EEWORLDEEWORLDEEWORLD

Part Number

Search

DC695E185ZA5610

Description
Feed Through Capacitor, 1 Function(s), 50V,
CategoryAnalog mixed-signal IC    filter   
File Size98KB,8 Pages
ManufacturerAVX
Download Datasheet Parametric View All

DC695E185ZA5610 Overview

Feed Through Capacitor, 1 Function(s), 50V,

DC695E185ZA5610 Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
Reach Compliance Codecompliant
ECCN codeEAR99
Other featuresSILVER TERMINATION
capacitance1800000 µF
diameter8.13 mm
filter typeFEED THROUGH CAPACITOR
high2.54 mm
Minimum insulation resistance10000 MΩ
Manufacturer's serial numberDC69
Installation typePANEL MOUNT
Number of functions1
Maximum operating temperature85 °C
Minimum operating temperature10 °C
physical sizeD8.13XH2.54 (mm)/D0.32XH0.1 (inch)
Rated voltage50 V
Base Number Matches1
Discoidal MLC
Feed-Through Capacitors and Filters
DC Style (US Preferred Sizes) / XB Style (European Preferred Sizes)
XF Style (Feed-Through Discoidal)
APPLICATION INFORMATION ON DISCOIDAL
LOWEST CAPACITANCE IMPEDANCES TO GROUND
A discoidal MLC capacitor has very low impedance associated with its ground path
since the signal is presented with a multi-directional path. These electrode paths,
which can be as many as 100, allow for low ESR and ESL which are the major ele-
ments in impedance at high frequencies.
The assembled discoidal element or feed-thru allows signal to be fed in through a
chassis or bulkhead, conditioned as it passes through the discoidal, and isolated by
the chassis and discoidal from the original signal. An example of this application
would be in an AFT circuit where the AC noise signal would be required to be
stripped from the DC control signal. Other applications include single line EMI/RFI
suppression, L-C filter construction, and coaxial shield bypass filtering.
The shape of the discoidal lends itself to filter construction. The short length allows
compact construction where L-C construction is desired.
The size freedom associated with this element allows almost any inside/
outside diameter combination. By allowing the inside diameter to equal
the center insulator diameter of a coaxial signal line and special termination tech-
niques, this device will allow bypass filtering of a floating shield to ground.
Discoidal capacitors are available in three temperature coefficients (C0G, X7R, Z5U)
and a variety of sizes, the most standard of which appear in this catalog.
INSERTION
LOSS
0
-10
OD*
ID
T Max.
These surfaces are metallized
.127 (0.005). minimum wide except
for DC61, DC26 and DC63
where metallized surfaces
are .127 (0.005) maximum.
*Tol. = +.254 (0.010) or 3%, whichever is greater
-
AVX’s DC Series 50V, 100V, 200V, C0G
and X7R parts are capable of meeting
the requirements of MIL-PRF-31033.
-20
-30
SINGLE CHIP
(dB)
-40
-50
-60
-70
DISCOIDAL
ELECTRICAL SPECIFICATIONS
Temperature Coefficient
C0G: A Temperature Coefficient - 0 ±30 ppm/°C, -55° +125°C
X7R: C Temperature Coefficient - ±15%, -55° to +125°C
Z5U: E Temperature Coefficient - +22, -56%, +10° to +85°C
Capacitance Test
(MIL-STD-202 Method 305)
C0G: 25°C, 1.0±0.2 Vrms at 1KHz, for ≤100 pF use 1 MHz
X7R: 25°C, 1.0±0.2 Vrms at 1KHz
Z5U: 25°C, 0.5 Vrms max at 1KHz
Dissipation Factor 25°C
C0G: 0.15% Max @ 25°C, 1.0±0.2 Vrms at 1KHz, for ≤100 pF use 1 MHz
X7R: 2.5% Max @ 25°C, 1.0±0.2 Vrms at 1KHz
Z5U: 3.0% Max @ 25°C, 0.5 Vrms max at 1KHz
Insulation Resistance 25°C
