BQ2014HSN;BQ2014HSNTR;BQ2014HSNTRG4;BQ2014HSNG4;BQ2014HEVM-001;中文规格书,Datasheet资料
2014HSCODE商品编码表
最惠国税率 0 10 12 20 23 0 12 10 10 12 10 8 10 0 15 20 7 13 15 13 13 7 13 25 25 25 0 8 65 9 0 3 6 20 0 15 9 15 15 50 25 20 10 15 10 30 5
25162000 25174900 26030000 25309099 27074000 26206000 28013020 28112900 28053019 28253010 28251010 28352600 28273910 28399000 28445000 28469093 29032300 28480000 29037100 29039920 29071110 29122990 29071910 29141100 29153900 29173410 29157010 29181990 29211930 29214300 29223990 29221100 29239000 29242990 29291020 29252900 29309090 29319090 29329990 29333990 29331990 29335990 29336990 29349100 29371900 29349990 29372900 29391900 29419057 29396900
30032013 30043200 30043200 30051010 30049053 32041300 31049090 32159020 34013000 34070090 37019990 36030000 37069010 37079020 38200000 38089399 38247400 39049000 39073000 39199010 39121100 39221000 39219030 40101100 40129090 40116300 41012019 41039021 41139000 41063200 42031000 43018010 44039920 44079910 44071030 44083119 44083920 44111499 44091090 44129499 44189090 44201020 47069100 45041000 48041100 48059190 48232000 50071090 49019100 50079010
2014-各国插脚安规尺寸标准
日规3PIN插脚-JIS C 8303:2007
Dimensions checked by gauge and measurement
Position A B C D E F G H I J K L M N O P Q R S T
Symbol
Y Z a b c d e f
Requirement (mm) 1.2-2.0
R 0.1-1.0 58-62 1.3Байду номын сангаас-1.85 58-62 1.35-1.85 0.2 max. 1.35-1.85
此插脚适应国家包括:英国、新加坡、马来西亚
澳规插脚 AS/NZS3112
Standard sheet Figure 2.1 (a1) or 2.1(c)
Symbol
K L M N O P Q R S
Requirement (mm) 1.57 1.57
17.2 – 18.2 22.2-23.2 3.89 - 4.05
1.57 3.89 - 4.05
R 9.5 min R 9.5 min
Measured (mm)
日规2PIN插脚胶壳--JIS C 8303:2007
---
---
----
小南非插脚
目录
1、VDE欧规胶壳插脚:标准-EN 50075/IEC60083 2、BS英规胶壳插脚:标准-BS 1363 3、SAA澳规胶壳插脚:标准-AS/NZS 3112 4、UL美规胶壳插脚:标准-ANSI-NEMA WD6 5、CCC中国规胶壳插脚:标准-GB 1002-2008 6、Korea韩国胶壳插脚:标准-KSC8305 7、Brasil巴西规胶壳插脚:NBR14136 8、India印度胶壳插脚:标准IS1293 9、Argentina阿根廷胶壳插脚:IRAM2063 10、SASO 沙特胶壳插脚:SASO-2203 11、JAPAN 日本胶壳插脚:JISC 8303 12、小南非规胶壳插脚:SABS 164-1
宝钢企业标准2014版QBQB2014(冷镀)
宝山钢铁股份有限公司供货技术条件冷轧产品的包装、标志及检验文件Q/BQB 400-2014代替Q/BQB 400-2009 1 范围本技术条件规定了冷轧钢板及钢带、涂镀钢板及钢带、冷轧电工钢带(卷)的包装、标志及检验文件等要求。
考虑到制造厂和冷轧产品用户的使用习惯,钢带以下称为钢卷。
2 规范性引用文件下列文件对于本文件的应用是必不可少的。
凡是注日期的引用文件,仅所注日期的版本适用于本文件。
凡是不注日期的引用文件,其最新版本(包括所有的修改单)适用于本文件。
GB/T18253-2000 钢及钢产品检验文件的类型3 一般要求3.1 钢板及钢卷应包装整齐、捆扎结实。
标志字迹应清晰,并应粘贴牢固。
包装应能保证产品在正常运输和贮存期间不松散、受潮、变形和损坏。
注1:一般认为,产品包装并不能降低产品表面发生氧化的危险。
主要是由于目前的产品包装尚无法完全做到100%的气密和水密,因此无法保证产品100%的表面抗氧化能力。
注2:包装可为产品提供充分表面保护的前提条件如下:①在物流过程中,各方应按照规范的要求,对产品进行搬运、运输和仓储;②产品在标准规定的时间内投入使用。
注3:为避免由于产品表面氧化给用户带来的损失,建议用户做到以下几点:①在发现产品包装破损后,应重新对包装破损处修补并密封;②尽量避免将产品(含包装物)暴露在恶劣的气候条件下;③优先将产品(含包装物)仓储在温度受控的仓库中,避免由于仓库内温度大幅波动,产生产品内部结露;④产品被部分使用后,应重新对剩余的产品重新进行包装封闭。
3.2 包装材料应符合有关法律法规的规定。
注1:所有包装材料均符合欧洲包装废弃物指令(1994/62/EC),不含该指令限制的重金属物质。
注2:为打造绿色产业链,我们将持续致力于减少冗余的包装物,使包装废弃物量最小化。
3.3 对于钢带包装,在进行拆除包装物作业时,需方应采取适当的保护措施,防止钢带带头弹出伤人。
注:产品包装物的拆除是有一定危险度的工作,使用方务必采取适当的措施以保证作业人员和设备财产的安全。
2014年度HS海关商品编码表(最新)
0201100090 0201200010 0201200090 0201300010 0201300090 0202100010 0202100090 0202200010 0202200090 0202300010 0202300090 0203111010 0203111090 0203119010 0203119090 0203120010 0203120090 0203190010 0203190090 0203211010 0203211090 0203219010 0203219090 0203220010 0203220090 0203290010 0203290090 0204100000 0204210000 0204220000 0204230000 0204300000 0204410000 0204420000 0204430000 0204500000 0205000010 0205000090 0206100000 0206210000 0206220000 0206290000 0206300000 0206410000 0206490000 0206800010 0206800090 0206900010 0206900090 0207110000 0207120000 0207131100 0207131900 0207132100 0207132900
0207141100 0207141900 0207142100 0207142200 0207142900 0207240000 0207250000 0207260000 0207270000 0207410000 0207420000 0207430000 0207440000 0207450000 0207510000 0207520000 0207530000 0207540000 0207550000 0207600000 0208101000 0208102000 0208109010 0208109090 0208300000 0208400000 0208500000 0208600010 0208600090 0208901000 0208909010 0208909090 0209100000 0209900000 0210111010 0210111090 0210119010 0210119090 0210120010 0210120090 0210190010 0210190090 0210200010 0210200090 0210910000 0210920000 0210930000 0210990010 0210990090 0301110010 0301110090 0301190010 0301190090 0301911000 0301919000
特种设备目录2014修订版1
F260
气瓶阀门
2100
固定式压力容器
2110
超高压容器
2130
第三类压力容器
2150
第二类压力容器
2170
第一类压力容器
2200
移动式压力容器
2210
铁路罐车
2220
汽车罐车
2230
长管拖车
2240
罐式集装箱
2250
管束式集装箱
2300
气瓶
2310
无缝气瓶
2320
焊接气瓶
23T0
特种气瓶(内装填料气瓶、纤维缠绕气瓶、
7200
压力管道管件
7210
非焊接管件(无缝管件)
7220
焊接管件(有缝管件)
7230
锻制管件
7270
复合管件
72F0
非金属管件
7300
压力管道阀门
7320
金属阀门
73F0
非金属阀门
73T0
特种阀门
7400
压力管道法兰
7410
钢制锻造法兰
7420
非金属法兰
7500
补偿器
7510
金属波纹膨胀节
7530
起重机械,是指用于垂直升降或者垂直升降并水平移动重物的机电设备,其范围规定为额定起重量大于或者等于0.5t的升降机;额定起重量大于或者等于3t(或额定起重力矩大于或者等于40t·m的塔式起重机,或生产率大于或者等于300t/h的装卸桥),且提升高度大于或者等于2m的起重机;层数大于或者等于2层的机械式停车设备。
6100
观览车类
6200
滑行车类
6300
架空游览车类
6400
无线网优参数(2G)-爱立信分册-V2.1(已修订)
无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无
Eri-R12061 Eri-R12062 Eri-R12063 Eri-R12064 Eri-R12065 Eri-R12066 Eri-R12067 Eri-R12068 Eri-R12069 Eri-R12070 Eri-R12071 Eri-R12072 Eri-R12073 Eri-R12074 Eri-R12075 Eri-R12076 Eri-R12077 Eri-R12078 Eri-R12079 Eri-R12080 Eri-R12081
无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无 无
Eri-R12082 Eri-R12083 Eri-R12084 Eri-R12085 Eri-R12086 Eri-R12087 Eri-R12088 Eri-R12089 Eri-R12090 Eri-R12091 Eri-R12092 Eri-R12093 Eri-R12094 Eri-R12095 Eri-R12096 Eri-R12097 Eri-R12098 Eri-R12099 Eri-R12100 Eri-R12无 无 无 无 无 无 无 无 无 无 无 无 无
Eri-R12166 Eri-R12167 Eri-R12168 Eri-R12169 Eri-R12170 Eri-R12171 Eri-R12172 Eri-R12173 Eri-R12174 Eri-R12175 Eri-R12176 Eri-R12177 Eri-R12178 Eri-R12179 Eri-R12180 Eri-R12181 Eri-R12182 Eri-R12183 Eri-R12184 Eri-R12185 Eri-R12186
国家标准图集目录及规范目录2014
04J012-3
环境景观—亭、廊、架之一
22.00
13
10J012-4
环境景观滨水工程
55.00
14
04J101
砖墙建筑构造(烧结多孔砖与通砖、蒸压砖)
23.00
15
05J102-1
混凝土小型空心砌块墙体建筑构造
[替代J102-1~2(2002年合订本)]
23.00
16
02J102-2
框架结构填充小型空心砌块墙体建筑构造(含光盘)
《住宅设计规范》图示
47.00
94
13J816
救灾物资储备库标准设计样图
38.00
95
13J817
老年养护院标准设计样图
.00
96
07J901-1
实验室建筑设备(一)[替代88J901(一)]
33.00
97
07J901-2
实验室建筑设备(二)[替代88J901(二)]
30.00
98
06J902-1
