JPS5996665A - Electrolyte for lithium battery - Google Patents
Electrolyte for lithium batteryInfo
- Publication number
- JPS5996665A JPS5996665A JP57206572A JP20657282A JPS5996665A JP S5996665 A JPS5996665 A JP S5996665A JP 57206572 A JP57206572 A JP 57206572A JP 20657282 A JP20657282 A JP 20657282A JP S5996665 A JPS5996665 A JP S5996665A
- Authority
- JP
- Japan
- Prior art keywords
- lithium
- jethoxyethane
- lithium battery
- solvent
- mixed
- Prior art date
- Legal status (The legal status 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 status listed.)
- Granted
Links
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/05—Accumulators with non-aqueous electrolyte
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
Landscapes
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Electrochemistry (AREA)
- General Chemical & Material Sciences (AREA)
- Primary Cells (AREA)
- Secondary Cells (AREA)
Abstract
(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.
Description
【発明の詳細な説明】
丸明の許創な1i51.L!J:1
本発明は、リチウム′電池にハ」いる電、イ故に閥する
ものである。[Detailed description of the invention] Marumei's original 1i51. L! J:1 The present invention focuses on the electricity contained in lithium batteries.
リチウノ・を負懐ン占ゴ必負として井」いる゛屯l也V
ま、小盈e市エネルギ密区紮mする゛電池として研究さ
れているが、その二次化が大きな四屯点となっている。I'm looking forward to seeing Richiuno as a must-see.
Well, it is being researched as a battery that can be used in the energy-dense area of Xiaoying City, but its secondary use is a major problem.
二次化が可能な正協活物質として、V20B、Ve O
□!号の余病酸化物、Ti5z、VS*等の屑状化合物
が、Liとの間でトポケミカルな反応をする化8吻とし
て知られており 、机hfでチタン、ジルコニウム、ハ
ンニウム、ニオビウム、タンタル、バナジウムの硫化物
、セレン化物、テルル化物を用いた′電池(米国瞥計第
4,089,052号明細刊参照)等が開示されている
。As a Seikyo active material that can be secondaryized, V20B, Ve O
□! Scrap compounds such as No. oxide, Ti5z, and VS* are known as chemical compounds that undergo topochemical reactions with Li. A battery using vanadium sulfide, selenide, or telluride (see specification of U.S. Beammeter No. 4,089,052) has been disclosed.
しかしながら、このような二次電池用正恰活物負の研究
に比して、Li焼の光放電有性に10・」する研究は光
分と(lよいえず、Li二次電池失視のためには、元放
′−効半及びサイクル寿都専の冗放′屯特性の艮灯な屯
厚ト液の探査が皿太な間也となっている。Li 4メの
光放屯効幕を同上させる試みとしてrl L i Ct
O4/プロピレンカーボネイトにニトロメタンA 50
2=の′IIJ8カ11 =tJを力lえる試み(El
ectr。However, compared to such positive and negative research on active materials for secondary batteries, research that investigates the photodischarge properties of Li-fired materials has been found to be 10% of the time. In order to achieve this, the exploration of the light emission characteristics of the original radiation effect and the cycle Jutsu-sen is a major step.The light radiation effect of Li 4 rl L i Ct as an attempt to make the curtain ditto
O4/propylene carbonate with nitromethane A 50
2 = 'IIJ8 Ka11 = Attempt to strengthen tJ (El
ectr.
chimica、Acta、vol、22. 第75J
it=83声(1977) :]寺が行なわlしている
が必すしも光分とribえす、ざらにイザ・註の倹れた
リチウムニ仄喝池刀:l亀n十ン牧が求められている。chimica, Acta, vol, 22. 75th J
it = 83 voices (1977): ] The temple is doing it, but it is also necessary to rib it with light, and it is a waste of lithium, and it is a sword, and it is called for. ing.
本究明は0、このような現状に亦みなされたものであ(
)、その目的は畳重率が局くかつLi幌の充放′電荷性
の優れたリチウム−次及び二次′屯?巴用非水屯屏孜を
仇供することにある。This research has been neglected due to the current situation (
), its purpose is to produce lithium secondary and secondary lithium ions with a localized folding ratio and excellent charging and discharging properties. The purpose is to avenge Tomoe's non-suishitun-bingei.
