Lithium Polymer Batteries

Slides:



Advertisements
Similar presentations
Chapter 2 Electrical signals of nerve cells. 細胞內的電位記錄 玻璃電極,直徑 小於 1 um 刺激電極 記錄電極 Hyperpolarization Depolarization Threshold potential.
Advertisements

Polymer graphite composite anodes for Li-ion batteries Basker Veeraraghavan, Bala Haran, Ralph White and Branko Popov University of South Carolina, Columbia,
Materials for Electrochemical Energy Conversion
Electrochemical Cell An electrochemical cell : a negative electrode to which anions (-) migrate – donates electrons to the eternal circuit as the cell.
Biological Engineering Electrochemistry & Virus-Templated Electrodes F. John Burpo Biomolecular Materials Laboratory Massachusetts Institute of Technology.
Have you ever held a wire that has current flowing through it? If so what did you notice about it? The wire gets hot. The increase in temperature causes.
1 Electrochemistry Chapter 18, Electrochemical processes are oxidation-reduction reactions in which: the energy released by a spontaneous reaction.
Electrochemical Characterization of Li-ion Batteries for Hybrid Application Ageing Study Abdilbari Shifa Mussa, Rakel Wreland Lindström, Mårten Behm,
Comparison of three thin film solar cells Semiconductor Taiwan 2008.
UN Informal Working Group Meeting on Lithium Battery Tests Ideas to Address Problems Testing Large and Small Cells and Batteries George A. Kerchner Executive.
THT is the Original Company for ARC & Battery pioneered ARC for over 20 years Pioneered Li Battery for over 10 years Sales, service, support worldwide.
Rethinking Lithium Energy Storage and Battery Architecture Roland Pitts Founding Scientist Planar Energy Devices Orlando, FL
1 Chemical and Engineering Thermodynamics Chapter 2 Conservation of mass and energy Sandler.
第二章 太陽能電池的基本原理 及其結構 2-1 太陽能電池的基本原理 2-2 太陽能電池的基本結構 2-3 太陽能電池的製作.
Advanced Chemical Engineering Thermodynamics
FPD M. & A. 1 FPD M.&A. -01 液晶平面顯示器的技術 發展現況以及廠商動態.
1 Advanced Chemical Engineering Thermodynamics Appendix H Brief introduction to perturbation theory of dense fluid.
Studies on Capacity Fade of Spinel based Li-Ion Batteries by P. Ramadass, A. Durairajan, Bala S. Haran, R. E. White and B. N. Popov Center for Electrochemical.
高效率太陽能車 指導教授 : 蔡志成, 王國禎 組員 : 張友倫 ( ) 溫承豫 ( ) 溫承豫 ( ) 李志健 ( ) 李志健 ( ) 第十三週 (2005/5/18)
LiFePO4 Li-ion battery—— New pattern、Safe、EV power Li-ion battery
Quantitative Estimation of Capacity Fade of Sony cells Cycled at Elevated Temperatures by Branko N. Popov, P.Ramadass and Bala S. Haran Center for.
Effects of Discharge Rates on the Capacity Fade of Li-ion Cells Department of Chemical Engineering University of South Carolina 1 Effects of Discharge.
Chapter 8 消費可能性 偏好 選擇 Part 3 家庭的選擇
Analysis of Variance (ANOVA) CH 13 變異數分析. What is ANOVA? n 檢定 3 個或 3 個以上的母體平均數是否相等的統計檢定 n 檢定多個母體平均數是否相同 n 比較大二、大三、大四學生實習滿意度是否一樣 ? ( 來 自相同的 population)
Capacity Fade Studies of LiCoO 2 Based Li-ion Cells Cycled at Different Temperatures Bala S. Haran, P.Ramadass, Ralph E. White and Branko N. Popov Center.
溶劑可以溶解反應物,形成均勻的反應系統; 溶劑用來調整反應物的濃度與反應溫度,控制速率與方向; 溶劑萃取,分離特定的化合物。 溶劑,特別是有機溶劑,是環境污染的主要來源。 綠色(永續)化學逐漸形成一種新的科學理念。溶劑的選擇 與化學反應的設計,必須加上環境因素的考量。 化學家已發展出許多有機溶劑替代液體及綠色的合成方法:
NATIONAL CHENG KUNG UNIVERSITY SERVO CONTROL LABORATORY 低頻壓電發電器之介紹 Introduction of piezoelectric electric power generator on low frequency 專題討論 Seminar.
Ch 3 Central Tendency 中央集中趨勢測量.
1 Chemical and Engineering Thermodynamics Chapter 1 Introduction Sandler.
6A Luk Pui Lam (7). Lead-acid accumulator Lithium battery charged A secondary cell is any kind of electrolytic cell in which the electrochemical reaction.
EE235 Nanofabrication John Gerling High-performance lithium battery anodes using silicon nanowires.
PH0101 UNIT-5 LECTURE 7 Introduction Types of battery Lithium battery
ADVANCED BATTERY TECHNOLOGY HYBRID 3 AUXILIARY ALT POWER UNITS Paul Baumann:
ELECTRICITY NOTES. ELECTRICITY ELECTRICITY: form of energy that occurs when electrons move from place to place Electricity can form whenever (e - ) electrons.
