Vendor: Dolphin Semiconductor Category: SRAM

Single Port SRAM compiler - Memory optimized for ultra high density and low power - 3ML- compiler range up to 320 k

Foundry sponsored - Single Port SRAM compiler - TSMC 55 nm HV - Memory optimized for ultra high density and low power - 3ML- comp…

Overview

Foundry sponsored - Single Port SRAM compiler - TSMC 55 nm HV - Memory optimized for ultra high density and low power - 3ML- compiler range up to 320 k

Key features

  • Reach the highest density
  • Thanks to smart periphery design
  • using High density Pushed Rules Foundry bitcell
  • use only 3 metal levels inside the memory
  • Extend the battery life
  • Designed with partitioned array to reach ultra low power consumption at 1.2 V
  • Support stand by mode
  • Make the integration easier
  • MUX option enabling several performance tradeoffs and form factor
  • Data range flexibility allows easy addition of bits for
  • ECC purposes
  • Address range flexibility allows easy addition of single rows for redundancy purposes
  • Enable right on 1st pass design, the Dolphin integration quality
  • Complete mismatch validation of the memory architecture taking in account local and global dispersion
  • Extended validation for high coverage rate of the compiler
  • Silicon proven per TSMC 9000 quality standard
  • Decrease of Time-To-Market
  • Multi foundries support using the same architecture

Specifications

Identity

Part Number
SpRAM-LYRA-NV-HD.b-SVT.LVT-SVT_TSMC_55nm_HV
Vendor
Dolphin Semiconductor
Type
Silicon IP

Files

Note: some files may require an NDA depending on provider policy.

Provider

Learn more about SRAM IP core

New Power Management IP Solution Can Dramatically Increase SoC Energy Efficiency

This Position Paper describes a family of Power Management IP solutions integrated by Dolphin Integration’s customers into their SoC to drastically improve Energy Efficiency (EE). SoC performance metric is changing, moving from pure performance metric (GHz or MIPS) to performance efficiency and minimum power consumption. This new metric, already crucial for IoT or mobile devices, is becoming key in various applications, like automotive, embedded or space.

Improving Battery-Powered Device Operation Time Thanks To Power Efficient Sleep Mode

Allowing battery-powered devices to run, without battery recharge, for years rather than months, partakes in enhancing significantly end-user satisfaction and is a key point to enabling the emergence of IoT applications. Numerous applications, such as M2M, BLE, Zigbee…, have an activity rate (duty cycle) such that the power consumption in sleep mode dominates the overall current drawn by the SoC (System on Chip). For such applications, the design of the “Always-On power domain" (a.k.a AON power domain) is pivotal.

Cache Evaluation Software: A Dynamically Configurable Cache Simulator

The memory hierarchy (including caches and main memory) can consume as much as 50% of an embedded system power. This power is very application dependent, and tuning caches for a given application is a good way to reduce power consumption. However application programs are complex and include many subroutines, each of them having their own optimal cache configuration. We developed a low power dynamically reconfigurable cache controller and its simulator called Cache Evaluation Software.

Frequently asked questions about SRAM IP cores

What is Single Port SRAM compiler - Memory optimized for ultra high density and low power - 3ML- compiler range up to 320 k?

Single Port SRAM compiler - Memory optimized for ultra high density and low power - 3ML- compiler range up to 320 k is a SRAM IP core from Dolphin Semiconductor listed on Semi IP Hub.

How should engineers evaluate this SRAM?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this SRAM 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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