したがって、本丸甲」によるリチウ1allk用非水′
区屏ン吹はリチウムj益を;M 4’、:’、、浴媒に
溶剛、させた非水屯耐牧においで、前a[シ非水′畦麻
敢の有機ン谷媒として1.2−ジェトキシエタンと、前
に+:1.2−ジェトキシエタンより高話藏率の非プロ
トンt?i+、住γ谷媒との混合溶媒を・用いた俗を籍
飲とするものである。Therefore, the non-water '
Gu Ping blowing lithium J benefit; 1.2-jethoxyethane and before +: aproton t with a higher conversion rate than 1.2-jethoxyethane? It is commonly used as a mixed solvent with i+ and Sumiya medium.
本究明によれは、萌似浴媒として、1.2−ジによシ々
t′−牟が動く、かつLi襖の充放も翁憔の優秀なリチ
ウム二次屯他用非水゛砒屏1wを逼り(することができ
る。According to the present study, as a similar bath medium, 1.2-di and t'-particles move more and more, and the charging of Li sliding doors is also possible with the excellent lithium secondary tank and other non-aqueous baths. It is possible to read 1w of folding pages.
不発閃を史に卸しく説明する。Explaining the misfires in history.
リチウム二次電池は、リチウムるjt急γ占1f寅とし
、Li イオンに刈し、゛電気化学的に重性で、かつL
i イオンと可逆的な′喝気化字反応を行なう吻買を
正べη活吻買とし、リチウム墳全肩°6す溶媒に溶解さ
せ7迦非水゛F4J、汚トイ′kを用いたものであるか
、このリチウムニ(7CI4.ilJ川の/rj′1・
72浴ハとして、本究明においては、1.2−ジェトキ
シエタンと、1祇rjt歳の畳重率を同上させるだめに
は、Liから浴a・々への≠
や府媒禾中のLi鴻がp珪1゛触し易く、かつLi
イオンの7シ動(住が入きい争が心安であると2)えら
れる。1,2−ジェトキシエタンはLiへの/X応性が
低い午がゾロられているが、その誘′颯皐は低く(5,
C25’C)年δ玉ではその特注は必ずしも゛光分では
ない。この独な安水を、1,2−ジェトキシエタンと1
.2−ジトキエタンよシ尚妨屯牟の非プロトン憾註浴奴
との混合溶媒を用いた岨屏液ン1に用する十によシ胸た
づ一争が勘侍される。Lithium secondary batteries are made of lithium, which has a high concentration of 1f, and is made into Li ions, which are electrochemically heavy and
1. A reversible chemical reaction with ions that undergoes a reversible vaporization reaction is used as an active chemical, which is dissolved in a solvent containing lithium ions and used in a non-aqueous solution. Is this lithium ni (7CI4.ilJ river/rj′1・
As for 72 baths, in this investigation, in order to make the convolution rate of 1,2-jetoxyethane and 1 yrjt the same as above, it is necessary to change the ratio from Li to baths a and ≠ and the Li hong in the middle of the government. Easy to touch and Li
Aeon's 7-movement (2) is said to be a safe place to live and fight. Although 1,2-jethoxyethane has low /X reactivity to Li, its attraction is low (5,
C25'C) In the year δ ball, the custom order is not necessarily ゛light minute. This unique ammonium water is mixed with 1,2-jethoxyethane and 1
.. 2- Ditokiethane and the aprotic aprotons used in the liquid mixture using mixed solvents are considered to be a serious problem.
本96鴫による祇hf撤のM↑μ市銖は0り運のように
、1.2−ジェトキシエタンと、l、2−ジェトキシエ
タンより市誘−率の非プロトン性極性溶媒との混合溶媒
であるが、これらに、溶解される溶ηは従来この4□□
□0屯亀に用いられる浴質を目出に用いることができる
。たとえば、LiC1Ch +LiBF、。As expected, M↑μ is a mixed solvent of 1,2-jethoxyethane and an aprotic polar solvent with a lower dielectric constant than l,2-jethoxyethane. However, the molten η dissolved in these is conventionally 4□□
□The bath quality used for 0tunkame can be used for mede. For example, LiC1Ch +LiBF.
