a Wi-Fi RF circuit and a Bluetooth RF circuit.
  • the Wi-Fi RF circuit includes an inductor L4 and a Wi-Fi antenna connected to the Wi-Fi antenna pin of the first main control chip U1.
  • the two ends of L4 are grounded through capacitors C1 4 and C1 6 respectively to achieve the purpose of voltage regulation.
  • the Bluetooth RF circuit includes a capacitor C1 1 connected in series, an inductor L2, an inductor L1, a capacitor C1 2 , and an inductor.
  • the power output (VDD-PA) of the first master chip U1 is connected to the capacitor C1 1 and the inductor Between L2, the antenna interfaces (ANT1, ANT2) of the first main control chip U1 are respectively connected to the two ends of the inductor L1, and the two ends of the inductor L3 pass through the capacitors C1 3 and C1 5 respectively. Ground to achieve the purpose of voltage regulation.
  • the temperature sensor 103 transmits the collected temperature data to the first main control chip U1, and the first main control chip U1 sets the temperature.
  • the data is transmitted to the smart terminal 2 through the Wi-Fi radio frequency circuit or the Bluetooth radio frequency circuit, and receives the first control instruction fed back by the smart terminal 2 through the Wi-Fi radio frequency circuit and the Bluetooth radio frequency circuit, and the first main control chip U1 will first control the command.
  • Delivery to The temperature control unit 104 adjusts the surface temperature of the smart vibrating bar 1. It can be understood that after the plurality of resistance wires JP5 in the smart vibrating rod 1 and the temperature control unit 104 receive the first control command, the control is performed. Resistance wire JP Adjusts the surface of the intelligent vibrating rod 1.
  • the smart vibrating bar 1 further includes a power supply unit 105 connected to the first main control unit 101 for supplying power to the smart vibrating bar 1.
  • the power supply unit 105 includes a charging unit 1051 for charging the smart vibrating bar 1 respectively connected to the first main control unit 101, a detecting unit 1052 for detecting the circuit voltage of the smart vibrating bar 1, and for giving intelligence a power supply unit 1053 powered by the vibrating bar 1; the charging unit 1051 is connected to the first main control unit 101 through the detecting unit 1052, and the power supply unit 1053 and the The temperature sensor 103 is connected and powered.
  • Fig. 5 is a circuit diagram of the charging unit 1051 in this embodiment.
  • the charging unit 1051 includes a charging chip U 6 and a charging chip U 6 It is connected to the external power interface JP 3 and the built-in battery interface JP 4, and the charging chip U 6 is connected to the first main control chip U1.
  • the charging unit 1051 further includes a capacitor C 6 for achieving voltage regulation. , resistor R9; one end of the external power supply interface JP 3 is connected to the charging chip U 6 and the other end is grounded; the charging chip U 6 and the external power supply interface JP 3 There is also a port VCC5V for outputting or inputting a voltage of 5V, and an output terminal VBAT is also provided between the charging chip U 6 and the built-in battery interface JP 4 .
  • FIG. 6 is a circuit diagram of the detecting unit 1052 in this embodiment.
  • the detecting unit 1052 includes a resistor R24 whose one end is connected to the CHAGDET interface of the first main control chip U1 and the other end is connected to the 3.3V output voltage for detecting the output voltage of 3.3V. Also includes USB_DET with the first master chip U1 The interface is connected, the other end is connected to the 5V output voltage of the resistor R22, and the first main control chip U1 and the resistor R22 are also connected with a grounding resistor R23 for detecting the output 5V voltage.
  • the resistor R19 is connected to the BAT_DET interface of the first main control chip U1, and the other end is connected to the VBAT interface.
  • a grounding resistor R20 is also connected between the first main control chip U1 and the resistor R19 for connecting through the VBAT port. The incoming circuit is tested.
  • Fig. 7 is a circuit diagram of the power supply unit 1053 in this embodiment.
  • the power supply unit 1053 includes a power supply chip U5.
  • the input terminal VIN of the power supply chip U5 is connected to the VBAT interface of other circuits, and the output terminal VOUT is connected to the VCC3V3 interface of other circuits for converting the voltage input by the VBAT interface into a 3.3V voltage output.
  • the enable terminal EN of the power supply chip U5 is connected to the negative pole of the diode D4, and the anode of the diode D4 can be connected to the resistor R10 connected to other circuits, the grounded resistor R18 or the series connection switch SW1 and the resistor R11.
  • the enable terminal EN of the power supply chip U5 can also be connected to the series resistor R25 and the diode D3, and the other end of the resistor R25 can be connected to the VCC9V interface of other circuits.
