WO2019000865A1 - Circuit périphérique de batterie de casque bluetooth - Google Patents

Circuit périphérique de batterie de casque bluetooth Download PDF

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Publication number
WO2019000865A1
WO2019000865A1 PCT/CN2017/117483 CN2017117483W WO2019000865A1 WO 2019000865 A1 WO2019000865 A1 WO 2019000865A1 CN 2017117483 W CN2017117483 W CN 2017117483W WO 2019000865 A1 WO2019000865 A1 WO 2019000865A1
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WO
WIPO (PCT)
Prior art keywords
battery
voltage value
voltage
charging chip
capacitor
Prior art date
Application number
PCT/CN2017/117483
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English (en)
Chinese (zh)
Inventor
卢永江
陈海龙
曹新放
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歌尔股份有限公司
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Filing date
Publication date
Application filed by 歌尔股份有限公司 filed Critical 歌尔股份有限公司
Publication of WO2019000865A1 publication Critical patent/WO2019000865A1/fr

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0029Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with safety or protection devices or circuits
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0013Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries acting upon several batteries simultaneously or sequentially
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the present invention relates to the field of Bluetooth headset technology, and more particularly to a peripheral circuit of a Bluetooth headset battery.
  • the use of electronic devices such as mobile phones and PADs is becoming more and more popular.
  • the Bluetooth headset due to the large electromagnetic radiation of electronic devices such as mobile phones, long-term use may have a certain impact on the health of users, and It may not be convenient to hold a mobile phone in certain situations.
  • the most widely used Bluetooth technology in daily life is the Bluetooth headset, and its biggest feature is portability and wireless operation, so that users can use the mobile phone even when it is not convenient to hold the mobile phone.
  • wearing a Bluetooth headset the user can write a message while talking on the phone, can talk while driving while driving, while talking about the phone while doing things without being tied by the wires.
  • the electromagnetic wave of the Bluetooth earphone is much lower than that of the mobile phone, when the phone is placed in the bag or in the pocket, it is not necessary to hold the hand, and the electromagnetic wave can be effectively reduced.
  • the current Bluetooth headset has a battery.
  • the existing Bluetooth headset usually puts the battery together with the left and right earphone speakers, that is, the Bluetooth headset has two batteries, one of which is placed with the left earphone speaker, and the other A battery is placed with the right earphone speaker.
  • the current signal generated by the battery will affect the transmission of the Bluetooth signal, and increase the noise floor of the Bluetooth headset; and, there is no detection line in the Bluetooth headset to detect the solder joint or short circuit of the battery, once the battery is soldered or shorted It cannot be detected effectively in time; in addition, the existing Bluetooth headset cannot effectively detect the battery power, so the user cannot replace the battery in time, which affects the user experience.
  • the present invention provides a peripheral circuit of a Bluetooth earphone battery to solve the problem that the existing Bluetooth earphone is unstable in signal transmission, the filter capacitor is easily damaged, and the battery short circuit cannot be detected.
  • the peripheral circuit of the Bluetooth earphone battery provided by the present invention comprises a power source, a charging chip, a first filter circuit, a first battery connected to the first filter circuit, a second filter circuit, and a second battery connected to the second filter circuit;
  • the power source is respectively connected to the first filter circuit and the second filter circuit for filtering processing, and the filtered power source is respectively connected to the first battery and the second battery to charge the first battery and the second battery.
  • a first voltage measuring module is disposed between the first filter circuit and the first battery, the first voltage measuring module is configured to measure a voltage value flowing through the first battery; between the second filter circuit and the second battery A second voltage measuring module is provided, wherein the second voltage measuring module is configured to measure a voltage value flowing through the second battery; a third voltage measuring module is disposed at an output end of the charging chip, and the third voltage measuring module is configured to measure the charging chip output a voltage value; wherein, according to the voltage value of the charging chip output measured by the third voltage measuring module, the first voltage measuring module measures Voltage through the first battery voltage value and a second voltage measurement module measured flowing through the second cell to determine whether the first battery and the second battery short.
  • the first filter circuit includes a first capacitor, a second capacitor, and a first resistor; wherein, one end of the first capacitor is connected to the output end of the charging chip, and the other end is grounded; The output end of the chip is connected and the other end is grounded; one end of the first resistor is connected to the output end of the charging chip, and the other end is connected to the first battery.
  • the second filter circuit includes a third capacitor, a fourth capacitor, and a second resistor; wherein, one end of the second resistor is connected to the output end of the charging chip, and the other end is connected to the second battery; One end is connected to the output end of the charging chip, and the other end is grounded; one end of the fourth capacitor is connected to the output end of the charging chip, and the other end is grounded.
  • the preferred structure is: further comprising: a power acquisition module, wherein the power acquisition module is respectively connected to the output end of the charging chip, the first voltage measuring module, the second voltage measuring module, and the third voltage measuring module; wherein, the charging chip is powered The module is powered, and the power acquisition module obtains the power of the first battery and the second battery according to the voltage value flowing through the first battery, the voltage value flowing through the second battery, and the voltage value output by the charging chip.
