B37987F5104K037 EPCOS Inc, B37987F5104K037 Datasheet - Page 4

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B37987F5104K037

Manufacturer Part Number
B37987F5104K037
Description
CAP CER .10UF 50V X7R 10% RAD
Manufacturer
EPCOS Inc
Series
B37987Fr
Datasheet

Specifications of B37987F5104K037

Capacitance
0.1µF
Voltage - Rated
50V
Tolerance
±10%
Temperature Coefficient
X7R
Mounting Type
Through Hole
Operating Temperature
-55°C ~ 125°C
Applications
Automotive
Ratings
AEC-Q200
Package / Case
Radial
Size / Dimension
0.256" L x 0.197" W (6.50mm x 5.00mm)
Thickness
2.50mm Max
Lead Spacing
0.197" (5.00mm)
Lead Style
Flat Bent
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Other names
B37987F5104K 37
B37987F5104K37
Features
Applications
Termination
Marking
Delivery mode
Electrical data
Temperature characteristic
Max. relative capacitance change
within –55 ° C to +125 ° C
Climatic category (IEC 60068-1)
Standard
Dielectric
Rated voltage
Test voltage
Capacitance range / E series
Dissipation factor (limit value)
Insulation resistance
Insulation resistance
Time constant
Time constant
Operating temperature range
Ageing
1) Note: No operation on AC line.
2) For C
3) Refer to chapter “General technical information”, “Ageing”.
Please read Cautions and warnings and
Important notes at the end of this document.
Multilayer ceramic capacitors
X7R
High volumetric efficiency
Non-linear capacitance change
High insulation resistance
High pulse strength
To AEC-Q200
Blocking
Coupling and decoupling
Interference suppression
Parallel wire leads, iron-nickel, tinned
Crimped leads
Non-standard lead lengths on request
Rated capacitance, tolerance, manufacturer’s logo, ceramic material, voltage
Cardboard tape in Ammo packing (standard)
Cardboard tape on 360-mm reel or bulk on request
3)
R
>10 nF the time constant t = C · R
1)
2)
2)
at + 25 ° C
at +125 ° C
2)
2)
at + 25 ° C
at +125 ° C
ins
is given.
3
D C/C
V
V
C
tan d
R
R
t
t
T
op
R
test
R
ins
ins
10/06
X7R
± 15
55/125/56
EIA
Class 2
50, 100
2.5 · V
470 pF … 1 m F (E6)
<25 · 10
>10
>10
>1000
>100
–55 … +125
yes
5
4
R
/5 s
–3
Leaded
%
VDC
VDC
M W
M W
s
s
° C

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