  • the enable terminal EN of the power supply chip U5 can also be connected to other circuits through the diode D5. It can be understood that the power supply unit 1053 further includes a capacitor for voltage stabilization purposes. C2 8 , C 19 , C 5 , C 25 , resistors R2 1 , R 32 .
  • the smart vibrating bar 1 further includes a motor unit 106 for controlling the vibration of the smart vibrating bar 1.
  • the smart vibrating bar 1 includes a bar body portion 120, a bar grip portion 121 for easy gripping, and a bar body extending portion 122 extending from a side of the bar grip portion 121.
  • the motor unit 106 includes a first motor 1061 and a second motor 1062, and the first motor 1061 and the second motor 1062 are disposed at the rod head portion 120 and the rod extension portion 122, respectively.
  • Fig. 8 shows a circuit diagram of the motor unit 106 in this embodiment.
  • the motor unit 106 includes a first main control chip U1 for control
  • the first motor 1061 operates a first motor circuit and a second motor circuit for controlling the operation of the second motor 1062.
  • the first motor circuit includes a resistor R4, a transistor Q1, a motor JP1 and a resistor R1 sequentially connected to the PWM0 pin of the first main control chip U1. Under the control of the first main control chip U1, the control motor JP1 operates; the first motor
  • the circuit also includes a capacitor C1 for voltage regulation 7 , capacitor C2 and diode D1.
  • the second motor circuit comprises a resistor R5, a transistor Q2, a motor JP2 and a resistor R2 connected in sequence with the PWM1 pin of the first master chip U1. Under the control of the first master chip, the motor JP2 is controlled to operate; the second motor circuit Also includes capacitor C1 for voltage regulation 8, capacitor C3 and diode D2.
  • the smart vibrating bar 1 further includes a function for controlling the working state of the intelligent vibrating bar 1 Switch unit 107.
  • the switch unit 107 includes a mode switch 1071 for mode selection and an increase/decrease switch 1072 for controlling the vibration intensity of the smart vibrator 1.
  • Figure 9 is a circuit diagram showing the switching unit 107 in this embodiment.
  • the switch SW2 is connected to the first main control chip U1 to control the intelligent vibrating rod to select a mode, in the switch A resistor R16 connected to the VCC3V3 port is also connected between the SW2 and the first main control chip U1.
  • the switch SW3 is connected to the first main control chip U 1 to control the increase and decrease of the vibration intensity, at the switch A resistor R17 connected to the VCC3V3 port is also connected between the SW3 and the first main control chip U1.
  • the smart vibrating bar 1 further includes a storage temperature connected to the first main control unit 101, respectively.
  • a storage unit 108 of data a clock unit 109 for providing a clock signal, a power-on reset unit 110, and an LED lamp 111.
  • Fig. 10 shows a circuit diagram of the memory unit 108 in this embodiment.
  • the storage unit 108 includes a memory chip U2 connected to the first main control chip U1 through the data line SDA and the clock signal line SCL, and the power terminal VCC is connected to the output end of the charging unit 1051.
  • Figure 11 shows a circuit diagram of the clock unit 109 in this embodiment.
  • the clock unit 109 includes a crystal X1 connected to the first master chip U1 for regulating the capacitor C21 and the capacitor C22.
  • FIG 12 is a circuit diagram showing the power-on reset unit 110 in this embodiment.
  • the power-on reset unit 110 includes a transistor Q3, and the base of the transistor Q3 passes through the capacitor C23 and the input terminal of the VCC9V of the charging unit 1051. Connected, the emitter is grounded, the collector is connected to the first main control chip U1, and a grounding resistor R12 is connected between the base and the capacitor C23.
  • the smart terminal 2 includes a current connection with the second main control unit 201 for displaying the current power and temperature of the smart vibrator 1 a display unit 203 for data and an alarm unit 204 for generating alarm information based on the current amount of power and for inputting temperature
  • the data and the vibration intensity data are used to implement the automatically adjusted data input unit 205.
  • the display unit 203 can view the mode of the current mobile phone in real time and select through the data input unit 205, so that the user directly enters the favorite mode to meet the user's use requirements.
  • the smart terminal 2 can be a device such as a smart phone or a tablet.
  • the smart terminal 2 further includes an acceleration sensor connected to the second main control unit 201 for collecting acceleration information of the smart terminal. 206.
  • the second main control unit 201 processes the acceleration information collected by the acceleration sensor 206 to form a second control command for controlling the vibration of the smart vibrating rod 1.
