Sofics Datasheet – TSMC 22nm 1.0V, 1.2V & 1.8V GPIO

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This specific IP macro is designed in TSMC 22nm and can be ported to other technologies upon request using Sofics in-house design tool flow.

DS-TS22N-1V0-1V2-1V8-GPIO

Key Highlights

  • Broad portfolio of IO configurations from a single base architecture
  • Modular design enables fast and reliable turnaround and low NRE
  • Proven across multiple advanced nodes
  • Optimized for performance, power, and area trade-offs Value

Details

ParameterValue
VDD1.8V – 3V3 ±10%
VDDIO1.0 ±10%
1.2 ±10%
1.8 ±10%
Temperature Tj-40°C to 125°C

Key Features

ParameterValue
Maximum bit rate50MBaud/s (other options available)
Power consumption1nA
Drive strength4/8mA (other options available)
ESD robustness2kV HBM | 500V CDM

Area

TypeSize [μm²]
IO6050

Summary

Sofics specialty I/Os offer configurable GPIOs with multi-voltage support, over-voltage tolerance (OVT), and high-speed or ultra-low-power modes. Designed for advanced nodes, they enable reliable interfacing between low-voltage cores and higher-voltage or legacy systems.

An integrated voltage regulator ensures stable operation across wide voltage ranges, for auxiliary supply domains, supporting multi-voltage and OVT functionality without external components.

Pin Schematic

Sofics Datasheet – TSMC 22nm GPIO pin schematic

Features

  • Overvoltage tolerant design
  • Supports multiple supply voltages
  • Input enable/disable
  • Tri-state output
  • Pull select | Pullup/Pulldown
  • Compatible with TSMC I/O ring
  • Integrated voltage regulator
  • Other analog features such as slew rate control, fail-safe, drive strength options and more

Sofics offers a broad portfolio of configurable specialty I/Os enabling flexible integration across multiple voltage domains and applications. Explore our specialty GPIO circuits and TSMC IP solutions. Additional variants and features can be supported upon request, allowing fast customization through minimal design changes. For more information, visit www.sofics.com or contact us at bd@sofics.com.

Sofics proprietary and confidential © 2026

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