TW201131931A - Method for intelligent charger - Google Patents

Method for intelligent charger Download PDF

Info

Publication number
TW201131931A
TW201131931A TW99107323A TW99107323A TW201131931A TW 201131931 A TW201131931 A TW 201131931A TW 99107323 A TW99107323 A TW 99107323A TW 99107323 A TW99107323 A TW 99107323A TW 201131931 A TW201131931 A TW 201131931A
Authority
TW
Taiwan
Prior art keywords
battery
detection
charging
current
reading
Prior art date
Application number
TW99107323A
Other languages
Chinese (zh)
Inventor
A-Jin Xuyan
Original Assignee
Chen Tech Electric Mfg Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chen Tech Electric Mfg Co Ltd filed Critical Chen Tech Electric Mfg Co Ltd
Priority to TW99107323A priority Critical patent/TW201131931A/en
Publication of TW201131931A publication Critical patent/TW201131931A/en

Links

Landscapes

  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

The invention relates to a method for an intelligent charger; the detection method includes the following steps: (a) battery identification code (ID) interpretation; (b) parameter read access of data memory unit inside the battery; (c) detection analysis; (d) battery classification; and (e) charging qualified batteries. The procedure to detect the battery to be charged is utilized to avoid the explosion damage from over charging to the defective battery. Besides, the step (c) includes the following detection items: (c1) frequency detection, (c2) voltage detection, (c3) current detection and (c4) internal resistance detection. The charging method sets up the most adequate battery recharging parameters to achieve the present best charging status for battery according to the battery usage frequency, present residual voltage, data of original battery and environmental elements.