  • the second main control unit 201 is The acceleration information is processed to form a corresponding frequency, and the second vibration control rod 1 adjusts the vibration strength according to the frequency through the second control command, thereby better realizing user experience and participation.
  • the present invention also provides an intelligent vibrating rod capable of controlling temperature, and the intelligent vibrating rod 1 is connected to the intelligent terminal 2 by wireless communication.
  • the smart vibrating bar 1 includes a temperature sensor 103 for collecting surface temperature data of the smart vibrating bar, for transmitting temperature data to the smart terminal 2, and receiving the data from the smart terminal 2 First RF unit 102 of the first control command, respectively, and temperature a first main control unit 101 connected to the first radio frequency unit 102 by the sensor 103, and a temperature connected to the first main control unit 101 for adjusting the surface temperature of the smart vibrating rod 1 according to the first control instruction Control unit 104.
  • the temperature sensor 103 on the surface of the smart vibrating bar 1 collects the surface temperature of the smart vibrating bar 1 And processed by the first main control unit 101, sent to the intelligent terminal 2 through the first RF unit 102, and the intelligent terminal 2 processes the temperature data to control the temperature of the intelligent vibration surface.
  • the first control command is sent to the smart vibrating bar 1, and the first main control unit 101 controls the temperature control unit 104 to adjust the temperature of the surface of the smart vibrating bar 1 according to the received first control command.
  • the intelligent vibrating bar 1 temperature provided by the invention
  • the control system in the case of networking, that is, when the smart vibrating stick 1 and the intelligent terminal 2 are connected by wireless communication, the user can view and control the current usage mode of the current smart vibrating stick 1 through the smart terminal 2 in real time, so as to solve the vibrating bar without display.