  • the preferred structure is: further comprising a filter capacitor, one end of the filter capacitor is connected to the output end of the charging chip, and the other end is grounded, and the filter capacitor is used to filter the power source of the access power acquisition module.
  • the preferred structure is that the power acquisition module uses the MAX17048 chip.
  • a preferred structure is that the difference between the voltage value output by the charging chip and the voltage value flowing through the first battery is the first voltage value; the difference between the voltage value output by the charging chip and the voltage value flowing through the second battery is a second voltage value; determining whether the first battery and the second battery are short-circuited according to the first voltage value and the second voltage value.
  • a preferred structure is: when the difference between the first voltage value and the second voltage value is less than a preset value, determining that the first battery is short-circuited; when the difference between the second voltage value and the first voltage value is less than a preset value , determining that the second battery is shorted.
  • the first voltage measuring module is located between the other end of the first resistor and the first battery.
  • the second voltage measuring module is located between the other end of the second resistor and the second battery.
  • the peripheral circuit of the Bluetooth earphone battery provided by the present invention filters the power source connected to the first battery by setting a first filter circuit, and filters the power source connected to the second battery through the second filter circuit, thereby filtering out the circuit in the circuit.
  • the chaotic signal improves the stability of the radio frequency signal transmission of the Bluetooth headset; meanwhile, the voltage value flowing through the first battery is measured by setting the first voltage measurement module, the second voltage measurement module, and the third voltage measurement module, respectively, and flowing through the second battery
  • the voltage value and the voltage value output by the charging chip determine whether the first battery and the second battery are short-circuited according to the voltage values measured by the first voltage measuring module, the second voltage measuring module and the third voltage measuring module, thereby effectively detecting the Bluetooth
  • FIG. 1 is a first logic structural block diagram of a peripheral circuit of a Bluetooth earphone battery according to an embodiment of the present invention
  • FIG. 2 is a diagram showing the structure of a peripheral circuit of the Bluetooth earphone battery shown in FIG. 1 according to an embodiment of the present invention
  • FIG. 3 is a second logical block diagram of a peripheral circuit of a Bluetooth headset battery in accordance with an embodiment of the present invention.
  • the present invention filters the power source connected to the first battery by setting the first filter circuit, and passes through the second filter circuit. Filtering the power supply connected to the second battery, thereby filtering out the disordered signal in the circuit, improving the stability of the RF signal transmission of the Bluetooth headset; and simultaneously setting the first voltage measurement module, the second voltage measurement module, and the third voltage measurement
  • the module respectively measures a voltage value flowing through the first battery, a voltage value flowing through the second battery, and a voltage value output by the charging chip, and the voltage is measured according to the first voltage measuring module, the second voltage measuring module, and the third voltage measuring module. The value determines whether the first battery and the second battery are short-circuited, thereby effectively detecting a short circuit problem in the battery of the Bluetooth headset.
  • FIG. 1 illustrates the logical structure of a peripheral circuit of a Bluetooth headset battery in accordance with an embodiment of the present invention
  • FIG. 2 illustrates the The structure of the peripheral circuit of the Bluetooth headset battery.
  • the peripheral circuit of the Bluetooth earphone battery includes a power source 10, a charging chip 20, a first filter circuit 30, a first battery 40 connected to the first filter circuit, a second filter circuit 50, and a second
  • the second battery 60 is connected to the filter circuit 50.
  • the power source 10 is respectively connected to the first filter circuit 30 and the second filter circuit 50 via the charging chip 20 for filtering processing, and the filtered power source is respectively connected to the first battery 40 and the second battery 60 to the first battery. 40 and the second battery 60 are charged.
  • the first voltage measuring module 70 is disposed between the first filter circuit 30 and the first battery 40, and the first voltage measuring module 70 is configured to measure a voltage value flowing through the first battery 40;
  • a second voltage measuring module 80 is disposed between the second battery 60.
  • the second voltage measuring module 80 is configured to measure a voltage value flowing through the second battery 60.
  • the third voltage measuring module 90 is disposed at an output end of the charging chip 20, The third voltage measuring module 90 is configured to measure the voltage value output by the charging chip 20; wherein, according to the voltage value output by the charging chip 20 measured by the third voltage measuring module 90, the measured current measured by the first voltage measuring module 70 The voltage value of the first battery 40 and the voltage value measured by the second voltage measuring module 80 flowing through the second battery 60 determine whether the first battery 40 and the second battery 60 are short-circuited.
  • the difference between the voltage value output by the charging chip 20 measured by the third voltage measuring module 90 and the voltage value measured by the first voltage measuring module 70 flowing through the first battery 40 is a first voltage value
  • the difference between the voltage value output by the charging chip 20 measured by the three-voltage measuring module 90 and the voltage value measured by the second voltage measuring module 80 flowing through the second battery 60 is a second voltage value, according to the first voltage value. And determining whether the first battery and the second battery are short-circuited with the second voltage value.
