EEWORLDEEWORLDEEWORLD

Part Number

Search

0612

Description
CAPACITOR, CERAMIC, MULTILAYER, 6.3 - 50V, SURFACE MOUNT, 0612; 1206, CHIP, ROHS COMPLIANT
CategoryPassive components    capacitor   
File Size316KB,4 Pages
ManufacturerAVX
Download Datasheet Parametric View All

0612 Overview

CAPACITOR, CERAMIC, MULTILAYER, 6.3 - 50V, SURFACE MOUNT, 0612; 1206, CHIP, ROHS COMPLIANT

0612 Parametric

Parameter NameAttribute value
MakerAVX
package instructionCHIP, ROHS COMPLIANT
Reach Compliance Codecompliant
ECCN codeEAR99
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
JESD-609 codee2
Manufacturer's serial number0612
Installation featuresSURFACE MOUNT
multi-layerYes
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
method of packingTR, EMBOSSED, 7/13 INCH
surface mountYES
Terminal surfaceTIN NICKEL
Terminal shapeWRAPAROUND
Low Inductance Capacitors
Introduction
The signal integrity characteristics of a Power Delivery
Network (PDN) are becoming critical aspects of board level
and semiconductor package designs due to higher operating
frequencies, larger power demands, and the ever shrinking
lower and upper voltage limits around low operating voltages.
These power system challenges are coming from mainstream
designs with operating frequencies of 300MHz or greater,
modest ICs with power demand of 15 watts or more, and
operating voltages below 3 volts.
The classic PDN topology is comprised of a series of
capacitor stages. Figure 1 is an example of this architecture
with multiple capacitor stages.
An ideal capacitor can transfer all its stored energy to a load
instantly. A real capacitor has parasitics that prevent
instantaneous transfer of a capacitor’s stored energy. The
true nature of a capacitor can be modeled as an RLC
equivalent circuit. For most simulation purposes, it is possible
to model the characteristics of a real capacitor with one
Slowest Capacitors
capacitor, one resistor, and one inductor. The RLC values in
this model are commonly referred to as equivalent series
capacitance (ESC), equivalent series resistance (ESR), and
equivalent series inductance (ESL).
The ESL of a capacitor determines the speed of energy
transfer to a load. The lower the ESL of a capacitor, the faster
that energy can be transferred to a load. Historically, there
has been a tradeoff between energy storage (capacitance)
and inductance (speed of energy delivery). Low ESL devices
typically have low capacitance. Likewise, higher capacitance
devices typically have higher ESLs. This tradeoff between
ESL (speed of energy delivery) and capacitance (energy
storage) drives the PDN design topology that places the
fastest low ESL capacitors as close to the load as possible.
Low Inductance MLCCs are found on semiconductor
packages and on boards as close as possible to the load.
Fastest Capacitors
Semiconductor Product
VR
Bulk
Board-Level
Package-Level
Die-Level
Low Inductance Decoupling Capacitors
Figure 1 Classic Power Delivery Network (PDN) Architecture
LOW INDUCTANCE CHIP CAPACITORS
The key physical characteristic determining equivalent series
inductance (ESL) of a capacitor is the size of the current loop
it creates. The smaller the current loop, the lower the ESL. A
standard surface mount MLCC is rectangular in shape with
electrical terminations on its shorter sides. A Low Inductance
Chip Capacitor (LICC) sometimes referred to as Reverse
Geometry Capacitor (RGC) has its terminations on the longer
side of its rectangular shape.
When the distance between terminations is reduced, the size
of the current loop is reduced. Since the size of the current
loop is the primary driver of inductance, an 0306 with a
smaller current loop has significantly lower ESL then an 0603.
The reduction in ESL varies by EIA size, however, ESL is
typically reduced 60% or more with an LICC versus a
standard MLCC.
INTERDIGITATED CAPACITORS
The size of a current loop has the greatest impact on the ESL
characteristics of a surface mount capacitor. There is a
secondary method for decreasing the ESL of a capacitor.
This secondary method uses adjacent opposing current
loops to reduce ESL. The InterDigitated Capacitor (IDC)
utilizes both primary and secondary methods of reducing
inductance. The IDC architecture shrinks the distance
between terminations to minimize the current loop size, then
further reduces inductance by creating adjacent opposing
current loops.
An IDC is one single capacitor with an internal structure that
has been optimized for low ESL. Similar to standard MLCC
versus LICCs, the reduction in ESL varies by EIA case size.
Typically, for the same EIA size, an IDC delivers an ESL that
is at least 80% lower than an MLCC.
59
Programming in Matlab to realize the graphical display of data files, the data format is 2 bytes each time
Programming in Matlab to realize the graphical display of data files, the data format is 2 bytes each time...
xiaopp891117 Microcontroller MCU
How to reduce the system cost of three-phase IGBT inverter design
[align=center][color=#000][color=rgb(205, 23, 31)][url=http://www.deyisupport.com/cfs-file.ashx/__key/communityserver-blogs-components-weblogfiles/00-00-00-01-24/3443.1.jpg][/url][/color][/color][/ali...
maylove Microcontroller MCU
Talk about MSP-EXP430FR5739 Experimental Board Application Project
Today I looked through the MSP-EXP430FR5739 experimental board projects that everyone applied for.Many friends apply for this development board with the purpose of getting familiar with MSP430. I am a...
wstt Microcontroller MCU
Help! I need to rent a dynamic torque sensor (paid service)!
We are in urgent need of several torque sensors! The rated torque of the sensor is required to be no less than 3200N.m, and it can be installed at any position of a rod with a length of 1 meter and a ...
cims620 Sensor
Share a GUI written in C++-GuiLite
Its official introduction is as follows: 5,000 lines, header files only, full-platform GUI libraryLightweight: 5K lines of C++ code, single header library: GuiLite.hSuper fast: Graphics rendering can ...
zike310 Embedded System
【Easy Power Trial】--Learn from the enemy
[align=center][color=#000000][b]【Easy Power Supply Trial】---- [/font][/b][b]Learn from the enemy[/b][/color][/align][align=left][size=4][color=#000000][b] 1. Electronic development direction: Eliminat...
dontium Analogue and Mixed Signal

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2108  1540  2102  2848  1221  43  32  58  25  42 
Datasheet   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
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 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