  • the interface cannot clearly display the problem of the specific working mode and provide a good experience for the user.
  • the user can input through the data input unit 205 of the smart terminal 2 during use.
  • the temperature data and the vibration intensity data artificially control the surface temperature and vibration intensity of the intelligent vibrating rod 1 to improve the user's use experience and meet the user's use requirements, so as to achieve good human-computer interaction.

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  • Health & Medical Sciences (AREA)
  • Epidemiology (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Rehabilitation Therapy (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Reproductive Health (AREA)
  • Apparatuses For Generation Of Mechanical Vibrations (AREA)

Abstract

一种智能振动棒温度控制系统包括智能振动棒(1)以及用于控制智能振动棒(1)表面温度的智能终端(2)。智能振动棒(1)与智能终端(2)通过无线通信连接。智能振动棒(1)包括用于采集智能振动棒(1)表面温度数据的温度传感器(103)、用于向智能终端(2)发送温度数据并接收第一控制指令的第一射频单元(102)、分别与温度传感器(103)和第一射频单元(102)相连的第一主控单元(101)以及与第一主控单元(101)相连的用于根据第一控制指令调节智能振动棒(1)表面温度的温度控制单元(104)。智能终端(2)包括用于接收温度数据并发送第一控制指令的第二射频单元(202),以及与第二射频单元(202)相连用于将接收到的温度数据处理成用于控制智能振动棒(1)表面温度的第一控制指令的第二主控单元(201)。该系统可根据用户需求调节感觉舒适的温度,更好地实现用户的体验与参与。

Description

一种 可控制温度的智能振动棒及 智能振动棒 温度 控制系统 技术领域
本 发明 涉 及性用品领域,具体涉及一种 可控制温度的智能振动棒及 智能振动棒 温度 控制系统。
背景技术
随着人们生活水平的提高,人们对性的观念逐渐解放,对性的要求也越来越高,振动棒是用于满足性要求的用品。现有的振动棒通过振动棒上的几个按钮控制电机振动模式及振动强度,其控制模式固定,功能单一,没有显示界面,无法显示具体的工作模式,用户只有使用时才能知道选择的模式,而且只有一个模式切换键循环切换模式,选择单一,使用户难以直接进入用户喜欢的模式。而且现有振动棒表面 温度 无法人为控制,在使用时不能很好满足使用需求。
发明 内容
本 发明 要解决的技术问题在于,针对现有技术的缺陷,提供 一种 可控制温度的智能振动棒及 智能振动棒 温度 控制系统。
本 发明 解决其技术问题所采用的技术方案是: 一种智能振动棒 温度 控制系统,包括智能振动棒以及用于控制所述智能振动棒表面 温度 的智能终端,所述智能振动棒与所述智能终端通过无线通信连接;
所述智能振动棒包括用于采集智能振动棒表面 温度 数据的 温度 传感器、用于向所述智能终端发送 温度 数据并接收第一控制指令的第一射频单元、分别与所述 温度 传感器和所述第一射频单元相连的第一主控单元、以及与所述第一主控单元相连的用于根据第一控制指令调节所述智能振动棒表面 温度 的 温度 控制单元;
所述智能终端包括 用于 接收 温度 数据 并 发送第一控制指令的第二射频单元,以及与所述第二射频单元相连用于将接收到 温度 数据处理成用于控制所述智能振动棒表面 温度 的第一控制指令的第二主控单元。
优选地, 所述智能振动棒还包括分别与所述第一主控单元相连的用于给所述智能振动棒提供电源的电源单元和用于控制所述智能振动棒振动的电机单元以及 用于控制所述智能振动棒 工作状态 的开关单元; 所述电源单元与所述电机单元相连并为其供电 。
优选地, 所述电源单元包括分别与所述第一主控单元相连的用于给所述智能振动棒充电的充电单元、用于检测所述智能振动棒电路电压的检测单元以及用于给所述智能振动棒供电的供电单元;所述充电单元通过所述检测单元与所述第一主控单元相连, 所述供电单元与所述 温度 传感器相连并为其供电 。
优选地, 所述开关单元包括用于进行模式选择的模式开关和用于控制所述智能振动棒振动强弱的增减开关。