门窗、幕墙风荷载标准值(含光盘)
17.00
104
08J907
洁净厂房建筑构造
30.00
105
06J908-1
公共建筑节能构造(严寒和寒冷地区)
45.00
106
06J908-2
公共建筑节能构造(夏热冬冷和夏热冬暖地区)
23.00
107
09J908-3
建筑围护结构节能工程做法及数据
69.00
108
10J908-5
住宅门[替代94SJ601(一)~(四)]
42.40
68
06J607-1
建筑节能门窗(一)
37.00
强制性产品HS对照表
其他开关(低压电器)
00
电压≤1000伏的其他开关
18
其他装置(低压电器)
00
电压≤1000伏其他电路保护装置(用于电压不超过1000伏的线路)
19
低压成套开关设备
90
其他电力控制或分配的装置(电压不超过1000伏的线路)
20
小功率电动机
00
>750W ≤75KW多相交流电动机(输出功率不超过750瓦,但不超过75千瓦)
00
电弧(包括等离子弧)焊接机器人
40
TIG弧焊机
00
其他电弧(包括等离子弧)焊接机及装置(全自动或半自动的)
00
其他电弧(等离子弧)焊接机器及装置(非全自动或半自动)
00
螺旋焊管机[电弧(包括等离子弧)焊接式,全自动或半自动的]
90
其他焊接机器及装置
00
电气等焊接机器及装置零件(包括激光,其他光、光子束、超声波、电子束磁脉冲等)
00
干衣量≤10公斤的离心干衣机
00
脱水机
57
电热水器
00
储存式电热水器
00
即热式电热水器
00
其他电热水器
58
室内加热器
00
电气空间加热器
00
辐射式空间加热器
强制性产品HS对照表
附件
强制性产品认证目录产品与2014年HS编码对应表
序号
强制性产品认证目录产品名称
2014年商品编码
(HS编码)
商品编码对应的商品名称及备注
1
电线组件
00
其他电压≤1000伏电路连接器等电气装置
00
80V<额定电压≤1000V有接头电缆
2014国标目录
1996-4-5
1996-11-1
10
GB16840.2-1997
1997-6-3
1998-5-1
11
GB16840.3-1997
1997-6-3
1998-5-1
12
GB16840.4-1997
1997-6-3
1998-5-1
13
GB/T17906-1999
1999-11-23
2000-5-1
14
GB14907-2002
2003-2-21
2003-12-1
26
GB15322.2-2003
量范围为 0~100%LEL 的独立 式可燃气体探测器
2003-2-21
2003-12-1
可燃气体探测器 第 3 部分: 测 27 GB15322.3-2003 量范围为 0~100%LEL 的便携 式可燃气体探测器 可燃气体探测器 第 4 部分: 测 28 GB15322.4-2003 量人工煤气的点型可燃气体探 测器 可燃气体探测器 第 5 部分: 测 29 GB15322.5-2003 量人工煤气的独立式可燃气体 探测器 可燃气体探测器 第 6 部分: 测 30 GB15322.6-2003 量人工煤气的便携式可燃气体 探测器 2003-2-21 2003-12-1 2003-2-21 2003-12-1 2003-2-21 2003-12-1 2003-2-21 2003-12-1
GB/T 11785-2005
GB/T 11785-1989 GB 12441-1990 GB
1989-11-6
2005-9-28
2006-4-1
54
GB 12441-2005
饰面型防火涂料
BQB420-2014热镀锌
下表面镀层重量,单位为 g/m2。
b 经供需双方协商,等厚镀层代号可以双面重量之和表示。例如 Z250,ZF90 等。
5 订货所需信息 5.1 订货时用户需提供下列信息:
a) 产品名称(钢板或钢带); b) 本产品技术条件号; c) 牌号; d) 镀层种类及镀层重量; e) 尺寸及其精度(包括厚度、宽度、长度、钢带内径等); f) 不平度精度; g) 表面结构; h) 表面处理; i) 表面质量; j) 重量; k) 包装方式; l) 其他。 5.2 如订货合同中未注明尺寸及不平度精度、表面处理种类、表面结构、表面质量及包装 方式的具体要求,则以尺寸普通精度及不平度普通精度、表面处理为涂油(O)、表面质量级 别为较高级的精整表面(FB)及供方指定的表面结构、包装方式供货。
GB/T 8170-2008 数值修约规则与极限数值的表示和判定
GB/T 20066-2006 钢和铁 化学成分测定用试样的取样和制样方法
GB/T 20123-2006 钢铁 总碳硫含量的测定 高频感应炉燃烧后红外吸收法(常规方法)
GB/T 20125-2006 低合金钢 多元素含量的测定 电感耦合等离子体原子发射光谱法
GB/T 20126-2006 非合金钢 低碳含量的测定 第 2 部分:感应炉(经预加热)内燃烧后红
外吸收法
GB/T 24174-2009 钢 烘烤硬化值(BH2)的测定方法
Q/BQB 400
冷轧产品的包装、标志及检验文件
JIS Z2241:2011 Metallic materials -- Tensile testing -- Method of test at room temperature
4 分类和代号 4.1 钢板及钢带按用途区分应符合表 1 的规定。 4.2 钢板及钢带按表面质量区分应符合表 2 的规定。
国标图集目录2014
139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185
05SJ918-3 05SJ918-4 05SJ918-5 05SJ918-6 05SJ918-7 05SJ918-8 05SJ919 07J920 03J922-1 04J923-1 07SJ924 08J933-1 J909、G120 01J925-1 06J925-2 08J925-3 03J926 05J927-1 08J927-2 08SJ928 08J907 09J940 09SJ903-1 09J908-3 10J908-5 10J929 03J930-1 08J931 04CJ01-1 04CJ01-2 04CJ01-3 04CJ02 07CJ03-1 05CJ04 06CJ05 06CJ06-1 06CJ07 07CJ09 07CJ10 07CJ11 07CJ12 08CJ13 09CJ18 09CG11 09CJ19 09CJ20 09CG12 10CJ16 08CJ14
序号
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 3J007-1 93J007-2 93J007-3 93J007-4 J007-5~8 93J007-6 93J007-7 93J007-8 04J008 04J012-3 03J012-1 03J012-2 10J012-4 04J101 05J102-1 02J102-2 97J103-1 03J103-2~7 03J104 06J106 07J107 01ZJ110-1 03J111-1 03J111-2 03J112 03J113 03J114-1 04J114-2 02J121-1 99J121-2 06J121-3 J111~114 03J122 07J103-8 08SJ110-2、08SG333 10J121 06J123 99J201-1 03J201-2 00J202-1 01J202-2 03J203 06J204
14mnnbq执行标准 -回复
14mnnbq执行标准-回复问题并解释相关的概念和细节要点。
题为:14mnnbq执行标准在工业制造中,材料的性能和质量是非常关键的因素之一。
而钢材作为常用的结构材料,其选择和使用更是至关重要。
在工程中,有一种特定型号的钢材——14mnnbq,是被广泛使用的。
本文将通过解答一系列问题,逐步介绍14mnnbq执行标准及其相关知识和重要细节。
问题一:什么是14mnnbq钢材?14mnnbq是指一种具有特定化学成分组成的低温、高强度结构用钢材。
其主要成分包括碳(C)、硅(Si)、锰(Mn)、磷(P)、硫(S)、铌(Nb)和钼(Mo)。
这些元素的含量对钢材的机械性能、焊接性能和耐蚀性等具有直接影响。
具体的成分要求可以参考14mnnbq执行标准。
问题二:14mnnbq执行标准的主要内容是什么?14mnnbq执行标准主要包括以下几个方面:化学成分、机械性能、冲击功、拉伸性能、硬度要求、冷弯性能、耐磨性等。
其中的化学成分要求将对各种元素的含量进行具体规定,确保钢材具有所需的特性。
机械性能要求将对抗拉强度、屈服强度、伸长率等性能进行测试和测量,并设定最低要求值。
此外,冲击功是衡量材料在低温条件下抗冲击能力的重要指标,拉伸性能则关注材料在受力过程中的延性表现。
问题三:14mnnbq钢材的应用领域是什么?14mnnbq钢材广泛应用于石化、船舶、锅炉和压力容器等工程领域。
由于其优秀的低温性能和高强度特点,可在极寒气候的环境下工作,并具有抵抗腐蚀、耐磨和耐压等多重优势。
尤其在核电站、化工厂和海洋平台等高风险环境中,对钢材的耐蚀性、耐压性以及焊接性能要求较高,14mnnbq钢材的使用将能够满足这些要求。
问题四:为什么选择14mnnbq钢材?选择14mnnbq钢材的主要原因包括以下几个方面:首先,14mnnbq 钢材具有良好的低温性能,可以在-70的极寒气候环境下工作。
其次,14mnnbq钢材具有较高的抗拉强度和屈服强度,具备出色的耐压性能。
丝印反查
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586145537升压IC、降压IC、便携式充电IC松之幸丝印反查供应芯片打字Marking,AL33xx电源IC 丝印E0Kxx,SOT23-5代码1US*电源管理IC marking code Z11A 309511704比较器IC松之幸丝印反查供应芯片打字Marking,GKB,SOT23-6电源IC 顶标D代码AAOG marking code A2039,SOT-252 5216913松之幸电子提供丝印代用物料芯片打字Marking,N33x电源IC 顶标NB30代码34Ax电源IC marking code 278K 1381947松之幸电子提供SOT89高频管丝印物料芯片打字Marking,A19Bxx电源IC 丝印1Pxx,SOT23-6代码LKYx电源IC marking code CP2H 871830282数模IC松之幸丝印反查供应芯片打字Marking,K23xx电源IC 丝印AECI,5脚代码F33xx电源IC marking code 1FI1,SOT23-5 SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,S9x电源IC 顶标DD,WDFN2x2-8代码7NUx电源IC marking code AS21xx,DFN6 56055461code 05十字架高频管松之幸电子代码反查芯片打字Marking,WBQxx电源IC 丝印13Exx,sot23-5代码K29x电源IC marking code B8N,SOT-89 1松之幸电子供应芯片打字Marking,N36x电源IC 丝印A010xx,SC88A-5代码1TX电源IC marking code AJT,5脚 311410745想知道这个芯片是什么IC——问松之幸电子0755-1芯片打字Marking,AN37xx电源IC 丝印G14Bxx,HSON6代码G6S,SOT23高频管 marking code R007xx,SOT23-5 松之幸丝印反查供应芯片打字Marking,PJxx电源IC 顶标BJxx,SOT23-6代码SE1x电源IC marking code ADX 509581133松之幸电子提供FAICHILD丝印反查芯片打字Marking,7PXx电源IC 丝印0Nxx,SOT89-3代码IZ99F电源IC marking code LAJ3 ,SOT23-5 277533469升压IC、降压IC、便携式充电IC松之幸丝印反查供应芯片打字Marking,ET,SOT143,十字架,高频管丝印9Bb5d代码1VE电源IC marking code 2K-,SOT23-6 286038153运算放大IC松之幸丝印反查供应芯片打字Marking,C049xx电源IC 丝印G8X代码AEFQ marking code AFL,4脚 377040089运算放大IC松之幸丝印反查供应芯片打字Marking,ABKE 丝印AAFT,6脚代码A6Dx电源IC marking code 312xx,SOT23-5 264828443松之幸电子供应芯片打字Marking,J5xx电源IC 顶标BA03xx,DFN8代码D05Axx电源IC marking code BCxx,SOT23-6 602398061松之幸电子提供PNP NPN丝印反查Marking,sot23芯片打字Marking,T141xx电源IC 顶标V20A代码25Ux电源IC marking code ABFG,6脚 513702749codeBW5,SOT89十字架高频管松之幸电子代码反查芯片打字Marking,WTP xxx电源IC 丝印AAUR,6脚代码EDG电源IC marking code 4600A,SOT89 170019563想知道这个芯片是什么IC——问松之幸电子0755-1芯片打字Marking,S07x电源IC 丝印P1JB,SOT89-5代码AADF marking code A174,SOT23-5 83180436比较器IC松之幸丝印反查供应芯片打字Marking,LEBx电源IC 顶标CVG,SC82AB代码A21Axx电源IC