LiAsFa 、LiPFg、LiAtC4+寺の魚1
候坂及びCF”s SOm Lit CFs COOL
i 等の有板塩を用いることができる。LiAsFa, LiPFg, LiAtC4 + temple fish 1
Kourizaka and CF”s SOm Lit CFs COOL
A plate salt such as i can be used.
これらの溶%は前記壱伝溶婬に、好ましくは0.5〜2
.5 溶庁[される。溶解する溶″員が0,5N未渦
であると、充放Iv、萄性が着しく低下し、2.5Nを
超えると面質は溶層しないからである。The melting percentage of these is preferably 0.5 to 2
.. 5. To be dissolved. This is because if the melt member to be dissolved is 0.5N without vortex, the charging/discharging Iv and the viscosity will be severely reduced, and if it exceeds 2.5N, the surface quality will not become a molten layer.
1.2−ジエトキシエタ/と混合する1、2−ジェトキ
シエタンよシ尚誘電半の非プロトン4@3性陪媒は、従
来この極の′電池に用いられる尚誘亀率浴媒を目出に井
」いる事ができる。たとえは、)゛ロピレンカーボイ・
イト、r−5?’テロラクトン、ジメチルスルホキシド
、スルホラン、N、N−ジメチルホルムアミド、N、N
−ジメチルアセトアミド寺の中から遇ばれたl種以上の
溶媒を用いる事ができる。1,2-diethoxyethane is mixed with 1,2-diethoxyethane, which is a semi-dielectric aprotic 4@3 carrier medium. ” You can be there. The analogy is)
Ito, r-5? 'Telolactone, dimethyl sulfoxide, sulfolane, N,N-dimethylformamide, N,N
- Dimethylacetamide It is possible to use more than one solvent selected from the group.
1.2−ジェトキシエタン及び1.2−ジェトキシエタ
ンより尚妨屯半の非プロトン側性省媒の混合比は、1.
fましくは1:9〜9:11 岐も好ましくば5 :
5 戸14畝でめる。1:9以下の九・d比でるると\
1f−4Jイiをで昆合した息味が7カ、くなシ、単独
糸の充放曳・;1f−1+(tこガつさ、充放′醸特性
が悠化するからである。The mixing ratio of 1.2-jetoxyethane and the aproton-saving medium that is less than 1.2-jetoxyethane is 1.
Preferably 1:9 to 9:11 and preferably 5:
5. House with 14 ridges. If you get a 9.d ratio of 1:9 or less,
1f-4Ji is combined with 7 colors, kunashi, and single thread's charge and release. .
以下、本究明の火、殉汐りを説明する。Below, I will explain the fire of this investigation and my martyrdom.
美加1・し111
yt獣をイ′I−用蜆、λ4句・吃(fc L i
を参j1(て也・1其としてLiを用いた屯(民金肘1
み、Pt4史上にLi を析出させることにより、Li
rl!il<の尤放兎崎注を副廻した。Mika 1 111
Refer to j1 (Teya, 1).
By precipitating Li in Pt4 history, Li
rl! I made a copy of il <'s Yuho Tozaki Note.
電層7e−Vこは、INLiBFaを1.2−ジェトキ
シエタン(以下、DEOEと1も記する)とプロピレン
刀−ボネイト(以下、PCとU杓記する)のl=1体4
頁比1比台7+J訊Kt谷消6せたものを用いた。The electric layer 7e-V is formed by forming INLiBFa into l=1 body of 1,2-jetoxyethane (hereinafter also referred to as DEOE) and propylene carbonate (hereinafter referred to as PC) 4
I used a page ratio of 1, 7 + J, Kt, and 6.