优选地, 所述智能振动棒包括棒体首部、便于握持的棒体握持部以及靠近所述棒体握持部侧边延伸出的棒体延伸部;所述电机单元包括第一电机和第二电机,所述第一电机和所述第二电机分别设置在所述棒体首部和所述棒体延伸部。
优选地, 所述智能振动棒还包括分别与所述第一主控单元相连的用于存储 温度 数据的存储单元、用于提供时钟信号的时钟单元、上电复位单元以及LED灯。
优选地, 所述智能终端还包括用于显示所述智能振动棒的当前电量及 温度 数据的显示单元 、 用于根据当前电量产生报警信息的报警单元 以及 用于输入 温度 数据以及振动强度数据以实现自动调节的数据输入单元 ;所述显示单元 、报警单元以及数据输入单元分别与所述第二主控单元相连 。
优选地, 所述智能终端还包括与所述第二主控单元相连的 用于采集所述智能终端的加速度信息 的 加速度传感器 ,所述第二主控单元将 加速度传感器采集的加速度信息 进行处理形成用于控制所述智能振动棒振动的第二控制指令。
优选地, 所述第一射频单元及所述第二射频单元通过蓝牙、Wi-Fi、UWB、TD-SCDMA、ZigBee、DAB、DMB、WiMax的任一种或多种无线传输方式相连。
本发明还提供 一种 可控制温度 的智能振动棒,所述智能振动棒与智能终端通过无线通信连接,所述智能振动棒包括用于采集智能振动棒表面 温度 数据的 温度 传感器、用于向所述智能终端发送 温度 数据并接收来自智能终端 的 第一控制指令的第一射频单元、分别与所述 温度 传感器和所述第一射频单元相连的第一主控单元、以及与所述第一主控单元相连的用于根据第一控制指令调节所述智能振动棒表面 温度 的 温度 控制单元。
本 发明 与现有技术相比具有如下优点:实施本 发明 ,可根据智能振动棒上的 温度 传感器感测振动棒表面 温度 ,通过与智能振动棒无线通信连接的智能终端产生用于控制 温度 控制单元调节所述智能振动棒表面 温度 的第一控制指令 , 在给用户提供良好界面的同时,可根据用户需求调节感觉舒适的 温度 ,更好地实现用户的体验与参与。
附图说明
下面将结合附图及实施例对本 发明 作进一步说明,附图中:
图 1 是 本 发明 一实施例中智能振动棒 温度 控制系统的原理框图。
图2是本 发明 一实施例中第一主控单元的电路图。
图3是本 发明 一实施例中 温度 传感器 及温度控制单元 的电路图。
图4是本 发明 一实施例中第一射频单元的电路图。
图5是本 发明 一实施例中 充电 单元的电路图。
图 6是本发明一实施例中检测单元的电路图。
图7是本发明一实施例中供电单元的电路图。
图 8 是本 发明 一实施例中电机单元的电路图。
图 9 是本 发明 一实施例中开关单元的电路图。
图 10 是本 发明 一实施例中存储单元的电路图。
图 11 是本 发明 一实施例中时钟单元的电路图。
图 12 是本 发明 一实施例中上电复位单元的电路图。
图 13是本发明一实施例中智能振动棒的结构示意图。
1、智能振动棒;101、第一主控单元;102、第一射频单元;103、 温度 传感器;104、 温度 控制单元;105、电源单元;1051、充电单元;1052、检测单元;1053、供电单元;106、电机单元;1061、第一电机;1062、第二电机;107、开关单元;1071、模式开关;1072、增减开关;108、存储单元;109、时钟单元;110、上电复位单元;111、LED灯; 120、棒体首部;121、棒体握持部;122、棒体延伸部; 2、智能终端;201、第二主控单元;202、第二射频单元;203、显示单元;204、报警单元;205、数据输入单元;206、 加速度传感器 。
具体实施方式
为了对本 发明 的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本 发明 的具体实施方式。
图1示出本实施智能振动棒 温度 控制系统的原理框图。该智能振动棒 温度 控制系统包括智能振动棒1以及用于控制智能振动棒1表面 温度 的智能终端2,智能振动棒1与智能终端2通过无线通信连接。
具体地,智能振动棒1包括用于采集智能振动棒1表面 温度 数据的 温度 传感器103、用于向智能终端2发送 温度 数据并接收第一控制指令的第一射频单元102、分别与 温度 传感器103和第一射频单元102相连的第一主控单元101、以及与第一主控单元101相连的用于根据第一控制指令调节智能振动棒1表面 温度 的 温度 控制单元104。智能终端2包括与 用于 接收 温度 数据 并 发送第一控制指令的第二射频单元202以及与第二射频单元202相连的用于将接收到 温度 数据处理成用于控制智能振动棒1表面 温度 的第一控制指令的第二主控单元201。具体地,智能振动棒1表面的 温度 传感器103采集智能振动棒1表面 温度 并经第一主控单元101处理后,通过第一射频单元102发送至智能终端2,智能终端2的第二主控单元201将该 温度 数据处理成用于控制智能振动表面 温度 的第一控制指令并通过第二射频单元202发送至智能振动棒1,第一主控单元101根据接收到的第一控制指令控制 温度 控制单元104调节智能振动棒1表面的 温度 。
可以理解地,第一射频单元102及第二射频单元202可以通过蓝牙、Wi-Fi、UWB、TD-SCDMA、ZigBee、DAB、DMB、WiMax的任一种或多种无线传输方式相连。
