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CDR14BP392DCUR

Description
Ceramic Capacitor, Multilayer, Ceramic, 300V, 0.0064% +Tol, 0.0064% -Tol, BP, -/+30ppm/Cel TC, 0.0039uF, 1111,
CategoryPassive components    capacitor   
File Size50KB,3 Pages
ManufacturerAVX
Download Datasheet Parametric View All

CDR14BP392DCUR Overview

Ceramic Capacitor, Multilayer, Ceramic, 300V, 0.0064% +Tol, 0.0064% -Tol, BP, -/+30ppm/Cel TC, 0.0039uF, 1111,

CDR14BP392DCUR Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
Objectid716230937
package instruction, 1111
Reach Compliance Codenot_compliant
ECCN codeEAR99
YTEOL7.48
capacitance0.0039 µF
Capacitor typeCERAMIC CAPACITOR
Custom functionsPackaging
dielectric materialsCERAMIC
JESD-609 codee0
length2.79 mm
multi-layerYes
negative tolerance0.0064%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package formSMT
positive tolerance0.0064%
Rated (DC) voltage (URdc)300 V
GuidelineMIL-C-55681/4
seriesCDR14
size code1111
Temperature characteristic codeBP
Temperature Coefficient30ppm/Cel ppm/°C
Terminal surfaceTin/Lead (Sn/Pb)
width2.79 mm

