柔性电路板(Flexible Printed Circuit 简称FPC)是以聚酰亚胺或聚酯薄膜为基材制成的一种具有高度可靠性,绝佳的可挠性印刷电路板。具有配线密度高、重量轻、厚度薄、弯折性好的特点。广泛应用于各种高科技领域,包括移动设备、车载系统、医疗设备、工业自动化与电力控制、航空航天与军事等多个领域。
技术特点:
高效组装:由于柔性电路板已将所有线路配置完成,无需额外排线连接,显著节省了组装时间。
紧凑体积:柔性电路板能有效降低产品体积,提升便携性,满足空间受限的应用需求。
轻便设计:其轻盈的特性有助于减轻最终产品的整体重量,适用于对重量敏感的应用场景。
灵活厚度:柔性电路板比传统PCB更薄,赋予了它卓越的柔软度,使得在有限空间内进行三维组装成为可能。
自由度高:柔性电路板能够自由弯曲、卷绕和折叠,适应各种空间布局,实现元器件装配与导线连接的完美结合。
优越性能:柔性电路板具备良好的散热性、可焊性以及易于装连的特点,同时其综合成本也相对较低。
本篇是为了配合国家产业政策向广大企业、科研院校提供FPC电路板制造工艺汇编技术资料。资料中每个项目包含了最详细的技术制造资料,现有技术问题及解决方案、产品生产工艺、产品性能测试,对比分析。资料信息量大,实用性强,是从事新产品开发、参与市场竞争的必备工具。
本篇系列汇编资料分为为精装合订本和光盘版,内容相同,用户可根据自己需求购买。
Ionic Materials 的固态电池技术具有显著的安全性和成本优势,未来有望在电动汽车、储能系统和消费电子产品中广泛应用。其技术路线和合作伙伴关系表明,Ionic Materials 正在加速固态电池的商业化进程,预计在2025-2027年实现大规模量产。
本资料收录了Ionic Materials最新专利技术工艺配方,资料详细地介绍了相关工艺、配方,是国内电池制造厂家新产品开发的重要参考资料。
【资料内容】生产工艺、配方
【出品单位】国际新技术资料网
【项目数量】81项
【资料语种】英文
【电 子 版】1980元(PDF文档 邮箱发送)
【联系电话】13141225688 梅兰(女士)
目录
1 | NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION BATTERY INCLUDING NONAQUEOUS ELECTROLYTIC SOLUTION | TAMAI USAMI KAHO [JP] NAKAZAWA EIJI [JP] |
2 | NONAQUEOUS ELECTROLYTE, AND NONAQUEOUS ELECTROLYTE BATTERY USING THE NONAQUEOUS ELECTROLYTE | NISHIO KOICHI |
3 | NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE BATTERY COMPRISING THE NONAQUEOUS ELECTROLYTE | FUKAMIZU KOJI KAWAKAMI DAISUKE ABE TAIKI |
4 | NONAQUEOUS ELECTROLYTE SECONDARY BATTERY | NISHIO KOICHI [JP] KIM JUNGMIN [JP] |
5 | NONAQUEOUS ELECTROLYTE FOR SECONDARY BATTERY AND NONAQUEOUS-ELECTROLYTE SECONDARY BATTERY EMPLOYING THE SAME | FUJII TAKASHI [JP] OHASHI YOUICHI [JP] KINOSHITA SHINICHI [JP] |
6 | NONAQUEOUS ELECTROLYTE SOLUTION, AND NONAQUEOUS ELECTROLYTE BATTERY USING THE SAME | NAKAZAWA EIJI OHASHI YOICHI KOTADO MINORU |
7 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY INCLUDING NON-AQUEOUS ELECTROLYTE | FUKAMIZU KOJI |
8 | NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY, AND ENERGY DEVICE | WATARAI ATSUSHI [JP] NAKAZAWA EIJI [JP] SAWA SHUHEI [JP] |
9 | NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING SAID NON-AQUEOUS ELECTROLYTE | NISHIO KOICHI [JP] NOZAWA RYO [JP] KAWAKAMI DAISUKE [JP] |
10 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERY USING SAME | NAKAZAWA EIJI [JP] OOHASHI YOICHI [JP] KOTATO MINORU [JP] MITSUI TAKAMICHI [JP] AOSHIMA TAKAYUKI [JP] NAKAMURA TAKESHI [JP] |
11 | NON-AQUEOUS ELECTROLYTE BATTERY USING NON-AQUEOUS ELECTROLYTE | NISHIO KOICHI |
12 | Non-Aqueous Electrolyte and Non-Aqueous Electrolyte Battery Using Same | FUKAMIZU KOJI [JP] MIYOSHI KAZUHIRO [JP] |
13 | NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE BATTERY CONTAINING NONAQUEOUS ELECTROLYTE, AND COMPOUND | TAMAI (USAMI) KAHO |
14 | NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY EMPLOYING THE SAME | SAWA SHUHEI [JP] KOTATO MINORU [JP] SHIMA KUNIHISA [JP] SHIGEMATSU YASUYUKI [JP] ONUKI MASAMICHI [JP] TAKIGUCHI KANAKO [JP] |