图 2是 本实施例中 第一主控单元 101的电路图。 第一主控单元101包括第一主控芯片U1 ,第一主控芯片 U1上设有若干用于与其他单元相连的接口 。图 3是本实施例中温度传感器103 及温度控制单元 104 的电路图。 温度 传感器103包括 与第一主控芯片相连的 PTC热敏电阻R27、电阻R26,PTC热敏电阻R27的另一端接地,电阻R26的另一端与供电单元 1053 输出的 VCC3V3相连。 温度 控制单元 104包括与顺序相连的电阻R8、三极管Q4、电阻丝JP5和电阻R3;电阻R8的另一端与第一主控芯片U1相连,电阻R3的另一端与供电单元1053的相连;当第一主控芯片U1接收到第一控制指令,温度控制单元104的三极管Q4导通,控制电阻丝JP5进行加热,以达到调节智能振动棒1表面温度的目的。
图 4是本实施例中第一射频单元102的电路图。 第一射频单元102包括Wi-Fi射频电路和蓝牙射频电路,Wi-Fi射频电路包括与第一主控芯片U1的Wi-Fi天线引脚相连的 电感 L4和Wi-Fi天线, 电感 L4两端分别通过电容C1 4 、C1 6 接地,以达到稳压的目的。蓝牙射频电路包括串联连接的电容C1 1 、 电感 L2、 电感 L1、电容C1 2 、 电感 L3和 蓝牙天线 ,第一主控芯片U1的电源输出端(VDD-PA)连接于电容C1 1 和 电感 L2之间,第一主控芯片U1的天线接口(ANT1、ANT2)分别连接在 电感 L1的两端, 电感 L3两端分别通过电容C1 3 、C1 5 接地,以达到稳压的目的。
温度传感器 103 将采集到的 温度 数据传输给第一主控芯片U1,第一主控芯片U1将该 温度 数据通过Wi-Fi射频电路或蓝牙射频电路传输至智能终端2,并通过Wi-Fi射频电路和蓝牙射频电路接收智能终端2反馈的第一控制指令,第一主控芯片U1将第一控制指令输送至 温度 控制单元104,以调节智能振动棒1表面 温度 。可以理解地,在智能振动棒1棒内 若干电阻丝 JP5 , 温度 控制单元104接收到第一控制指令后,控制 电阻丝 JP 调节 智能振动棒1表面。
智能振动棒1还包括分别与第一主控单元101相连的用于给智能振动棒1提供电源的电源单元105。具体地,电源单元105包括分别与第一主控单元101相连的用于给所述智能振动棒1充电的充电单元1051、用于检测智能振动棒1电路电压的检测单元1052以及用于给智能振动棒1供电的供电单元1053;充电单元1051通过检测单元1052与第一主控单元101相连,供电单元1053与所述 温度 传感器103相连并为其供电。
图 5是 本实施例中 充电单元 1051的电路图。 充电单元1051包括充电芯片U 6 ,充电芯片U 6 与外接电源接口JP 3 和内置电池接口JP 4 相连,充电芯片U 6 与第一主控芯片U1相连。充电单元1051还包括用于实现稳压的电容C 6 、电阻R9;外接电源接口JP 3 的一端与充电芯片U 6 相连,另一端接地;充电芯片U 6 与外接电源接口JP 3 之间还设有用于输出或输入5V电压的端口VCC5V,充电芯片U 6 与内置电池接口JP 4 之间还设有输出端VBAT。
图 6是本实施例中检测单元1052的电路图。检测单元1052包括一端与第一主控芯片U1的CHAGDET接口相连,另一端与3.3V输出电压相连的电阻R24,用于对输出的3.3V电压进行检测。还包括与第一主控芯片U1的USB_DET 接口相连,另一端与5V输出电压相连的电阻R22,第一主控芯片U1与电阻R22之间还连接有接地的电阻R23,用于对输出的5V电压进行检测。还包括与第一主控芯片U1的BAT_DET接口相连,另一端与VBAT接口相连的电阻R19,第一主控芯片U1与电阻R19之间还连接有接地的电阻R20,用于对通过VBAT端口接入的电路进行检测。
图7是本实施例中供电单元1053的电路图。供电单元1053包括供电芯片U5,供电芯片U5的输入端VIN与其他电路的VBAT接口相连,输出端VOUT与其他电路的VCC3V3接口相连,用于将VBAT接口输入的电压转换成3.3V电压输出。供电芯片U5的使能端EN与二极管D4的负极相连,二极管D4的正极可接入与其他电路相连的电阻R10、接地的电阻R18或串联接入开关SW1、电阻R11。供电芯片U5的使能端EN还可与串联的电阻R25、二极管D3相连,电阻R25的另一端可与其他电路的VCC9V接口相连。供电芯片U5的使能端EN还可与其他电路通过二极管D5相连。可以理解地,供电单元1053还包括用于实现稳压目的的电容 C2 8 、C 19 、C 5 、C 25 ,电阻R2 1 、R 32 。
该智能振动棒1还包括用于控制智能振动棒1振动的电机单元106。具体地, 如图 13所示 智能振动棒1包括包括棒体首部 120 、便于握持的棒体握持部 121 以及靠近棒体握持部 121 侧边延伸出的棒体延伸部 122 ;电机单元106包括第一电机1061和第二电机1062,第一电机1061和第二电机1062分别设置在棒体首部 120 和棒体延伸部 122 。
