EEWORLDEEWORLDEEWORLD

Part Number

Search

MB73101GBN

Description
HIGH FREQUENCY CERAMIC CAPACITORS
File Size164KB,6 Pages
ManufacturerMurata
Websitehttps://www.murata.com
Download Datasheet View All

MB73101GBN Overview

HIGH FREQUENCY CERAMIC CAPACITORS

APPLICATION SPECIFIC CAPACITORS
HIGH FREQUENCY CERAMIC CAPACITORS
MA/MB Series
OUTSTANDING CHARACTERISTICS
I
Miniature size
I
Very high Q at high frequencies
I
High RF power capabilities
I
Impervious to environmental conditions
I
Low dissipation factors
I
Excellent retrace capability (not applicable for X7R styles)
I
High temperature stability
I
Low noise
I
Meets Mil-55681 with respect to: Shock, Vibration,
Moisture Resistance, Solderability, Barometric Pressure,
Temperature Cycling, Immersion and Salt Spray
ADDITIONAL FEATURES
I
Packaging options
I
Lot processing data available
MA SERIES
For filtering, coupling and impedance matching in most
RF circuits, the MA Series chips and leaded devices offer
outstanding performance and reliability with the greatest
range of values and configurations. MA Series capacitors
can be supplied with military equivalent screening. Please
consult our factory.
MA Series ceramic fixed capacitors are miniature, high
performance precision components having extremely high Q
and high power capabilities from low frequencies to gigahertz
ranges. These “low loss” multilayer capacitors are extremely
stable with respect to variations in temperature, voltage and
frequency.
MA Series capacitors are designed for miniature
state-of-the-art circuit applications. They are small,
easy to apply and have excellent reliability. Units are
available in ultra-miniature case size 1 (1.4 x 1.4 x 1.4mm)
or miniature case size 2 (2.8 x 2.8 x 2.5mm). Standard
case size 1 units are available as chips. Standard case
size 2 units are available as chips and also in leaded
configurations.
Clean-room manufacturing technology assures product
reliability and automated processing reduces costs and
cycle time. Key stages of the operation are monitored
and controlled with the latest SPC techniques. Flexibility in
design allows the production of non-standard values, while
maintaining consistent quality objectives.
Please contact the factory for availability of special
configurations or high-reliability screening.
PART NUMBERING SYSTEM – CASE SIZE 1 & CASE SIZE 2
M
A
1
8
101
J
A
N
CUBIC
MONOLITHIC
A-STD SERIES
B-ULTRA
HIGH Q
DIMENSIONAL
AND T.C. CODE
1: P90 Case 1
5: COG Case 1
7: X7R Case 1
2: P90 Case 2
6: COG Case 2
8: X7R Case 2
TERMINATION
CODE:
0: Chip
1: Pellet
2: Microstrip
3: Radial Ribbon
4: Radial Wire
5: Axial Ribbon
6: Narrow Axial Ribbon
7: Axial Wire
8: Nickel Interfaced Pellet
9: Nickel Interfaced Chip
CAPACITANCE
TOLERANCES:
CODE:
Expressed
*B: ±0.1pF
in picofarads and
*C: ±0.25pF
identified by a three-digit *D: ±0.5pF
number. First two digits
F : ±1%
represent significant
G: ±2%
figures. Last digit
J : ±5%
specifies the number
K: ±10%
of zeros to follow. For
M: ±20%
values below 10pF,
Z: +80%, –20%
the letter “R” is used
as the decimal point
and the last digit
becomes significant.
A: NO
7” Reel
MARKING
Plastic
B: MARKING
Tape
Cap. Code
& Tol.
Logo if space
permits
Non XR7
styles only
*Available
below 10pf
only
SPECIAL LEAD CONFIGURATION FOR FLEX BOARDS
NOTE:
Targeted for flex circuit boards, the MA22-6 version of the MA22 has an upraised lead configuration. The lead bends
when flexing the board after assembly so that minimal stress is placed on the component.
Type
Style
P90 ± 20 P90 ± 30
COG
X7R
Configuration
W
L
T
Dimensions: mm
L ± 0.38* W ± 0.38* T ± .038
Band
Y
Termination
Silver Ribbon:
W
NE
Raised
Micro-Strip
MA22-6 MB22-6
MA62-6 MA82-6
Y
3.4
2.8
2.8
0.38 ± .25
Length: 6.35 typical
Width: 2.3 ± .13
Thickness: 0.1 ± .05
118
CG01-J
Why does automatic wiring not short-circuit but manual wiring does?
The one that is not short-circuited is after automatic routing. The one that is short-circuited is after deleting a section of routing and then adding it manually. Why is it short-circuited? {:1_122:}...
44444444444444 PCB Design
What is the delay time of the STM32F0 interrupt? In which manual is it?
What is the delay time from the generation of an interrupt event to the response to the interrupt in STM32F0? In which manual can I find it?...
dontium stm32/stm8
[Help] Keilc programming knows 2 characters and string sending functions.
//Send a character to the serial port void send_char_com(unsigned char ch) { SBUF=ch; while(TI == 0); TI=0; } //Send a string to the serial port, with unlimited length. //Application: send_string_com(...
major888 Embedded System
Micron invites you to post window decorations and receive benefits during the Lantern Festival
When the auspicious time comes, put up window flowers. The source of wealth is like water. Business is booming and wealth is coming. Make great plans and achieve great things. The future is bright and...
EEWORLD社区 Integrated technical exchanges
Input filter capacitor heating problem in DC/DC conversion
Please advise: I made a 12V to +/- 24V, 5A output DC/DC converter, TL494 control, push-pull structure. The voltage and current regulation, ripple and efficiency are satisfactory. But the input filter ...
wuziwen Analogue and Mixed Signal
About LPC2131 esayARM's Keil4 MDK project template
Recently, I came across Zhou Ligong's EasyARM 2131 development board in the ARM class. Its routines are all ADS1.2. It uses J-tag for debugging, and the Jtag driver is not compatible with XP and above...
freedom_lq NXP MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1861  2381  2537  2698  2328  38  48  52  55  47 
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