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4609M-901-222LF

产品描述Capacitor Arrays u0026 Networks 9Pin 2.2KpF 20% Bussed X7R
产品类别无源元件   
文件大小347KB,共1页
制造商Bourns
官网地址http://www.bourns.com
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4609M-901-222LF概述

Capacitor Arrays u0026 Networks 9Pin 2.2KpF 20% Bussed X7R

4609M-901-222LF规格参数

参数名称属性值
产品种类
Product Category
Capacitor Arrays & Networks
制造商
Manufacturer
Bourns
RoHSDetails
端接类型
Termination Style
SIP
容差
Tolerance
20 %
最小工作温度
Minimum Operating Temperature
- 55 C
最大工作温度
Maximum Operating Temperature
+ 125 C
系列
Packaging
Bulk
高度
Height
5.08 mm
长度
Length
22.9 mm
封装 / 箱体
Package / Case
SIP-9
工厂包装数量
Factory Pack Quantity
200
温度系数/代码
Temperature Coefficient / Code
100 PPM / C
电压额定值 DC
Voltage Rating DC
50 VDC
宽度
Width
3.81 mm

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IA
N
Features
Integrates capacitor function in one
T
package
RoHS compliant*
Design reduces termination noise
Popular standard capacitance values
available
Compatible with wave soldering
*R
oH
S
CO
This series is currently available but
not recommended for new designs.
M
PL
Isolated, bussed and dual-bussed circuits
available
900 Series - Capacitor Networks
Electrical Characteristics
Capacitance Tolerance
39 pF - 270 pF...........................±10 %
>270 pF - 0.1
μF
.......................±20 %
Circuit Configuration .....Isolated, bussed
and dual-bussed
Capacitor Dielectric ............... NPO, X7R
Capacitance Voltage Rating
39 pF - 270 pF..NPO - 50 V @ +25 °C
>270 pF - 0.047
μF
..........................X7R - 50 V @ +25 °C
Physical Characteristics
Lead Spacing............. 0.100 ” (2.54 mm)
Terminal Coating.......... Sn/Ag/Cu-plated
Body Material...............Epoxy/Anhydride
conformal material
Standard High Volume Part Numbers
4610M-901-103LF
4610M-902-103LF
4610M-901-104LF
4610M-902-104LF
How To Order
Product Dimensions
A
MAXIMUM
5.08
(.200)
MAX.
Isolated Capacitors (902 Circuit)
...
1
4
6
10
12
14
PIN #1
REF.
3.50 ± .50
(.138 ± .020)
.508
±
.050
TYP.
(.020
±
.002)
2.54
±
.07
(.100
±
.003*)
TYP.
NON-ACCUM.
3.81
MAX.
(.150)
These models incorporate 2 to 7
isolated capacitors of equal value, each
connected between two pins.
Bussed Capacitors (901 Circuit)
.254
±
.10
TYP.
(.010
±
.039)
Pin
Count
4
5
6
7
8
9
10
11
12
13
14
A Maximum
mm (Inches)
10.2 (.402)
12.7 (.500)
15.3 (.602)
17.8 (.701)
20.4 (.803)
22.9 (.902)
25.4 (1.00)
28.0 (1.102)
30.5 (1.201)
33.1 (1.303)
35.6 (1.402)
1
14
These models incorporate 3 to 13
capacitors of equal value, each
connected between a common bus
(Pin 1) and a separate pin.
Dual-Bussed Capacitors (904 Circuit)
46 10 M - 901 - 103 LF
Model
(46 = SIP Pkg)
Number of Pins
Profile
(M = Standard Profile)
Electrical Configuration
• 901 = Bussed
• 902 = Isolated
• 904 = Dual-Bussed
Capacitance Code
• First 2 digits are significant
• Third digit represents the
number of zeros to follow.
Terminations
• LF = Lead free (Sn/Ag/Cu-plated)
Consult factory for other available options.
Typical Part Marking
Represents total content. Layout may
vary.
MODEL
INDICATOR
91-101
CAPACITANCE
CODE
1
n-1 n
PIN ONE
INDICATOR
These models incorporate 2 to 12
capacitors of equal value, each
connected to a dual buss that connects
Pin 1 to the last pin.
Standard Capacitance Values and Codes
These are the standard and non-standard capacitance values available. Consult
factory for capacitance values and types outside this range. Tolerances of 5 %, 10 %
and 20 % are available.
“NPO” DIELECTRICS
10 % Tolerance
Capacitance Capacitance
(pF)
Code
39
390
47
470
56
560
68
680
82
820
100
101
120
121
150
151
180
181
220
221
270
271
“X7R” DIELECTRICS
20 % Tolerance
Capacitance Capacitance
(pF)
Code
330
331
390
391
470
471
560
561
680
681
820
821
1000
102
1200
122
1500
152
1800
182
2200
222
2700
272
3300
332
3900
392
4700
472
5600
562
6800
682
8200
822
“X7R” DIELECTRICS
20 % Tolerance
Capacitance Capacitance
(μF)
Code
0.01
103
0.012
123
0.015
153
0.018
183
0.022
223
0.027
273
0.033
333
0.039
393
0.047
473
0.056
563
0.068
683
0.082
823
0.1
104
REV. 12/15
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
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