marking code HYxx,DFN4 178455258松之幸电子提供FAICHILD丝印反查芯片打字Marking,V040xx电源IC 顶标CA9YA代码ABEJ marking code AJV 104216766丝印8A87,SOT23-5松之幸电子代码反查芯片打字Marking,DK1,SOT-23高频管丝印VIDxxx,sot89-5代码Z1Dxx电源IC marking code C32716,SOT-23 660106077想知道这个芯片是什么IC——问松之幸电子芯片打字Marking,AEFT 顶标TMxx,SOT23-3代码E16Bxx电源IC marking code CA1YD 743958076松之幸电子提供FAICHILD丝印反查芯片打字Marking,5XBx电源IC 丝印K*A,SOT-89代码SGT电源管理IC marking code AQU 82202147专业丝印反查芯片打字Marking,ABNJ 丝印C792代码ZLxx电源IC marking code SKWxxx,sot89-5 716825694松之幸电子供应芯片打字Marking,164x电源IC 顶标FZCP,3脚代码G9H电源IC marking code CH=,SC-70-5 790140532松之幸电子提供NXP、ON、TI富士代码反查芯片打字Marking,YMxx电源IC 顶标T2x电源IC代码1VE marking code E38Cxx,SON-6 30241049N-CHANNEL P-CHANNEL NPN/PNP Distributor松之幸电子提供反查芯片打字Marking,AABN 丝印QMOxxx,sot89-5代码P07x电源IC marking code EAE4,SOT23-5 761976848松之幸电子供应芯片打字Marking,POBx 丝印KAGE,4脚代码AXPx电源IC marking code AAZH,6脚 219826206LED驱动、充电IC、LCD背光驱IC、锂电充IC、驱动电源IC松之幸丝印反查供应芯片打字Marking,E26Axx电源IC 顶标BFQG 代码┃S8xx电源IC marking code IM2603 648773307松之幸电子提供SOT89高频管丝印物料芯片打字Marking,V0Exx电源IC 丝印E053xx,HSOP6代码LB3x电源IC marking code ABQG,6脚 SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,35Dx电源IC 顶标DC08,SOT-6高频管代码C28Axx电源IC marking code CYF,SOT-89 773156536松之幸专业丝印反查芯片打字Marking,LUxx电源IC 丝印BF5代码E4Lx电源IC marking code AAK86 77325348数模IC松之幸丝印反查供应芯片打字Marking,LUxx电源IC 丝印AABI,6脚代码WUMxxx xxx电源IC marking code AAB,16脚 523151625松之幸10年电子元器件丝印反查供应芯片打字Marking,M029xx电源IC 丝印3Txx,DFN4代码CC50xx电源IC marking code M7xx,DFN4 248280793运算放大IC松之幸丝印反查供应芯片打字Marking,7APx电源IC 顶标Z1Bxx,SOT23-5代码CBFx电源IC marking code FZCU 473110001松之幸电子提供高频管十字架反查芯片打字Marking,P028xx电源IC 丝印BKx,SOT-363高频管代码1C60Ax电源IC marking code L6K,SNT-6A 742420097CMOS输出IC松之幸丝印反查供应芯片打字Marking,7PZx电源IC 丝印31Jxx,sot23-5代码26Lx电源IC marking code V1Hxx,SOT23-5 951207946松之幸电子供应芯片打字Marking,DE-x电源IC 丝印CNXYY,SOT23高频管代码9EZx电源IC marking code 56xx,SOT143 653050845松之幸电子供应芯片打字Marking,LZ9x电源IC 丝印1TA*,SOT23-5代码N8Q电源IC marking code AAKM,6脚 52017415松之幸电子供应芯片打字Marking,X0Cxx电源IC 丝印616xx,SOT23-5代码06xx电源IC marking code ABRQ 513347617松之幸电子供应芯片打字Marking,ADL 丝印NG,SOT143,十字架,高频管代码LLHx电源IC marking code C3x电源IC 82621016运算放大IC松之幸丝印反查供应芯片打字Marking,F3xx电源IC 顶标ADX代码B060xx电源IC marking code AYI电源IC 714765761松之幸专业丝印反查芯片打字Marking,AP28xx电源IC 顶标AEEB,8脚代码HG,SOT323高频管 marking code FS,SOT-23 95654771松之幸专业丝印反查芯片打字Marking,T3xx电源IC 丝印ABKX,6脚代码ADOV marking code 310x 94663543CMOS输出IC松之幸丝印反查供应芯片打字Marking,电源IC 顶标CVU,CNT4A代码H20Dxx电源IC marking code BW,WDFN2x2-6 608979786code 83Z高频管松之幸电子代码反查芯片打字Marking,SE3x电源IC 丝印E33A,SOT23代码N073xx电源IC marking code FDAA,4脚 267551339松之幸快速丝印反查供应芯片打字Marking,35Tx电源IC 丝印B4x电源IC代码OTCxx电源IC marking code 1KN4,SOT23-5 5991583LED驱动、充电IC、LCD背光驱IC、锂电充IC、驱动电源IC松之幸丝印反查供应芯片打字Marking,AE,SOT-89 丝印C32xx,sot23-5代码Z8xx电源IC marking code BBCxx,SOT23-5 253743029电压检测IC松之幸丝印反查供应芯片打字Marking,WBHxx电源IC 丝印16P电源IC代码15Uxx电源IC marking code BBT电源IC 553698296松之幸快速丝印反查供应芯片打字Marking,ABAL 丝印F15xx,SOT23-5代码H50Dxx电源IC marking code F19Axx,son-6 266899972升压IC、降压IC、便携式充电IC松之幸丝印反查供应芯片打字Marking,H19Dxx电源IC 丝印U16,SOT-23代码Y001xx电源IC marking code M,SOT23 276865904LED驱动、充电IC、LCD背光驱IC、锂电充IC、驱动电源IC松之幸丝印反查供应芯片打字Marking,A30x电源IC 丝印CJ10xx,QFN6代码1FXx marking code ACA,3脚 57977338运算放大IC松之幸丝印反查供应芯片打字Marking,AABF 丝印A6s代码K4Cx电源IC marking code H·S 24779158CMOS输出IC 松之幸丝印反查供应芯片打字Marking,ACE 顶标AAY,4脚代码1Exx电源IC marking code AASU,6脚 662794773松之幸专业丝印反查芯片打字Marking,02P49x电源IC 顶标AEDV,8脚代码AEIJ marking code A 155224134code 83A十字架高频管松之幸电子代码反查芯片打字Marking,N069xx电源IC 丝印d2=,SOT23-5代码ADE marking code AZ SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,E33x电源IC 顶标BSP324,SOT-223高频管代码BGXYY,SOT23高频管 marking code GPxx,SOT23-6 106666412松之幸电子提供SOT89丝印反查芯片打字Marking,3B5x电源IC 顶标AS07xx,DFN6代码V38x电源IC marking code H34Bxx,SON23-6 385274286丝印IJ9xx,sot23-6松之幸电子代码反查芯片打字Marking,L28x电源IC 丝印CXxx,DFN4代码F38Dxx电源IC marking code AAAO,8脚 671775043松之幸电子供应芯片打字Marking,4HMx电源IC 丝印AGB,6脚代码ABAM marking code EEC 749629305升压IC、降压IC、稳压IC松之幸丝印反查供应芯片打字Marking,ABHC 丝印N59B,SOT89代码DB14xx电源IC marking code N1Nxx,SOT23-5 812509259松之幸快速丝印反查供应芯片打字Marking,电源IC 顶标AGG,4脚代码9VHx电源IC marking code N2Jxx,sot23-5 122691116transistor diode pinout松之幸电子提供反查芯片打字Marking,AAEN 顶标31=N0X代码KE9x电源IC marking code 617xx,SOT23-5 782061118松之幸AAExx丝印代码反查芯片打字Marking,F1xx电源IC 丝印A36电源IC代码AECC marking code KACX SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,SEDx电源管理IC 丝印WJOx,sot23-5代码CXHx电源IC marking code C12Dxx,SOT89-5 SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,E76x电源IC 顶标80Yxx,SOT23-5代码P5Lx电源管理IC marking code BAJxx,SOT23-5 501712317松之幸电子十多年丰富的代码销售经验芯片打字Marking,LLDx电源IC 丝印228xx,SOT23-5代码R&,SOT-23 marking code D11Axx,SON6 770046594LED驱动、充电IC、LCD背光驱IC、锂电充IC、驱动电源IC松之幸丝印反查供应芯片打字Marking,AEDD 顶标R044xx,sot89-5代码6N,高频管 marking code Eg,SOT143,十字架,高频管 950478743丝印AAxx,sot23-6十字架松之幸电子代码反查芯片打字Marking,L46x电源IC 丝印TVAH代码28Ax电源IC marking code 1EH,HSNT4 65216945LED驱动、充电IC、LCD背光驱IC、锂电充IC、驱动电源IC松之幸丝印反查供应芯片打字Marking,79xx电源IC 丝印4Lxx,DFN4代码IJ27A SOT-23-6电源IC marking code AEAB,5脚 673273785数模IC松之幸丝印反查供应芯片打字Marking,1LE 顶标T5G代码A8xx电源IC marking code 1LU,sot23 961219138松之幸专业丝印反查芯片打字Marking,1VA电源管理IC 丝印65T6代码S33x电源IC marking code U7xx,SON6 24846853二三极管松之幸丝印反查供应芯片打字Marking,L24x电源IC 顶标ACD,5脚代码0Cxx电源IC marking code PQP,SOT-89 681570955松之幸专业丝印反查芯片打字Marking,9XVx电源IC 丝印KADE代码9VAx电源IC marking code ADF,6脚 614938632电源管理IC松之幸丝印反查供应芯片打字Marking,6Exx电源IC 顶标AADY,8脚代码ACL marking code M1xx,DFN4 99028464丝印P12D,SOT23-6松之幸电子代码反查芯片打字Marking,AER 顶标86,高频管代码ACG marking code 63B28 187652642丝印电源管理IC,打字Marking,5位数,SOT23-3松之幸电子代码反查芯片打字Marking,JM电源IC 丝印P5EB代码CXDx电源管理IC marking code FZIS,3脚 148698079比较器IC松之幸丝印反查供应芯片打字Marking,ADO 丝印AAJW,6脚代码V,SOD882高频管 marking code 4Rxx,DFN4 199436661比较器IC松之幸丝印反查供应芯片打字Marking,C9Dx电源IC 顶标MK,SOT-89代码H41x电源IC marking code C337 786342134code 83Z高频管松之幸电子代码反查芯片打字Marking,DVxxx,SOT23-5高频管顶标ABPA,6脚代码E35Bxx电源IC marking code X023xx,sot89-5 378175432丝印A103 A104高频管松之幸电子代码反查芯片打字Marking,SDxx电源IC 丝印D7,高频管代码AEUx电源IC marking code AAN,6脚 679618092二三极管松之幸丝印反查供应芯片打字Marking,9C7x电源IC 丝印848F10代码CH-x电源IC marking code AG-,VDFN3x3-10 898850424CMOS输出IC松之幸丝印反查供应芯片打字Marking,R61x电源IC 顶标0564/45代码ANO marking code CX02xx,DFN6 766674192丝印AHxxx,SOT23-5松之幸电子代码反查芯片打字Marking,CVE 丝印N52B,SOT89代码GKB,SOT23-6电源IC marking code AS34xx,SC88A SOT23-3,SOT23-5,SOT23-6,SC82,SOT143,SOD123松之幸丝印反查供应芯片打字Marking,MC601x电源IC 丝印D10Dxx,DFN10代码F65x电源IC marking code S1g 371934971比较器IC松之幸丝印反查供应芯片打字Marking,F1Lx电源IC 丝印AL14xx,SC88A-5代码MBxx电源IC marking code 1NP,HSNT4 504143741松之幸电子供应芯片打字Marking,AH19xx电源IC 丝印JAJ7,SOT23-5代码1XX marking code A45A 278771181比较器IC松之幸丝印反查供应。