(MIL-STD-202 Method 302)
C0G and X7R: 100K MΩ or 1000 MΩ-μF, whichever is less.
Z5U: 10K MΩ or 1000 MΩ-μF, whichever is less.
-80
0
100
200
300
400
500
600
700
800
900
1000
f (MHz)
Insulation Resistance 125°C
(MIL-STD-202 Method 302)
C0G and X7R: 10K MΩ or 100 MΩ-μF, whichever is less.
Z5U: 1K MΩ or 100 MΩ-μF, whichever is less.
Dielectric Withstanding Voltage 25°C
(Flash Test)*
C0G and X7R: 250% rated voltage for 5 seconds with 50 mA max
charging current. 500V rated units will be tested at 750 VDC
Z5U: 200% rated voltage for 5 seconds with 50 mA max charging current.
Life Test
(1000 hrs)
C0G and X7R: 200% rated voltage at +125°C (500 Volt units
@ 600 VDC)
Z5U: 150% rated voltage at +85°C
Moisture Resistance
(MIL-STD-202 Method 106)
C0G, X7R, Z5U: Ten cycles with no voltage applied.
Thermal Shock
(MIL-STD-202 Method 107, Condition A)
Immersion Cycling
(MIL-STD-202 Method 104, Condition B)
HOW TO ORDER
DC61
5
A
561
K
A
5
Termination
5 = Silver
(AVX Standard)
1
06
AVX
Voltage Temperature
Style
50V = 5
Coefficient
See Pages 100V = 1
C0G = A
109-110 200V = 2
X7R = C
500V = 7
Z5U = E
Capacitance Code
Capacitance
Test
(2 significant digits
Tolerance
Level
+ no. of zeros)
C0G: J = ±5%
A = Standard
Examples:
K = ±10%
M = ±20%
10 pF = 100
X7R: K = ±10%
100 pF = 101
M = ±20%
1,000 pF = 102
Z5U: M = ±20%
22,000 pF = 223
Z = +80 -20%
220,000 pF = 224
P = GMV
1 μF = 105
Inside
Maximum
Diameter
Thickness
See Pages 06 = 1.52 (0.060)
102-104 10 = 2.54 (0.100)
For dimensions, voltages or values not specified, please consult factory.
108
What is the best layout process for switching power supplies?
Engineers who design circuits will have their own design process, and the design process for some circuits will be slightly more stringent. What is the general process for designing switching circuits...
buildele Power technology
Technology geeks, look here! Basics of Hall Effect Magnetic Sensors
What is the Hall effect? Simply put, when current flows through a conductor and there happens to be an external magnetic field, a voltage will be generated in the perpendicular orthogonal direction of...
EE大学堂 Training Edition
Power carrier LED lamp dimming terminal + first week
Unfortunately, this week is the Mid-Autumn Festival, so there will be a conflict in schedule, but I am still working hard on studying RL78 information and designing. Everyone should work hard and have...
lshjiang Renesas Electronics MCUs
What type of emulator is onboard the CC3200 LAUNCHPAD?
I read the instructions of CC3200 LAUNCHPAD and imported its routines, but I have a question about choosing the simulator. I don't know what simulator it is and which one to choose in the CCS project....
dontium Wireless Connectivity
Problems with returning virtual addresses when using NdisAllocateMemory()
Why is the virtual address returned by NdisAllocateMemory() in the range 0xD000 0000-0xE000 0000? This address space is not defined in g_oalAddressTable and config.bib....
lnsbb2008 Embedded System
LCD multi-level menu display
[i=s] This post was last edited by maclao on 2016-4-15 16:05 [/i] Now I can complete the basic menu operation of the key. I want to add the polling page display when there is no key action. The displa...
maclao 51mcu

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2195  2737  2719  2855  756  45  56  55  58  16 
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