T499D686K010ATE800

KEMET
80-T499D686K10TE800
T499D686K010ATE800

Fabricante:

Descripción:
Capacitores de tantalio - SMD sólido 10V 68uF 2917 10% ESR=800mOhms

Modelo ECAD:
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En existencias: 899

Existencias:
899 Se puede enviar inmediatamente
Plazo de entrega de fábrica:
19 Semanas Tiempo estimado de producción de fábrica para cantidades superiores a las que se muestran.
Mínimo: 1   Múltiples: 1
Precio unitario:
$-.--
Precio ext.:
$-.--
Est. Tarifa:
Empaque:
Envase tipo carrete completo (pedir en múltiplos de 500)

Precio (USD)

Cantidad Precio unitario
Precio ext.
Cinta cortada / MouseReel™
$1.87 $1.87
$1.26 $12.60
$1.02 $51.00
$0.937 $93.70
Envase tipo carrete completo (pedir en múltiplos de 500)
$0.842 $421.00
$0.75 $750.00
$0.695 $1,390.00
$0.676 $3,380.00
$0.661 $6,610.00
† $7.00 Se agregará y calculará la tarifa de MouseReel™ en su carrito de compras. Ningún artículo de MouseReel™ se puede cancelar ni devolver.

Atributo del producto Valor de atributo Seleccionar atributo
KEMET
Categoría de producto: Capacitores de tantalio - SMD sólido
RoHS:  
Reel
Cut Tape
MouseReel
T499
68 uF
10 VDC
10 %
800 mOhms
2917
7343
D Case
7.3 mm (0.287 in)
4.3 mm (0.169 in)
2.8 mm (0.11 in)
- 55 C
+ 175 C
AEC-Q200
SMD/SMT
Marca: KEMET
País de ensamblaje: Not Available
País de difusión: Not Available
País de origen: MX
Factor de disipación DF: 6
Corriente de fuga: 6.8 uA
Producto: Tantalum Solid High Temperature
Tipo de producto: Tantalum Capacitors
Corriente ondulada: 433 mA
Cantidad de empaque de fábrica: 500
Subcategoría: Capacitors
Peso de la unidad: 446.840 mg
Productos encontrados:
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Atributos seleccionados: 0

                        
KEMET is improving and enhancing their printing process for part
markings. The changes with clarify the T498 and T499 laser
marking, including the polarity indicator. The improvements will
result in sharper contrast which will improve the end customer_s
component identification process.

The effective date for laser marking change in the Matamoros
location is December 1st, 2014.
Please contact a Mouser Technical Sales Representative for
further information.

5-0914-3

CNHTS:
8532211000
CAHTS:
8532210010
USHTS:
8532210050
JPHTS:
853221000
KRHTS:
8532210000
TARIC:
8532210000
MXHTS:
8532210100
BRHTS:
85322119
ECCN:
EAR99

MLCC Replacement Solutions

KEMET KOCAP Tantalum Polymer Capacitors are ideal for board space savings, a piezo noise-free environment, high capacitance, long stable life performance, and/or lower profile requirements. Tantalum polymer capacitors are selected over other capacitor technologies when application voltages are less than 50V, capacitance needs are between 1µF to 1mF, and application frequencies are below 1MHz. Since replacing ceramic capacitors with tantalum polymer capacitors is not typically one-for-one, designers need to consider several design requirements as outlined in the schematic below.

High-Temperature Capacitors

KEMET High-Temperature Capacitors provide capacitance solutions for applications up to 260°C and voltages up to 20kV. Product applications include harsh environments such as down-hole (oil exploration), automotive (under the hood), defense, and aerospace. KEMET's vast portfolio of high-temperature capacitors offers significant reliability and performance advantages when operating temperatures are greater than 125°C.

Solid Tantalum Capacitors

KEMET Solid Tantalum Capacitors are a high-reliability Commercial-Off-the-Shelf (COTS) family of capacitors that provide very low ESR and high surge current capabilities. These surface-mount MnO2 capacitors cover a range of applications, including industrial, automotive, defense, and space-grade options.

T499 High Temperature SMT Tantalum Capacitors

KEMET T499 High-Temperature SMT Tantalum Capacitors feature solid-state structures capable of +125°C applications with a maximum temperature rating of +175°C. KEMET T499 SMT Capacitors include capacitance values of 0.15µF to 220µF with AEC-Q200 compliance, voltage ratings of 6V to 50V, 5 standard EIA case sizes with RoHS-compliant terminations, 100% surge current testing, and a self-healing mechanism.