2014年HS7600型号7-1 4英寸圆床电动锯说明书
Item No. Type Ref 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 C01 C01A D01 D02 D03 D04 D05
ACCESSORIES A01 A02 A03 A04
Part No. 163546-8 266396-1 912107-9 346819-6 265118-6 256480-0 345368-0 252103-8 265765-3 317031-5 941151-9 942151-2 265765-3 912212-2 266436-5 876815-5 876816-3 652008-6 652257-5 654037-5 654509-0 654077-3
09 - 2014 HS7600
7-1/4" CIRCULAR SAW
22
6
8
7
5பைடு நூலகம்
4
3
13
12
19
18 17
21
9
16
20
15
14
10
11
2 1
25 24 23
27 26
33 31 30 29 28
32 41
42
34 35
36
37
43 44 45
46
49 40
50
51 52
39 38
53
54 55
58 57
Description HEX. SOCKET HEAD BOLT M6X20 OUTER FLANGE 35 INNER FLANGE 35 RETAINING RING S-38 TAPPING SCREW BIND CT 4X12 LEVER PLATE SAFETY COVER TENSION SPRING 4 THICKNESS RING SPINDLE PAN HEAD SCREW M5X18 BEARING BOX BALL BEARING 6201DDW BEARING RETAINER 19-33 RING 12 HELICAL GEAR 38 RETAINING RING S-12 BALL BEARING 606ZZ O RING 39 +PAN HEAD SCREW M6X20 RUBBER SLEEVE 6 BLADE CASE COMPLETE O RING 26 COMPRESSION SPRING 6 SHAFT LOCK BALL BEARING 6000DDW FAN 70 ARMATURE ASS'Y 115V Item No. 25,26,28,29 INSULATION WASHER BALL BEARING 608DDW FLAT WASHER 14 RUBBER WASHER 13 BAFFLE PLATE TAPPING SCREW 5X60 FIELD ASS'Y 115V RING TERMINAL CONNECTOR P-1.25 TAPPING SCREW 4X18 NAME PLATE F/HS7600 PAN HEAD SCREW M5X40 BRUSH HOLDER CAP 7-11 CARBON BRUSH CB-303 2PC/SET W/ORIGIN MOTOR HOUSING COMPLETE BRUSH HOLDER 5-11 CAUTION LABEL CAUTION LABEL CORD GUARD 10-90 CORD W/PLUG 2P-16-2.5M, SJ STRAIN RELIEF TAPPING SCREW 4X18 HANDLE COVER SWITCH SGES115C-7 LEVER PLATE BOW STOP RING E-12 HEX. NUT M8-13 FLAT WASHER 8
4年级语文生字生表
wFi jiF bL
3 慰藉卜
qJ hF tWn
4 绮和谈
hL pH wEng zhU shK shFn fL zhW fQn mWi pRng pSi
5 琥珀嗡脂拭渗俯扎番埋澎湃
dMn jJn miWo suK yAn dOn lP pRng jiR qU pK zhAn
6 钝仅描隧衍吨颅膨捷栖辟崭
jiL jiF qIn suSn jiQo Gu shL yM
语文园地 . 韭 芥 芹 蒜 椒 藕 薯 芋 . . .
sSi qIn zhEng jiSng jiR
21. 塞 秦 征 将 杰 .
juR fSn wFi xU xiSo huWi huH chRng chK
22. 崛 范 魏 晰 效 淮 惑 惩 斥 .
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huW
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mM sF yuWn xiWng sQo xMn shO
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10. 均 柄 蜗 曲 萎 .
识字表中蓝色的字是多音字,不计入生字总数。
123
zhWi yJn hWo shFn zhJ liWng juR sTu qUng zhHu zhK pQo
qO yuQn mFng fL hWn yM yL xU zhHng gTng
语文园地 屈 渊 孟 甫 韩 愈 禹 锡 仲 龚
lC zhI bJng cFng gAo qiQng yQng shR
13 虑 职 屏 蹭 稿 腔 殃 折
gE da wL wM lYng zhuY fP hEng tI qU
14 疙 瘩 侮 恶 聋 啄 伏 哼 啼 凄
2014年版机电产品国际招标标准文件(第一册)
机电产品国际招标标准招标文件(第一册)中华人民共和国商务部对外贸易司编2014年04月目录第一册第一章投标人须知………………………………………………………………(3-26)一、说明………………………………………………………………………………(4-5)二、1.招标项目与招标当事人(4)2.合格的投标人(4)3.合格的货物和服务(4)4.投标费用(5)二、招标文件…………………………………………………………………………(5-6)5.招标文件的编制依据与构成(5)6.招标文件的澄清和修改(6)7.对招标文件的异议(6)三、投标文件的编制…………………………………………………………………(6-12)8.投标的语言(7)9.投标文件的构成(7)10.投标文件的编写(7)11.投标报价(8)12.投标货币(9)13.证明投标人合格和资格的文件(10)14.证明货物的合格性和符合招标文件规定的文件(10)15.投标保证金(11)16.投标有效期(12)17.投标文件的式样和签署(12)四、投标文件的递交………………………………………………………………(13-14)18.投标文件的密封和标记(13)19.投标截止时间(13)20.迟交的投标文件(14)21.投标文件的修改和撤回(14)五、开标与评标……………………………………………………………………(14-24)22.开标(14)23.评标委员会和评标方法(15)24.投标文件的初审(15)25.转换为单一货币(17)26.价格评议(适用最低评标价法)(17)27.综合评价(适用综合评价法)(20)28.评标结果公示(24)29.与招标人或招标机构的接触(24)六、授予合同………………………………………………………………………(25-26)30.履约能力审查(25)31.中标人的确定(25)32.终止招标或否决所有投标(25)33.中标通知书(26)34.签订合同(26)35.履约保证金(26)36.招标服务费(26)第二章合同通用条款…………………………………………………………(27-41)1.定义(28)2.适用性(28)3.原产地(28)4.标准(29)5.合同文件和资料的使用(29)6.知识产权(29)7.履约保证金(29)8.检验和测试(30)9.包装(31)10.装运标记(31)11.装运条件(31)12.装运通知(32)13.交货和单据(34)14.保险(34)15.运输(34)16.伴随服务(335)17.备件(35)18.保证(36)19.索赔(36)20.付款(37)21.价格(37)22.变更指令(37)23.合同修改(37)24.转让(37)25.分包(38)26.卖方履约延误(38)27.误期赔偿费(38)28.违约终止合同(38)29.不可抗力(39)30.因破产而终止合同(39)31.因买方的便利而终止合同(39)32.争端的解决(40)33.合同语言(40)34.适用法律(40)35.通知(40)36.税和关税(40)37.合同生效及其他(41)第三章合同格式........................................................................(42-49) 格式III-1.合同协议书格式 (43)格式III-2.履约保证金银行保函格式 (44)格式III-3.预付款银行保函格式 (45)格式III-4.信用证格式 (46)第四章投标文件格式…………………………………………………………(50-69)格式IV-1.投标书格式 (51)格式IV-2.开标一览表格式 (52)格式IV-3.投标分项报价表格式 (53)格式IV-4.货物说明一览表格式 (55)格式IV-5.技术规格响应/偏离表格式 (56)格式IV-6.商务条款响应/偏离表格式 (57)格式IV-7.投标保证金银行保函格式 (58)格式IV-8.单位负责人授权书格式 (59)格式IV-9.资格证明文件格式…………………………………………………(60-69)格式IV-9-1资格声明格式 (61)格式IV-9-2制造商资格声明格式 (62)格式IV-9-3投标人(作为代理)的资格声明格式 (65)格式IV-9-4制造商出具的授权函格式 (67)格式IV-9-5证书格式 (69)第二册(另行装订)第五章投标邀请第六章投标资料表第七章合同专用条款第八章货物需求一览表及技术规格第一章投标人须知一、说明1.招标项目与招标当事人1.1本招标文件第二册第六章投标资料表中所述的招标人已拥有一笔资金/贷款。
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Features➤Accurate measurement of avail-able capacity in NiCd or NiMH batteries ➤Low-cost battery management so-lution for pack integration-As little as 12square inch of PCB for complete circuit -Low operating current (120µA typical)-Less than 100nA of data retention current➤High-speed (5kb/s) single-wire communication interface (HDQ bus) for critical battery parameters ➤Communication with an external charge controller such as the bq2004➤Direct drive of remaining capacity LEDs ➤Automatic rate and temperature compensation of measurements ➤16-pin narrow SOICGeneral DescriptionThe bq2014H NiCd/NiMH Gas Gauge IC is intended for battery-pack or in-system installation to maintain an accurate record of available battery capacity.The IC monitors a voltage drop across a sense resistor connected in series between the negative battery termi-nal and ground to d e t e r m i n e charge and discharge activity of the battery .Compensations for bat-tery temperature,self-discharge,and rate of discharge are applied to the charge