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Taiyo Yuden JMK063BJ224MP-F — Specialty Capacitors

Taiyo Yuden JMK063BJ224MP-F, 0.22 µF 6.3V MLCC, 0201 X5R

MPNJMK063BJ224MP-F
Active

Taiyo Yuden, Series M, MLCC, 0.22 µF, ±20%, 6.3V, X5R, 0201 (0603 Metric), Surface Mount, SMPS Filtering.

$0.2400Ref. price · indicative, final on quote
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

JMK063BJ224MP-F specifications
ParameterValue
SeriesM
MountingSurface Mount, MLCC
Voltage - rated6.3V
Operating temperature-55°C~85°C
Size (Dimension)0.024\" L x 0.012\" W (0.60mm x 0.30mm)
PackageTape & Reel (TR); Cut Tape (CT)
Tolerance±20%
Capacitance0.22 µF
ApplicationsSMPS Filtering
Case0201 (0603 Metric)
Thickness0.013\" (0.33mm)
Temperature coefficientX5R

Product details

0201 SMPS filter capacitor — fit for high-density boards

The JMK063BJ224MP-F: The 0.22 µF capacitance at 6.3V in an 0201 (0603 metric) case makes this a go-to decoupling and SMPS switching-node filter for portable electronics, buck and boost converters, and any compact board where MLCC real estate is at a premium. Maximum thickness of 0.33 mm keeps the body flush with low-profile board stacks; the 0.60 mm × 0.30 mm footprint suits fine-pitch routing on multilayer boards without solder-bridge risk.

Packaging and sourcing posture

Supplied on Tape & Reel (TR) for automated placement and Cut Tape (CT) for low-volume prototyping — both formats are standard from the brand's distribution channel. The base product number JMK063B is the reference for cross-checking equivalent ratings across the M series family — confirm the full JMK063BJ224MP-F suffix on any alternative source.

Frequently asked questions

What package formats is JMK063BJ224MP-F available in?

The part ships on Tape & Reel (TR) for high-volume SMT pick-and-place and Cut Tape (CT) for prototype runs — both standard packaging options from the manufacturer.

How do I source JMK063BJ224MP-F and get a current quote?

Sourced and quoted to order against your BOM quantity through independent distribution.