1400 uF Fixed Capacitors 5

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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

PEG130MJ4140QL1

KEMET Corporation

ALUMINUM ELECTROLYTIC CAPACITOR

THROUGH HOLE MOUNT

1400 uF

63 V

105 Cel

ALUMINUM (WET)

-40 Cel

.2686

CYLINDRICAL PACKAGE

POLARIZED

1400

20 mm

64

BULK

2

Axial

37 mm

WIRE

30 %

10 %

550C142T450BF1B

Cornell Dubilier Electronics

ALUMINUM ELECTROLYTIC CAPACITOR

CHASSIS MOUNT

1400 uF

450 V

105 Cel

ALUMINUM (WET)

-40 Cel

2.381

CYLINDRICAL PACKAGE

POLARIZED

550C

3672

51.41 mm

53.3

550C

2

Screw Ends

143.642 mm

BINDING POST

50 %

10 %

22.23 mm

PEG225MJ4140QE1

KEMET Corporation

ALUMINUM ELECTROLYTIC CAPACITOR

THROUGH HOLE MOUNT

1400 uF

63 V

150 Cel

ALUMINUM (WET)

-40 Cel

Tin (Sn)

0.2686

TUBULAR PACKAGE

POLARIZED

20900

20.2 mm

57

BULK

e3

2

Axial

34.7 mm

WIRE

30 %

AEC-Q200; IEC60384-4

10 %

PEG225MJ4140QE4

KEMET Corporation

ALUMINUM ELECTROLYTIC CAPACITOR

THROUGH HOLE MOUNT

1400 uF

63 V

150 Cel

ALUMINUM (WET)

-40 Cel

0.2686

POLARIZED

2065

20.2 mm

57

TRAY

2

Axial

34.7 mm

WIRE

30 %

AEC-Q200; IEC60384-4

10 %

UCZ1V142MNS1MS

Nichicon

ALUMINUM ELECTROLYTIC CAPACITOR

SURFACE MOUNT

1400 uF

35 V

125 Cel

ALUMINUM (WET)

0.16

-40 Cel

0.49

POLARIZED

16.5 mm

19.1 mm

1300

18 mm

45

ESR IS MEASURED AT 100 KHZ

TR, 13 INCH

7575

2

SMT

19.1 mm

FLAT

20 %

AEC-Q200

20 %

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.