counter to provide avail-able capacity information across a wide range of operating conditions.Battery capacity is automatically re-calibrated,or “learned,”in the course of a discharge cycle from full to empty .Nominal available capacity may be directly indicated using a five-segment LED display .The bq2014H also supports a simple single-linebidirectional serial link to an exter-nal processor (common ground).The 5kb/s HDQ bus interface reduces communications overhead in the external microcontroller.Internal registers include available capacity and energy,temperature,voltage and current,and battery status.The external processor may also overwrite some of the bq2014H gas gauge data registers.The bq2014H can operate from the batteries in the pack.The REF out-put and an external transistor allow a simple,inexpensive voltage regu-lator to supply power to the circuit from the cells.1bq2014HLCOMLED common outputSEG 1/PROG 1LED segment 1/program 1input SEG 2/PROG 2LED segment 2/program 2input SEG 3/PROG 3LED segment 3/program 3input SEG 4/PROG 4LED segment 4/program 4input SEG 5/PROG 5LED segment 5/program 5input DONECharge complete input1PN20140H..eps16-Pin Narrow SOIC234 5678161514131211109LCOMSEG 1/PROG 1SEG 2/PROG 2SEG 3/PROG 3SEG 4/PROG 4SEG 5/PROG 5DONE V SSV CC REF NC HDQ RBI SB DISP SRV SS System ground SR Sense resistor input DISP Display control input SB Battery sense input RBI Register backup input HDQ Serial communications input/output NC No connectREF V oltage reference output V CCSupply voltagePin Connections SLUS030A –JUNE 1999 - REVISED OCTOBER 2003Low-Cost NiCd/NiMH Gas Gauge ICPin NamesPin DescriptionsLCOM LED common outputOpen-drain output that switches V CC tosource current for the LEDs.The switch isoff during initialization to allow reading ofthe soft pull-up or pull-down program resis-tors.LCOM is also high impedance when thedisplay is off.SEG1–SEG5LED display segment outputs(dual func-tion with PROG1–PROG5)Outputs that each may activate an LED to sink the current sourced from LCOM.PROG1–PROG2Programmed full count selection inputs (dual function with SEG1–SEG2)Three-level input pins that define the pro-grammed full count(PFC)thresholds de-scribed in Table2.PROG3–PROG4Power gauge scale selection inputs(dual function with SEG3–SEG4)Three-level input pins that define the scale factor described in Table2.PROG5Self-discharge rate selection(dual func-tion with SEG5)Three-level input pin that defines theself-discharge and battery-compensation fac-tors as shown in Table1.DONE Charge complete inputCommunicates the status of an externalcharge-controller such as the bq2004Fast-Charge IC to the bq2014H.Note:This pinmust be pulled down to V SS using a200kΩresistor.V SS GroundSR Sense resistor inputThe voltage drop(V SR)across the sense re-sistor R S is monitored and integrated overtime to interpret charge and discharge activ-ity.V SR<V SS indicates discharge,and V SR>V SS indicates charge.The effective voltagedrop,V SRO,as seen by the bq2014H is V SR+V OS.DISP Display control inputDISP high disables the LED display.DISPtied to V CC allows PROG X to connect di-rectly to V CC or V SS instead of through apull-up or pull-down resistor.DISP floatingallows the LED display to be active duringcharge.DISP low activates the display.SeeTable1.SB Secondary battery inputMonitors the battery cell-voltage potentialthrough a high-impedance resistive dividernetwork for end-of-discharge voltage(EDV)thresholds and for battery-removeddetection.RBI Register backup inputProvides backup potential to the bq2014H reg-isters while V CC≤3V.A storage capacitor ora battery can be connected to RBI.HDQ Serial communication input/outputThis is the open-drain bidirectional commu-nications port.NC No connectREF Voltage reference outputREF provides a voltage reference output foran optional microregulator.V CC Supply voltage input2bq2014HFunctional DescriptionGeneral OperationThe bq2014H determines battery capacity by moni-toring the amount of current input to or removed from a rechargeable battery.The bq2014H mea-sures discharge and charge currents,measures bat-tery voltage,estimates self-discharge,monitors the battery for low battery-voltage thresholds,and com-pensates for temperature and charge/discharge rate. Current measurement is made by monitoring the voltage across a small-value series sense resistor be-tween the negative battery terminal and ground. The bq2014H compensates the nominal available capacity register for discharge rate and tempera-t u r e a n d r e p o r t s t h e c o m p e n s a t e d a v a i l a b l e capacity.The bq2014H uses the compensated availablecapacity to drive the LED display.In addition,the bq2014H estimates the available energy using the aver-age battery voltage during the discharge cycle and re-maining compensated available capacity.Figure1shows a typical battery pack application of the bq2014H using the LED display capability as a charge-state indicator.The bq2014H is configured to display capacity in relative display mode.The relative display mode uses the last measured discharge capacity of the battery as the battery“full”reference.A push-button display feature is available for momentarily enabling the LED display.The bq2014H monitors the charge and discharge cur-rents as a voltage across a sense resistor.