SN65LVDS352PWR

SN65LVDS352PWR
Mfr. #:
SN65LVDS352PWR
Descripción:
Bus Receivers Quad LVDS Receiver
Ciclo vital:
Nuevo de este fabricante.
Ficha de datos:
SN65LVDS352PWR Ficha de datos
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Más información:
SN65LVDS352PWR más información SN65LVDS352PWR Product Details
Atributo del producto
Valor de atributo
Fabricante:
Instrumentos Texas
Categoria de producto:
Receptores de bus
RoHS:
Y
Número de receptores:
4 Receiver
Tipo de señal del receptor:
Diferencial
Voltaje de suministro - Min:
3 V
Voltaje de suministro - Máx:
3.6 V
Corriente de suministro de funcionamiento:
20 mA
Temperatura mínima de funcionamiento:
- 40 C
Temperatura máxima de funcionamiento:
+ 85 C
Paquete / Caja:
TSSOP-24
Embalaje:
Carrete
Velocidad de datos:
560 Mb/s
Marca:
Instrumentos Texas
Estilo de montaje:
SMD / SMT
Sensible a la humedad:
Yes
Tipo de producto:
Receptores de bus
Cantidad de paquete de fábrica:
1
Subcategoría:
Circuitos integrados lógicos
Unidad de peso:
0.007478 oz
Tags
SN65LVDS35, SN65LVDS3, SN65LVDS, SN65LVD, SN65LV, SN65L, SN65, SN6
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
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we buy and manage excess electronic components, including excess inventory identified for disposal.
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Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***i-Key
IC DIFF RECEIVER QUAD HS 24TSSOP
***ser
LVDS/M-LVDS/ECL/CML Quad LVDS Receiver
***as Instruments
The SN65LVDS348, SN65LVDT348, SN65LVDS352, and SN65LVDT352 are high-speed, quadruple differential receivers with a wide common-mode input voltage range. This allows receipt of TIA/EIA-644 signals with up to 3-V of ground noise or a variety of differential and single-ended logic levels. The ’348 is in a 16-pin package to match the industry-standard footprint of the DS90LV048. The ’352 adds two additional VCC and GND pins in a 24-pin package to provide higher data transfer rates with multiple receivers in operation. All offer a flow-through architecture with all inputs on one side and outputs on the other to ease board layout and reduce crosstalk between receivers. LVDT versions of both integrate a 110- line termination resistor. These receivers also provide 3x the standard’s minimum common-mode noise voltage tolerance. The –4 V to 5 V common-mode range allows usage in harsh operating environments or accepts LVPECL, PECL, LVECL, ECL, CMOS, and LVCMOS levels without level shifting circuitry. See the Application Information Section for more details on the ECL/PECL to LVDS interface. Precise control of the differential input voltage thresholds allows for inclusion of 50 mV of input-voltage hysteresis to improve noise rejection. The differential input thresholds are still no more than 50 mV over the full input common-mode voltage range. The receiver inputs can withstand 15 kV human-body model (HBM), with respect to ground, without damage. This provides reliability in cabled and other connections where potentially damaging noise is always a threat. The receivers also include a (patent-pending) failsafe circuit that provides a high-level output within 600 ns after loss of the input signal. The most common causes of signal loss are disconnected cables, shorted lines, or powered-down transmitters. This prevents noise from being received as valid data under these fault conditions. This feature may also be used for Wired-Or bus signaling. The SN65LVDT348 and SN65LVDT352 include an integrated termination resistor. This reduces board space requirements and parts count by eliminating the need for a separate termination resistor. This can also improve signal integrity at the receiver by reducing the stub length from the line termination to the receiver. The intended application of these devices and signaling technique is for point-to-point baseband data transmission over controlled impedance media of approximately 100 . The transmission media may be printed-circuit board traces, backplanes, or cables. The ultimate rate and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise coupling to the environment. The SN65LVDS348, SN65LVDT348, SN65LVDS352 and SN65LVDT352 are characterized for operation from –40C to 85C.
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Disponibilidad
Valores:
Available
En orden:
5500
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