T495A685M006ZTE2K0 Allicdata Electronics
Allicdata Part #:

T495A685M006ZTE2K0-ND

Manufacturer Part#:

T495A685M006ZTE2K0

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: KEMET
Short Description: CAP TANT 6.8UF 20% 6.3V 1206
More Detail: 6.8µF Molded Tantalum Capacitors 6.3V 1206 (3216 M...
DataSheet: T495A685M006ZTE2K0 datasheetT495A685M006ZTE2K0 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Operating Temperature: -55°C ~ 125°C
Failure Rate: --
Features: General Purpose
Ratings: --
Manufacturer Size Code: A
Lead Spacing: --
Height - Seated (Max): 0.071" (1.80mm)
Size / Dimension: 0.126" L x 0.063" W (3.20mm x 1.60mm)
Package / Case: 1206 (3216 Metric)
Mounting Type: Surface Mount
Lifetime @ Temp.: 2000 Hrs @ 125°C
Series: T495
ESR (Equivalent Series Resistance): 2 Ohm @ 100kHz
Type: Molded
Voltage - Rated: 6.3V
Tolerance: ±20%
Capacitance: 6.8µF
Moisture Sensitivity Level (MSL): --
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Packaging: Tape & Reel (TR) 
Description

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Tantalum Capacitors – T495A685M006ZTE2K0 Application & Working PrincipleTantalum capacitors, commonly called tantalum electrolytic capacitors due to their construction, are a type of electrolytic capacitor. These capacitors use a solid tantalum metal as an anode, with an oxide layer used as a dielectric, and a liquid electrolyte as the cathode. Because of their construction, they offer a high volumetric efficiency and also very low leakage, making them ideal for use in analog, and power applications. The T495A685M006ZTE2K0 is a tantalum capacitor produced by AVX Corporation. Construction of the T495A685M006ZTE2K0The T495A685M006ZTE2K0 consists of a tantalum anode, a liquid electrolyte solution as the cathode, and an oxide layer as the dielectric. The oxide layer is formed by an electrochemical process during manufacturing which creates a highly-stable layer of tantalum oxide. This layer serves as the dielectric in the capacitor, which determines its capacitance. The anode and cathode materials are made from high-purity tantalum powder. This powder is then compacted, sintered, and oxidized, forming the anode and cathode materials, respectively. Once these materials have been formed, they are then incorporated into the capacitor\'s construction and covered in a protective resin coating.Features of the T495A685M006ZTE2K0The T495A685M006ZTE2K0 offers several advantages over other types of capacitors, which make it ideal for use in a variety of different applications. These include:
  • High volumetric efficiency - due to its construction, the T495A685M006ZTE2K0 is capable of storing more energy in a smaller package, making it ideal for applications where space is a scarce resource.
  • Low leakage - the solid tantalum metal anode and liquid electrolyte solution cathode combination used in the T495A685M006ZTE2K0 ensures low leakage current, making it ideal for use in applications where precision and accuracy are required.
  • Long Cycle Life - the oxide layer used in the T495A685M006ZTE2K0 is highly stable, which provides it with a long cycle life, making it ideal for applications which require a constantly reliable performance.
  • Unstable power environment handling – due to its construction, the T495A685M006ZTE2K0 is able to handle power environments that are prone to sudden changes in voltages or currents, making it ideal for use in applications that require such conditions.
Working Principle of the T495A685M006ZTE2K0The working principle of the T495A685M006ZTE2K0 is fairly straightforward. When the capacitor is connected to a power source, current travels from the anode (positive) through the oxide layer and into the liquid electrolyte, acting as the cathode (negative). This current creates an electrical field across the oxide layer, which then stores the charge within the capacitor.When the power source is disconnected, the charge stored inside the capacitor is then released through the anode-cathode connections. This release of charge allows for the capacitor to discharge, transferring the stored charge to its destination. This is the main purpose of the capacitor, as it allows for electricity to be stored and then used when needed. Applications of the T495A685M006ZTE2K0Due to its construction and features, the T495A685M006ZTE2K0 is ideal for use in a wide variety of applications. These can include:
  • Power supplies – the T495A685M006ZTE2K0 is ideal for use in power supplies, due to its low leakage and ability to handle sudden voltage changes, making it ideal for any application that uses electricity.
  • Audio equipment – due to its low leakage current and high volumetric efficiency, the T495A685M006ZTE2K0 is ideal for use in audio equipment, such as amplifiers and speakers, where precision and accuracy are required.
  • Industrial machinery – the T495A685M006ZTE2K0’s long cycle life, low leakage and high accuracy makes it ideal for use in industrial machinery, as they require capacitors that can handle high amounts of power and still remain accurate under fluctuating conditions for years.
  • Medical equipment – due to its long cycle life, high volumetric efficiency and low leakage, the T495A685M006ZTE2K0 is ideal for use in medical equipment, such as x-ray machines and ultrasound machines, as precision and accuracy are crucial.
ConclusionThe T495A685M006ZTE2K0 is a tantalum capacitor produced by AVX Corporation. It consists of a solid tantalum metal anode, a liquid electrolyte solution as the cathode, and an oxide layer as the dielectric. The T495A685M006ZTE2K0 offers several advantages over other types of capacitors, due to its construction, which makes it ideal for use in a variety of applications, including power supplies, audio equipment, industrial machinery and medical equipment. Its working principle involves the stored charge being released when disconnected from a power source, allowing for the capacitor to discharge, transferring the stored charge to the intended destination.

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