(See R S in Fig-ure1.)A filter between the negative battery terminal and the SR pin is required.3Figure 1.Battery Pack Application Diagram—LED Displaybq2014HVoltage ThresholdsIn conjunction with monitoring V SR for charge/discharge currents,the bq2014H monitors the battery potential through the SB pin for the end-of-discharge voltage(EDV) thresholds.The EDV threshold levels are used to determine when the battery has reached an“empty”state.The EDV thresholds for the bq2014H are programmable with the default values fixed as follows:EDV1 (first) = 0.76VEDVF(final) = EDV1 - 0.025V = 0.735VThe battery voltage divider(RB1and RB2in Figure1)is used to scale these values to the desired threshold.If V SB is below either of the two EDV thresholds,the as-sociated flag is latched and remains latched,independ-ent of V SB,until the next valid charge.EDV monitoring is disabled if theisgreater than2C(OVLD Flag=1)and resumes second after the rate falls below2C.The V SB value isover the serial port.RBI InputThe RBI input pin is used with a storage capacitor or ex-ternal supply to provide backup potential to the internal bq2014H registers when V CC drops below3.0V.V CC is output on RBI when V CC is above3.0V.If using an exter-nal supply(such as the bottom series cell)as the backup source,an external diode is required for isolation.ResetThe bq2014H can be reset by removing V CC and ground-ing the RBI pin for15seconds or by commands over the serial port.The serial port reset command sequence re-quires writing00h to register PPFC(address=1Eh)and then writing00h to register LMD(address=05h). TemperatureThe bq2014H internally determines the temperature in 10°C steps centered from approximately-35°C to+85°C. The temperature steps are used to adapt charge and dis-charge rate compensations,self-discharge counting,and available charge display translation.The temperature range is available over the serial port in10°C increments,as shown in the following tableLayout ConsiderationsThe bq2014H measures the voltage differential between the SR and V SS pins.V OS(the offset voltage at the SR pin)is greatly affected by PC board layout.For optimal results,the PC board layout should follow the strict rule of a single-point ground return.Sharing high-current ground with small-signal ground causes undesirable noise on the small-signal nodes.Additionally:I The capacitors(C1and C2)should be placed asclose as possible to the V CC and SB pins, respectively,and their paths to V SS should be as short as possible.A high-quality ceramic capacitor of0.1µF is recommended for V CC.I The sense-resistor capacitor should be placed as closeas possible to the SR pin.I The sense resistor(R S)should be as close as possible tothe bq2014H.4TMP(hex)Temperature Range0x< -30°C1x-30°C to -20°C2x-20°C to -10°C3x-10°C to 0°C4x0°C to 10°C5x10°C to 20°C6x20°C to 30°C7x30°C to 40°C8x40°C to 50°C9x50°C to 60°CAx60°C to 70°CBx70°C to 80°CCx> 80°Cbq2014HGas Gauge OperationThe operational overview diagram in Figure2illustrates the operation of the bq2014H.The bq2014H accumu-lates a measure of charge and discharge currents,as well as an estimation of self-discharge.The accumu-lated charge and discharge currents are adjusted for temperature and rate to provide the indication of com-pensated available capacity to the host system or user. The main counter,Nominal Available Capacity(NAC), represents the available battery capacity at any given time.Battery charging increments the NAC register, while battery discharging and self-discharge decrement the NAC register and increment the DCR(Discharge Count Register).The Discharge Count Register is used to update the Last Measured Discharge(LMD)register only if a complete battery discharge from full to empty occurs without any partial battery charges.Therefore,the bq2014H adapts its capacity determination based on the actual condi-tions of discharge.The battery's initial capacity equals the Programmed Full Count(PFC)shown in Table2.Until LMD is up-dated,NAC counts up to but not beyond this threshold during subsequent charges.This approach allows the gas gauge to be charger-independent and compatible with any type of charge regime.st Measured Discharge(LMD)or learnedbattery capacity:LMD is the last measured discharge capacity of thebattery.On initialization(application of V CC or bat-tery replacement),LMD=PFC.During subsequentdischarges,the LMD is updated with the latestmeasured capacity in the Discharge Count Registerrepresenting a discharge from full to below EDV1.A qualified discharge is necessary for a capacitytransfer from the DCR to the LMD register.TheLMD also serves as the100%reference thresholdused by the relative display mode.5Figure 2.Operational Overviewbq2014H2.Programmed Full Count (PFC)or initial bat-tery capacity:The initial LMD and gas gauge rate values are pro-grammed by using PROG 1–PROG 4.The bq2014H is configured for a given application by selecting a PFC value from Table 2.The correct PFC may be determined by multiplying the rated battery capac-ity in mAh by the sense resistor value:Battery capacity (mAh)*sense resistor (Ω) =PFC (mVh)Selecting a PFC slightly less than the rated capac-ity provides a conservative capacity reference until the bq2014H “learns”a new capacity reference.Example:Selecting a PFC Value Given:Sense resistor =0.05ΩNumber of cells =10Capacity =3500mAh,NiMH Current range =50mA to 1A Relative display modeSelf-discharge=per day @25°CVoltage drop over resistor =2.5mV to 50mV Nominal discharge voltage =1.2V Therefore:3500mAh *0.05Ω= 175mVh6PROG x Pro-grammed Full Count (PFC)PROG 4= LPROG 4= Z or HUnits 12PROG 3= H PROG 3= Z PROG 3= L PROG 3= H PROG 3= Z PROG 3= L ---SCALE =1/80SCALE =1/160SCALE =1/320SCALE =1/640SCALE =1/1280SCALE =1/2560mVh/count H H 4915261430715476.838.419.2mVh H Z 4505656328214170.435.217.6mVh H L 4096051225612864.032.016.0mVh Z H 3686446123011557.628.814.4mVh Z Z 3379242221110653.026.413.2mVh Z L 3072038419296.048.024.012.0mVh L H 2764834617386.443.221.610.8mVh L Z 2560032016080.040.020.010.0mVh LL2252828214170.435.217.68.8mVh V SR equivalent to 2counts/s (nom.)904522.511.255.62.8mVTable 2.bq2014H Programmed Full Count mVh,V SR Gain SelectionsTable 1.Self-Discharge and Capacity Compensationbq2014HSelect:PFC=27648counts or173mVhPROG1=lowPROG2=highPROG3=floatPROG4=lowPROG5=lowThe initial full battery capacity is173mVh (3460mAh)until the bq2014H“learns”a new capac-ity with a qualified discharge from full to EDV1.3.Nominal Available