  • the power supply VBUS is respectively connected to the first filter circuit and the second filter circuit via the charging chip Charger for filtering processing.
  • the first filter circuit includes a capacitor C2, a capacitor C3 and a resistor R1.
  • One end of the capacitor C2 is connected to the output end of the charging chip Charger, and the other end is grounded.
  • One end of the capacitor C3 is connected to the output end of the charging chip Charger, and the other end is connected.
  • Grounding; one end of the resistor R1 is connected to the output end of the charging chip Charger, and the other end is connected to the first battery BT1.
  • the second filter circuit includes a capacitor C4, a capacitor C5 and a resistor R2.
  • One end of the resistor R2 is connected to the output end of the charging chip Charger, the other end is connected to the second battery BT2, and one end of the capacitor C4 is connected to the output end of the charging chip. The other end is grounded, and one end of the capacitor C5 is also connected to the output end of the charging chip, and the other end is grounded.
  • the capacitor C3 and the capacitor C4 are often selected as the 0201 size capacitor in the small package, and the 0201 capacitor is currently capable of achieving 2.2 uF in the industry, and the maximum withstand voltage is 10V.
  • the maximum withstand voltage value is usually higher, and the capacitor with a withstand voltage of 6.3V is easily broken by the spike, which causes the capacitor C3 and capacitor C4 to be damaged. Therefore, the capacitor C2 is added to the first filter circuit, and the capacitor C5 is added to the second filter circuit.
  • the capacitor C2 and the capacitor C5 are capacitors with a small capacitance, which can effectively absorb high-frequency pulses, thereby reducing cost and enabling Avoid damage to capacitors C3 and C4.
  • the existing Bluetooth headset is provided with a battery in each of the left and right ears, such as a battery disconnected due to a solder joint or a short circuit, it cannot be detected. Therefore, in order to effectively filter out the disordered signal of the circuit and simultaneously detect the short circuit phenomenon of the battery, the resistor R1 is added in the first filter circuit, the resistor R2 is added in the second filter circuit, and the resistor R1 and the first battery BT1 are simultaneously.
  • the first voltage measuring module TP1 is disposed between the resistor R2 and the second battery BT2, and the third voltage measuring module TP3 is disposed at the output end of the charging chip.
  • the voltage value output by the charging chip, the voltage value flowing through the first battery, and the voltage value of the second battery are measured by the third voltage measuring module TP3, the first voltage measuring module TP1 and the second voltage measuring module TP2, respectively, in the charging state. And measuring the difference between the measured voltage value of the charging chip and the voltage value measured by the first voltage measuring module flowing through the first battery as V1, and measuring the measured voltage value of the charging chip and the second The difference between the voltage value measured by the voltage measuring module and flowing through the second battery is recorded as V2.
  • the voltage difference between V1 and V2 does not exceed the preset value, it indicates that the first battery does not have a virtual soldering or short circuit phenomenon.
  • the above preset value is between 0V and 0.05V.
  • V1 and V2 exceeds 0.05V, it indicates that the first battery BT1 may have a virtual soldering or short circuit phenomenon; similarly, if the voltages of V2 and V1 are A difference of more than 0.05V indicates that the second battery BT2 may have a solder joint or a short circuit phenomenon.
  • the peripheral circuit of the Bluetooth headset battery provided by the present invention further includes a power acquisition module.
  • 3 illustrates a second logical structure of a peripheral circuit of a Bluetooth headset battery in accordance with an embodiment of the present invention.
  • the power acquisition module 300 is respectively connected to the output end of the charging chip 20, the first voltage measuring module 70, the second voltage measuring module 80, and the third voltage measuring module 90; wherein, the charging chip is a power acquiring module.
  • the power supply, the power acquisition module is configured according to the voltage value of the first battery measured by the first voltage measurement module, the voltage value of the second battery measured by the second voltage measurement module, and the third voltage measurement module.
  • the voltage value output by the charging chip acquires the amount of power of the first battery and the second battery.
  • the peripheral circuit of the Bluetooth earphone battery provided by the present invention further includes a filtering module, wherein the filtering module includes a filter capacitor, one end of the capacitor is connected to the output end of the charging chip, and the other end is grounded, and the capacitor is used to connect the power of the power acquiring module. Perform filtering processing.
  • the filtering module includes a filter capacitor, one end of the capacitor is connected to the output end of the charging chip, and the other end is grounded, and the capacitor is used to connect the power of the power acquiring module. Perform filtering processing.
  • the power acquisition module uses the MAX17048 chip, and the power acquisition module is further connected to the Bluetooth control chip, and is configured to transmit to the Bluetooth control chip after acquiring the power of the first battery and the second battery, and the Bluetooth control chip passes the I2C protocol. The power of the first battery and the second battery is fed back to the power monitoring module that enables the Bluetooth headset user to hear/see.
  • peripheral circuit of the Bluetooth earphone battery According to the present invention, those skilled in the art should understand that the peripheral circuits of the Bluetooth earphone battery proposed by the present invention can also be used in various embodiments. Various improvements are made without departing from the scope of the invention. Therefore, the scope of the invention should be determined by the content of the appended claims.

