电子工程世界电子工程世界电子工程世界

关键词

搜索

型号

搜索

402/1/-87633/130U

产品描述CAPACITOR, TANTALUM, SOLID, POLARIZED, 16V, 820uF, SURFACE MOUNT
产品类别无源元件    电容器   
文件大小92KB,共6页
制造商Nissei Electric CoLtd
下载文档 详细参数 全文预览

402/1/-87633/130U概述

CAPACITOR, TANTALUM, SOLID, POLARIZED, 16V, 820uF, SURFACE MOUNT

402/1/-87633/130U规格参数

参数名称属性值
包装说明,
Reach Compliance Codeunknown
ECCN代码EAR99
电容820 µF
电容器类型TANTALUM CAPACITOR
介电材料TANTALUM (DRY/SOLID)
漏电流0.095 mA
制造商序列号SMTTH
安装特点SURFACE MOUNT
负容差10%
端子数量2
最高工作温度200 °C
最低工作温度-55 °C
封装形状CYLINDRICAL PACKAGE
极性POLARIZED
正容差10%
额定(直流)电压(URdc)16 V
纹波电流948 mA
表面贴装YES
Delta切线0.06
端子形状FLAT
Base Number Matches1

文档预览

下载PDF文档
Hi - Temperature Range
TTH - SMTTH Series
1.7µF to 2200µF
125V to 6V
-55°C to 200°C
In general the characteristics of the units are the same as the equivalent
TH unit, (see Data Sheet 5007).
It should be noted that only values appearing in this section should be
subjected to a maximum of 200°C, and those appearing in the TH &
SMTH must not exceed 125°C without prior consultation with Arcotronics'
Applications Department.
Leakage currents at the elevated temperatures with appropriate voltage
derating applied are three times the corresponding values at rated voltage
and 85°C.
The TTH & SMTTH series are intended for high temperature operation to
a maximum of 200°C with corresponding derating above 85°C. The
tantalum case design allows a reverse voltage and high ripple current
capability. These series will handle up to 3 volts in reverse at 85°C and 1
volt at 200°C.
The range is of constructional compatibility with the well proven TH &
SMTH range of all-tantalum tubular non-solid electrolytic capacitors,
encompassing many of the values within the TH range approved to CECC
30 202 001 and CECC 30 202 005.
Table 3 - TTH / SMTTH VOLTAGE DERATING TABLES
Rated 85˚C
6
6
6.3
6.3
8
8
10
10
15
15
16
16
25
25
30
30
40
40
50
50
60
60
63
63
75
75
100
100
125
125
WORKING VOLTAGE
125˚C 150˚C 175˚C 200˚C
4
3
3
3
4
3
3
3
5
4
4
4
7
6
5
5
10
9
8
7
10
9
8
8
15
15
13
12
20
18
16
15
25
24
22
20
30
30
27
25
40
36
33
30
40
36
33
30
50
45
41
37
65
60
55
50
85
75
68
62
85˚C
6.9
7.2
9.2
11.5
17.2
18.5
28.8
34.5
46
57.5
69.0
72.0
86.2
115.0
144.0
SURGE VOLTAGE
125˚C 150˚C/175˚C/200˚C
4.6
*
4.6
*
5.7
*
8.0
*
11.5
*
11.5
*
17.2
*
23.0
*
29
*
34.5
*
46.0
*
46.0
*
57.5
*
75.0
*
98.0
*
In-Rush Currents
Typical curves showing the current flow during the first 25
microseconds of charging are shown below. Although a very low
impedance source was used (battery), it is likely that circuit
