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

PT250R-1200HM

产品描述fixed inductors 250uh 15% .13ohm hznmnt toroid pwrind
产品类别无源元件   
文件大小8MB,共4页
制造商All Sensors
标准  
下载文档 详细参数 全文预览

PT250R-1200HM在线购买

供应商 器件名称 价格 最低购买 库存  
PT250R-1200HM - - 点击查看 点击购买

PT250R-1200HM概述

fixed inductors 250uh 15% .13ohm hznmnt toroid pwrind

PT250R-1200HM规格参数

参数名称属性值
ManufactureAPI Delev
产品种类
Product Category
Fixed Inductors
RoHSYes
电感
Inductance
250 uH
最大直流电阻
Maximum DC Resistance
20.5 mOhms
端接类型
Termination Style
Radial
系列
Packaging
Bulk
工厂包装数量
Factory Pack Quantity
500

文档预览

下载PDF文档
D
Po
EA
-L L
” 4 CA
“4 TI
G. ER D
FI V
EA
-L L
” 2 CA
“3 TI
G. ER ”
FI V . “2
G
FI TAL
N
ZO
RI RD
HO DA L
N A
TA TIC
”S R
“1 VE
S)
G.
FI
MP
(A
C
ID
D
TE
S)
RA
HM
(O
M
MU
XI
Hz
MA
1k
R
@
DC
5%
±1
H)
*
ER
D.
IN
MB
NU
SERIES
PTxxxR
PT
MOUNTING AVAILABLE
s
or
ct
du
In
er
w
DA
SH
Power Toroids -
Horizontal or Vertical Mount
Inductance
tested at 1 kHz, <10 gauss and 0 ADC
DC Resistance
at 25°C
Rated Idc
based on 40°C maximum rise from 25°C ambient with
0 Arms
Windings
single layered to maximize operating frequency and
minimize board space
Self leads
solder coated to within 0.050" of seating plane
Other values
available on request
Packaging
Bulk only
Mounting
Standard mounting is self-lead radial per Figure “1”.
Optional mounting methods are self-leaded horizontal per Figure
“2” or vertical base mounted per Figures “3” and “4”.
FIGURE
1
FIGURE
2
STANDARD
VERTICAL
FIGURE
HORIZONTAL
3
4
FIGURE
VERTICAL
2-LEAD
VERTICAL
4-LEAD
*Complete part # must include series # PLUS the dash #
For surface finish information,
refer to www.delevanfinishes.com
PT5-530
PT5-700
PT5-800
PT5-1000
PT10-530
PT10-680
PT10-820
PT10-990
PT25-680
PT25-800
PT25-900
PT25-1000
PT50-780
PT50-900
PT50-1020
PT50-1320
PT75-900
PT75-980
PT75-1260
PT75-1550
PT100-1000
PT100-1100
PT100-1260
PT100-1550
PT150-1040
PT150-1250
PT150-1500
PT150-2050
PT250-1200
PT250-1500
PT250-1800
PT300-1200
PT300-1500
PT300-1750
PT400-1200
PT400-1500
PT400-1750
PT500-1450
PT500-1750
PT500-2000
PT750-1400
PT750-1700
PT750-2050
PT1000-1400
PT1000-1750
PT1000-2050
5
5
5
5
10
10
10
10
25
25
25
25
50
50
50
50
75
75
75
75
100
100
100
100
150
150
150
150
250
250
250
300
300
300
400
400
400
500
500
500
750
750
750
1000
1000
1000
PT SERIES POWER TOROIDS
0.015
6.1
0.012
7.4
0.010
10.6
0.008
12.8
0.020
4.9
0.015
6.8
0.010
9.3
0.008
13.2
0.035
4.4
0.025
6.6
0.020
7.0
0.014
10.4
0.050
3.8
0.030
5.6
0.025
7.0
0.020
11.0
0.060
3.9
0.040
5.2
0.035
7.4
0.025
10.6
0.080
3.5
0.050
5.1
0.035
7.8
0.028
10.3
0.100
3.4
0.060
5.7
0.050
7.7
0.040
12.3
0.130
3.8
0.080
6.1
0.055
9.1
0.150
3.3
0.100
5.5
0.075
7.3
0.250
2.4
0.180
4.7
0.110
6.0
0.220
3.4
0.160
5.0
0.090
8.0
0.350
2.6
0.280
3.7
0.150
6.4
0.620
1.8
0.420
3.1
0.200
5.9
Notes to Figure 5 (Page 100)
The PT Toroid Series inductance is specified at AC and DC signal levels which have no significant effect on the