15 | Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution Battery | NAKAZAWA EIJI [JP] KAWAKAMI DAISUKE [JP] |
16 | SOLID STATE BIPOLAR BATTERY | ZIMMERMAN MICHAEL A [US] LEISING RANDY [US] |
17 | LIQUID CRYSTAL POLYMER BATTERY ENCLOSURE MATERIAL | ZIMMERMAN MICHAEL A [US] LEISING RANDY [US] |
18 | NON-AQUEOUS ELECTROLYTE, NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY COMPRISING THAT NON-AQUEOUS ELECTROLYTE, AND COMPOUND | NISHIO KOICHI KAWAKAMI DAISUKE |
19 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY EQUIPPED THEREWITH | MIYOSHI KAZUHIRO |
20 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING THAT NON-AQUEOUS ELECTROLYTE | FUKAMIZU KOJI KAWAKAMI DAISUKE |
21 | NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY | NAKAZAWA EIJI [JP] OOHASHI YOUICHI [JP] WATARAI ATSUSHI [JP] |
22 | NONAQUEOUS ELECTROLYTE SECONDARY BATTERY | NAKANISHI TAKAHIRO |
23 | NONAQUEOUS ELECTROLYTE SOLUTION, NONAQUEOUS ELECTROLYTE BATTERY COMPRISING SAID NONAQUEOUS ELECTROLYTE SOLUTION, AND COMPOUND | TAMAI USAMI KAHO [JP] |
24 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY | NAKAZAWA EIJI SHIRATORI KAZUYA |
25 | NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY USING SAME | YOSHIDA HIROAKI [JP] SHIGEMATSU YASUYUKI [JP] KOTATO MINORU [JP] |
26 | NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE | NISHIO KOICHI YASO YUSUKE |
27 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAME | NISHIO KOICHI |
28 | NON-AQUEOUS ELECTROLYTIC SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAME | YOSHIDA HIROAKI [JP] KAWAKAMI DAISUKE [JP] FUKAMIZU KOJI [JP] |
29 | Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution Battery | NAKAZAWA EIJI [JP] TAMAI KAHO [JP] |
30 | Nonaqueous Electrolytic Solution and Nonaqueous Electrolytic Solution Battery | NAKAZAWA EIJI [JP] ABE TAIKI [JP] |
31 | NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE BATTERY INCLUDING THE SAME | TAMAI (USAMI) KAHO |
32 | NONAQUEOUS ELECTROLYTE, NONAQUEOUS ELECTROLYTE BATTERY INCLUDING THE SAME, AND COMPOUND | TAMAI KAHO |
33 | NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THAT NON-AQUEOUS ELECTROLYTE | NOZAWA RYO |
34 | NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THAT NON-AQUEOUS ELECTROLYTE | NISHIO KOICHI |
35 | NON-AQUEOUS ELECTROLYTE, AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAME | KAWAKAMI DAISUKE |
36 | COMPOSITE SOLID-STATE BATTERY CELL | HOFFERT WESLEY [US] ROJAS ADRIANA A [US] LAUGHMAN DAVID M [US] BUANNIC LUCIENNE [US] JOHNSON DEREK C [US] SISK BRIAN [US] |
37 | NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY AND METHOD FOR PRODUCING SAME | HONDA TATSUHIKO [JP] |