CDR14BP392DCUR Preview

Microwave MLC’s
CDR Series — MIL-PRF-55681E (RF/Microwave Chips)
MILITARY DESIGNATION PER MIL-PRF-55681E
W
W
T
L
L
T
A 0J
47
0J
10
bw
bw
CDR11/12
CDR13/14
CROSS REFERENCE: AVX/MIL-PRF-55681E
Per MIL-C-55681
CDR11
CDR12
CDR13
CDR14
AVX
Style
AQ11
AQ12
AQ13
AQ14
Length (L)
.055±.015
(1.40±.381)
.055±.025
(1.40±.635)
.110±.020
(2.79±.508)
.110 +.035 -0.20
(2.79 +.889 -.508)
Width (W)
.055±.015
(1.40±.381)
.055±.015
(1.40±.381)
.110±.020
(2.79±.508)
.110±.020
(2.79±.508)
Thickness (T)
Max
Min
.057
(1.45)
.057
(1.45)
.102
(2.59)
.102
(2.59)
.020
(.508)
.020
(.508)
.030
(.762)
.030
(.762)
Termination Band (bw)
Max
Min
.020
(.508)
.020
(.508)
.025
(.635)
.025
(.635)
.005
(.127)
.005
(.127)
.005
(.127)
.005
(.127)
HOW TO ORDER
CDR12
BG
101
A
K
U
M
MIL Style
CDR11, CDR12,
CDR13, CDR14
Capacitance
EIA Capacitance Code in pF.
First two digits = significant figures
or “R” for decimal place.
Third digit = number of zeros or
after “R” significant figures.
Capacitance
Tolerance Code
B = ±.1 pF
C = ±.25 pF
D = ±.5 pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
Failure Rate
Level
M, P, R & S
Voltage
Temperature
Limits
BG = +90±20 ppm/°C
with and without
rated voltage from
-55°C to + 125°C
BP = 0±30ppm/°C
with and without
rated voltage from
-55°C to +125°C
Rated Voltage
Code
A = 50V
B = 100V
C = 200V
D = 300V
E = 500V
Termination
Finish (Military
Designations)
Code
M = Palladium/Silver
(CDR11 & 13 only)
N = Silver, Nickel, Gold
(CDR11 & 13 only)
S = Solder Coated, Final
(CDR12 & 14 only)
U = Base Metallization, Barrier Metal,
Solder Coated.
(Solder M.P. 200°C or less)
(CDR12 & 14 only)
W = Base Metallization, Barrier Metal,
Tinned (Tin or Tin/Lead Alloy)
(CDR12 & 14 only)
Y = 100% Tin
Z = Base Metallization, Barrier Metal
(TIn Lead Alloy With 4% Lead Min.)
PACKAGING
Standard Packaging = Waffle Pack (for T&R packaging see page 59)
AQ11/12 maximum quantity per waffle pack is 100.
AQ13/14 maximum quantity is 80.
51
Microwave MLC’s
CDR Series — MIL-PRF-55681E (RF/Microwave Chips)
TABLE I: STYLES CDR11 AND CDR12 CAPACITOR CHARACTERISTICS
Type
Designation
1/
CDR1 -B-0R1AB--
CDR1 -B-0R2AB--
CDR1 -B-0R3A---
CDR1 -B-0R4A---
CDR1 -B-0R5A---
CDR1 -B-0R6A---
CDR1 -B-0R7A---
CDR1 -B-0R8A---
CDR1 -B-0R9A---
CDR1 -B-1R0A---
CDR1 -B-1R1A---
CDR1 -B-1R2A---
CDR1 -B-1R3A---
CDR1 -B-1R4A---
CDR1 -B-1R5A---
CDR1 -B-1R6A---
CDR1 -B-1R7A---
CDR1 -B-1R8A---
CDR1 -B-1R9A---
CDR1 -B-2R0A---
CDR1 -B-2R1A---
CDR1 -B-2R2A---
CDR1 -B-2R4A---
CDR1 -B-2R7A---
CDR1 -B-3R0A---
CDR1 -B-3R3A---
CDR1 -B-3R6A---
CDR1 -B-3R9A---
CDR1 -B-4R3A---
CDR1 -B-4R7A---
CDR1 -B-5R1A---
CDR1 -B-5R6A---
CDR1 -B-6R2A---
CDR1 -B-6R8A---
CDR1 -B-7R5A---
CDR1 -B-8R2A---
CDR1 -B-9R1A---
CDR1 -B-100A---
CDR1 -B-110A---
CDR1 -B-120A---
CDR1 -B-130A---
CDR1 -B-150A---
CDR1 -B-160A---
CDR1 -B-180A---
CDR1 -B-200A---
CDR1 -B-220A---
CDR1 -B-240A---
CDR1 -B-270A---
Capacitance Capacitance
in pF
tolerance
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
B
B
B, C
B, C
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, J, K, M
B, C, J, K, M
B, C, J, K, M
B, C, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
Rated temperature
and
WVDC
V/Temperature
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
Type
Designation
1/
CDR1 -B-300A---
CDR1 -B-330A---
CDR1 -B-360A---
CDR1 -B-390A---
CDR1 -B-430A---
CDR1 -B-470A---
CDR1 -B-510A---
CDR1 -B-560A---
CDR1 -B-620A---
CDR1 -B-680A---
CDR1 -B-750A---
CDR1 -B-820A---
CDR1 -B-910A---
CDR1 -B-101A---
CDR1 -B-111A---
CDR1 -B-121A---
CDR1 -B-131A---
CDR1 -B-151A---
CDR1 -B-161A---
CDR1 -B-181A---
CDR1 -B-201A---
CDR1 -B-221A---
CDR1 -B-241A---
CDR1 -B-271A---
CDR1 -B-301A---
CDR1 -B-331A---
CDR1 -B-361A---
CDR1 -B-391A---
CDR1 -B-431A---
CDR1 -B-471A---
CDR1 -B-511A---
CDR1 -B-561A---
CDR1 -B-621A---
CDR1 -B-681A---
CDR1 -B-751A---
CDR1 -B-821A---
CDR1 -B-911A---
CDR1 -B-102A---
Capacitance Capacitance
in pF
tolerance
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
150
160
180
200
220
240
270
300
330
360
390
430
470
510
560
620
680
750
820
910
1000
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
Rated temperature
and
WVDC
V/Temperature
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
1/Complete
type designation will include additional symbols to indicate style,
voltage-temperature limits, capacitance tolerance (where applicable), termina-
tion finish (“M” or “N” for style CDR11, and “S”, “U” or “W” for style CDR12)
and failure rate level.
52
Microwave MLC’s
CDR Series — MIL-PRF-55681E (RF/Microwave Chips)
TABLE II: STYLES CDR13 AND CDR14 CAPACITOR CHARACTERISTICS
Type
Designation
1/
CDR1 -B-0R1*B--
CDR1 -B-0R2*B--
CDR1 -B-0R3*---
CDR1 -B-0R4*---
CDR1 -B-0R5*---
CDR1 -B-0R6*---
CDR1 -B-0R7*--
CDR1 -B-0R8*---
CDR1 -B-0R9*---