restrictions limited the current flow as currents of the order of 70
amps have been reported from the field for the TH T4 case size.
The TH range may be charged and/or discharged directly across
the terminals with no protective resistor. This is a positive
advantage over the tantalum 'solid' capacitors where protective
resistors must be used to prevent short circuit breakdown by
avalanche effect.
* 150°C, 175°C & 200°C DERATED VOLTAGE IS PEAK VOLTAGE RATING NOT TO BE EXCEEDED.
Table 4 - TTH / SMTTH RIPPLE CURRENT
MULTIPLIERS
APPLIED RIPPLE CURRENT
OPERATING TEMPERATURE
FREQUENCY % RATED PEAK VOLTS 55˚C 85˚C 105˚C 125˚C 150˚C 175˚C 200˚C
RIPPLE CURRENT MULTIPLIERS
100Hz
100%
.60 .39
90%
.60 .46
80%
.60 .52 .35
70%
.60 .58 .44
67%
.60 .60 .46
.27
.22
.19
50%
.60 .60 .46
.27
.22
.19
.13
1kHz
100%
.72 .45
90%
.72 .55
80%
.72 .62 .42
70%
.72 .70 .52
67%
.72 .72 .55
.32
.28
.23
50%
.72 .72 .55
.32
.28
.23
.16
10kHz
100%
.88 .55
90%
.88 .67
80%
.88 .76 .52
70%
.88 .85 .64
67%
.88 .88 .68
.40
.34
.28
50%
.88 .88 .68
.40
.34
.28
.19
40kHz
100%
1.0 .63
90%
1.0 .77
80%
1.0 .87 .59
70%
1.0 .97 .73
67%
1.0 1.0 .77
.45
.37
.32
50%
1.0 1.0 .77
.45
.37
.32
.22
100kHz
100%
1.1 .69
90%
1.1 .85
80%
1.1 .96 .65
70%
1.1 1.07 .80
67%
1.1 1.1 .85
.50
.42
.35
50%
1.1 1.1 .85
.50
.42
.35
.24
17
ARM简单的OS问题
现在想用ARM写一个简单的OS,需要建一个进程表,然后从进程表里面读取进程的内容,运行,删除这个进程,再读取下一个。进程的内容为很简单的应用,如利用SWI输出“Hello World!"之类的。输出为如 ......
linfmaing08 ARM技术
VHDL语言如何将整数类型转化为浮点数类型?
求大神指点一下,谢谢了。...
my_style FPGA/CPLD
【IMMC-DIY激光雕刻机】-铅笔画测试-0.7测试版单驱
本帖最后由 kejoy 于 2015-5-22 08:34 编辑 请无视纸张上的油污,装配时零件上留下的:pleased:,铅笔画,这个功能专门设计给小朋友的~~~,原来想是加一个电磁铁做个简易Z轴的,但是买回来的 ......
kejoy DIY/开源硬件专区
Zstack学习经验点滴:端点(endpoint)的实现机制。
zigbee里面应用对象是建立在端点的基础上的,写应用代码时,如果不把端点的实现机制搞明白,总觉得有点虚。 好在TI没有把这一块的代码编译到库里,有源代码分析起很方便。 在zigbee规范里面, ......
kata 无线连接
MSP LaunchPad V1.5 定时器A操作
#include //led #define LED1 BIT0 #define LED2 BIT6 #define LED_OUT P1OUT #define LED_DIR P1DIR void sys_init(void); void led_init(void); void timer_init(void); in ......
王风 微控制器 MCU
EVB 可变长度编码的资料是饿有?不是开发工具,这里的EVB只是数据描述用的。
记得是说用0表示没有更长的数据位,用1 表示有更长的数据位。的。...
t2yaote 嵌入式系统

 
EEWorld订阅号

 
EEWorld服务号

 
汽车开发圈

 
机器人开发圈

About Us 关于我们 客户服务 联系方式 器件索引 网站地图 最新更新 手机版

站点相关: 大学堂 TI培训 Datasheet 电子工程 索引文件: 926  1666  1189  1680  311  40  26  23  46  44 

器件索引   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

北京市海淀区中关村大街18号B座15层1530室 电话:(010)82350740 邮编:100190

电子工程世界版权所有 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号 Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved