EEWORLDEEWORLDEEWORLD

Part Number

Search

592D337X-6R3R2-20H

Description
Solid Tantalum Chip Capacitors TANTAMOUNT, Low Profile, Conformal Coated, Maximum CV
File Size200KB,11 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
Download Datasheet View All

592D337X-6R3R2-20H Overview

Solid Tantalum Chip Capacitors TANTAMOUNT, Low Profile, Conformal Coated, Maximum CV

592D
Vishay Sprague
Solid Tantalum Chip Capacitors
T
ANTAMOUNT
®
, Low Profile, Conformal Coated, Maximum CV
FEATURES
New extended range offerings.
1.0mm to 2.5mm height.
Terminations: Lead (Pb)-free (2) standard.
Low Impedance
8mm, 12mm and 24mm tape and reel packaging
available per EIA-481-1 and reeling per IEC 286-3. 7”
[178mm] standard.
13” [330mm] available.
Case code compatibility with EIA 535BAAC and
CECC 30801 molded chips.
Capacitance Range:
1.0µF to 3300µF
Capacitance Tolerance:
±10%, ±20%
standard.
Voltage Rating:
4 WVDC to 35 WVDC
B
CASE CODE
2
TERMINATION
2 = 100% Tin
4 = Gold Plated
T
REEL SIZE AND
PACKAGING
T = Tape and Reel
7" [178mm] Reel
W = 13” [330mm] Reel
PERFORMANCE CHARACTERISTICS
Operating Temperature:
- 55°C to + 85°C. (To + 125°C
with voltage derating.)
ORDERING INFORMATION
592D
TYPE
106
CAPACITANCE
X0
CAPACITANCE
TOLERANCE
010
DC VOLTAGE RATING
@ + 85°C
This is expressed in
picofarads. The first two
digits are the significant
figures. The third is the
number of zeros to follow.
See Ratings
X0 =
±
20%
This is expressed in volts. To
complete the three-digit block,
and Case
X9 =
±
10%
zeros precede the voltage rating. Codes Table.
A decimal point is indicated by
an "R" (6R3 = 6.3 volts).
Note:
Preferred Tolerance and reel sizes are in bold.
We reserve the right to supply higher voltage ratings and tighter capacitance tolerance capacitors in the same case size.
Voltage substitutions will be marked with the higher voltage rating.
DIMENSIONS
in inches [millimeters]
W
Tantalum Wire Nib
Identifies Anode
(+) Terminal
L
B
D
A
H
J
J
L (Max.)
W
H
A
0.146
0.072
±
0.012
0.048
±
0.012
0.031
±
0.012
A
[3.7]
[1.8
±
0.3]
[1.2
±
0.3]
[0.80
±
0.30]
0.110 + 0.012-0.016 0.047
±
0.012
0.031
±
0.012
0.158
B
[4.0]
[2.8 + 0.3-0.4]
[1.2
±
0.3]
[0.80
±
0.30]
0.281
0.126
±
0.012
0.047
±
0.012
0.051
±
0.012
C
[7.1]
[3.2
±
0.3]
[1.2
±
0.3]
[1.3
±
0.30]
0.298
0.170
±
0.012
0.047
±
0.012
0.051
±
0.012
D
[7.5]
[4.3
±
0.3]
[1.2
±
0.3]
[1.3
±
0.30]
0.285
0.235
±
0.012
0.047
±
0.012
0.051
±
0.012
R
[7.2]
[6.0
±
0.3]
[1.2
±
0.3]
[1.3
±
0.30]
0.126
±
0.012
0.063
±
0.012
0.040
±
0.012
0.031
±
0.012
S
[3.2
±
0.3]
[1.6
±
0.3]
[1.0
±
0.3]
[0.8
±
0.3]
0.158
0.116
±
0.012
0.079
0.031
±
0.012
T
[4.0]
[2.8
±
0.3]
[2.0] Max.
[0.8
±
0.3]
0.281
0.126
±
0.012
0.079
0.051
±
0.012
U
[7.1]
[3.2
±
0.3]
[2.0] Max.
[1.3
±
0.3]
0.298
0.170
±
0.012
0.079
0.051
±
0.012
V
[7.5]
[4.3
±
0.3]
[2.0] Max.
[1.3
±
0.3]
0.285
0.235
±
0.012
0.079
0.051
±
0.012
W
[7.2]
[6.0
±
0.3]
[2.0] Max.
[1.3
±
0.3]
0.575
0.290
±
0.010
0.079
0.050
±
0.016
X
[14.5]
[7.37
±
0.25]
[2.0] Max.
[1.3
±
0.4]
0.575
0.290
±
0.010
0.098
0.051
±
0.016
Y
[14.5]
[7.37
±
0.25]
[2.5] Max.
[1.3
±
0.4]
Note:
The anode termination (D less B) will be a minimum of 0.012" [0.3mm].
www.vishay.com
74
CASE CODE
B
0.087
±
0.016
[2.2
±
0.4]
0.097
±
0.016
[2.5
±
0.4]
0.180
±
0.024
[4.4
±
0.6]
0.180
±
0.024
[4.6
±
0.6]
0.180
±
0.024
[4.6
±
0.6]
0.079
±
0.012
[2.0
±
0.3]
0.097
±
0.016
[2.5
±
0.4]
0.180
±
0.024
[4.6
±
0.6]
0.180
±
0.024
[4.6
±
0.6]
0.180
±
0.024
[4.6
±
0.6]
0.470
±
0.024
[11.9
±
0.6]
0.470
±
0.024
[11.9
±
0.6]
D (Ref.)
0.115
[2.9]
0.139
[3.5]
0.238
[6.0]
0.254
[6.4]
0.246
[6.2]
0.087
[2.2]
0.139
[3.5]
0.238
[6.0]
0.254
[6.4]
0.246
[6.2]
0.524
[13.2]
0.524
[13.2]
J (Max.)
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
For technical questions, contact tantalum@vishay.com
Document Number 40004
Revision 20-Oct-04
Newbie asks about ARM development issues
I want to learn more about this industry, but I don't understand many things. I would like to ask you 1. Why do I need a development board for ARM? Is it for testing? I have an ARM game console (NDSL)...
ifare ARM Technology
Detailed explanation of uc_os2 for arm
Depressed, send some information, uc_os2 for arm detailed explanation...
eastman1986 MCU
Finally, I compiled an example according to Ren Zhe's book
Today I downloaded and installed Borland C++ 3.1 and completed the installation. I made a simplified version according to the book and compiled the example program. I am very happy. [b][color=#5E7384]...
hdm743@qq.com Real-time operating system RTOS
Talk about the important things in DSP programming
[size=3] 1 McBSP (Multichannel Buffered Serial Port) serial port uses DMA in multi-frame communication interrupt processing In actual communication applications, after a burst, the program must prepar...
Aguilera DSP and ARM Processors
Tips for using a multimeter
1. Selection of pointer meter and digital meter: 1. The reading accuracy of pointer meter is poor, but the process of pointer swing is more intuitive, and its swing speed and amplitude can sometimes o...
wkj Test/Measurement

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 997  2696  96  1995  2756  21  55  2  41  56 
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