Abstract

L'invention concerne un circuit périphérique d'une batterie de casque Bluetooth, comprenant une alimentation électrique, une puce de charge, deux circuits de filtre et deux batteries reliées de manière correspondante aux deux circuits de filtre respectivement, les circuits de filtre effectuant un filtrage sur une alimentation électrique accédant à une batterie correspondante, de façon à filtrer un signal aléatoire dans les circuits de filtre, ce qui améliore la stabilité de transmission de signal radiofréquence d'un casque Bluetooth; et dans le même temps, un premier module de mesure de tension, un deuxième module de mesure de tension et un troisième module de mesure de tension sont fournis pour mesurer respectivement des valeurs de tensions de sortie après passage à travers des puces de charge de valeur de tension des deux batteries et, en fonction des valeurs de tension mesurées par le premier module de mesure de tension, le deuxième module de mesure de tension et le troisième module de mesure de tension, il est déterminé si un court-circuit se produit dans les deux batteries, de manière à détecter efficacement les problèmes de court-circuit et de circuit ouvert des batteries ou d'un raccordement inverse des lignes d'électrode positive et négative des batteries dans le casque Bluetooth.
PCT/CN2017/117483 2017-06-27 2017-12-20 Circuit périphérique de batterie de casque bluetooth WO2019000865A1 (fr)

