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Embedded Memories Semiconductor IP

Embedded memories play a crucial role in the architecture of modern electronic devices, offering storage and retrieval capabilities that are integral to processor function and data management. In Silicon Hub's Memory & Logic Library, the Embedded Memories category encompasses a wide variety of semiconductor IPs designed to meet these needs in diverse applications, from consumer electronics to industrial systems.

The primary function of embedded memories is to store and manage data internally within a device, which is essential for efficient processing and quick data access. These semiconductor IPs are typically integrated within a system on chip (SoC) to optimize performance and minimize latency compared to off-chip memory solutions. This integration helps improve overall device performance, reduce power consumption, and enhance the speed of data processing.

Common types of embedded memories available in this category include SRAM (Static Random Access Memory), DRAM (Dynamic Random Access Memory), MRAM (Magnetic Random Access Memory), and non-volatile memory types like Flash and EEPROM. Each type offers distinct advantages, such as high speed in SRAM, lower power consumption in DRAM, or the ability to retain data without power in non-volatile memories. These memory IPs are utilized in a plethora of products from smartphones and tablets to automotive systems and IoT devices, where compact, reliable, and efficient memory solutions are paramount.

Developers seeking to enhance computational efficiency and data handling capabilities in their designs will find this category indispensable. By choosing the right embedded memory IP from our Memory & Logic Library, manufacturers can create products that meet the demanding requirements of modern applications, ensuring reliability and excellent performance in a competitive market.

All semiconductor IP

NVMe Host Controller IP Core

The NVMe Host Controller from iWave Global offers an advanced solution for managing NVMe drive interfaces in computing systems. This controller is designed to facilitate the high-speed data exchange that NVMe drives demand, streamlining operations across data-centric applications. Engineered for scalability and performance, the NVMe Host Controller supports high data throughput, ensuring quick access and transfer of data between storage devices and host systems. Its design caters to the demands of modern computational environments where rapid data retrieval and storage are critical. The controller is integral in systems requiring high-performance storage solutions, and its support for multiple interfaces underscores its adaptability and broad applicability in data-intensive industries such as enterprise storage and high-performance computing.

iWave Global
Embedded Memories, Flash Controller
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16bit 16KSPS Sigma-Delta ADC

The 16-bit Sigma-Delta ADC achieves a conversion rate of 16KSPS, leveraging SMIC's 55nm 2P7M CMOS technology. It incorporates a programmable gain feature ranging from 0 to 50dB alongside a configurable microphone bias. Supporting both mono audio input and four channels of fully differential inputs, this ADC delivers precise analog signal conversion. Boasting high signal quality verified by a signal-to-noise ratio (SNR) of 90dB, this component is optimized for applications within the audio domain, ensuring high fidelity and low power operation, ideal for compact audio processing solutions.

Leo LSI Co., Ltd.
SMIC
55nm
A/D Converter, D/A Converter, Embedded Memories
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ReRAM Memory

CrossBar's ReRAM Memory brings a revolutionary shift in the non-volatile memory sector, designed with a straightforward yet efficient three-layer structure. Comprising a top electrode, a switching medium, and a bottom electrode, ReRAM holds vast potential as a multiple-time programmable memory solution. Leveraging the resistive switching mechanism, the technology excels in meter-scale data storage applications, integrating seamlessly into AI-driven, IoT, and secure computing realities. The patented ReRAM technology is distinguished by its ability to perform at peak efficiency with notable read and write speeds, making it a suitable candidate for future-facing chip architectures that require swift, wide-ranging memory capabilities. Unprecedented in its energy-saving capabilities, CrossBar's ReRAM slashes energy consumption by up to 5 times compared to eFlash and offers substantial improvements over NAND and SPI Flash memories. Coupled with exceptional read latencies of around 20 nanoseconds and write times of approximately 12 microseconds, the memory technology outperforms existing solutions, enhancing system responsiveness and user experiences. Its high-density memory configurations provide terabyte-scale storage with minimal physical footprint, ensuring effective integration into cutting-edge devices and systems. Moreover, ReRAM's design permits its use within traditional CMOS manufacturing processes, enabling scalable, stackable arrays. This adaptability ensures that suppliers can integrate these memory solutions at various stages of semiconductor production, from standalone memory chips to embedded roles within complex system-on-chip designs. The inherent simplicity, combined with remarkable performance characteristics, positions ReRAM Memory as a key player in the advancement of secure, high-density computing.

