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DS90CR486  Product Folder

Deserializer
Generic P/N 90CR486
General
Description
Features Datasheet Package
& Models
Samples
& Pricing
Reliability
Metrics

Parametric Table Parametric Table
Temperature Min (deg C) -10 
Temperature Max (deg C) 70 
Supply Voltage (Volt) 3.30 
OtherSupply Voltage undefined 
Data Rate (Mbps) 6384 
Operating Frequency (MHz) 133 
Compression Ratio 8:48 
Function Receiver 

Datasheet

TitleSize in KbytesDate
View Online

Download

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DS90CR486 133MHz 48-Bit Channel Link Deserializer (6.384 Gbps) 350 Kbytes 12-Mar-03 View Online Download Receive via Email
DS90CR486 133MHz 48-Bit Channel Link Deserializer (6.384 Gbps) (JAPANESE)
529 Kbytes   View Online Download Receive via Email

If you have trouble printing or viewing PDF file(s), see Printing Problems.

Package Availability, Models, Samples & Pricing

Part NumberPackageStatusModelsSamples &
Electronic
Orders
Budgetary PricingStd
Pack
Size
Package
Marking
TypePinsMSL/Lead-Free AvailabilityLead
Time
QtySPICEIBISQty$US each
DS90CR486VSTQFP100StatusFull productionN/AN/A24 Hour Samples
Buy Now
1K+$12.90tray
of
90
NS2ZXYYTT
DS90CR486VS
BBBBB
3-5 weeks500
DS90CR486VSXTQFP100StatusFull productionN/AN/A 1K+$12.90reel
of
1000
NS2ZXYYTT
DS90CR486VS
BBBBB
2-3 weeks50

General Description

The DS90CR486 receiver converts eight Low Voltage Differential Signaling (LVDS) data streams back into 48 bits of LVCMOS/LVTTL data. Using a 133MHz clock, the data throughput is 6.384Gbit/s (798Mbytes/s).

The multiplexing of data lines provides a substantial cable reduction. Long distance parallel single-ended buses typically require a ground wire per active signal (and have very limited noise rejection capability). Thus, for a 48-bit wide data and one clock, up to 98 conductors are required. With this Channel Link chipset as few as 19 conductors (8 data pairs, 1 clock pair and a minimum of one ground) are needed. This provides an 80% reduction in interconnect width, which provides a system cost savings, reduces connector physical size and cost, and reduces shielding requirements due to the cables' smaller form factor.

The DS90CR486 deserializer is improved over prior generations of Channel Link devices and offers higher bandwidth support and longer cable drive with three areas of enhancement. To increase bandwidth, the maximum clock rate is increased to 133 MHz and 8 serialized LVDS outputs are provided. Cable drive is enhanced with a user selectable pre-emphasis (on DS90CR485) feature that provides additional output current during transitions to counteract cable loading effects. Optional DC balancing on a cycle-to-cycle basis, is also provided to reduce ISI (Inter-Symbol Interference). With pre-emphasis and DC balancing, a low distortion eye-pattern is provided at the receiver end of the cable. A cable deskew capability has been added to deskew long cables of pair-to-pair skew. These three enhancements allow long cables to be driven.

The DS90CR486 is intended to be used with the DS90CR485 Channel Link Serializer. It is also backward compatible with serializers DS90CR481 and DS90CR483. The DS90CR486 is footprint compatible with the DS90CR484.

The chipset is an ideal solution to solve EMI and interconnect size problems for high-throughput point-to-point applications.

For more details, please refer to the "Applications Information" section of this datasheet.

Features

  • Up to 6.384 Gbps throughput
  • 66MHz to 133MHz input clock support
  • Reduces cable and connector size and cost
  • Cable Deskew function
  • DC balance reduces ISI distortion
  • For point-to-point backplane or cable applications
  • Low power, 890 mW typ at 133MHz
  • Flow through pinout for easy PCB design
  • +3.3V supply voltage
  • 100-pin TQFP package
  • Conforms to TIA/EIA-644-A-2001 LVDS Standard

Reliability Metrics

Part Number Process Early Failure Rate - Rejects Sample Size (EFR) PPM * Rel. Rejects Device Hours Long Term Failure Rates (FITS) MTTF
DS90CR486VSCS3509200003000001284821603
DS90CR486VSXCS3509200003000001284821603

For more information on Reliablitity Metrics, please click here.


[Information as of 15-Jan-2004]