图 8示出本实施例中电机单元106的电路图。 电机单元106包括与第一主控芯片U1相连的 用于控制 第一电机1061 工作的第一电机 电路和 用于控制 第二电机1062 工作的第二电机 电路 。 第一电机电路包括与第一主控芯片U1的PWM0管脚顺序相连的电阻R4、三极管Q1、电机JP1和电阻R1,在第一主控芯片U1的控制下,控制电机JP1工作;第一电机电路还包括用于实现稳压的电容C1 7 、电容C2与二极管D1。第二电机电路包括与第一主控芯片U1的PWM1管脚顺序相连的电阻R5、三极管Q2、电机JP2和电阻R2,在第一主控芯片的控制下,控制电机JP2工作;第二电机电路还包括用于实现稳压的电容C1 8 、电容C3与二极管D2。
该智能振动棒1还包括用于控制智能振动棒1 工作状态 的开关单元107。开关单元107包括用于进行模式选择的模式开关1071和用于控制智能振动棒1振动强弱的增减开关1072。 图 9示出本实施例中开关单元107的电路图。开关 SW2与第一主控芯片U1相连,以控制 智能 振动 棒进行 模式的选择 ,在开关 SW2与第一主控芯片U1之间还连接有与VCC3V3端口相连的电阻R16 。 开关SW3与第一主控芯片U 1 相连,以控制振动强弱的增减 ,在开关 SW3与第一主控芯片U1之间还连接有与VCC3V3端口相连的电阻R17 。
智能振动棒1还包括分别与第一主控单元101相连的用于存储 温度 数据的存储单元108、用于提供时钟信号的时钟单元109、上电复位单元110以及LED灯111。 图 10示出本实施例中存储单元108的电路图。 存储单元108包括存储芯片U2,存储芯片通过数据线SDA和时钟信号线SCL与第一主控芯片U1相连,其电源端VCC与充电单元1051的输出端相连。 图 11示出本实施例中时钟单元109的电路图。 时钟单元109包括与第一主控芯片U1相连的晶 振 X1,用以稳压的电容C21和电容C22。 图 12示出本实施例中上电复位单元110的电路图。 上电复位单元110包括三极管Q3,三极管Q3的基极通过电容C23与充电单元1051 的 VCC9V的输入端 相连,发射极接地,集电极与第一主控芯片U1相连,在基极与电容C23之间连接有接地的电阻R12。
智能终端2包括 分别 与第二主控单元201相连 的 用于显示所述智能振动棒1的当前电量及 温度 数据的显示单元203以及用于根据当前电量产生报警信息的报警单元204和用于输入 温度 数据以及振动强度数据以实现自动调节的数据输入单元205。该显示单元203可实时查看当前手机的模式并通过数据输入单元205进行选择,使用户直接进入喜欢的模式,以满足用户的使用需求。可以理解地,智能终端2可以是智能手机、平板电脑等设备。
智能终端2还包括与第二主控单元201相连的 用于采集所述智能终端的加速度信息 的 加速度传感器 206,第二主控单元201将 加速度传感器 206 采集的加速度信息 进行处理形成用于控制所述智能振动棒1振动的第二控制指令。具体地,第二主控单元201对 加速度信息 进行处理形成相应的频率,通过第二控制指令使 智能 振动棒 1 按该频率调节其振动强弱,更好地实现用户体验与参与。
本发明还提供 一种 可控制温度 的智能振动棒,智能振动棒 1 与智能终端2通过无线通信连接 。具体地, 智能振动棒 1 包括用于采集智能振动棒表面 温度 数据的 温度 传感器103、用于向智能终端2发送 温度 数据并接收来自智能终端2 的 第一控制指令的第一射频单元102、分别与 温度 传感器103和所述第一射频单元102相连的第一主控单元101、以及与第一主控单元101相连的用于根据第一控制指令调节智能振动棒 1 表面 温度 的 温度 控制单元104。具体地,智能振动棒1表面的 温度 传感器103采集智能振动棒1表面 温度 并经第一主控单元101处理后,通过第一射频单元102发送至智能终端2,智能终端2将该 温度 数据处理成用于控制智能振动表面 温度 的第一控制指令并发送至智能振动棒1,第一主控单元101根据接收到的第一控制指令控制 温度 控制单元104调节智能振动棒1表面的 温度 。
本 发明 提供的智能振动棒1 温度 控制系统,在联网的情况下,即智能振动棒1与智能终端2通过无线通信连接时,用户可通过智能终端2实时查看并控制当前智能振动棒1的使用模式,以解决的振动棒无显示界面,无法清楚显示具体的工作模式的问题,给用户提供良好的体验。用户在使用过程中,可通过智能终端2的数据输入单元205输入 温度 数据以及振动强弱数据,人为控制智能振动棒1的表面 温度 以及振动强度,以提高用户的使用感受,满足用户的使用需求,以实现很好的人机互动。
本 发明 是通过一个具体实施例进行说明的,本领域技术人员应当明白,在不脱离本 发明 范围的情况下,还可以对本 发明 进行各种变换和等同替代。另外,针对特定情形或具体情况,可以对本 发明 做各种修改,而不脱离本 发明 的范围。因此,本 发明 不局限于所公开的具体实施例,而应当包括落入本 发明 权利要求范围内的全部实施方式。

Claims (10)

  1. 一种智能振动棒 温度 控制系统,其特征在于:包括智能振动棒(1)以及用于控制所述智能振动棒(1)表面 温度 的智能终端(2),所述智能振动棒(1)与所述智能终端(2)通过无线通信连接;
    所述智能振动棒(1)包括用于采集智能振动棒(1)表面 温度 数据的 温度 传感器(103)、用于向所述智能终端(2)发送 温度 数据并接收第一控制指令的第一射频单元 ( 102 ) 、分别与所述 温度 传感器(103)和所述第一射频单元 ( 102 ) 相连的第一主控单元(101)、以及与所述第一主控单元(101)相连的用于根据第一控制指令调节所述智能振动棒(1)表面 温度 的 温度 控制单元(104);
