Vendor: Actt Category: MTP

16K16 MTP

XRS013LGCLFLASH_16K16 is a logic compatible embedded non-volatile memory IP with 16K16 ROM density.

SMIC 130nm G Silicon Proven View all specifications

Overview

XRS013LGCLFLASH_16K16 is a logic compatible embedded non-volatile memory IP with 16K16 ROM density. This IP could be used for code storage, firmware update, parameter setting, trimming and calibration, etc

Key features

  • IP macro size: 1.44mm2,
  • sector size: 2K bit;
  • Endurance: 10K cycles;
  • Data retention: 10 years;
  • Temperature range: -40~85C for orperation, -50~125C for storage
  • Power supply: 1.2V, 3.3V
  • Access time: 45ns

Benefits

  • Cost saving compared to eflash technology

Applications

  • MCU, Touch panel, RFIC, ASIC

What’s Included?

  • Technical documents,GDS hard macro to foundry for IP merge

Silicon Options

Foundry Node Process Maturity
SMIC 130nm G Silicon Proven

Specifications

Identity

Part Number
XRS013LGCMTP_16K16A
Vendor
Actt
Type
Silicon IP

Provider

Actt
HQ: China
Actt is a silicon IP vendor founded in 2011, specializing in low power physical IPs . Our IP portfolio includes ultra low power analog & mixed-signal IP, High Reliability eNVM IP, Wireless RF IP, Wired Interface IP. With over one hundred issued patents worldwide, Actt has developed over 1000 IPs, and established partnership with more than 30 foundries worldwide. Our product has been widely used in IoT, smart home, automotive, smart power, wearables, medical electronics, industrial and other applications. Actt is devoted to providing cutting edge innovative silicon IPs, our vision is to be a excellent world-class silicon IP partner.

Learn more about MTP IP core

How to Elevate RRAM and MRAM Design Experience to the Next Level

This article will explore the potential advantages of RRAM and MRAM in various applications and elucidate why such new technologies are imperative to address future memory demands, as well as some challenges designers may encounter in the implementation.

Unleashing EEPROM Potential by Going Embedded: Introducing eMemory's NeoEE

EEPROM memory, which recently celebrated its 50th birthday, continues to defy obsolescence. Despite its age, EEPROM remains a mature, reliable, and affordable technology for many electronic systems. As IC designers embed EEPROM onto chips, it has become an integral part of chip design, offering essential benefits to applications such as MCU, PMIC, sensors, and RFID tags.

Calibrate and Configure your Power Management IC with NVM IP

Power Management Integrated Circuits (PMICs) are the first to turn on and the last to turn off in a system. They perform the task of delivering the right voltage to component chips by regulating or boosting the voltage levels to the component chips.

How eNVM Helps Power Controllers Be Smarter

PMIC designers have learned that using eNVMs like OTP in their chips can be very beneficial. A simple state machine with OTP can store power sequences and parameters, which can help manage the power between ICs efficiently.

NVM memory: A Critical Design Consideration for IoT Applications

The explosion of information that IoT devices will gather will require huge numbers of processors to process and manage the data from these IoT devices along with lots of low-cost, secure and reliable embedded non-volatile memory (NVM) for code storage, sensor trimming, device configuration, security keys and other storage functions. Virtually every one of the projected billions of IoT devices can use some amount of one-time programmable (OTP) memory.

Frequently asked questions about MTP Memory IP cores

What is 16K16 MTP?

16K16 MTP is a MTP IP core from Actt listed on Semi IP Hub. It is listed with support for smic Silicon Proven.

How should engineers evaluate this MTP?

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

×
Semiconductor IP