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TLK1221

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Gigabit Ethernet SerDes en encapsulado pequeño de 40 pines

Detalles del producto

Protocols Catalog Rating Catalog Operating temperature range (°C) -40 to 85
Protocols Catalog Rating Catalog Operating temperature range (°C) -40 to 85
VQFN (RHA) 40 36 mm² 6 x 6
  • 0.6- to 1.3-Gigabits Per Second (Gbps) Serializer/Deserializer
  • Low Power Consumption 250 mW (typ) at 1.25 Gbps
  • LVPECL-Compatible Differential I/O on High-Speed Interface
  • Single Monolithic PLL Design
  • Support For 10-Bit Interface
  • Fast Relock Times Less Than 256 ns (typ) Suitable for EPON/GEPON Applications such as OLT and ONU Systems
  • Receiver Differential-Input Thresholds, 200-mV Minimum
  • Industrial Temperature Range From –40°C to 85°C
  • IEEE 802.3 Gigabit Ethernet Compliant
  • Designed in 0.25 µm CMOS Technology
  • No External Filter Capacitors Required
  • Comprehensive Suite of Built-In Testability
  • 2.5-V Supply Voltage for Lowest-Power Operation
  • 3.3-V Tolerant on LVTTL Inputs
  • Hot Plug Protection
  • 40-Pin 6-mm × 6-mm QFN PowerPAD™ Package

All trademarks are the property of their respective owners.

  • 0.6- to 1.3-Gigabits Per Second (Gbps) Serializer/Deserializer
  • Low Power Consumption 250 mW (typ) at 1.25 Gbps
  • LVPECL-Compatible Differential I/O on High-Speed Interface
  • Single Monolithic PLL Design
  • Support For 10-Bit Interface
  • Fast Relock Times Less Than 256 ns (typ) Suitable for EPON/GEPON Applications such as OLT and ONU Systems
  • Receiver Differential-Input Thresholds, 200-mV Minimum
  • Industrial Temperature Range From –40°C to 85°C
  • IEEE 802.3 Gigabit Ethernet Compliant
  • Designed in 0.25 µm CMOS Technology
  • No External Filter Capacitors Required
  • Comprehensive Suite of Built-In Testability
  • 2.5-V Supply Voltage for Lowest-Power Operation
  • 3.3-V Tolerant on LVTTL Inputs
  • Hot Plug Protection
  • 40-Pin 6-mm × 6-mm QFN PowerPAD™ Package

All trademarks are the property of their respective owners.

The TLK1221 gigabit Ethernet transceiver provides for high-speed full-duplex point-to-point data transmissions. These devices are based on the timing requirements of the 10-bit interface specification by the IEEE 802.3 Gigabit Ethernet specification. The TLK1221 supports data rates from 0.6 Gbps through 1.3 Gbps.

The primary application of these devices is to provide building blocks for point-to-point baseband data transmission over controlled-impedance media of 50 . The transmission media can be printed-circuit board traces, copper cables or fiber-optical media. 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 TLK1221 performs the data serialization, deserialization, and clock extraction functions for a physical layer interface device. The transceiver operates at 1.25 Gbps (typical), providing up to 1 Gbps of data bandwidth over a copper or optical media interface.

This device supports the defined 10-bit interface (TBI). In the TBI mode, the serializer/deserializer (SERDES) accepts 10-bit wide 8b/10b parallel encoded data bytes. The parallel data bytes are serialized and transmitted differentially at PECL-compatible voltage levels. The SERDES extracts clock information from the input serial stream and deserializes the data, outputting a parallel 10-bit data byte.

A comprehensive series of built-in tests is provided for self-test purposes, including loopback and pseudorandom binary sequence (PRBS) generation and verification.

The TLK1221 is housed in a high-performance, thermally enhanced, 40-pin QFN package. Use of this package does not require any special considerations except to note that the pad, which is an exposed die pad on the bottom of the device, is a metallic thermal and electrical conductor. It is required that the TLK1221 pad be soldered to the thermal land on the board as it serves as the main ground connection for the device.

The TLK1221 is characterized for operation from –40°C to 85°C.

This device uses a 2.5-V supply. The I/O section is 3.3-V compatible. With the 2.5-V supply, the chipset is very power-efficient, dissipating less than 200 mW typical power when operating at 1.25 Gbps.

The TLK1221 is designed to be hot-plug capable. A power-on reset causes RBC0, RBC1, the parallel output signal terminals, TXP, and TXN to be held in the high-impedance state.

The TLK1221 gigabit Ethernet transceiver provides for high-speed full-duplex point-to-point data transmissions. These devices are based on the timing requirements of the 10-bit interface specification by the IEEE 802.3 Gigabit Ethernet specification. The TLK1221 supports data rates from 0.6 Gbps through 1.3 Gbps.

The primary application of these devices is to provide building blocks for point-to-point baseband data transmission over controlled-impedance media of 50 . The transmission media can be printed-circuit board traces, copper cables or fiber-optical media. 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 TLK1221 performs the data serialization, deserialization, and clock extraction functions for a physical layer interface device. The transceiver operates at 1.25 Gbps (typical), providing up to 1 Gbps of data bandwidth over a copper or optical media interface.

This device supports the defined 10-bit interface (TBI). In the TBI mode, the serializer/deserializer (SERDES) accepts 10-bit wide 8b/10b parallel encoded data bytes. The parallel data bytes are serialized and transmitted differentially at PECL-compatible voltage levels. The SERDES extracts clock information from the input serial stream and deserializes the data, outputting a parallel 10-bit data byte.

A comprehensive series of built-in tests is provided for self-test purposes, including loopback and pseudorandom binary sequence (PRBS) generation and verification.

The TLK1221 is housed in a high-performance, thermally enhanced, 40-pin QFN package. Use of this package does not require any special considerations except to note that the pad, which is an exposed die pad on the bottom of the device, is a metallic thermal and electrical conductor. It is required that the TLK1221 pad be soldered to the thermal land on the board as it serves as the main ground connection for the device.

The TLK1221 is characterized for operation from –40°C to 85°C.

This device uses a 2.5-V supply. The I/O section is 3.3-V compatible. With the 2.5-V supply, the chipset is very power-efficient, dissipating less than 200 mW typical power when operating at 1.25 Gbps.

The TLK1221 is designed to be hot-plug capable. A power-on reset causes RBC0, RBC1, the parallel output signal terminals, TXP, and TXN to be held in the high-impedance state.

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Documentación técnica

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Tipo Título Fecha
* Data sheet Ethernet Transceivers datasheet (Rev. C) 01 sep 2009
EVM User's guide TLK1221 Ethernet Transceiver EVM 27 sep 2007

Diseño y desarrollo

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Placa de evaluación

TLK1221EVM — Módulo de evaluación TLK1221EVM

The TLK1221 gigabit Ethernet transceiver provides for high-speed full-duplex point-to-point data transmissions.These devices are based on the timing requirements of the 10-bit interface specification by the IEEE 802.3Gigabit Ethernet specification. The TLK1221 supports data rates from 0.6 Gbps (...)

Guía del usuario: PDF
Modelo de simulación

TLK1221 IBIS Model

SLLM082.ZIP (17 KB) - IBIS Model
Herramienta de simulación

PSPICE-FOR-TI — PSpice® para herramienta de diseño y simulación de TI

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
Herramienta de simulación

TINA-TI — Programa de simulación analógica basado en SPICE

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
Guía del usuario: PDF
Paquete Pasadores Descargar
VQFN (RHA) 40 Ver opciones

Pedidos y calidad

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  • Lugar de fabricación
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