300 V Fixed Capacitors 17

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Part RoHS Manufacturer Capacitor Type Mounting Feature Capacitance Rated DC Voltage (URdc) Maximum Operating Temperature Dielectric Material Tan Delta Minimum Operating Temperature Temperature Coef (ppm/Cel) Terminal Finish Leakage Current (mA) Package Shape Polarity Manufacturer Series Height Width Ripple Current (mA) Diameter Multi-layer Equivalent Series Resistance / ESR (mohm ) Additional Features Packing Method Size Code JESD-609 Code Series No. of Terminals Package Style (Meter) Rated AC Voltage (URac) Length Terminal Shape Positive Tolerance Temperature Characteristics Code Reference Standard Negative Tolerance Custom Capabilities Terminal Pitch

CD5EC200DO3F

Cornell Dubilier Electronics

MICA CAPACITOR

.00002 uF

300 V

125 Cel

MICA

-55 Cel

-20/+100ppm/Cel

TIN OVER NICKEL

5.1 mm

3 mm

TR

2712

e3

2

Radial

6.9 mm

2.5 %

2.5 %

3 mm

MIN02-002DC240J-F

Cornell Dubilier Electronics

MICA CAPACITOR

SURFACE MOUNT

.000024 uF

300 V

200 Cel

MICA

-55 Cel

100ppm/Cel

SILVER

3.18 mm

5.26 mm

Yes

Bulk

e4

2

SMT

5.54 mm

GULL WING

5 %

D

5 %

CD5EC200DO3

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00002 uF

300 V

125 Cel

MICA

-55 Cel

-20/+100ppm/Cel

RECTANGULAR PACKAGE

5.1 mm

3 mm

TR

2712

CD5

2

Radial

6.9 mm

WIRE

2.5 %

2.5 %

3 mm

CDS5EC200DO3

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00002 uF

300 V

125 Cel

MICA

-55 Cel

-20/+100ppm/Cel

RECTANGULAR PACKAGE

CDS5

4.3 mm

2.5 mm

TR

2510

CDS5

2

Radial

6.4 mm

WIRE

2.5 %

2.5 %

3 mm

CMR04F271FPCR

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00027 uF

300 V

150 Cel

MICA

-55 Cel

0/+70ppm/Cel

TIN LEAD

RECTANGULAR PACKAGE

9.7 mm

5.6 mm

e0

2

Radial

9.9 mm

WIRE

1 %

MIL-PRF-39001

1 %

3.8 mm

CMR08F563JPCR

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.056 uF

300 V

150 Cel

MICA

-55 Cel

0/+70ppm/Cel

Tin/Lead (Sn60Pb40)

RECTANGULAR PACKAGE

23.1 mm

10.7 mm

e0

2

Radial

37.1 mm

WIRE

5 %

MIL-PRF-39001

5 %

26.7 mm

CMR08F563JPCM

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.056 uF

300 V

150 Cel

MICA

-55 Cel

0/+70ppm/Cel

Tin/Lead (Sn60Pb40)

RECTANGULAR PACKAGE

23.1 mm

10.7 mm

e0

2

Radial

37.1 mm

WIRE

5 %

MIL-PRF-39001

5 %

26.7 mm

CMR08F563JPCP

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.056 uF

300 V

150 Cel

MICA

-55 Cel

0/+70ppm/Cel

Tin/Lead (Sn60Pb40)

RECTANGULAR PACKAGE

23.1 mm

10.7 mm

e0

2

Radial

37.1 mm

WIRE

5 %

MIL-PRF-39001

5 %

26.7 mm

CMR08F623GPCM

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.062 uF

300 V

150 Cel

MICA

-55 Cel

0/+70ppm/Cel

Tin/Lead (Sn60Pb40)