Capacity(NAC):NAC counts up during charge to a maximum value of LMD and down during discharge and self-dis-charge to0.NAC is reset to0on initialization and on the first valid charge following discharge to EDV1.To prevent overstatement of charge during periods of overcharge,NAC stops incrementing when NAC=LMD or0.94∗LMD if T<0°C.4.Discharge Count Register(DCR):The DCR counts up during discharge independent of NAC and could continue increasing after NAC has decremented to0.Prior to NAC=0(empty battery),both discharge and self-discharge in-crement the DCR.After NAC=0,only discharge increments the DCR.The DCR resets to0when NAC≥0.94∗LMD and a discharge is detected.The DCR does not roll over but stops counting when it reaches FFh.The DCR value becomes the new LMD value on the first charge after a valid discharge to V EDV1if all the following conditions are met:I No valid charge initiations(charges greater than2NAC updates where V SRO>V SRQ)occurredduring the period between NAC≥0.94∗LMD andEDV1.I The self-discharge is less than6.25%of NAC.I The temperature is≥0°C when the EDV1levelis reached during discharge.I The discharge begins when NAC≥0.94∗LMD.I VDQ is set.The valid discharge flag(VDQ)indicates whether the present discharge is valid for LMD update.If the DCR update value is less than0.94∗LMD, LMD will only be modified by0.94∗LMD.This pre-vents invalid DCR values from corrupting LMD.5.Scaled Available Energy(SAE):SAE is useful in determining the available energy within the battery,and may provide a more usefulcapacity reference in battery chemistries withsloped voltage profiles during discharge.SAE maybe converted to an mWh value using the followingformula:E(mWh) =(SAEH SAEL)∗+∗25612.∗∗∗SCALE(R+R)R RB1B2S B2where R B1,R B2,and R S are resistor values inohms,as shown in Figure1.SCALE is the selectedscale from Table2.pensated Available Capacity(CACT)CACT counts similarly to NAC,but contains theavailable capacity compensated for discharge rateand temperature.Charge CountingCharge activity is detected based on a positive voltage on the SR input.If charge activity is detected,the bq2014H increments NAC at a rate proportional to V SR and,if enabled,activates the LED display.The bq2014H counts charge activity when the voltage at the SR input(V SRO)exceeds the minimum charge threshold(V SRQ).A valid charge is detected when NAC has been updated twice without discharging or reaching the digital magnitude filter time-out.Once a valid charge is detected,charge counting continues until V SR, including offset,falls below V SRQ.Discharge CountingDischarge activity is indicated by a negative voltage on the SR input.All discharge counts where V SRO is less than the minimum discharge threshold(V SRD)cause the NAC register to decrement and the DCR to increment.Self-Discharge CountingThe bq2014H continuously decrements NAC and incre-ments DCR for self-discharge on the basis of time and tem-perature.Charge/Discharge CurrentThe bq2014H current-scale registers,VSRH and VSRL, can be used to determine the battery charge or dis-charge current.See the Current Scale Register descrip-tion for details.7bq2014HCount CompensationsCharge CompensationTwo charge efficiency compensation factors are used for trickle and fast charge.Trickle charge is defined as a rate of charge<C/3.The compensation defaults to the fast-charge factor until the actual charge rate is determined. Temperature adapts the charge rate compensation fac-tors over two ranges between nominal and hot tempera-tures.The compensation factors are shown below.Charge Temperature Trickle-ChargeCompensationFast-ChargeCompensation< 40°C0.810.94> 40°C0.750.88 Compensated Available CapacityNAC is adjusted for rate of discharge and temperature to derive the CACD and CACT values.Corrections for the rate of discharge are made by adjust-ing an internal discharge compensation factor.The dis-charge factor is based on the discharge rate.This com-pensation is applied to NAC to derive the value in the CACD register.The compensation factors during discharge are:Approximate Discharge Rate Rate EfficiencyFactor< 2C100%> 2C95% Temperature compensation during discharge also takes place.At lower temperatures,the compensation factor increases by0.05for each10°C temperature range below 10°C.This compensation is applied to CACD to derive the value in the CACT register.The temperature com-pensation factor follows the equationTemperature Efficiency Factor = 1.00 - (0.05∗N) where N=number of10°C steps below10°C.For example,T>10°C:Nominal compensation,N=00°C<T<10°C:N=1(temperature efficiency=95%)-10°C<T<0°C:N=2(temperature efficiency=90%)-20°C<T<-10°C:N=3(temperature efficiency=85%)-20°C<T<-30°C:N=4(temperature efficiency=80%)Self-Discharge CompensationThe compensation isprogrammed for a nominal rate of*NAC per day,∗NAC per day,or disabled.the rate for within the 20°C–30°C temperature range(TMPGG=6x).This rate varies across8ranges from<10°C to>70°C,doublingwith each higher temperature step(10°C).See Table3. Digital Magnitude FilterThe bq2014H has a digital filter to eliminate charge and discharge counting below a set threshold.The threshold for both V SRD and V SRQ is250µV.8Table 3.Self-Discharge Compensationbq2014HError SummaryCapacity InaccurateThe LMD is susceptible to error on initialization or if no updates occur.On initialization,the LMD value in-cludes the error between the programmed full capacity and the actual capacity .This error is present until a valid discharge occurs and LMD is updated.