CDR1 -B-1R0*---
CDR1 -B-1R1*---
CDR1 -B-1R2*---
CDR1 -B-1R3*---
CDR1 -B-1R4*---
CDR1 -B-1R5*---
CDR1 -B-1R6*---
CDR1 -B-1R7*---
CDR1 -B-1R8*---
CDR1 -B-1R9*---
CDR1 -B-2R0*---
CDR1 -B-2R1*---
CDR1 -B-2R2*--
CDR1 -B-2R4*---
CDR1 -B-2R7*---
CDR1 -B-3R0*---
CDR1 -B-3R3*---
CDR1 -B-3R6*---
CDR1 -B-3R9*---
CDR1 -B-4R3*---
CDR1 -B-4R7*---
CDR1 -B-5R1*---
CDR1 -B-5R6*---
CDR1 -B-6R2*---
CDR1 -B-6R8*---
CDR1 -B-7R5*---
CDR1 -B-8R2*---
CDR1 -B-9R1*---
CDR1 -B-100*---
CDR1 -B-110*---
CDR1 -B-120*---
CDR1 -B-130*---
CDR1 -B-150*---
CDR1 -B-160*---
CDR1 -B-180*---
CDR1 -B-200*---
CDR1 -B-220*---
CDR1 -B-240*---
CDR1 -B-270*---
CDR1 -B-300*---
CDR1 -B-330*---
CDR1 -B-360*---
CDR1 -B-390*---
CDR1 -B-430*---
CDR1 -B-470*---
CDR1 -B-510*---
Capacitance Capacitance
in pF
tolerance
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
B
B
B, C
B, C
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, D
B, C, J, K, M
B, C, J, K, M
B, C, J, K, M
B, C, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
Rated temperature
and
WVDC
V/Temperature
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/500
Type
Designation
1/
CDR1 -B-560*---
CDR1 -B-620*---
CDR1 -B-680*---
CDR1 -B-750*---
CDR1 -B-820*---
CDR1 -B-910*---
CDR1 -B-101*---
CDR1 -B-111‡---
CDR1 -B-121‡---
CDR1 -B-131‡---
CDR1 -B-151‡---
CDR1 -B-161‡---
CDR1 -B-181‡---
CDR1 -B-201‡---
CDR1 -B-221C---
CDR1 -B-241C---
CDR1 -B-271C---
CDR1 -B-301C---
CDR1 -B-331C---
CDR1 -B-361C---
CDR1 -B-391C---
CDR1 -B-431C---
CDR1 -B-471C---
CDR1 -B-511B---
CDR1 -B-561B---
CDR1 -B-621B---
CDR1 -B-681A---
CDR1 -B-751A---
CDR1 -B-821A---
CDR1 -B-911A---
CDR1 -B-102A---
CDR1 -B-112A---
CDR1 -B-122A---
CDR1 -B-132A---
CDR1 -B-152A---
CDR1 -B-162A---
CDR1 -B-182A---
CDR1 -B-202A---
CDR1 -B-222A---
CDR1 -B-242A---
CDR1 -B-272A---
CDR1 -B-302A---
CDR1 -B-332A---
CDR1 -B-362A---
CDR1 -B-392A---
CDR1 -B-432A---
CDR1 -B-472A---
CDR1 -B-502A---
CDR1 -B-512A---
Capacitance Capacitance
in pF
tolerance
56
62
68
75
82
91
100
110
120
130
150
160
180
200
220
240
270
300
330
360
390
430
470
510
560
620
680
750
820
910
1000
1100
1200
1300
1500
1600
1800
2000
2200
2400
2700
3000
3300
3600
3900
4300
4700
5000
5100
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
F, G, J, K, M
Rated temperature
and
WVDC
V/Temperature
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BG, BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
200/500
200/500
200/500
200/500
200/500
200/500
200/500
200/300
200/300
200/300
200/300
200/300
200/300
200/300
200
200
200
200
200
200
200
200
200
100
100
100
50
50
50
50
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1/Complete
type designation will include additional symbols to indicate style,
voltage-temperature limits, capacitance tolerance (where applicable), termina-
tion finish (“M” or “N” for style CDR13, and “S”, “U” or “W” for style CDR14)
and failure rate level.
*C=200V; E=500V.
‡C=200V; D=300V.
53
[Qinheng Trial] 2. Preparation for CH549EVT Operation
[i=s]This post was last edited by lising on 2019-6-21 19:32[/i]This experiment is mainly to establish a development environment for the CH549EVT development learning board under KEIL, and try to use "...
lising DIY/Open Source Hardware
A brief discussion on SSI interface technology and its application in audio processing
[size=4] With the widespread application of embedded systems, the demand for serial communication within the system is getting higher and higher, and the protocols for serial data transmission are als...
fish001 Microcontroller MCU
PCB source file: adapter board for LIS25BA bone vibration sensor, thanks to ST engineers~
This post coincides with Thanksgiving, and here comes another piece of useful information . Special thanks to the ST engineer for sharing.Download PCB source file:For more information and information:...
nmg MEMS sensors
Share BLE connection parameters and their setting points
1. Connection parametersThe connection parameters are Connection interval, Slave latency, and Supervisor timeout. Connection interval----1.25ms as unit, value range 6~3200 [i.e. 7.5ms~4s] PS: Mobile p...
Jacktang Wireless Connectivity
Photodiode Problems
I have seen many questions about photodiodes and related circuits on technical forums. I would like to share this with more colleagues. This knowledge is what all analog designers must know.   A typic...
Aguilera Analogue and Mixed Signal
Interesting animated tutorial "Principles of Dialogue Communication"
[align=left][color=rgb(51, 51, 51)][font=-apple-system-font, BlinkMacSystemFont, "][size=17px]Today I would like to introduce to you a cartoon tutorial produced by ZTE University - Principles of Dialo...
EE大学堂 Training Edition

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