TLK1501 Status: ACTIVE

0.6 to 1.5 Gbps Transceiver

      
         
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Datasheet

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  • 0.6 to 1.5 Gbps Transceiver (Rev. F) (tlk1501.pdf, 667 KB)
    05 Sep 2003 Download

 TLK1501
Operating Temp Range(Celsius)-40 to 85  
Pin/Package64HVQFP  
Gbps per Serial Channel(Min)0.6  
Gbps per Serial Channel(Max)1.5  
Number of Serial Channels1  
Serial I/FCML  
Parallel to Serial Ratio16  
Parallel I/FLVTTL  
mW per Serial Channel250  
RatingCatalog  
IIL(Max)(uA)-40  
IIH(Max)(uA)40  
VIL(Max)(V)0.8  
VIH(Min)(V)2  
VIH(Max)(V)3.6  
VCC(Min)(V)2.3  
VCC(Max)(V)2.7  
VCC(Nom)(V)2.5  
 Samples
 Inventory

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Product Information

Features

  • Hot Plug Protection
  • 0.6 to 1.5 Gigabits Per Second (Gbps) Serializer/Deserializer
  • High-Performance 64-Pin VQFP Thermally Enhanced Package (PowerPAD™)
  • 2.5 V Power Supply for Low Power Operation
  • Programmable Voltage Output Swing on Serial Output
  • Interfaces to Backplane, Copper Cables, or Optical Converters
  • Rated for Industrial Temperature Range
  • On-Chip 8-Bit/10-Bit (8B/10B) Encoding/Decoding, Comma Alignment, and Link Synchronization
  • On-Chip PLL Provides Clock Synthesis From Low-Speed Reference
  • Receiver Differential Input Thresholds 200 mV Minimum
  • Typical Power: 250 mW
  • Loss of Signal (LOS) Detection
  • Ideal for High-Speed Backplane Interconnect and Point-to-Point Data Link

PowerPAD is a trademark of Texas Instruments.

Description

The TLK1501 is a member of the transceiver family of multigigabit transceivers used in ultrahigh-speed bidirectional point-to-point data transmission systems. The TLK1501 supports an effective serial interface speed of 0.6 Gbps to 1.5 Gbps, providing up to 1.2 Gbps of data bandwidth. The TLK1501 is pin-for-pin compatible with the TLK2500. The TLK1501 is both pin-for-pin compatible with and functionally identical to the TLK2501, a 1.6 to 2.5 Gbps transceiver, and the TLK3101, a 2.5 to 3.125 Gbps transceiver, providing a wide range of performance solutions with no required board layout changes.

The primary application of this chip is to provide very high-speed I/O data channels for point-to-point baseband data transmission over controlled impedance media of approximately 50 . The transmission media can be printed-circuit board, copper cables, or fiber-optic cable. The maximum rate and distance of data transfer is dependent upon the attenuation characteristics of the media and the noise coupling to the environment.

This device can also be used to replace parallel data transmission architectures by providing a reduction in the number of traces, connector terminals, and transmit/receive terminals. Parallel data loaded into the transmitter is delivered to the receiver over a serial channel, which can be a coaxial copper cable, a controlled impedance backplane, or an optical link. It is then reconstructed into its original parallel format. It offers significant power and cost savings over current solutions, as well as scalability for higher data rate in the future.

The TLK1501 performs data conversion parallel-to-serial and serial-to-parallel. The clock extraction functions as a physical layer interface device. The serial transceiver interface operates at a maximum speed of 1.5 Gbps. The transmitter latches 16-bit parallel data at a rate based on the supplied reference clock (GTX_CLK). The 16-bit parallel data is internally encoded into 20 bits using an 8-bit/10-bit (8B/10B) encoding format. The resulting 20-bit word is then transmitted differentially at 20 times the reference clock (GTX_CLK) rate. The receiver section performs the serial-to-parallel conversion on the input data, synchronizing the resulting 20-bit wide parallel data to the extracted reference clock (RX_CLK). It then decodes the 20 bit wide data using 8-bit/10-bit decoding format resulting in 16 bits of parallel data at the receive data terminals (RXD0-15). The outcome is an effective data payload of 480 Mbps to 1.2 Gbps (16 bits data x the GTX_CLK frequency).

The TLK1501 is housed in a high performance, thermally enhanced, 64-pin VQFP PowerPAD package. Use of the PowerPAD package does not require any special considerations except to note that the PowerPAD, which is an exposed die pad on the bottom of the device, is a metallic thermal and electrical conductor. It is recommended that the TLK1501 PowerPAD be soldered to the thermal land on the board. All ac performance specifications in this data sheet are measured with the PowerPAD soldered to the test board.

The TLK1501 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 TLK1501 is designed to be hot plug capable. An on-chip power-on reset circuit holds the RX_CLK low during power up. This circuit also holds the parallel side output signal terminals during power up as well as DOUTTXP and DOUTTXN in a high-impedance state.

The TLK1501 has a loss of signal detection circuit for conditions where the incoming signal no longer has a sufficient voltage amplitude to keep the clock recovery circuit in lock.

To prevent a data bit error from causing a valid data packet from being interpreted as a comma and thus causing the erroneous word alignment by the comma detection circuit, the comma word alignment circuit is turned off after the link is properly established in TLK1501.