(See the DCR description.)The other cause of LMD error is bat-tery wear-out.As the battery ages,the measured capac-ity must be adjusted to account for changes in actual battery capacity .A Capacity Inaccurate counter (CPI)is maintained and incremented each time a valid charge occurs (qualified by NAC;see the CPI register description).It is reset whenever LMD is updated from the DCR.The counter does not wrap around but stops counting at 255.The ca-pacity inaccurate flag (CI)is set if LMD has not been up-dated following 64valid charges.Current-Sensing ErrorTable 6shows the non-linearity and non-repeatability errors associated with the bq2014H current sensing.Table 7illustrates the current-sensing error as a func-tion of V OS .A digital filter prevents charge and dis-charge counts to the NAC register when V SRO is be-tween V SRQ and V SRD .Done InputA charge-control IC or a microcontroller uses the DONE input to communicate charge status to the bq2014H.When the DONE input is asserted high on charge com-pletion,the bq2014H sets NAC =LMD and VDQ =1.The DONE input should be maintained high as long as the charge controller or microcontroller keeps the bat-teries full;otherwise,the pin should be held low .Communicating with the bq2014HThe bq2014H includes a simple single-pin (HDQ plus re-turn)serial data interface.A host processor uses the in-terface to access various bq2014H registers.Battery characteristics may be easily monitored by adding a sin-gle contact to the battery pack.The open-drain HDQ pin on the bq2014H should be pulled up by the host sys-tem,or may be left floating if the serial interface is not used.The interface uses a command-based protocol,in which the host processor sends a command byte to the bq2014H.The command directs the bq2014H to either store the next eight bits of data received to a register specified by the command byte or output the eight bits of data specified by the command byte.(See Figure 4.)The communication protocol is asynchronous mand and data bytes consist of a stream of eight bits that have a maximum transmission rate of 5K bits/sec.The least-significant bit of a command or data byte is transmitted first.The protocol is simple enough that it can be implemented by most host proces-sors using either polled or interrupt processing.Data input from the bq2014H may be sampled using the pulse-width capture timers available on some microcon-trollers.If a communication error occurs (e.g.,t CYCB >250µs),the bq2014H should be sent a BREAK to reinitiate the serial interface.A BREAK is detected when the HDQ pin is driven to a logic-low state for a time,t B or greater.The HDQ pin should then be returned to its normal ready-high logic state for a time,t BR .The bq2014H is now ready to receive a command from the host proces-sor.9V OS (µV)Sense Resistor 2050100m Ω500.250.100.05%1000.500.200.10%1500.750.300.15%1800.900.360.18%Table 7.V OS -Related Current Sense Error(Current = 1A)Symbol ParameterTypical MaximumUnits NotesINL Integrated non-linearity error±2±4%Add 0.1% per °C above or below 25°C and 1% per volt above or below 4.25V .INRIntegrated non-repeatability error±1±2%Measurement repeatability given similar operating conditions.Table 6.bq2014H Current-Sensing Errorsbq2014HThe return-to-one data bit frame consists of three dis-tinct sections:1.The first section is used to start the transmissionby either the host or the bq2014H taking the HDQ pin to a logic-low state for a period,t STRH;B.2.The next section is the actual data transmission,where the data should be valid by a period,t DSU;B, after the negative edge used to start communica-tion.The data should be held for a period,t DH;DV, to allow the host or bq2014H to sample the data bit.3.The final section is used to stop the transmission byreturning the HDQ pin to a logic-high state by at least a period,t SSU;B,after the negative edge used to start communication.The final logic-high state should be until a period t CYCH;B,to allow time to en-sure that the bit transmission was stopped prop-erly.The timings for data and break communication are given in the serial communication timing speci-fication and illustration sections.Communication with the bq2014H is always performed with the bit transmitted first.Figure5shows an example of a communication sequence to read the bq2014H NACH register.bq2014H Command Code and RegistersThe bq2014H status registers are listed in Table8and de-scribed below.All registers are Read/Write in the bq2014H. Caution:When writing to bq2014H registers ensure that proper data are written.A write-verify read is recommended.Command CodeThe bq2014H latches the command code when eight valid command bits have been received by the bq2014H. The command code contains two fields:I W/R bitI Command addressThe W/R bit of the command code is used to select whether the received command is for a read or a write function:The W/R values areCommand Code Bits76543210W/R-------where W/R is0The bq2014H outputs the requested regis-ter contents specified by the address por-tion of command code.1The following eight bits should be writtento the register specified by the address por-tion of command code.The lower7-bit field of the command code contains the address portion of the register to be accessed:Command Code Bits76543210-AD6AD5AD4AD3AD2AD1AD0(LSB) Primary Status Flags Register(FLGS1)The FLGS1register(address=01h)contains the pri-mary bq2014H flags.The charge status flag(CHGS)is asserted when a valid charge rate is detected.Charge rate is deemed valid when V SRO>V SRQ.A V SRO of less than V SRQ or discharge activity clears CHGS.The CHGS values areFLGS1 Bits76543210 CHGS-------where CHGS is0Either discharge activity detected or V SRO ≤V SRQ1V SRO>V SRQThe battery replaced flag(BRP)is asserted whenever the bq2014H is reset either by application of V CC or by a serial port command.BRP is reset when either a valid charge action increments NAC to be equal to LMD,or a valid charge action is detected after the EDV1flag is as-serted.BRP=1signifies that the device has been reset. The BRP values areFLGS1 Bits76543210-BRP------where BRP is0Battery is charged until NAC=LMD or dis-charged until the EDV1 flag is asserted 1bq2014H is reset4-10 bq2014H分销商库存信息:TIBQ2014HSN BQ2014HSNTR BQ2014HSNTRG4 BQ2014HSNG4BQ2014HEVM-001。