Description

201131931 六、發明說明: 【發明所屬之技術領域】 本發明為提供一種電池充電器,尤指一種 忐於充電則進行檢測並選擇繼續充電與知 慧型充電器之方法。 a 【先前技術】 按,電池是攜帶式電子產品的電能來源, 利用電池能讓f子產品無須定點使用,而對於 一般能不斷回充的電池而言,其品質及完成充 電後能使用的時間多寡則相當重要,而目前一 般的電池充電方法僅依照電池 並未…池使用次數造成電池二 容易導致電池過充電而更加損耗電池壽命。 此外’-般電池充電站、交換 充電設備對電池進行充電,無法對每 電電池於充電前、充電中及充 、破充 因而無法確保電池於充電後的容量測, ; = = :者使…良好的電二2 易發生σ口質良好的電池無法 些電池造成使用眭π /兄特性,使得該 發生危險用時間縮短,行程不易拿控甚至 失解決上述習用之問題與缺 龜商所亟欵以從事此行業之相關 人呷九改善之方向所在者。 3 201131931 【發明内容】 故,本發明之發明人有鑑於上述缺失, 搜集相關資料,經由多方評估及考量,教r = 事於此行業累積之多年經驗,經由不斷試作4 修改,始設計出此種能於充電前進行檢蜊= 擇繼續充電與否的智慧型充電器之方法的η %發明 專利者。 本發明之主要目的在於:一種智慧型 器之方法,其步驟有:a )針對電池内部所設 之辨識碼(1 D )進行判讀;b )針對該電池 内部安裝之 資料儲存单元進行參數讀取;c) 完成讀取後’則對該些已讀取之資料進行檢 測分析;d ) 讀取分析完畢,則進行該些電池 分類;及e )對符合充電條件之該電池進行充 電,其中步驟c )中包含下列檢測步驟:c 1 ) 一供記錄該電池所進行充電次數之次數檢測; c 2 ) 一供測量該電池電壓穩定性之電壓檢 測;c 3 ) 一供測量該電池電流輸出狀況之電 流檢測;及c 4 ) 一供判斷該電池内部電流放 電狀況之内阻檢測’而步驟d )中所述之電池 分類係包含··電池退回處理及電池充電處理使 用上述充電方法時’能依據電池的使用次數及 目前的殘留電壓’依原廠電池的數據及環境因 素等資料,設定最適合此電池再次充電時的參 數,以達到電池目前最佳的充電狀態。 4 201131931 電時的參數,以達到電池目前最佳的充電狀 態。 ' 本發明之次要目的在於:可辨別使用次 數。 本發明之另一目的在於:能掌握特性變 化,不使電池過充,避免危害情事發生。 本發明之又一目的在於:延長電池壽命。 本發明之再一目的在於:節約能源。 【實施方式】 為達成上述目的及功效,本發明所採用之 技術手段及構造,兹繪圖就本發明較佳實施例 詳加說明其特徵與功能如下,俾利完全了解。 請參閱第一圖及第二圖所示,係為本發明 較佳實施例之流程示意圖及檢測分析之流程 示意圖,由圖中可清楚看出本發明係一種智慧 ® 型充電器之方法,其步驟有:a )辨識碼(I D )判讀;b )參數讀取;c )檢測分析;d ) 電池分類;及e )進行充電,其中步驟c )更 包含下列檢測步驟:c 1 )次數檢測;c 2 ) 電壓檢測;c 3 )電流檢測;及c 4 )内阻檢 測,而步驟d )中所述之電池分類係包含:電 池退回處理及電池充電處理。 首先,於進行電池充電前透過步驟a )能 針對電池内部所設之辨識碼(I D )進行判 5 201131931 讀,因此藉由步驟a )能透過原先所設定各矿 牌的電池相關數據進行資料搜尋 ^ ^ 吁及比對,以確 定此待充電池的相關數據及規格, 。份冉進仃步驟 b )針對該電池内部安裝之一資枓 貝7Η儲存单元進 行參數讀取,由於每進行充電一 a 电-人,該次的相 關充電訊息及次數則會被記錄於資料儲存單 元’因此藉由步驟b)能了解該待充電 充電時的狀態,藉以判定該電池於現狀能充電 的時間長短及使用壽命如何,而步驟c )中所 述的完成讀取後,則對該此已妹跑 欠 一 g喂取之資料進朽 檢測分析更包含下列檢測步驟:c i ) 一供詞 錄該電池所進行充電次數之次數檢測;c201131931 VI. Description of the Invention: [Technical Field] The present invention provides a battery charger, and more particularly, a method for detecting and selecting a charging and knowledge-based charger after charging. a [Prior Art] Press, the battery is the source of electrical energy for portable electronic products. The battery can make the sub-products do not need to be used at a fixed point. For batteries that can be continuously recharged, the quality and the time that can be used after charging is completed. The amount of battery charging is quite important, and the current battery charging method only depends on the battery. The number of times the battery is used causes the battery to be overcharged and the battery life is further lost. In addition, the battery charging station and the charging device can charge the battery. It is impossible to measure the capacity of each battery before charging, charging, charging, and charging. Therefore, the battery can be measured after charging. Good electricity 2 2 is prone to σ good quality of the battery can not be used by some batteries caused by the use of 眭 π / brother characteristics, so that the occurrence of dangerous time is shortened, the stroke is not easy to control or even solve the above problems and the lack of turtles Those who are engaged in the direction of improvement in this industry. 3 201131931 [Description of the Invention] Therefore, the inventors of the present invention have drawn up the above-mentioned deficiencies, collected relevant materials, and through multi-party evaluation and consideration, taught r = years of experience accumulated in the industry, and continued to try 4 modifications to design this. A η % invention patenter that can perform a check on the charging method before charging to select whether to continue charging or not. The main object of the present invention is: a smart device method, the steps of which are: a) interpreting the identification code (1 D ) set inside the battery; b) reading the parameter for the data storage unit installed inside the battery ; c) after the reading is completed, the detection and analysis of the read data are performed; d) the battery classification is performed after the reading analysis is completed; and e) the battery is charged according to the charging condition, wherein the steps are performed. c) includes the following detection steps: c 1 ) a number of times for recording the number of times the battery is charged; c 2 ) a voltage detection for measuring the voltage stability of the battery; c 3 ) a measure for the current output of the battery Current detection; and c 4) an internal resistance detection for determining the internal current discharge condition of the battery' and the battery classification described in the step d) includes ··battery return processing and battery charging processing when using the above charging method According to the number of times the battery is used and the current residual voltage, according to the data of the original battery and environmental factors, set the parameters that are most suitable for the battery to be recharged. Presently preferred state of charge of the battery. 4 201131931 Electrical parameters to achieve the current best charging status of the battery. The secondary purpose of the present invention is to identify the number of uses. Another object of the present invention is to enable a change in characteristics without overcharging the battery and avoiding a hazard. Yet another object of the invention is to extend battery life. A further object of the invention is to save energy. [Embodiment] In order to achieve the above object and effect, the technical means and the structure of the present invention will be described in detail with reference to the preferred embodiments of the present invention. Please refer to the first embodiment and the second figure, which are schematic diagrams of the flow chart and the analysis and analysis of the preferred embodiment of the present invention. It is clear from the figure that the present invention is a smart® type charger method. The steps are: a) identification code (ID) interpretation; b) parameter reading; c) detection analysis; d) battery classification; and e) charging, wherein step c) further comprises the following detection steps: c 1) number detection; c 2) voltage detection; c 3) current detection; and c 4) internal resistance detection, and the battery classification described in step d) includes: battery return processing and battery charging processing. First, before the battery is charged, the step a) can be used to read the identification code (ID) set in the battery. 5 201131931 is read, so that the data can be searched through the battery-related data of the original set cards by the step a). ^ ^ Call for comparison to determine the relevant data and specifications of this battery to be recharged. Steps b) Perform parameter reading for one of the internal storage units of the battery. Since each charging is performed, the relevant charging message and the number of times will be recorded in the data storage unit. Therefore, by step b), the state of the charge to be charged can be known, thereby determining how long the battery can be charged in the current state and the service life, and after the completion of the reading described in step c), The sister owes a g-feeding data into the mortal detection analysis and includes the following detection steps: ci) a vocabulary to record the number of times the battery is charged; c

