Vendor: SMIC Category: Register File

55LL general One-port Register File compiler with HVT bit cell.

55LL general One-port Register File compiler with HVT bit cell.

SMIC 55nm LL In Production View all specifications

Overview

55LL general One-port Register File compiler with HVT bit cell.

Silicon Options

Foundry Node Process Maturity
SMIC 55nm LL In Production

Specifications

Identity

Part Number
S55NLLG1PH
Vendor
SMIC
Type
Silicon IP

Provider

HQ: China

Learn more about Register File IP core

Design and Development of a Neuromorphic Silicon Suite: PVT Sensing, Stochastic LIF Inference, On-Chip STDP Learning, and Crossbar Programming

The authors present four interface-compatible digital IP blocks implemented as standard-cell CMOS on the SkyWater 130 nm process: a process, voltage and temperature (PVT) sensor built from five selectable ring oscillators that also provides a jitter-based true-random-number generator and a frequency-bounds health monitor; a stochastic leaky integrate-and-fire (LIF) neuron with a configurable LFSR, a programmable activation table, and a refractory period; an on-chip spike-timing-dependent plasticity (STDP) controller with a programmable curve and reward-modulated, eligibility-trace, and anti-Hebbian modes; and a memristive-crossbar controller supporting forming, set, reset, read, and automated current-voltage sweep with current-compliance limiting and half-select biasing.

Memory Safety Features Impact on Ibex based processor area

Memory safety is a critical concern for modern embedded systems, particularly in security-sensitive applications. This post explores the area impact of adding memory safety extensions to the Ibex RISC-V core, focusing on Physical Memory Protection (PMP) and Capability Hardware Enhanced RISC Instructions for embedded devices (CHERIoT). We synthesise the extended Ibex® cores using a commercial tool targeting the open FreePDK45 process and provide a detailed area breakdown and discussion of the results.

Analyzing Modern NVIDIA GPU cores

This paper reverse engineers modern NVIDIA GPU cores, unveiling many key aspects of its design and explaining how GPUs leverage hardware-compiler techniques where the compiler guides hardware during execution. In particular, it reveals how the issue logic works including the policy of the issue scheduler, the structure of the register file and its associated cache, and multiple features of the memory pipeline.

Frequently asked questions about Register File IP cores

What is 55LL general One-port Register File compiler with HVT bit cell.?

55LL general One-port Register File compiler with HVT bit cell. is a Register File IP core from SMIC listed on Semi IP Hub. It is listed with support for smic In Production.

How should engineers evaluate this Register File?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Register File IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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