この祇屏数の尋電年id4.7XI01Ω−1m−1で
あり、I NL iBF’4 /P C単独糸の寺厄半
及びlNLi1lF、/DEOm早独ホの7#、4 半
でりる3、6刈O−8Ω−’ !−”及び゛1.2刈0
−8Ω−7”よI)G]かツタ。This number of folding numbers is id 4.7 , 6 cut O-8Ω-'! -” and “1.2 moi 0
-8Ω-7” yoI)G] or ivy.
測矩は、まず5mA/ffl の定′亀訛で1分i’i
、4j、 Pt幌上にLiを析出させ光電した浚、5m
A/cdの麓KmCでpt+x上に析出したLi+ イ
オンとして放−するサイクル試飲をイ:rなった。充放
電動¥は、pt物の電位変化よシ釆め、Pt惨上に析出
したLiをLi+ イオンとして放電させるのに太した
′喝気燻とPt(sj<上にLiを析出させるだめxJ
Aした也気賞との比から詩、出した。First, measure the rectangle at 5 mA/ffl for 1 minute.
, 4j, photoelectrically deposited Li on a Pt canopy, 5 m long.
A cycle sample was conducted to release Li+ ions precipitated on pt+x at KmC at the foot of A/CD. The charging/discharging electric current is determined by considering the potential change of the Pt material, and using a thick swell to discharge the Li deposited on the Pt surface as Li+ ions and Pt (sj
I submitted a poem based on the comparison with the Yaki Award which I received an A.
81図は、充放岨幼キとサイクル数の図1・床を示す図
であシ、図中のaは上配磁脚准を用い)c場合であり、
b及びCは、ぞれぞれ、1NLiBFn/PC及びlN
LiBF4/DEO玖 単6ズ糸の′曳Ht故を用いた
徊合の充放眠符件2参考クリとして示した0第1図から
千」るように、牢j虫糸(b、c)に比べて人混金糸(
a)は明らかに、充放亀符゛匡は1ら上している〇実施
例
一屏畝として、2 NL i CLOaケPCとDEO
Eの体積7昆会比1:9の混合電媒に添附さぜたものを
用いた以タトは、笑施丙1と1−=J休にして、Liの
単独糸の2h屯卓である4、3X10−’Ω−1d1及
び3 、3 X 10−8O−”tin−” よシ商か
った。第2図は充放′屯//JJ牟とサイクルはの1力
恍を示す凶であり、図中の(a)は本発明の2 NL
i CtO< /P C/DEOE (体4A混合比l
:9)金奄屏散として用いた嶺会であシ、図中の(b)
及び(C)は参考t・1」として、各々、INLiCt
04/PC及びI NL iCLot /DEOE率犯
溶媒糸゛岨肘θを用いたへ□1台のLi似の光放電イジ
注を示したものである。第2凶から判る様に、単斜;h
(b 。Figure 81 is a diagram showing Figure 1 and the floor of the charging and discharging force and the number of cycles.
b and C are 1NLiBFn/PC and 1N, respectively
LiBF4/DEO 绖 As shown in Figure 1, the prison thread (b, c) is shown as a reference. Compared to the human mixed thread (
Obviously, a) is higher than 1. As an example, 2 NL i CLOa ke PC and DEO
This is a 2h tunshu of a single thread of Li with a volume of 7 of E added to a mixed electric medium with a ratio of 1:9, with 1 and 1-=J. 4,3X10-'Ω-1d1 and 3,3X10-8O-"tin-" worked well. Figure 2 shows the power of charge and release//JJ and the cycle, and (a) in the figure is the 2NL of the present invention.
i CtO< /P C/DEOE (body 4A mixing ratio l
:9) Ashi Minekai used as a kinjuban, (b) in the figure
and (C) are reference t・1'', respectively, INLiCt
04/PC and INL iCLot/DEOE A Li-like photodischarge model using a solvent thread θ is shown. As you can see from the second sin, monoclinic; h
(b.
C)に比べて、?■、′一台ホ(a)は明らかに光取、
。!i守性は1ijj上している。Compared to C)? ■、'Ichitaiho (a) is clearly Mitsutori,
. ! i-observance has increased by 1ijj.