38 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAME | NISHIO KOICHI YAMAGUCHI AKIRA |
39 | NONAQUEOUS ELECTROLYTE SOLUTION, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAME, AND COMPOUND | KURIHARA YOSHINORI YASO YUSUKE KIDO DAIKI SETOGUCHI HIROYUKI KIMURA NOBUHISA |
40 | METHOD FOR PRODUCING LITHIUM FLUOROSULFONATE, LITHIUM FLUOROSULFONATE, NONAQUEOUS ELECTROLYTIC SOLUTION, AND NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY | KAWAKAMI DAISUKE [JP] YAMAGUCHI RYO [JP] TOKUDA HIROYUKI [JP] TAKEHARA MASAHIRO [JP] |
41 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING THE SAME | NOZAWA RYO |
42 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY CONTAINING SAID NON-AQUEOUS ELECTROLYTE | FUKAMIZU KOJI KAWAKAMI DAISUKE |
43 | NONAQUEOUS ELECTROLYTIC SOLUTION AND NONAQUEOUS ELECTROLYTIC SOLUTION BATTERY | NAKAZAWA EIJI [JP] ABE TAIKI [JP] TAMAI KAHO [JP] |
44 | NON-AQUEOUS ELECTROLYTE SOLUTION, AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY | WATANABE AIKO [JP] NAKAZAWA EIJI [JP] |
45 | Nonaqueous Electrolyte Solution and Nonaqueous-Electrolytic-Solution Battery | NAKAZAWA EIJI [JP] |
46 | NON-AQUEOUS LIQUID ELECTROLYTE AND NON-AQUEOUS LIQUID ELECTROLYTE SECONDARY BATTERY | FUJII TAKASHI [JP] SHIMA NORIKO [JP] OHASHI YOUICHI [JP] KINOSHITA SHINICHI [JP] |
47 | NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE BATTERY CONTAINING NON-AQUEOUS ELECTROLYTE SOLUTION | YAEGASHI RYO OHASHI YOICHI NISHIO KOICHI |
48 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY | WATANABE AIKO |
49 | NON-AQUEOUS ELECTROLYTE FOR LITHIUM ION SECONDARY BATTERY AND NON-AQUEOUS ELECTROLYTE LITHIUM ION SECONDARY BATTERY | WATANABE AIKO |
50 | NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY | WATANABE AIKO |
51 | LITHIUM ION SECONDARY BATTERY AND MANUFACTURING METHOD THEREOF | SHIMAMOT KEI FUKUNAGA TAKAO SUGIYAMA HIDEYUKI MASUDA WATARU FUJITA HIROTERU HIGUCHI MUNETAKA |
52 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY | HONDA TATSUHIKO [JP] TOKUDA HIROYUKI [JP] KAWAKAMI DAISUKE [JP] YAMAGUCHI RYO [JP] |
53 | NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY COMPRISING NONAQUEOUS ELECTROLYTE | NOZAWA RYO YAMAGUCHI AKIRA |
54 | NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY HAVING NONAQUEOUS ELECTROLYTE | NOZAWA RYO |
55 | LITHIUM METAL BATTERY WITH SOLID POLYMER ELECTROLYTE | ZIMMERMAN MICHAEL A [US] LEISING RANDOLPH [US] |
56 | ALKALINE BATTERY CATHODE WITH SOLID POLYMER ELECTROLYTE | ZIMMERMAN MICHAEL A [US] GAVRILOV ALEXEI B [US] |
57 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY | NAKAZAWA EIJI [JP] ABE TAIKI [JP] |
58 | SOLID ION CONDUCTING POLYMER, CATHODE COMPRISING SAME, AND BATTERY | ZIMMERMAN MICHAEL A LEISING RANDOLPH GAVRILOV ALEXEI B SMITH KRIS TEOLI ANDY |
