인터페이스 LVDS, M-LVDS 및 PECL

TNETE2201B

활성

1.25기가비트 이더넷 트랜시버

제품 상세 정보

Function SerDes Protocols LVPECL Supply voltage (V) 3.3 Signaling rate (MBits) 1000 Input signal LVTTL Output signal LVPECL Rating Catalog Operating temperature range (°C) 0 to 70
Function SerDes Protocols LVPECL Supply voltage (V) 3.3 Signaling rate (MBits) 1000 Input signal LVTTL Output signal LVPECL Rating Catalog Operating temperature range (°C) 0 to 70
HTQFP (PHD) 64 256 mm² 16 x 16 HTQFP (PJD) 64 144 mm² 12 x 12 HTQFP (PJW) 64 166.41 mm² 12.9 x 12.9
  • 1.25 Gigabits Per Second (Gbps) Gigabit Ethernet Transceiver
  • Based on the P802.3Z Specification
  • Transmits Serial Data up to 1.25 Gbps
  • Operates With 3.3-V Supply Voltage
  • 5-V Tolerant on TTL Inputs
  • Interfaces to Electrical Cables/Backplane or Optical Modules
  • PECL Voltage Differential Signaling Load, 1 V Typ With 50
  • Receiver Differential Input Voltage 200 mV Minimum
  • Low Power Consumption
  • 64-Pin Quad Flat Pack With Thermally Enhanced Package

  • 1.25 Gigabits Per Second (Gbps) Gigabit Ethernet Transceiver
  • Based on the P802.3Z Specification
  • Transmits Serial Data up to 1.25 Gbps
  • Operates With 3.3-V Supply Voltage
  • 5-V Tolerant on TTL Inputs
  • Interfaces to Electrical Cables/Backplane or Optical Modules
  • PECL Voltage Differential Signaling Load, 1 V Typ With 50
  • Receiver Differential Input Voltage 200 mV Minimum
  • Low Power Consumption
  • 64-Pin Quad Flat Pack With Thermally Enhanced Package

The TNETE2201B gigabit Ethernet transceiver provides for ultra high-speed bidirectional point-to-point data transmission. This device is based on the timing requirements of the proposed 10-bit interface specification by the P802.3z Gigabit Task Force.

The intended application of this device is to provide building blocks for developing point-to-point baseband data transmission over controlled-impedance media of approximately 50 . The transmission media can be printed-circuit board traces, back planes, 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 TNETE2201B performs the data serialization and deserialization (SERDES) functions for the gigabit ethernet physical layer interface. The transceiver operates at 1.25 Gbps (typical), providing up to 1000 Mbps of bandwidth over a copper or optical media interface. The serializer/transmitter accepts 8b/10b parallel encoded data bytes. The parallel data bytes are serialized and transmitted differentially nonreturn-to-zero (NRZ) at pseudo-ECL (PECL) voltage levels. The deserializer/receiver extracts clock information from the input serial stream and deserializes the data, outputting a parallel 10-bit data byte. The 10-bit data bytes are output with respect to two receive byte clocks (RBC0, RBC1), allowing a protocol device to clock the parallel bytes in RBC clock rising edges.

The transceiver automatically locks onto incoming data without the need to prelock. However, the transceiver can be commanded to lock to the externally supplied reference clock (REFCLK) as a reset function, if needed.

The TNETE2201B provides an internal loopback capability for self-test purposes. Serial data from the serializer is passed directly to the deserializer allowing the protocol device a functional self-check of the physical interface.

The TNETE2201B is characterized for operation from 0°C to 70°C.

The TNETE2201B gigabit Ethernet transceiver provides for ultra high-speed bidirectional point-to-point data transmission. This device is based on the timing requirements of the proposed 10-bit interface specification by the P802.3z Gigabit Task Force.

The intended application of this device is to provide building blocks for developing point-to-point baseband data transmission over controlled-impedance media of approximately 50 . The transmission media can be printed-circuit board traces, back planes, 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 TNETE2201B performs the data serialization and deserialization (SERDES) functions for the gigabit ethernet physical layer interface. The transceiver operates at 1.25 Gbps (typical), providing up to 1000 Mbps of bandwidth over a copper or optical media interface. The serializer/transmitter accepts 8b/10b parallel encoded data bytes. The parallel data bytes are serialized and transmitted differentially nonreturn-to-zero (NRZ) at pseudo-ECL (PECL) voltage levels. The deserializer/receiver extracts clock information from the input serial stream and deserializes the data, outputting a parallel 10-bit data byte. The 10-bit data bytes are output with respect to two receive byte clocks (RBC0, RBC1), allowing a protocol device to clock the parallel bytes in RBC clock rising edges.

The transceiver automatically locks onto incoming data without the need to prelock. However, the transceiver can be commanded to lock to the externally supplied reference clock (REFCLK) as a reset function, if needed.

The TNETE2201B provides an internal loopback capability for self-test purposes. Serial data from the serializer is passed directly to the deserializer allowing the protocol device a functional self-check of the physical interface.

The TNETE2201B is characterized for operation from 0°C to 70°C.

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기술 문서

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모두 보기4
유형 직함 날짜
* Data sheet TNETE2201B: 1.25-Gigabit Ethernet Transceiver datasheet (Rev. D) 2007/08/09
White paper HDMP16x6A vs TNETE2201B 2003/06/25
Application note Interfacing Between LVPECL, VML, CML and LVDS Levels 2002/12/17
Application note Board Layout Adjustments Between the TNETE2201B and TLK2201 2002/05/13

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시뮬레이션 툴

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TI용 PSpice®는 아날로그 회로의 기능을 평가하는 데 사용되는 설계 및 시뮬레이션 환경입니다. 완전한 기능을 갖춘 이 설계 및 시뮬레이션 제품군은 Cadence®의 아날로그 분석 엔진을 사용합니다. 무료로 제공되는 TI용 PSpice에는 아날로그 및 전력 포트폴리오뿐 아니라 아날로그 행동 모델에 이르기까지 업계에서 가장 방대한 모델 라이브러리 중 하나가 포함되어 있습니다.

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사용 설명서: PDF
패키지 다운로드
HTQFP (PHD) 64 옵션 보기
HTQFP (PJD) 64 옵션 보기
HTQFP (PJW) 64 옵션 보기

주문 및 품질

포함된 정보:
  • RoHS
  • REACH
  • 디바이스 마킹
  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
  • 지속적인 신뢰성 모니터링
포함된 정보:
  • 팹 위치
  • 조립 위치

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