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CLC018  Product Folder

8 x 8 Digital Crosspoint Switch, 1.485 Gbps
Generic P/N 018
General
Description
Features Datasheet Package
& Models
Samples
& Pricing
Application
Notes

Parametric Table Parametric Table
Temperature Min (deg C) -40 
Temperature Max (deg C) 85 
Data Rate (Mbps) 1400 
Supply Voltage (Volt)
OtherSupply Voltage 5V or -5.2V 
Supply Current (mA) 157 
OtherSupply Current
Output Swing (Volt) .80 
Power Dissipation (Watt) .85 
Jitter (ps) 50 
Rise/Fall Times (ps) 250 

Datasheet

TitleSize in KbytesDate
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CLC018 8 x 8 Digital Crosspoint Switch, 1.485 Gbps 237 Kbytes 24-Jul-01 View Online Download Receive via Email
CLC018 8 x 8 Digital Crosspoint Switch, 1.485 Gbps (JAPANESE)
284 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
CLC018AJVJQPQFP64StatusFull productionN/AN/A24 Hour Samples
Buy Now
1K+$18.70tray
of
84
NSUZXYYTT
CLC018AJVJQ
5-8 weeks5000

Obsolete Parts

Obsolete PartAlternate Part or SupplierSourceLast Time Buy Date
CLC018PCASM
GX9533
Gennum
09/03/2002
CLC018PCASM
S2016
AMCC
09/03/2002
CLC018PCASM
TQ8016
TriQuint
09/03/2002
CLC018PCASM
TQ8017
TriQuint
09/03/2002

General Description

National's Comlinear CLC018 is a fully differential 8x8 digital crosspoint switch capable of operating at data rates exceeding 1.485 Gbps per channel. Its non-blocking architecture utilizes eight independent 8:1 multiplexers to allow each output to be independently connected to any input and any input to be connected to any or all outputs. Additionally, each output can be individually disabled and set to a high-impedance state. This TRI-STATE feature allows flexible expansion to larger switch array sizes.

Low channel-to-channel crosstalk allows the CLC018 to provide superior all-hostile jitter of 50 psPP. This excellent signal fidelity along with low power consumption of 850 mW make the CLC018 ideal for digital video switching plus a variety of data communication and telecommunication applications.

The fully differential signal path provides excellent noise immunity, and the I/Os support ECL and PECL logic levels. In addition, the inputs may be driven single-ended or differentially and accept a wide range of common mode levels including the positive supply. Single +5V or -5V supplies or dual +5V supplies are supported. Dual supply mode allows the control signals to be referenced to the positive supply (+5V) while the high-speed I/O remains ECL compatible.

The double row latch architecture utilized in the CLC018 allows switch reprogramming to occur in the background during operation. Activation of the new configuration occurs with a single "configure" pulse. Data integrity and jitter performance on unchanged outputs are maintained during reconfiguration. Two reset modes are provided. Broadcast reset results in all outputs being connected to input port DI0. TRI-STATE Reset results in all outputs being disabled.

The CLC018 is fabricated on a high-performance BiCMOS process and is available in a 64-lead plastic quad flat pack (PQFP).

Features

  • Fully differential signal path
  • Non-Blocking
  • Flexible expansion to larger array sizes with very low power
  • Single +5/-5V or dual ±5V operation
  • TRI-STATE outputs
  • Double row latch architecture
  • 64-lead PQFP package

Key Specification

  • High speed: >1.485 Gbps
  • Low jitter: <50 psPP for rates <500 Mbps <100 ps PP for rates <1.485 Gbps
  • Low power; 850 mW with all outputs active
  • Fast output edge speeds: 250 ps

Applications

  • Serial digital video routing: SMPTE 259M for SD rates SMPTE 292M for HD rates
  • Telecom/datacom switching
  • ATM SONET

Application Notes

TitleSize in KbytesDate
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CLC018EB: CLC018EB CLC018 Evaluation Board 495 Kbytes 6-Feb-98 View Online Download Receive via Email
CLC018EB CLC018 Evaluation Board (JAPANESE)
428 Kbytes   View Online Download Receive via Email

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

[Information as of 15-Jan-2004]