4120R-601-820/201 [BOURNS]
Data Line Filter, 10 Function(s), 25V, DIP-20;型号: | 4120R-601-820/201 |
厂家: | BOURNS ELECTRONIC SOLUTIONS |
描述: | Data Line Filter, 10 Function(s), 25V, DIP-20 |
文件: | 总2页 (文件大小:214K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Features
■ RoHS compliant version available
■ Cost effective R-C construction
■ Insulation resistance testing for reliability
■ Molded surface mount or DIP packaging
(“L” part number suffix)
For information on EMI/RFI Filters,
download Bourns’ EMI/RFI Filters
Application Note.
■ Compatible with automatic assembly
equipment
■ Custom value capability
601 Series - RC Networks T-Filters
4420P
General Description
7.493 ± .076
(.295 ± .003)
Continual advances in digital IC technology are creating stringent demands on
EMI/RFI levels in equipment.
EMI/RFI low pass filters are required in personal computers, data terminals, test
equipment and process controllers for high frequency suppression into or out of
electronic equipment.
.432 ± .056
(.017 ± .002)
TYP.
10.34 ± .25
(.407 ± .010)
12.95 ± .07
(.510 ± .003)
1.27 ± .076
(.050 ± .003*)
TYP.
Electrical Specifications - Resistors
.127 + .127/ - .000
(.005 + .005/ - .000)
Standard Resistance Range*............................................................10 ohms - 100 ohms
Series Resistance Tolerance ..................................................................................±10 ꢀ
Temperature Coefficient of Resistance .......................................................±±00 ppm/ꢁC
Operating Voltage.................................................................................25 volts maximum
Operating Temperatures ........................................................................+10 ꢁC to +85 ꢁC
*Other Resistance Values Available, 10 ohms - 1 megohm
2.65
(.104)
MAX.
.305 + .000/ - .076
(.012 + .000/ - .003)
8° MAX.
.940 + .355
(.037 ± .014)
Electrical Specifications - Capacitors
Standard Capacitance Range .................................................................50 pF to 200 pF
Capacitance Tolerance............................................................................................±±0 ꢀ
Temperature Characteristic ........................................................................................Z5U
Operating Temperatures.........................................................................+10 ꢁC to +85 ꢁC
Voltage Rating .......................................................................................................25 volts
Dielectric Withstand Voltage ...............................................................2.5 x rated voltage
Insulation Resistance ............................................................10,000 megohms minimum
4118R AND 4120R
.635
(.025)
PIN #1 REF.
27.05
4.57 + .12/ - .28
(.180 + .005/ - .011)
(1.065)
24.51
(.965)
MAX.
.89 ± .25
(.035 ± .010)
MAX.
Environmental Specifications - Resistors
TYP.
∆R MAXIMUM
Thermal Shock ......................................................................................................±0.5 ꢀ
Resistance to Solder Heat ....................................................................................±0.5 ꢀ
Terminal Strength ..................................................................................................±0.5 ꢀ
8.40
MAX.
(.331)
2.03 ± .12
(.080 ± .005)
3.43 + .38/ - .25
(.135 + .015/ - .010)
2.54 ± .25
(.100 ± .010*)
1.65 + .12/ - .07
(.065 + .005/ - .003)
.438 ± .050
(.019 ± .002)
TYP.
Mechanical Specifications
NON-ACCUM.
Flammability...................................................................................Conforms to UL94 V-0
Leadframe .....................................................................................Copper, solder coated
Body Material ............................................................................................Epoxy/Novolac
Lead Solderability.................................Meet requirements of MIL-STD-202 Method 208
TYP.
7.87 ± .25
(.310 ± .010)
TO OUTSIDE
WHEN PINS
6.71 ± .10
(.264 ± .004)
ARE PARALLEL
.76 ± .25
(.030 ± .010)
.254 ± .050
(.010 ± .002)
For Standard Values Used in Capacitors, Inductors, and Resistors, click here.
8.64 ± .50
(.340 ± .020)
Governing dimensions are metric. Dimensions in parentheses
are inches and are approximate.
*Terminal centerline to centerline measurements made at point of
emergence of the lead from the body.
*RoHS Directive 2002/95/EC Jan 27 2003 including Annex
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
601 Series - RC Networks T-Filters
Attenuation Vs. Frequency - Typical Capacitor Values With R= 25 Ohms
ATTENUATION VS. FREQUENCY - TYPICAL CAPACITOR VALUES WITH R = 25 OHMS
Attenuation vs. Frequency
+5dB
Model 4120R-601-250/500
Model 4420-601-250/500
50pF - ±dB @ 84 MHz
0dB
-5dB
50pF
Attenuation vs. Frequency
Model 4120R-601-250/201
Model 4420P-601-250/201
200pF - ±dB @ 21 MHz
-10dB
-15dB
200pF
-20dB
-25dB
-±0dB
-±5dB
-40dB
DC
100Hz
1kHz
10kHz
.1MHz
1MHz
10MHz 100MHz 1GHz
indicates - ±dB rolloff frequency (f )
c
These low-pass filters are ideal for installation between I/O drivers and RS 2±2
connectors.
Typical Circuit
TYPICAL CIRCUIT
4120R-601-RC/CC
4420R-601-RC/CC
How To Order EMI/RFI Filter Networks
44 20 P - 601 - RC/CC __
1
20
Model
(44 = SMD SOIC Pkg)
(41 = Molded DIP)
Terminations
L = RoHS compliant (tin-plated)
Blank = Tin-lead plated
R
R
C
Number of Pins
Resistance/Capacitance Code
• First 2 digits are significant
• Third digit represents the
number of zeros to follow
Physical Configuration
P = Surface Mount Device
(SMD)
R = Molded DIP
Electrical Configuration
R
Insert RC/CC Code from table below to
form part number.
Packages Available
4420P-601-*RC/CC-SMD
4120R-601-*RC/CC-DIP
4118R-601-*RC/CC-DIP
RC
250
270
470
820
101
R
CC
500
101
181
201
C
25Ω
27Ω
47Ω
82Ω
100Ω
50pF
100pF
180pF
200pF
*First two digits are significant. Third
digit represents the number of zeros to
follow.
10
11
Seven circuits in an 18-pin package.
Eight circuits in a 20-pin package.
CONSULT FACTORY FOR VALUES NOT LISTED
REV. 09/07
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
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