TDK 33 nF Multilayer Ceramic Capacitor, 630V dc, ±10 %, Surface

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Subtotal (1 pack of 50 units)*

£5.35

(exc. VAT)

£6.40

(inc. VAT)

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  • 750 unit(s) ready to ship
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Units
Per unit
Per Pack*
50 - 350£0.107£5.35
400 - 950£0.071£3.55
1000 +£0.054£2.70

*price indicative

Packaging Options:
RS Stock No.:
740-7644
Mfr. Part No.:
C3216X7R2J333K160AA
Brand:
TDK
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Brand

TDK

Product Type

Multilayer Ceramic Capacitor

Capacitance

33nF

Voltage

630V dc

Package/Case

1206

Packaging

Tape & Reel

Mount Type

Surface

Dielectric

X7R

Tolerance

±10 %

Automotive Standard

No

Minimum Operating Temperature

-55°C

Termination Type

Surface Mount

Series

C

Standards/Approvals

No

Length

3.2mm

Width

1.6mm

Height

1.6mm

Maximum Operating Temperature

125°C

TDK C Type 1206 Series X7R Dielectric


TDK presents the 1206 series of ceramic multilayer capacitors. With a monolithic structure that ensures superior mechanical strength and reliability, these multilayer capacitors are suitable for various commercial grade applications, from power supply circuits to LED displays. These ceramic multilayer capacitors are known for their low ESL and excellent frequency characteristics, which allow for a circuit design that closely conforms to theoretical values.

Features and Benefits:

• High capacitance through precision technologies that enable the use of multiple thinner ceramic dielectric layers

• Low self-heating and high ripple resistance due to low ESR

1206 Series components are Commercial Grade for general applications including:


• General electronic equipment

• Mobile communication equipment

• Power supply circuit

• Office automation equipment

• TV

• LED displays

• Servers

• PCs

• Notebooks

1206 Range


C0G (NP0) is the most popular formulation of the "temperature-compensating", EIA Class I ceramic materials

X7R formulations are called "temperature stable" ceramics and fall into EIA Class II materials

Y5V formulations are for general-purpose use in a limited temperature range.These characteristics make Y5V ideal for decoupling applications

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