Z53C8003PSG

Z53C8003PSG

  • Description:IC SCSI CMOS 48DIP
  • Series:Z53C80

SKU:040236ba6eea Category: Brand:

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Product Detailed Parameters

  • Description:IC SCSI CMOS 48DIP
  • Series:Z53C80
  • Mfr:Zilog
  • Package:Tray
  • Type:SCSI
  • Number of Terminations:8
  • Voltage - Supply:4.75V ~ 5.25V
  • Operating Temperature:0°C ~ 70°C
  • Mounting Type:Through Hole
  • Package / Case:48-DIP (0.600", 15.24mm)
  • Supplier Device Package:48-DIP

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Z53C8003PSG

Buying Guide
Summary

Zilog Z53C8003PSG is an electronic component in Signal Terminators category. Key specs: description: IC SCSI CMOS 48DIP; series: Z53C80; type: SCSI; packaging: Tray; supply: 4.75V ~ 5.25V; temperature: 0°C ~ 70°C; package/case: 48-DIP (0.600", 15.24mm); mounting: Through Hole.

Selection Notes
  • For Z53C8003PSG, confirm package/case 48-DIP (0.600", 15.24mm), mounting Through Hole to ensure footprint compatibility.
  • For Z53C8003PSG, validate the operating temperature range (0°C ~ 70°C) against your environment.
  • For Z53C8003PSG, check the supply voltage requirement (4.75V ~ 5.25V) and any rail tolerance constraints.
FAQ

What should I provide for an accurate quote for Z53C8003PSG?
Send the part number (Z53C8003PSG), quantity, target delivery date, and any required packaging or documentation.

Who is the manufacturer/brand for Z53C8003PSG?
Zilog

What is the packaging of Z53C8003PSG?
Tray

What is the operating temperature range of Z53C8003PSG?
0°C ~ 70°C

Application Scenarios
In the Signal Terminators category, Zilog Z53C8003PSG is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. In many systems, careful use of interface logic reduces integration risk by making timing and signal integrity easier to validate. They are valuable when interface compatibility and hardware timing must be guaranteed rather than "best effort". In high-speed parallel and serial buses, termination controls reflections so setup/hold margins remain stable across cable and backplane variants. In memory and FPGA interfaces, well-chosen termination reduces ringing and cross-talk that otherwise causes sporadic bit errors in production. In test and measurement, controlled impedance and termination improve repeatability when long probes and fixtures change loading conditions. Overall, it supports long-term maintainability by using clear selection criteria and repeatable validation practices.
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