Nanotechnology for Future Batteries
Water Formation and Flooding Phenomena in Proton Exchange Membrane Fuel Cells Yi-Shen Chen a, Chin-Hsiang Cheng a,*, Chun-I Lee b, Shiauh-Ping Jung b,
1 電動車電池及電動車發展現況 南台科技大學機械系 胡龍豪. 2  Introduction to Lithium Ion battery Electrochemical Mechanism :Materials : Cathode : Li ion storage Anode : Li ion.
ENERGY INSTITUTE Battery Research Group Analysis of Overcharge & Overdischarge Characteristics and Failure Detection of Li – ion Polymer Batteries Cem.
Improvement of electrochemical performance for Li 3 V 2 (PO 4 ) 3 /C electrode using LiCoO 2 as an additive 指导教师:唐致远教授 学生:王利娟.
Lithium-Ion Battery By QingjieBao. A lithium-ion battery (sometimes Li-ion battery or LIB) is a family of rechargeable battery types in which lithium.
資料通訊與電腦網路原理 資料傳輸線路的傳遞模式 資料於傳輸線路的移動 並列傳輸、序列傳輸 基頻、寬頻.
Thin Film & Battery Materials Lab. National Research Lab. Kangwon Nat’l Univ. AS deposited LiCoO 2 thin film cathodes prepared by RF magnetron sputtering.
Nanotechnology and the Lithium-ion Battery. Batteries in General –Electrolyte –Electrodes –Anode –Cathode Nanotechnology and the Lithium-ion Battery.
LiFeBATT 40138F1 LiFePO4 Battery. Appearance Specifications (1) Physical Characteristics WeightApprox.365 g Dimension Φ40.6 × 138 mm Electrical Characteristics.
Department of Electrical Engineering Southern Taiwan University of Science and Technology Robot and Servo Drive Lab. 2015/11/25 Progress Report Boost circuit.
Lithium Iron Phosphate Lithium Ferrous Phosphate Lithium Ferrophosphate LiFePO, LiFePO4, Li-Iron, LiFe, LFP 4 types of cells (3.2V/cell). Many multi-cell.
工程科技研究所暨機械工程系 副教授 蔡錦山 中華民國 100 年 4 月 13 日 指叉型質子交換膜燃料電池之參數研究 Parametric Study on the Performance of the PEMFC with Interdigitated Flow Fields 「南榮技術學院 99.
Mid Semester Presentation. Team Members Chapman, Jonathan Duties: Recharging Circuit Major: Electrical Engineering Dang, Quoc Duties: Power Circuit, Website.
Electromagnetic 1 Chapter 5 Steady electric currents Conduction currents : Drift motion of conduction electrons of holes in conductor or semicond. Electrolytic.
Electrochemical Reactions. Anode: Electrons are lost due to oxidation. (negative electrode) Cathode: Electrons are gained due to reduction. (positive.
Battery Models. EMF and voltage What is EMF? – Electro Motive Force What is the difference between EMF and battery voltage? – The battery has internal.
Battery Technology in UAS Application Trevor Hahm.
KIT – University of the State of Baden-Wuerttemberg and National Research Center of the Helmholtz Association Dipl. phys. Elke Schuster Institute for Applied.
Electrochemical Reactions. Anode: Electrons are lost due to oxidation. (negative electrode) Cathode: Electrons are gained due to reduction. (positive.
Circuit Electricity. Electric Circuits The continuous flow of electrons in a circuit is called current electricity. Circuits involve… –Energy source,
Applications: thin form Lion batteries Electrode side Co-extruded electrode + separator film Separator side Graphite (MCMB2528) side 300µ thick SiO 2 /
Battery Research Group Secondary Li Battery Technology for Next Generation Nov. 30, 2006 Hyun-Soo Kim Battery Research Group Korea Electrotechonology.
Lithium-Ion Battery By QingjieBao.
Secondary Cell Nickel Cadmium (NiCd) Cells and Batteries
Photovoltaic Systems Engineering
BATTERIES THAT CHARGES ON AIR
LX2202 2A Li-Ion Charger and Power Control
Aging of Lithium Ion Batteries
A High-Performance Li-Al Battery For Electric Vehicles
Photovoltaic Systems Engineering
Volume 1, Issue 2, Pages (October 2017)
High-Energy Li Metal Battery with Lithiated Host
Lithium Sulfur Batteries
Fig. 5 Electrochemical performance of stretchable aqueous rechargeable lithium-ion battery using a GAP multilayer conductor as a current collector. Electrochemical.
Fig. 2 Stabilizing the lithium-electrolyte interface.
Presentation transcript:

Lithium Polymer Batteries EXA technology status Lithium Polymer Batteries 動能科技

Three major components 電池(心臟) Battery, Heart LCD (臉 Face) IC(腦Brain)

Lithium ion battery V Anode Discharge Li+ transfer Cathode LiCoO2 MCMB 隔離膜

The principle of Lithium ion battery Cathode 正極: LiCoO2 Li(1-x) CoO2+xLi+ +xe- Anode 負極: C6 +xLi ++xe- Lix C6 Charge 總反應: LiCoO2+C6 Li(1-x) CoO2+LixC6 Discharge

Electrodes voltage change on charging/ discharging status Open Circuit Potential vs Li C 3.0 V LiC6 0.0 V 4.2V Li0.5CoO2 3.0V Li1.0CoO2

Voltage stability on LiCoO2

Various cathode materials for lithium ion battery

Thermal stability on various cathode materials

What parameter affect C-rate? ESR= 0.03 ohm 3C IR drop = 0.03*2A = 0.06 V

Why low temperature voltage drop?

Safety of battery

Separator dimension stability on high temperature

Function of Separator To prevent electric short between cathode and anode To provide ion diffusion path on battery Shutdown ion diffusion path when overheat

Various separators with different materials

Effects of electrolytes Electrochemical stability Quality of SEI (Solid electrolyte Interface) film Affect operation temperature for batteries Safety of battery

電源的應用模式 —如何選擇(要求)電池 大電流模式 high C-rate discharge mode: 電動車,電動工具,模型飛機,模型汽車。 中電流放電模式: GSM 模式,數位相機,MP3 (with HD), Video player, PHS, PDA,NoteBook PC,電子字典 小電流放電模式:藍牙耳機,MP3 (with CF)

電源的應用模式—GSM 放電模式

電源的應用模式—各種放電模式比較

電源的應用模式—GSM 放電模式

電源的應用模式 —溫度影響GSM 放電模式

charge curve of EXA AL501430A (150mAh)

Discharge curve of EXA AL501430A (150mAh)

AL501430A (150mAh) cycle life

AL501430A (150mAh) charge capacity on different temperature

Discharge curve on different temperature of Merry EXA AL501430A (150mAh)

Discharge capacity of Merry EXA AL501430A (150mAh) on various temperature

AL501430A (150mAh) UL_1642 safety test Pass UL_1642 test

Pass AL501430A (150mAh) Overcharge test Battery No. Initial Thickness A1 (mm) Final Thickness A2 Thisckness change (mm) Max. Temp.(℃) Note AL501430A#01 3.84 3.91 0.07 27.6 2C,5V AL501430A#02 3.89 0.05 28.0 AL501430A#03 3.85 4.95 1.10 31.0 AL501430A#04 3.86 5.17 1.31 AL501430A#05 3.87 5.73 1.86 29.1 AL501430A#06 16.75 12.89 103.6 2C,6V AL501430A#07 3.88 18.16 14.28 113.1 AL501430A#08 18.36 14.50 113.2 AL501430A#09 3.9 18.04 14.14 112.4 AL501430A#10 18.29 14.44 110.5

AL501430A Capacity distribution

AL421430A ACR Distribution

Product Specification Cell Model Nominal Voltage v) Rated Capacity (mAh) Dimension (mm) Weight approx. (g) Gravimetric Density (Wh/kg) Volumetric (Wh/L) T W H AL421430 3.7 120 4.2 14 30 3.0 148 250 AL501430 150 5.0 3.5 155 260 AL402030 180 4.0 20 275 AL502030 230 5.4 280 NEW AL401836 18 36 5.2 320 AL402050 400 50 8 185 370

Product Specification Cell Model Nominal Voltage (v) Rated Capacity (mAh) Dimension (mm) Weight approx. (g) Gravimetric Density (Wh/kg) Volumetric (Wh/L) T W H NEW AL402060 3.7 430 4.0 20 60 10 150 320 AL364850 940 3.6 48 50 18 190 400 AL553436 600 5.5 34 36 12 175 315 AL501430 670 3.8 56 15 165 340 AL383562 700 35 62 16 160 AL503759 1050 5.0 37 59 22 350 AL425059 1200 4.2 25

Product Roadmap Model 2004 2005 2006 Q1~3 Q4 AL553436 600 700 750 670 800 850 900 AL383450 740 AL503759 1050 1300 1350 1400 AL425059 1200 AL421430 120 130 135 170 155 160 AL402030 180 185 190 AL502030 230 240 250 AL401836 Capacity measuring conditions : charge ( CC/CV : 0.2C/4.2V, 0.05C ) discharge ( 0.2C/E.V = 2.75V ) This information contained herein may be changed without prior notice.

High Power Density LPB

High Power Density LPB

High Power Density LPB

Working Voltage Windows of LPB Battery Usable Area 2.5V 4.35V Voltage forbidden area Voltage warning area

THE END Thank You For Your Attention!