夫yiSl クリ3
砥騨欣として、2NLiCtO4をpcとDEOEの体
積混合比1:1の混せ俗妹に電解させたものを用いた以
外は、実施ルす1と同様にしてLiの充放亀将牡fc曲
j別した。Li charging and discharging mechanism was carried out in the same manner as in Example 1, except that 2N LiCtO4 was mixed with PC and DEOE at a volumetric mixing ratio of 1:1 and electrolyzed as the tod. Masao fc song j is different.
この′−pp+奴の婢喝牢は7.5X10−”Ω−1副
−1であシ、2 NL i Ctea /P C単独系
及び2NLi CLO4/DEOE 435J=Om
m4=でhる4、3xlO−” Ω−”crn′″1及
び311.・3X10.−”Ω−1百−1第3図は、光
放電効率とサイクル飲の閃称全示す図であシ、図中の(
a)は本発明の2 N L i CtOa /PC/D
EOE (+4N混合比1:l)を電m液として用い
たく合であシ、図中の(b)及び(c)は、参考例とし
て各々、I NL I Ctri /P C及びI N
L i Cl−0</DEOE単独溶媒系奄)寸手液を
用いた場合のLi極の充放′−特性を示したものである
。This '-pp+ guy's blackmail prison is 7.5X10-''Ω-1 sub-1, 2NLi Ctea /PC single system and 2NLi CLO4/DEOE 435J=Om
m4 = h4, 3xlO-"Ω-"crn'"1 and 311.・3 (in the figure)
a) is 2 N L i CtOa /PC/D of the present invention
When EOE (+4N mixing ratio 1:l) is used as the electrolytic liquid, (b) and (c) in the figure are reference examples, respectively.
This figure shows the charging and discharging characteristics of the Li electrode when a liquid containing LiCl-0</DEOE as a single solvent was used.
第3図から判る様に、単独系(b、c)に比べて混合糸
(a)は明らかに光放電%社は向上している。As can be seen from FIG. 3, the photodischarge percentage of the mixed yarn (a) is clearly improved compared to the single yarns (b, c).
以上の説明から明らかなように本発明によればリチウム
塩を有戦溶媒に電解させた非水寛ルト液においてM桜電
媒として1.2−ジェトキシエタンと1,2−ジェトキ
シエタンよ#)尚誘電率の電媒との混合6媒を用いる事
によシ、寺奄半も尚く、かつLi極の光放電特注が優れ
たリテウムニ次篭池用非水篭片r液を提・洪する弗がで
きる。As is clear from the above explanation, according to the present invention, 1,2-jethoxyethane and 1,2-jethoxyethane are used as the M electrolyte in a non-hydrolyte solution in which lithium salt is electrolyzed in a hot solvent. By using a mixed 6 medium with an electric medium of a certain ratio, Terasa is able to provide a non-aqueous liquid for use in lithium nitride ponds, which is also excellent in Li-pole photodischarge customization. I can do it.
第1図〜83図は本発明によ、る亀Pl“敵孕71−1
いた棚台のLi 1■の充放屯効Agと“リーイクル麻
の関・1糸を示す図である。
出願人イい人 目4 宮 正 李第1図
ブイクル数
第2図
ブイク沙数Figures 1 to 83 show Rutore Pl "Enemy Pregnancy 71-1" according to the present invention.
This is a diagram showing the charge and discharge effect Ag of Li 1■ on the shelf stand and the 1st line of "Liikuru hemp".