一供測量該電池電壓穩定性之電壓檢測;C 3 ) —供測量該電池電流輪ψ % ’爪御出狀況之電流檢 測;及c 4 ) 一供判斷马 | : & 辦μ電池内部電流放電乐 況之内阻檢測,透過上述各a voltage detection for measuring the voltage stability of the battery; C 3 ) - current measurement for measuring the battery current rim % 'claw out condition; and c 4) one for judging the horse | : & Internal resistance detection of discharge music, through the above

义合項檢測能掌握該IYihe test can master this I

池的特性變化,不使該雷、^ €池過充防止意外發 生’完成步驟C )的所右込 哥檢測後’則進行步摩 d )進行該些電池分類,丄# t 、 刀头貝,由於步驟d)申所迫 之電池分類係包含:電讣印^m _The characteristics of the pool change, do not make the mine, ^ € pool overcharge to prevent accidents, 'complete step C', after the right 込 检测 detection, then step by step d) to carry out the battery classification, 丄 # t, knife head shell Because of the step d), the battery classification forced by the application includes: eMule printing ^m _

电心退回處理及電池充I 處理,因此當檢測不合伞 卜D乎繼續充電條件時,貝, 可將電池透過電池退 ^處理而進行回收,反 之,該電池通過各項檢,、目丨 ,+ , 而時,代表此電池符合 充電條件,因此則可進杯# L + 增仃電池充電處理。透過 上述各項步驟,能讓各雷 分霞池於充電時會依據電 6 201131931 池的使用次數及目前的殘留電壓,依原廠電池 的數據及環境因素(k值)等資料,設定最適 合此電池再次充電時的參數,以達到電池目前 最佳的充電狀態充足該有的容量並提升電池 的使用壽命。 惟,以上所述僅為本發明之較佳實施例而 已,非因此即拘限本發明之專利範圍,故舉凡 運用本發明說明書及圖式内容所為之簡易修 • 飾及等效結構變化’均應同理包含於本發明之 專利範圍内,合予陳明。 綜上所述’本發明之智慧型充電器之方法 於使用時’為確實能達到其功效及目的,故本 發明誠為一實用性優異之發明,為符合發明專 利之申請要件’爰依法提出申請,盼審委早 日賜准本發明,以保障發明人之辛苦發明,倘 若鈞局審委有任何稽疑’請不吝來函指示, 發明人定當竭力配合,實感公便。 【圖式簡單說明】 第一圖係為本發明較佳實施例之流程示竟 圖。 〜 第二圖係為本發明檢測分析之流程示意圖。 7The electric core is returned and the battery is charged and processed. Therefore, when the detection is not in accordance with the parachute condition, the battery can be recovered by the battery being retracted by the battery. Otherwise, the battery passes through various inspections and witnesses. + , and then, this battery is eligible for charging, so you can enter the cup # L + to increase the battery charging process. Through the above steps, it is possible to set the most suitable for the lightning distribution pool according to the number of times of use of the battery 6 201131931 and the current residual voltage, according to the original battery data and environmental factors (k value). The parameters when the battery is recharged to achieve the current optimal state of charge of the battery is sufficient for the capacity and to increase the battery life. However, the above description is only the preferred embodiment of the present invention, and thus the scope of the present invention is not limited thereto, so that the simple modification and equivalent structural changes of the present specification and drawings are used. It should be included in the scope of the patent of the present invention and be combined with Chen Ming. In summary, the method of the smart charger of the present invention can achieve its efficacy and purpose when it is used. Therefore, the invention is an invention with excellent practicability, and is an application for conforming to the invention patent. Applying, I hope that the trial committee will grant the invention as soon as possible to protect the inventor's hard work. If the audit committee has any doubts, please do not hesitate to give instructions, the inventor will try his best to cooperate and feel polite. BRIEF DESCRIPTION OF THE DRAWINGS The first drawing is a flow chart showing a preferred embodiment of the present invention. ~ The second figure is a schematic diagram of the process of detection and analysis of the present invention. 7

Claims (1)

