160X14W473MV4T Johanson Dielectrics Inc, 160X14W473MV4T Datasheet - Page 5

CAP X2Y CER 47000PF 16V X7R 0603

160X14W473MV4T

Manufacturer Part Number
160X14W473MV4T
Description
CAP X2Y CER 47000PF 16V X7R 0603
Manufacturer
Johanson Dielectrics Inc
Series
X2Y®r
Datasheet

Specifications of 160X14W473MV4T

Capacitance
0.047µF
Voltage - Rated
16V
Tolerance
±20%
Temperature Coefficient
X7R
Mounting Type
Surface Mount, MLCC
Operating Temperature
-55°C ~ 125°C
Features
Low Inductance
Applications
Bypass, Decoupling
Package / Case
0603 (1608 Metric)
Size / Dimension
0.064" L x 0.035" W (1.63mm x 0.89mm)
Thickness
0.66mm Max
Dielectric Characteristic
X7R
Capacitance Tolerance
± 20%
Voltage Rating
16VDC
Capacitor Case Style
0603
No. Of Pins
2
Capacitor Mounting
SMD
Operating Temperature Range
-55°C To
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Ratings
-
Lead Spacing
-
Other names
709-1088-2
X2Y
In this example, a 5 µH common mode choke is replaced by an 0805, 1000pF
X2Y
of the size and cost.
Eliminating Capacitor Anti-Resonance Issue
A common design practice is to parallel decade capacitance values to extend
the high frequency performance of the filter network. This causes an unintende
and often over-looked effect of anti-resonant peaks in the filter networks
combined impedance. X2Y’s very low mounted inductance allows designers
to use a single, higher value part and completely avoid the anti-resonance
problem. The impedance graph on right shows the combined mounted
impedance of a 1nF, 10nF & 100nF 0402 MLC in parrallel in RED. The MLC
networks anti-resonance peaks are nearly 10 times the desired impedance. A
100nF and 47nF X2Y are plotted in BLUE and GREEN. (The total capacitance of
X2Y (Circuit 2) is twice the value, or 200nF and 98nF in this example.) The sigle
X2Y is clearly superior to the three paralleled MLCs.
X2Y High Performance Power Bypass - Improve Performance, Reduce Space & Vias
Actual measured performance of two high performance SerDes FPGA designs demonstrate how a 13 component X2Y bypass network significantly out
performs a 38 component MLC network. For more information see http://johansondielectrics.com/pdfs/JDI_X2Y_STXII.pdf
®
component acheiving superior EMI filtering by a component a fraction
®
Common Mode Choke Replacement
F
ILTER
& D
No Filter
CMC 5uH
X2Y® 1000pF
Ambient
ECOUPLING
Common Mode Choke
9.0 x 6.0 x 5.0 mm
www.johanson dielectrics.com
C
2.0 x 1.3 x 1.0 mm
APACITORS
X2Y
®
One X2Y
while achieving superior EMI filtering.
DC Motor EMI Reduction: A Superior Solution
®
component has successfully replaced 7 discrete filter components
5

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