SiT8008BI-83-33E-25.000000Y

SiTime
788-8008BI-833E-25Y
SiT8008BI-83-33E-25.000000Y

Fabricante:

Descripción:
MEMS Oscillators -40 to 85C, 7050, 50ppm, 3.3V, 25MHz, OE, T&R

Disponibilidad

Existencias:
No en existencias
Plazo de entrega de fábrica:
6 Semanas Tiempo estimado de producción de fábrica.
Mínimo: 1   Múltiples: 1
Precio unitario:
$-.--
Precio ext.:
$-.--
Est. Tarifa:

Precio (USD)

Cantidad Precio unitario
Precio ext.
$1.44 $1.44
$1.25 $12.50
$1.13 $56.50
$1.08 $108.00
$0.988 $247.00
Envase tipo carrete completo (pedir en múltiplos de 1000)
$0.843 $843.00
$0.819 $1,638.00
$0.785 $3,925.00

Atributo del producto Valor de atributo Seleccionar atributo
SiTime
Categoría de producto: Osciladores MEMS
RoHS:  
25 MHz
50 PPM
2.97 V
3.63 V
LVCMOS, HCMOS
4.5 mA
- 40 C
+ 85 C
AEC-Q100
SiT8008B
Marca: SiTime
País de ensamblaje: Not Available
País de difusión: Not Available
País de origen: TH
Ciclo de tarea - Máximo: 55 %
Longitud: 7 mm (0.276 in)
Empaquetado: Reel
Empaquetado: Cut Tape
Tipo de producto: MEMS Oscillators
Cantidad de empaque de fábrica: 1000
Subcategoría: Oscillators
Ancho: 5 mm (0.197 in)
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Atributos seleccionados: 0

USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

SiT8008 Low Power Programmable Oscillators

SiTime SiT8008 and SiT8008B low-power programmable oscillators include a programmable drive strength feature to provide a simple, flexible tool to optimize the clock rise/fall time for specific applications. The programmable drive strength improves system radiated electromagnetic interference (EMI) by slowing down the clock rise/fall time. The programmable drive strength also improves the downstream clock receiver’s (RX) jitter by decreasing (speeding up) the clock rise/fall time. The components have the ability to drive large capacitive loads while maintaining full swing with sharp edge rates. The oscillators exhibit EMI reduction by slowing rise/fall time and jitter reduction with faster rise/fall time. Power supply noise can be a source of jitter for the downstream chipset. One way to reduce this jitter is to speed up the rise/fall time of the input clock. Some chipsets may also require faster rise/fall time in order to reduce their sensitivity to this type of jitter. The components have high output load capability. The rise/fall time of the input clock varies as a function of the actual capacitive load the clock drives. At any given drive strength, the rise/fall time becomes slower as the output load increases. The devices can support up to 60pF or higher in maximum capacitive loads with drive strength settings.