Claims (1)
ト’A反において前記治恒溶媒として、112−ジェト
キシエタンと、HIJMe I ! 2−ジェトキシエ
タンよシ向誘電率の非プロトン性物性溶奴の1棟以上の
混合溶媒を用いた孕を神体とするリチウム電池用゛ら解
散。In the lithium battery "Kamelt'A" in which a lithium salt is dissolved in a treatment bath medium, 112-jethoxyethane and HIJMe I! are used as the treatment solvent. 2-Jetoxyethane is an aprotic physical property with a dielectric constant in the diagonal direction.It is used for lithium batteries using a mixed solvent of one or more molten metals.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP57206572A JPS5996665A (en) | 1982-11-25 | 1982-11-25 | Electrolyte for lithium battery |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP57206572A JPS5996665A (en) | 1982-11-25 | 1982-11-25 | Electrolyte for lithium battery |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JPS5996665A true JPS5996665A (en) | 1984-06-04 |
| JPH0351068B2 JPH0351068B2 (en) | 1991-08-05 |
Family
ID=16525618
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP57206572A Granted JPS5996665A (en) | 1982-11-25 | 1982-11-25 | Electrolyte for lithium battery |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPS5996665A (en) |
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS63105478A (en) * | 1986-10-20 | 1988-05-10 | Sanyo Electric Co Ltd | Secondary battery |
| JPS6414877A (en) * | 1987-07-08 | 1989-01-19 | Fuji Electrochemical Co Ltd | Nonaqueous electrolyte battery |
| JPS6414879A (en) * | 1987-07-08 | 1989-01-19 | Fuji Electrochemical Co Ltd | Nonaqueous electrolyte battery |
| JPH01200562A (en) * | 1988-02-05 | 1989-08-11 | Fuji Elelctrochem Co Ltd | non-aqueous electrolyte battery |
| JPH01200563A (en) * | 1988-02-05 | 1989-08-11 | Fuji Elelctrochem Co Ltd | Nonaqueous electrolyte cell |
| WO2006049027A1 (en) * | 2004-11-04 | 2006-05-11 | Matsushita Electric Industrial Co., Ltd. | Secondary battery with terminal for surface mounting |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7784147B2 (en) | 2003-09-05 | 2010-08-31 | Brunswick Bowling & Billiards Corporation | Bowling lane conditioning machine |
| RU2370324C2 (en) | 2003-09-05 | 2009-10-20 | Брансвик Боулинг Энд Биллиардс Корпорэйшн | Device and method of bowling trek maintenance using precise feed injectors |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS5416623A (en) * | 1971-02-03 | 1979-02-07 | Du Pont | Highhenergyydensity battery |
| JPS5864768A (en) * | 1981-10-14 | 1983-04-18 | Sanyo Electric Co Ltd | non-aqueous electrolyte battery |
-
1982
- 1982-11-25 JP JP57206572A patent/JPS5996665A/en active Granted
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS5416623A (en) * | 1971-02-03 | 1979-02-07 | Du Pont | Highhenergyydensity battery |
| JPS5864768A (en) * | 1981-10-14 | 1983-04-18 | Sanyo Electric Co Ltd | non-aqueous electrolyte battery |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS63105478A (en) * | 1986-10-20 | 1988-05-10 | Sanyo Electric Co Ltd | Secondary battery |
| JPS6414877A (en) * | 1987-07-08 | 1989-01-19 | Fuji Electrochemical Co Ltd | Nonaqueous electrolyte battery |
| JPS6414879A (en) * | 1987-07-08 | 1989-01-19 | Fuji Electrochemical Co Ltd | Nonaqueous electrolyte battery |
| JPH01200562A (en) * | 1988-02-05 | 1989-08-11 | Fuji Elelctrochem Co Ltd | non-aqueous electrolyte battery |
| JPH01200563A (en) * | 1988-02-05 | 1989-08-11 | Fuji Elelctrochem Co Ltd | Nonaqueous electrolyte cell |
| WO2006049027A1 (en) * | 2004-11-04 | 2006-05-11 | Matsushita Electric Industrial Co., Ltd. | Secondary battery with terminal for surface mounting |
| JPWO2006049027A1 (en) * | 2004-11-04 | 2008-05-29 | 松下電器産業株式会社 | Secondary battery with surface mount terminals |
| US7622226B2 (en) | 2004-11-04 | 2009-11-24 | Panasonic Corporation | Secondary battery having a terminal for surface mounting |
| JP5022035B2 (en) * | 2004-11-04 | 2012-09-12 | パナソニック株式会社 | Secondary battery with surface mount terminals |
Also Published As
| Publication number | Publication date |
|---|---|
| JPH0351068B2 (en) | 1991-08-05 |
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