    所述智能终端(2)包括 用于 接收 温度 数据 并 发送第一控制指令的第二射频单元(202),以及与所述第二射频单元(202)相连用于将接收到 温度 数据处理成用于控制所述智能振动棒(1)表面 温度 的第一控制指令的第二主控单元(201)。
  2. 根据权利要求1所述智能振动棒 温度 控制系统,其特征在于:所述智能振动棒(1)还包括分别与所述第一主控单元(101)相连的用于给所述智能振动棒(1)提供电源的电源单元(105)和用于控制所述智能振动棒(1)振动的电机单元(106)以及 用于控制所述智能振动棒(1) 工作状态 的开关单元(107); 所述电源单元(105)与所述电机单元(106)相连并为其供电 。
  3. 根据权利要求2所述智能振动棒 温度 控制系统,其特征在于:所述电源单元(105)包括分别与所述第一主控单元(101)相连的用于给所述智能振动棒(1)充电的充电单元(1051)、用于检测所述智能振动棒(1)电路电压的检测单元(1052)以及用于给所述智能振动棒(1)供电的供电单元(1053);所述充电单元(1051)通过所述检测单元(1052)与所述第一主控单元(101)相连, 所述供电单元(1053)与所述 温度 传感器(103)相连并为其供电 。
  4. 根据权利要求2所述智能振动棒 温度 控制系统,其特征在于:所述开关单元(107)包括用于进行模式选择的模式开关(1071)和用于控制所述智能振动棒(1)振动强弱的增减开关(1072)。
  5. 根据权利要求2所述智能振动棒 温度 控制系统,其特征在于:所述智能振动棒(1)包括棒体首部 ( 120 ) 、便于握持的棒体握持部 ( 121 ) 以及靠近所述棒体握持部 ( 121 ) 侧边延伸出的棒体延伸部 ( 122) ;所述电机单元(106)包括第一电机(1061)和第二电机(1062),所述第一电机(1061)和所述第二电机(1062)分别设置在所述棒体首部 ( 120 ) 和所述棒体延伸部 ( 122) 。
  6. 根据权利要求2所述智能振动棒 温度 控制系统,其特征在于:所述智能振动棒(1)还包括分别与所述第一主控单元(101)相连的用于存储 温度 数据的存储单元(108)、用于提供时钟信号的时钟单元(109)、上电复位单元(110)以及LED灯(111)。
  7. 根据权利要求1所述智能振动棒 温度 控制系统,其特征在于:所述智能终端(2)还包括用于显示所述智能振动棒(1)的当前电量及 温度 数据的显示单元(203) 、 用于根据当前电量产生报警信息的报警单元(204) 以及 用于输入 温度 数据以及振动强度数据以实现自动调节的数据输入单元(205) ;所述显示单元( 203)、报警单元(204)以及数据输入单元(205)分别与所述第二主控单元(201)相连 。
  8. 根据权利要求 7 所述智能振动棒 温度 控制系统,其特征在于:所述智能终端(2)还包括与所述第二主控单元(201)相连的 用于采集所述智能终端的加速度信息 的 加速度传感器 (206),所述第二主控单元(201)将 加速度传感器 (206) 采集的加速度信息 进行处理形成用于控制所述智能振动棒(1)振动的第二控制指令。
  9. 根据权利要求1~ 8 任一项所述智能振动棒 温度 控制系统,其特征在于:所述第一射频单元(102)及所述第二射频单元(202)通过蓝牙、Wi-Fi、UWB、TD-SCDMA、ZigBee、DAB、DMB、WiMax的任一种或多种无线传输方式相连。
  10. 一种 可控制温度 的智能振动棒,所述智能振动棒 ( 1) 与智能终端(2)通过无线通信连接,其特征在于:所述智能振动棒 ( 1) 包括用于采集智能振动棒 ( 1) 表面 温度 数据的 温度 传感器(103)、用于向所述智能终端(2)发送 温度 数据并接收来自智能终端(2) 的 第一控制指令的第一射频单元(102)、分别与所述 温度 传感器(103)和所述第一射频单元(102)相连的第一主控单元(101)、以及与所述第一主控单元(101)相连的用于根据第一控制指令调节所述智能振动棒 ( 1) 表面 温度 的 温度 控制单元(104)。
PCT/CN2014/073251 2014-03-11 2014-03-11 一种可控制温度的智能振动棒及智能振动棒温度控制系统 WO2015135149A1 (zh)

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WO2005120427A1 (de) * 2004-06-08 2005-12-22 Peter Polle Integrierte heizung, insbesondere für sexartikel, sexhilfsmittel oder massagegeräte
CN101378718A (zh) * 2006-02-01 2009-03-04 吉米简有限公司 具有高级特征的个人护理设备
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