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R15W121K2HA

Description
Ceramic Capacitor, Ceramic, 500V, X7R, -/+15ppm/Cel TC, 0.00012uF, 1520
CategoryPassive components    capacitor   
File Size737KB,2 Pages
ManufacturerHitano Enterprise Corp
Environmental Compliance
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R15W121K2HA Overview

Ceramic Capacitor, Ceramic, 500V, X7R, -/+15ppm/Cel TC, 0.00012uF, 1520

R15W121K2HA Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid1205339626
package instruction, 1520
Reach Compliance Codecompliant
ECCN codeEAR99
capacitance0.00012 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
high2.5 mm
length3.8 mm
negative tolerance10%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package formRadial
positive tolerance10%
Rated (DC) voltage (URdc)500 V
size code1520
Temperature characteristic codeX7R
Temperature Coefficient15% ppm/°C
Terminal surfaceNOT SPECIFIED
Terminal pitch5.08 mm
width5 mm

R15W121K2HA Preview

Multilayer Ceramic Capacitors Epoxy Coated Radial Type
HIGH VOLTAGE 250V-3KV
ENTERPRISE CORP.
®
Application
NPO:Temperature compensation type, have little or no
change in capacitance with variation in temperature.
Hence, they are used in radio-frequency oscillators,
precision timing circuits, ultra stable amplifiers, etc.
X7R
:Temperature
stable type for by-pass and decoupling
in radio and television receivers, computers servo
systems. Audio tone, and coupling, etc., where
moderate capacitance variations are permissible and
dissipation factor is not critical.
Z5U/Y5V:
General type for by-pass and filtering applications.
Construction
Part No. Designation
R15
SIZE
R15
R20
R25
Z
T.C
N=NPO
W=X7R
Z=Z5U
Y=Y5V
102
Capacitance-Code
Two significant digits
+NO.
of zeros.
Example
102=1000pf
223=22000pf
104=100000pf
M
Tolerance
A=±0.05PF
B=±0.10PF
C=±0.25PF
D=±0.50PF
F=±1%
G=±2%
J=±5%
K=±10%
M=±20%
Z=+80/-20%
2H
Voltage
2E=250V
2H=500V
3A=1KV
3D=2KV
3F=3KV
L
Lead shape
L=Straight
Y=Inside
Crimp
H=High
seated
A=Slope
5
2=2.54±0.8
5=5.08±0.8
(mm)
L
R=Tape/Reel
B=Tape/Box
6=6±1mm
L=25.4mm(min)
Lead shape Package-Lead-length
1.
LEAD SHAPE:
R15
L
R20
Y
R25
L
R15
H
R20
H
R15
A
15
High Voltage 250v-3kv
2.
Lead Space (F)
Code
2
5
LEAD SPACE (mm/inch)
2.54±0.8
5.08±0.8
0.1±0.032
0.2±0.032
3.
Lead Length (L)
Code
6
L
LEAD LENGTH
6mm±1mm
25.4mm (min)
REMARK
Specified lead length
upon request.
4.
Body Size & Dimension
Size
code
R15
Lead style
available
H,A
Capacitance Range
NPO
250V: 10 – 820pF
500V: 10 – 390pF
250V: 1000 – 5600pF
500V: 470 – 3300pF
R20
H
1KV: 10 – 1000pF
2KV: 10 – 560pF
3KV: 10 – 220pF
250V: 0.0068 – 0.01uF
500V: 3900 – 6800pF
R25
L
1KV: 2700 – 2200pF
2KV: 680 – 1200pF
3KV: 270 – 470pF
X7R
250V: 100pF – 0.022uF
500V: 100 – 15,000pF
250V: 0.022 – 0.1uF
500V: 0.01 – 0.047uF
1KV: 220 – 10,000pF
2KV: 220 – 1800pF
3KV: ------
250V: 0.12 – 0.47uF
500V: 0.056 – 0.15uF
1KV: 0.012 – 0.018uF
2KV: 2200 – 4700pF
3KV: 100 – 2200pF
250V:
0.1-0.47uF
6.5
6.5
4.0
0.5
5.08
---
---
5.0
6.0
3.0
0.5
5.08
2.0
Z5U
---
H max
3.8
W max
H=3.8
A=5.0
Dimensions (mm)
T max.
2.5
d±0.05
0.5
F±0.08
5.08
P
2.0
Typical Performance Characteristics
Specifications
Temperature coefficient
NPO:
±
30PPM/℃, -55℃ to +125℃
X7R:
±
15%, -55℃ to +125℃
Z5U: +22%,-56%, +10℃ to +85℃
Y5V: +22%, -82%, -30℃ to +85℃
Dielectric strength 25℃ (Flash Test)
NPO: 250V-2.0 X Vrated, 500V-1.5 X Vrated,
≧1KV-1.2
X Vrated
X7R : 250V-2.0 X Vrated, 500V-1.5 X Vrated,
≧1KV-1.2
X Vrated
Z5U : 2.0 X Vrated
Capacitance test 25℃
NPO: 1 VRMS max at 1 KHz (1 MHz for 100pF or less)
X7R: 1 VRMS max at 1 KHz
Z5U: 1 VRMS max at 1 KHz
LifeTest :
(1000 hrs at max temp. applied with Flash test voltage
Recovery: 6-24 hrs for NPO and 24± 2 hrs for X7R & Z5U )
∆C/C
D.F.
I .R.
NPO
≦±
3%
2 x initial
X7R
±
20%
±7%
≥0.25
x initial
Z5U
≦±20%
≦2
x initial
Dissipation Factor 25℃
NPO: 0.15% max at 1KHz, 1 Vrms max.
(1MHz for 1000pF or less)
X7R: 2.5% max at 1KHz, 1 Vrms max
Z5U: 5 % max at 1 KHz, 1 Vrms max.
Insulation Resistance after 60 secs, charging at rated
voltage, 25℃, 55%R.H. max
NPO: 100GΩ or 1000MΩ-uF whichever is less
X7R : 10GΩ or 100MΩ-uF whichever is less
Z5U : 10GΩ or 100MΩ-uF whichever is less
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