59 | Lithium secondary battery and non-aqueous electrolyte solution used therein | MIYAGI HIDEKAZU KATO RYUICHI YOKOMIZO MASAKAZU UONO HIROYUKI MATSUMOTO KAZUSHI SATO TOMOHIRO MINORU KOTATO NAKAJIMA TAKAYUKI SUZUKI HITOSHI OSHIMA HIROYUKI |
60 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERY | HONDA TATSUHIKO TOKUDA HIROYUKI ABE TAIKI |
61 | NON-AQUEOUS ELECTROLYTE SOLUTION AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY INCLUDING NON-AQUEOUS ELECTROLYTE SOLUTION | NOZAWA RYO KAWAKAMI DAISUKE HORIE SHUMPEI |
62 | NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY AND NONAQUEOUS ELECTROLYTIC SOLUTION | NISHIO KOICHI [JP] SAWA SHUHEI [JP] |
63 | ALUMINUM NEGATIVE ELECTRODE AND BATTERY HAVING SOLID POLYMER ELECTROLYTE | MICHAEL A ZIMMERMAN ALEXEI B GAVRILOV LIU TING KEITH SMITH |
64 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY | NAKAZAWA EIJI |
65 | NONAQUEOUS ELECTROLYTE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY | WATANABE AIKO |
66 | NONAQUEOUS ELECTROLYTIC SOLUTION SECONDARY BATTERY | WATANABE AIKO [JP] MARU NAOTO [JP] |
67 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAME | NAKAZAWA EIJI YAMAGUCHI AKIRA |
68 | BATTERY ELECTRODE WITH SOLID POLYMER ELECTROLYTE AND AQUEOUS SOLUBLE BINDER | ZIMMERMAN MICHAEL A [US] LEISING RANDOLPH [US] |
69 | NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY AND POWER STORAGE DEVICE | TOKUDA HIROYUKI TAKEHARA MASAHIRO |
70 | NON-AQUEOUS ELECTROLYTE FOR SECONDARY BATTERIES AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAME | KATO RYUICHI KOTADO MINORU |
71 | LITHIUM ION SECONDARY BATTERY AND METHOD FOR MANUFACTURING THE SAME | SHIMAMOT KEI FUKUNAGA TAKAO SUGIYAMA HIDEYUKI MASUDA WATARU FUJITA HIROTERU HIGUCHI MUNETAKA |
72 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY | TOKUDA HIROYUKI |
73 | NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE BATTERY USING THE SAME | FUKAMIZU KOJI NAKAZAWA EIJI |
74 | SOLID ELECTROLYTE HIGH ENERGY BATTERY | ZIMMERMAN MICHAEL A [US] |
75 | ALKALINE METAL-AIR BATTERY CATHODE | ZIMMERMAN MICHAEL A [US] GAVRILOV ALEXEI B [US] KELSEY G STEPHEN [US] SMITH KEITH [US] |
76 | ALKALINE BATTERY CATHODE WITH SOLID POLYMER ELECTROLYTE | ZIMMERMAN MICHAEL A GAVRILOV ALEXEI B |
77 | NONAQUEOUS ELECTROLYTE SOLUTION AND NONAQUEOUS ELECTROLYTE BATTERY | NAKAZAWA EIJI [JP] |
78 | ALKALINE METAL-AIR BATTERY CATHODE | ZIMMERMAN MICHAEL A [US] GAVRILOV ALEXEI B [US] KELSEY G STEPHEN [US] SMITH KEITH [US] |
79 | BATTERY WITH POLYVALENT METAL ANODE | ZIMMERMAN MICHAEL A [US] GAVRILOV ALEXEI B [US] |
80 | SOLID STATE BIPOLAR BATTERY | ZIMMERMAN MICHAEL A LEISING RANDY |
81 | ALKALINE METAL-AIR BATTERY CATHODE | ZIMMERMAN MICHAEL A [US] GAVRILOV ALEXEI B [US] KELSEY G STEPHEN [US] SMITH KEITH [US] |
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