201131931 七、申請專利範圍: 1 、一種智慧型充電器之方法,其步驟係包括: a )針對電池内部所設之辨識碼(I D )進 行判讀; b )針對該電池内部安裝之一資料儲存單元 進行參數讀取; c )完成讀取後,則對該些已讀取之資料進 行檢測分析; d )讀取檢測分析完畢,則進行該些電池分 類;及 e )對符合充電條件之該電池進行充電。 2 、如申請專利範圍第1項所述之智慧型充電 器之方法,其中該步驟c )中所述之檢測 分析更包含下列檢測步驟: c 1 ) 一供記錄該電池所進行充電次數之 次數檢測; c 2 ) —供測量該電池電壓穩定性之電壓 檢測; c 3 ) —供測量該電池電流輸出狀況之電 流檢測;及 c 4 ) 一供判斷該電池内部電流放電狀況 之内阻檢測。 3、如申請專利範圍第1項所述之智慧型充電器 之方法,其中該步驟d )中所述之該電池分 類係包含:電池退回處理及電池充電處理。 8201131931 VII. Patent application scope: 1. A method of intelligent charger, the steps of which include: a) interpretation of the identification code (ID) set inside the battery; b) one data storage unit for the internal installation of the battery Perform parameter reading; c) after reading, the detected data is detected and analyzed; d) the battery is classified according to the completion of the reading detection and analysis; and e) the battery that meets the charging condition Charge it. 2. The method of claim 4, wherein the detection analysis described in the step c) further comprises the following detecting steps: c 1) a number of times of recording the number of times the battery is charged Detection; c 2 ) - voltage detection for measuring the voltage stability of the battery; c 3 ) - current detection for measuring the current output condition of the battery; and c 4) an internal resistance detection for determining the internal current discharge condition of the battery. 3. The method of claim 4, wherein the battery classification described in the step d) comprises: a battery return process and a battery charge process. 8
TW99107323A 2010-03-12 2010-03-12 Method for intelligent charger TW201131931A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW99107323A TW201131931A (en) 2010-03-12 2010-03-12 Method for intelligent charger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW99107323A TW201131931A (en) 2010-03-12 2010-03-12 Method for intelligent charger

Publications (1)

Publication Number Publication Date
TW201131931A true TW201131931A (en) 2011-09-16

Family

ID=50180472

Family Applications (1)

Application Number Title Priority Date Filing Date
TW99107323A TW201131931A (en) 2010-03-12 2010-03-12 Method for intelligent charger

Country Status (1)

Country Link
TW (1) TW201131931A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103199314A (en) * 2013-04-17 2013-07-10 国家电网公司 Charging method for electric vehicle
US11251638B2 (en) 2018-12-19 2022-02-15 Industrial Technology Research Institute Method and device for charging aluminum battery

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103199314A (en) * 2013-04-17 2013-07-10 国家电网公司 Charging method for electric vehicle
US11251638B2 (en) 2018-12-19 2022-02-15 Industrial Technology Research Institute Method and device for charging aluminum battery

Similar Documents

Publication Publication Date Title
EP2963433B1 (en) Method and apparatus for estimating state of battery
CN106371027B (en) A kind of test method that the echelon of retired battery recycles
CN109655754B (en) Battery performance evaluation method based on multi-dimensional grading of charging process
CN103869256B (en) Method for estimating SOH of power lithium ion battery based on alternating current impedance test
CN108398649B (en) Lithium analysis detection method and device
CN110109029B (en) Battery cell lithium analysis parameter detection method and device, battery cell detection system and computer readable storage medium
CN107516750A (en) A kind of method and device for determining lithium ion battery safe charging condition
CN104297690A (en) Lithium battery SOC-OCV curve determination method
CN102520367A (en) Method for evaluating life of space hydrogen-nickel storage batteries
CN102393508A (en) Nondestructive diagnosis of battery performance
CN109507600A (en) A kind of retired ferric phosphate lithium cell echelon utilizes appraisal procedure
US20150056478A1 (en) Lithium-ion secondary battery system, inspection method for lithium-ion secondary battery, and control method for lithium-ion secondary battery
CN112051512B (en) Echelon utilization sorting method and energy storage system
CN113696786B (en) Battery equalization method and system
CN107356879B (en) A kind of cell health state detection and appraisal procedure and change system based on multiple physical field
CN107037375B (en) Method and device for measuring direct current internal resistance of battery
US20140184233A1 (en) Method for checking deterioration of battery
CN107505575B (en) Rapid assessment method for retired power battery
CN105742729B (en) A kind of lithium ion battery safety on line method for early warning
CN115166532A (en) Method and device for predicting capacity of nickel-metal hydride battery, electronic device and storage medium
CN115267552A (en) Vehicle battery health state evaluation method, device, equipment and storage medium
CN111451159A (en) Method for rapidly screening capacity of single battery in battery module
CN102393509A (en) Nondestructive evaluation method for performance of lithium ion battery
TW201131931A (en) Method for intelligent charger
US9372239B2 (en) Sealed battery manufacturing method and inspection device