permeability of the powdered iron toroidal core. Superimposed AC and DC voltages will change the permeability and therefore the inductance, under
operating conditions. Typically, DC currents will reduce the inductance, while AC signals will increase the inductance up to a point, before beginning to
decrease. Supporting information is provided, detailing the AC or DC effects upon each part. Saturation resulting from DC currents is specified with
waveform having less than a 1% ripple content. When considering the AC waveform, both the frequency and voltage level must be taken into account. As
an aid in defining what effect the alternating sine wave signal will have, the voltage/frequency factor curve can be used. To determine what change of
inductance can be expected at a given voltage level and frequency, simply divide the sinusoidal RMS voltage by the frequency. The voltage is in volts
and the frequency is in hertz. As an example, if using part number PT25-680 at a 1VRMS signal level, and a frequency of 25KHz, the voltage/frequency
factor is calculated to be: 1VRMS/25,000Hz = 40 x 10–6. Referring to the graph, a 39% increase in inductance would be expected.
Notes to Figure 6 (Page 100)
Typical saturation effects as a function of DC flowing through the part. Data is representative of a DC waveform with
less than 1% ripple, and an AC waveform less than 10 gauss.
Note
This information is intended to be used in assisting the designer in part selection. Each operating application may contain other variables which
must be considered in part selection; such as temperature effects, waveform distortion, etc.…
Delevan Sales/Engineering staff is available to provide information as needed to fit each application.
270 Quaker Rd., East Aurora NY 14052 • Phone 716-652-3600 • Fax 716-652-4814 • E-mail: apisales@delevan.com • www.delevan.com
1/2009
ARM-LINUX学习笔记一
一、说明开发板:使用S3C6410(S3C6410是ARM1176JZFS内核,我手上的是OK6410开发板,不推荐购买,资料还是不太好。)。至于为什么不用A8,A9等,其原因有二,1是因为这些太贵,性价比不高。2是因 ......
微末凡尘 ARM技术
求助帖使用LPC800做SPI的EEPROM结果写好了之后发现不能正常写入和读取数据
希望大神能帮忙看看是哪里的错误。 ...
yinqingzaiyiqi NXP MCU
大家一起学算法精品书籍推荐(五)妙趣横生的算法
为什么要推荐这些资料? 软件行业里一直有一种说法:程序=算法+数据结构。可见如果想要掌握程序设计的精髓,算法是必不可少的。 算法(Algorithm)是指解题方案 ......
tiankai001 下载中心专版
请问个GPIO基础问题
本帖最后由 yunhai14 于 2019-3-7 10:22 编辑 LPC1768芯片 FIO0CLR = 255 ; //高速端口输出清零寄存器,写1使相应的端口产生低电平255就是8位二进制1111 1111. 也就是把P0.0 P0.1 P0. ......
yunhai14 NXP MCU
难题!是高手的请帮解决~~~`
最近新配置了电脑,很多高配置的游戏都能玩,魔兽,各种3D游戏都可以玩得非常顺畅,但是有一个游戏玩不了,而且是配置要求不高的游戏-----快乐西游. 我的电脑配制如下: 主板:华硕P5NDC ......
lc123300798 嵌入式系统
WindRiver自己定义的打印输出函数为什么没有输出
在sysHwInit()中调用的一个子函数中有一个windriver自己定义的宏函数,是打印输出的 #ifdef VXBUS_DEBUG_ON int usrBusDebugLevel = 0; #undef VXB_DEBUG_MSG #define VXB_DEBUG_MSG(lv ......
bluecrane 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: 912  2892  2858  234  2849  37  50  41  32  34 

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