KYOCERA AVX 680 pF Multilayer Ceramic Capacitor, 50V dc, ±10 %, Surface

Bulk discount available

Subtotal (1 pack of 25 units)*

£4.25

(exc. VAT)

£5.00

(inc. VAT)

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  • 300 unit(s) ready to ship
  • Plus 1,075 unit(s) shipping from 07 May 2026
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Units
Per unit
Per Pack*
25 - 225£0.17£4.25
250 - 475£0.158£3.95
500 - 975£0.146£3.65
1000 - 2475£0.134£3.35
2500 +£0.118£2.95

*price indicative

RS Stock No.:
698-3535
Mfr. Part No.:
08055F681KAZ2A
Brand:
KYOCERA AVX
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Brand

KYOCERA AVX

Product Type

Multilayer Ceramic Capacitor

Capacitance

680pF

Voltage

50V dc

Package/Case

0805

Packaging

Reel

Mount Type

Surface

Dielectric

X8R

Tolerance

±10 %

Automotive Standard

No

Minimum Operating Temperature

-55°C

Termination Type

Surface Mount

Series

FLEXITERM

Width

1.25mm

Length

2.01mm

Standards/Approvals

No

Height

0.94mm

Maximum Operating Temperature

150°C

AVX 0805 MLCC Series


X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials, and COG (NPO) is the most popular “temperature-compensating” EIA Class I ceramic materials

• Multilayer Ceramic Capacitors whose temperature variation is within ±15% from -55°C to +125°C

• The capacitance change is non-linear

• AVX high voltage chips have advantages of high value, low leakage and small size, thus applications include as snubbers in high frequency power converters, resonators in SMPS and high voltage coupling/DC blocking

• These high voltage chip designs exhibit low ESRs at high frequencies

• Reduced noise X5R versions available

• Low profile versions available

0805 Range


Nickel barrier terminations covered with a layer of plated Tin (NiSn). Applications include mobile phones, video and tuner designs, COG/NPO is the most popular formulation of the "temperature compensating", EIA Class I ceramic materials, X7R, X5R formulations are called "temperature stable" ceramics and fall into the EIA Class II materials, Y5V, Z5U formulations are for general purpose use in a limited temperature range, EIA Class II materials; these characteristics are ideal for decoupling applications.

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