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Application Number Priority Date Filing Date Title
CN201710502026.XA CN107171396B (zh) 2017-06-27 2017-06-27 蓝牙耳机电池的外围电路
CN201710502026.X 2017-06-27

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WO2019000865A1 true WO2019000865A1 (fr) 2019-01-03

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116800284A (zh) * 2023-07-18 2023-09-22 北京捷星电子科技有限公司 蓝牙多媒体收音机

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107171396B (zh) * 2017-06-27 2023-10-31 歌尔股份有限公司 蓝牙耳机电池的外围电路
CN107864443B (zh) * 2017-10-30 2020-05-12 歌尔股份有限公司 耳机电池的断路检测装置及检测方法
CN113972721A (zh) * 2021-10-29 2022-01-25 维沃移动通信有限公司 无线充电电路、方法、装置、电子设备及存储介质

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103138243A (zh) * 2011-11-29 2013-06-05 海洋王(东莞)照明科技有限公司 一种用于便携式灯具的充电电路及充电装置
CN203278349U (zh) * 2013-06-08 2013-11-06 盛传武 可无线充电的蓝牙耳机、蓝牙音箱及电子设备
US20150256010A1 (en) * 2014-03-04 2015-09-10 Jaybird, Llc Portable electronic device and associated docking assembly with magnetic charging, switching and data transfer
CN206117963U (zh) * 2016-10-17 2017-04-19 广州斐诺电子科技有限公司 一种具有无线充电功能的耳机
CN107171396A (zh) * 2017-06-27 2017-09-15 歌尔股份有限公司 蓝牙耳机电池的外围电路

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080045541A (ko) * 2006-11-20 2008-05-23 엘지전자 주식회사 방송용 단말기의 노이즈 제거 장치 및 방법
KR101396979B1 (ko) * 2007-08-06 2014-05-20 엘지전자 주식회사 이동통신 단말기 및 이를 이용한 블루투스 헤드셋 충전방법
KR101855225B1 (ko) * 2014-05-30 2018-05-08 후아웨이 테크놀러지 컴퍼니 리미티드 능동 잡음 감소 헤드셋에 전력을 공급하는 방법, 장치, 및 시스템
CN206272807U (zh) * 2016-11-16 2017-06-20 深圳市冠旭电子股份有限公司 一种蓝牙耳机及其电池电量检测装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103138243A (zh) * 2011-11-29 2013-06-05 海洋王(东莞)照明科技有限公司 一种用于便携式灯具的充电电路及充电装置
CN203278349U (zh) * 2013-06-08 2013-11-06 盛传武 可无线充电的蓝牙耳机、蓝牙音箱及电子设备
US20150256010A1 (en) * 2014-03-04 2015-09-10 Jaybird, Llc Portable electronic device and associated docking assembly with magnetic charging, switching and data transfer
CN206117963U (zh) * 2016-10-17 2017-04-19 广州斐诺电子科技有限公司 一种具有无线充电功能的耳机
CN107171396A (zh) * 2017-06-27 2017-09-15 歌尔股份有限公司 蓝牙耳机电池的外围电路

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116800284A (zh) * 2023-07-18 2023-09-22 北京捷星电子科技有限公司 蓝牙多媒体收音机
CN116800284B (zh) * 2023-07-18 2024-03-12 北京捷星电子科技有限公司 蓝牙多媒体收音机

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