参数资料
型号: RDER72E333K2M1C11A
厂商: Murata Electronics North America
文件页数: 18/57页
文件大小: 0K
描述: CAP CER 0.033UF 250V 10% RADIAL
标准包装: 2,000
系列: RDE
电容: 0.033µF
电压 - 额定: 250V
容差: ±10%
温度系数: X7R
安装类型: 通孔
工作温度: -55°C ~ 125°C
应用: 通用
封装/外壳: 径向
尺寸/尺寸: 0.197" L x 0.124" W(5.00mm x 3.15mm)
高度 - 座高(最大): 0.197"(5.00mm)
引线间隔: 0.197"(5.00mm)
包装: 带盒(TB)
引线型: 纽结
! Note ? Please read rating and ! CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
? This catalog has only typical speci?cations. Therefore, please approve our product speci?cations or transact the approval sheet for product speci?cations before ordering.
C49E.pdf
Mar.12,2014
1
Temperature Compensating Type Speci?cations and Test Methods
Continued from the preceding page.
No. AEC-Q200 Test Item
Specifications
AEC-Q200 Test Method
Appearance No defects or abnormalities
Capacitance Within the specified tolerance
Visual inspection.
The capacitance, Q should be measured at 25°C at the
Q
30pF V C: Q U 1,000
30pF G C: Q U 400+20C
C: Nominal Capacitance (pF)
frequency and voltage shown in the table.
Nominal Cap. Frequency Voltage
C V 1000pF 1±0.1MHz AC0.5 to 5V (r.m.s.)
C G 1000pF 1±0.1kHz AC1±0.2V (r.m.s.)
I.R.
Between Terminals
10,000M Ω or 500M Ω · μF min.
(Whichever is smaller)
The insulation resistance should be measured with a DC
voltage not exceeding the rated voltage at 25°C within 2min.
of charging.
The capacitor should not be damaged when DC voltage
Electrical
17 Charac-
terization
shown in the table is applied between the terminations
for 1 to 5 seconds.
(Charge/Discharge current V 50mA.)
Dielectric
Strength
Between Terminals
No defects or abnormalities
Rated Voltage
DC50V, DC100V
DC250V
DC630V
DC1kV
Test Voltage
300% of the rated voltage
200% of the rated voltage
150% of the rated voltage
130% of the rated voltage
The capacitor is placed in a container with metal balls of 1mm
diameter so that each terminal, short-circuit is kept
Body Insulation
No defects or abnormalities
approximately 2mm from the balls, and 250% of the rated DC
voltage is impressed for 1 to 5 seconds between capacitor
terminals and metal balls.
(Charge/Discharge current V 50mA.)
As in the figure, fix the capacitor body, apply the force
gradually to each lead in the radial direction of the capacitor
until reaching 10N and then keep the force applied for
18
Terminal
Strength
Tensile
Strength
Bending
Strength
Termination not to be broken or loosened
Termination not to be broken or loosened
10±1 seconds.
F
Each lead wire should be subjected to a force of 2.5N and then
be bent 90° at the point of egress in one direction. Each wire is
then returned to the original position and bent 90° in the
opposite direction at the rate of one bend per 2 to 3 seconds.
The capacitance change should be measured after 5min. at
each specified temperature step.
Step
Temperature (°C)
1
25±2
2
-55±3
3
25±2
Within the specified Tolerance.
4
125±3
Capacitance
(Table A)
5
25±2
19 Temperature
Characteristics
Capacitance Drift is within ±0.2% or ±0.05pF
(Whichever is larger)
The temperature coefficient is determind using the capacitance
measured in step 3 as a reference. When cycling the
temperature sequentially from step 1 through 5 (-55°C to
+125°C) the capacitance should be within the specified
tolerance for the temperature coefficient and capacitance
change as Table A.
The capacitance drift is caluculated by dividing the differences
betweeen the maximum and minimum measured values in the
step 1, 3 and 5 by the capacitance value in step 3.
* “room condition” Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmosphere pressure: 86 to 106kPa
Table A
Char.
Nominal Values
(ppm/°C) *
Capacitance Change from 25°C (%)
-55 -30 -10
Max. Min. Max. Min. Max.
Min.
C0G
0±30
0.58
-0.24
0.40
-0.17
0.25
-0.11
U2J
-750±120
8.78
5.04
6.04
3.47
3.84 2.21
* Nominal values denote the temperature coefficient within a range of 25°C to 125°C.
16
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