RECTANGULAR PACKAGE

23.3 mm

11.4 mm

e0

2

Radial

37.3 mm

WIRE

2 %

MIL-PRF-39001

2 %

26.7 mm

CGS352T300X5L

Cornell Dubilier Electronics

ALUMINUM ELECTROLYTIC CAPACITOR

CHASSIS MOUNT

3500 uF

300 V

85 Cel

ALUMINUM (WET)

-40 Cel

6

CYLINDRICAL PACKAGE

POLARIZED

7800

76.2 mm

66

2

Screw Ends

142.875 mm

BINDING POST

50 %

10 %

CD5CC100JO3F

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00001 uF

300 V

125 Cel

MICA

-55 Cel

-200/+200ppm/Cel

TIN OVER NICKEL

RECTANGULAR PACKAGE

4.8 mm

2.8 mm

TR

2711

e3

2

Radial

6.9 mm

WIRE

5 %

5 %

3 mm

CD5CC150JO3F

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.000015 uF

300 V

125 Cel

MICA

-55 Cel

-200/+200ppm/Cel

TIN OVER NICKEL

RECTANGULAR PACKAGE

4.8 mm

3 mm

TR

2712

e3

2

Radial

6.9 mm

WIRE

5 %

5 %

3 mm

CD5EC510JO3F

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.000051 uF

300 V

125 Cel

MICA

-55 Cel

-20/+100ppm/Cel

TIN OVER NICKEL

RECTANGULAR PACKAGE

5.3 mm

3.6 mm

TR

2714

e3

2

Radial

6.9 mm

WIRE

5 %

5 %

3 mm

CD5FC101JO3F

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.0001 uF

300 V

125 Cel

MICA

-55 Cel

0/+70ppm/Cel

TIN OVER NICKEL

RECTANGULAR PACKAGE

6.1 mm

4.6 mm

TR

2718

e3

2

Radial

6.9 mm

WIRE

5 %

5 %

3 mm

CDS5EC200JO3

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00002 uF

300 V

125 Cel

MICA

-55 Cel

-20/+100ppm/Cel

RECTANGULAR PACKAGE

CDS5

4.3 mm

2.5 mm

TR

2510

CDS5

2

Radial

6.4 mm

WIRE

5 %

5 %

3 mm

CD10FC271JO3F

Cornell Dubilier Electronics

MICA CAPACITOR

THROUGH HOLE MOUNT

.00027 uF

300 V

125 Cel

MICA

-55 Cel

0/+70ppm/Cel

TIN OVER NICKEL

RECTANGULAR PACKAGE

9.7 mm

5.6 mm

e3

2

Radial

9.9 mm

WIRE

5 %

5 %

3.6 mm

THA251M300AD0C

Cornell Dubilier Electronics

ALUMINUM ELECTROLYTIC CAPACITOR

THROUGH HOLE MOUNT

250 uF

300 V

85 Cel

ALUMINUM (WET)

-55 Cel

0.15

POLARIZED

66.5 mm

8.2 mm

220

410

2

Radial

24.2 mm

WIRE

20 %

20 %

10 mm

Fixed Capacitors

Fixed capacitors are electronic components that have a fixed capacitance value that cannot be changed. They are used in electronic circuits to provide a specific capacitance value for a given application.

Fixed capacitors are made using a variety of dielectric materials, including ceramic, tantalum, aluminum electrolytic, polyester, and polypropylene. The choice of dielectric material depends on the specific requirements of the application, such as operating voltage, temperature range, and stability.

Fixed capacitors are available in a variety of shapes and sizes, such as through-hole, surface mount, and leaded types. They can also be classified based on their operating voltage, tolerance, and temperature coefficient.

Some common applications of fixed capacitors include decoupling, filtering, timing, and coupling circuits. In decoupling circuits, fixed capacitors are used to filter out unwanted high-frequency noise and ensure stable power supply operation. In timing circuits, fixed capacitors are used to set the time constant and determine the frequency of oscillation.

One of the main advantages of fixed capacitors is their stable capacitance value, which does not change over time or with changes in operating conditions. This makes them suitable for applications that require consistent and predictable performance.