The TLK1501 allows users to implement redundant ports by connecting receive data bus terminals from two TLK1501 devices together. Asserting the LCKREFN to a low state causes the receive data bus terminals, RXD[0:15], RX_CLK and RX_ER, RX_DV/LOS to go to a high-impedance state. This places the device in a transmit-only mode, since the receiver is not tracking the data.

The TLK1501 uses a 2.5-V supply. The I/O section is 3 V compatible. With the 2.5-V supply the chipset is very power-efficient, consuming less than 360 mW typically. The TLK1501 is characterized for operation from –40°C to 85°C.

    

Pricing / Packaging / CAD Design Tools / Samples

PricePackagingCAD Design ToolsSamples
DeviceStatusTemp (oC)Price | QuantityPackage | PinsTop Side MarkingPackage QTY | Package CarrierSymbolsSamples
TLK1501IRCPACTIVE-40 to 858.40 | 1kuHVQFP (RCP) | 64 View 160 | JEDEC TRAY (10+1) Download CAD Format for this Symbol
TLK1501IRCPG4ACTIVE-40 to 858.40 | 1kuHVQFP (RCP) | 64 View 160 | JEDEC TRAY (5+1) Download CAD Format for this Symbol
TLK1501IRCPRACTIVE-40 to 858.40 | 1kuHVQFP (RCP) | 64 View 1000 | LARGE T&R Download CAD Format for this SymbolPurchase Samples
TLK1501IRCPRG4ACTIVE-40 to 858.40 | 1kuHVQFP (RCP) | 64 View 1000 | LARGE T&R Download CAD Format for this SymbolPurchase Samples

* Suggested Resale Price per unit (USD) for BUDGETARY USE ONLY. For higher volume price quotes,prices in local currency or delivery quotes, please contact your local Texas Instruments Sales Office or Authorized Distributor.

Inventory

  TI Inventory Status Reported Distributor Inventory
TLK1501IRCPAs of 9:12 AM GMT, 20 Nov 2008As of 9:12 AM GMT, 20 Nov 2008
 In StockIn Progress QTY | DateLead TimeRegionCompanyIn StockPurchase
 0* >10k | 5 Jan 6 Weeks AmericasArrow 193
  Avnet 454
  DigiKey 450
  Mouser Electronics 54
  Newark 164
  Rochester Electronics 24
  EuropeArrow Southern Europe 20
  Avnet-SILICA 17
TLK1501IRCPG4As of 9:12 AM GMT, 20 Nov 2008As of 9:12 AM GMT, 20 Nov 2008
 In StockIn Progress QTY | DateLead TimeRegionCompanyIn StockPurchase
 0* >10k | 5 Jan 6 Weeks AmericasAvnet >1k
  EuropeEBV Elektronik 160
TLK1501IRCPRAs of 9:12 AM GMT, 20 Nov 2008As of 9:12 AM GMT, 20 Nov 2008
 In StockIn Progress QTY | DateLead TimeRegionCompanyIn StockPurchase
 0* >10k | 5 Jan 12 Weeks None Reported
View Distributors
   
TLK1501IRCPRG4As of 9:12 AM GMT, 20 Nov 2008As of 9:12 AM GMT, 20 Nov 2008
 In StockIn Progress QTY | DateLead TimeRegionCompanyIn StockPurchase
 0* >10k | 5 Jan 12 Weeks None Reported
View Distributors
   
View all Distributors  

* Our information is updated daily, so please check back with us soon if this does not meet your needs. You may also contact your TI Authorized Distributor , including those listed above, for real time stock information.

** Lead time information is not available at this time. However, our information is updated daily so please check back with us soon. Please contact your preferred TI Authorized Distributor for additional information.

Quality & Lead (Pb)-Free Data

 Product ContentDPPM / MTBF / FIT Rate
DeviceEco Plan* Lead / Ball FinishMSL Rating / Peak ReflowDetailsDetails
TLK1501IRCP RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-3-260C-168 HRViewView
TLK1501IRCPG4 RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-3-260C-168 HRViewView
TLK1501IRCPR RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-3-260C-168 HRViewView
TLK1501IRCPRG4 RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-3-260C-168 HRViewView

* The planned eco-friendly classification: Pb-Free (RoHS) or Pb-Free (RoHS Exempt) or Green (RoHS & no Sb/Br) - please click on the Product Content Details "View" link in the table above for the latest availability information and additional product content details.

If the information you are requesting is not available online at this time, contact one of our Product Information Centers regarding the availability of this information.

Technical Documents

Datasheets

  • 0.6 to 1.5 Gbps Transceiver (Rev. F) (tlk1501.pdf, 667 KB)
    05 Sep 2003 Download

Application Notes

  • Using TI's CDCV304 w/Backplane Transceiver (TLK1201/1501/2201/2501/2701/3101) (Rev. A) (scaa052a.htm, 8 KB)
    20 Apr 2006 Abstract
  • Using TI's CDCVF2310 and CDCVF25081 with TLK1501 Serial Transceiver (scaa064.htm, 8 KB)
    14 May 2003 Abstract
  • Interfacing Between LVPECL, VML, CML and LVDS Levels (slla120.htm, 9 KB)
    17 Dec 2002 Abstract

User Guides

  • TLK1501 Serdes EVM Kit Setup and Usage User's Guide (sllu008.htm, 8 KB)
    14 Jun 2000 Abstract

Tools & Software

NamePart # Company Tool / Software Type
TLK1501 SerDes Evaluation ModuleTLK1501EVMTexas InstrumentsDevelopment Boards/EVMs

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