0603B474K500CT

Walsin Technology Corporation

0603B474K500CT

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Passives

CERAMIC CAPACITOR

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Passives

CERAMIC CAPACITOR

Lead time 7 weeks
Data sheet 0603B474K500CT

0603 MLCC X7R 0.47 uF +/- 10% 50 V T&R GP

Technical Data
Size Code 0603
Multilayer Yes
Width (mm) 0.8
Height (mm) 0.8
Length (mm) 1.6
Package Shape RECTANGULAR PACKAGE
Package Style (Meter) SMT
Capacitor Type CERAMIC CAPACITOR
J-STD-609 Code e3
Packing Method TR, PAPER, 7 INCH
Terminal Shape WRAPAROUND
Terminal Finish Matte Tin (Sn) - with Nickel (Ni) barrier
Capacitance (uF) 0.47
Mounting Feature SURFACE MOUNT
Dielectric Material CERAMIC
Number of Terminals 2
Negative Tolerance (%) 10
Positive Tolerance (%) 10
Temperature Coefficient (ppm/Cel) 15%
Rated DC Voltage (URdc) (V) 50
Operating Temperature-Max (Cel) 125
Operating Temperature-Min (Cel) -55
Temperature Characteristics Code X7R
Width 0.5 mm
Length 1.6 mm

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Sourceability North America, LLC

9715 Burnet Rd, Ste 200
Austin, TX 78758-5215

Frequently Asked Questions

What documentation is available for Walsin Technology Corporation 0603B474K500CT?

You can download the user manual and technical specifications for Walsin Technology Corporation 0603B474K500CT in the documentation section.

What are the key features of Walsin Technology Corporation 0603B474K500CT?

0603 MLCC X7R 0.47 uF +/- 10% 50 V T&R GP

How does Walsin Technology Corporation 0603B474K500CT help control current in a circuit?

As a typical representative of the subcategory Passives, 0603B474K500CT is used to control the level of current and voltage in electrical circuits. Its 0603 MLCC X7R 0.47 uF +/- 10% 50 V T&R GP ensures stable resistance, which is critical for precise measurements and component protection.

How does 0603B474K500CT help stabilize electrical circuits?

0603B474K500CT from the category Passives by manufacturer Walsin Technology Corporation provides precise current limitation in the scheme. Thanks to its 0603 MLCC X7R 0.47 uF +/- 10% 50 V T&R GP, it contributes to stable operation of electronic devices, preventing overloads and voltage fluctuations.