Vendor: VeriSilicon Microelectronics (Shanghai) Co., Ltd. Category: SRAM

SMIC 0.13um High-Speed Synchronous Single-Port/Dual-Port SRAM

VeriSilicon SMIC 0.13um High-Speed Synchronous Single-Port/Dual-Port SRAM optimized for Semiconductor Manufacturing International…

Overview

VeriSilicon SMIC 0.13um High-Speed Synchronous Single-Port/Dual-Port SRAM optimized for Semiconductor Manufacturing International Corporation (SMIC) 0.13um Logic 1P8M Salicide 1.2/2.5(3.3)V process. While satisfying speed and power requirements, it was optimized for area efficiency.
VeriSilicon SMIC Synchronous Single-Port/Dual-Port SRAM uses four layers within the blocks and supports metal 6, 7 or 8 as the top metal. Dummy bit cells are designed in with the intention to enhance reliability.

Key features

  • Single or Dual Read/Write Ports
  • High Density
  • High Speed
  • Size Sensitive Self-time Delay for Fast Access Time
  • Automatic Power Down
  • Tri-state Output
  • Write mask function

What’s Included?

  • Databook in electronic format
  • Verilog models and Synopsys synthesis models
  • Candence Silicon Ensenble Abstracts (LEF), Avanti! Apollo data, GDS II, LVS netlist

Silicon Options

Foundry Node Process Maturity
SMIC 130nm G

Specifications

Identity

Part Number
SMIC13-SRAM
Vendor
VeriSilicon Microelectronics (Shanghai) Co., Ltd.
Type
Silicon IP

Provider

Learn more about SRAM IP core

Frequently asked questions about SRAM IP cores

What is SMIC 0.13um High-Speed Synchronous Single-Port/Dual-Port SRAM?

SMIC 0.13um High-Speed Synchronous Single-Port/Dual-Port SRAM is a SRAM IP core from VeriSilicon Microelectronics (Shanghai) Co., Ltd. listed on Semi IP Hub. It is listed with support for smic.

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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