CrossBar Inc.
CPU, Embedded Memories, Embedded Security Modules, Flash Controller, I/O Library, Mobile SDR Controller, NAND Flash, SDRAM Controller, Security Processor, SRAM Controller, Standard cell
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Toggle MRAM Technology

Toggle MRAM technology from Everspin facilitates reliable non-volatile memory solutions ideal for high-performance, demanding environments. Known for its durability and speed, Toggle MRAM provides solutions that bridge the gap between volatile and solid-state storage. This technology is particularly useful for applications requiring fast data retention and retrieval, ensuring integrity even in power failure scenarios. Due to its robust framework, Toggle MRAM has proven indispensable in industries such as aerospace, where the reliability of data storage can be crucial. The non-volatility offers the capability to store data even when powered off, a feature much appreciated in dedicated electronic systems and embedded applications. Furthermore, Toggle MRAM supports a myriad of interfaces, catering to broad industrial and commercial needs. Its architecture ensures it remains versatile and adaptable to continuous technological advancements, making it a future-proof solution for various applications. This blend of performance, reliability, and adaptability makes Toggle MRAM a cornerstone technology in Everspin's suite.

Everspin Technologies
Embedded Memories, SRAM Controller
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Memory

Dolphin Technology offers a comprehensive range of memory IP products, catering to diverse requirements in semiconductor design. These products include a variety of memory compilers, specialty memory, and robust memory test and repair solutions such as Memory BIST. Designed to meet the demands of contemporary low-power and high-density applications, these IPs are built to work across a broad spectrum of process technologies. Advanced power management features, like light and deep sleep modes and dual rails, enable these products to tackle even the toughest low-leakage challenges. What sets these products apart is their flexibility and adaptability, evident in the support for different memory types and process nodes. Dolphin Technology’s memory IPs benefit from seasoned design teams that have proven their mettle in silicon across several generations. Thus, these IPs are not only versatile but also reliable in serving a wide variety of industry needs for technology firms worldwide. Clients can expect memory solutions that are fine-tuned for both power efficiency and performance. Additional capabilities such as power gating cater to ultra-low power devices while achieving a high level of device integration and compatibility. The specialized focus on low noise and rapid cycle times makes these memory solutions highly effective for performance-driven applications. These features collectively make Dolphin Technology’s memory IP an invaluable asset for semiconductor designers striving for innovation and excellence.

Dolphin Technology
TSMC
28nm, 32/28nm, 55nm, 65nm
Embedded Memories, Flash Controller, SDRAM Controller
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TwinBit Gen-1

TwinBit Gen-1 is NSCore's pioneering solution in embedded non-volatile memory technology, optimized for seamless integration into CMOS logic processes across nodes ranging from 180nm to 55nm. Known for its robust endurance performance, it supports over 10,000 program/erase cycles, making it highly reliable for repeated usage. This IP is designed without necessitating any additional masks or process steps, which aligns with NSCore’s ethos of simplifying the integration process. TwinBit Gen-1's flexible memory configuration, spanning 64 bits up to 512K bits, ensures its applicability in a wide array of domains. From enabling secure key storage to supporting analog trimming and system switches on ASICs/ASSPs, it offers a broad spectrum of functional capabilities, making it ideally suited for modern IoT devices and embedded systems. With built-in test circuits that facilitate stress-free test environments and automotive-grade reliability, TwinBit Gen-1 presents a formidable option for applications that demand low-voltage and low-power operations. Its alignment with standard IPs and lack of additional process overhead also contribute to its attractive development turnaround time and cost-effectiveness.

NSCore
All Foundries
65nm, 180nm
DDR, Embedded Memories, NAND Flash, ONFI Controller, SDRAM Controller, SRAM Controller
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EverOn

EverOn is an ultra-low voltage SRAM developed by sureCore to cater to modern applications requiring extensive dynamic and static power savings. Built on the 40ULP BULK CMOS process, EverOn achieves up to 80% reductions in dynamic power utilization while cutting static power draw by 75%, making it highly efficient for IoT and wearable technology. Operational from 0.6V to 1.21V, EverOn supports a cycle time as short as 20MHz at its lowest voltage, scaling impressively to over 300MHz at its highest. This voltage scaling unlocks robust performance capabilities in energy-constrained environments, aligning with the trend towards increasingly sophisticated, low-power always-on devices. EverOn incorporates advanced techniques such as subdividing memory into banks for flexible power management and synchronized single-port operation, which enhances versatility. Its high-density bit cells facilitate reduced area footprints while the patented SMART-Assist technology ensures robust operation even at the retention voltage, supporting extended battery life applications in emerging markets.

sureCore Ltd.
TSMC
180nm
Embedded Memories, Processor Cores, SDRAM Controller, SRAM Controller, Standard cell
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YouDDR

YouDDR is a comprehensive technology encompassing not only the DDR controller, PHY, and I/O but also features specially developed tuning and testing software. It provides a complete subsystem solution to address the complex needs of DDR memory interfaces. The integrated approach allows for cohesive synchronization between the controller and PHY, optimizing performance and reliability. The YouDDR technology ensures seamless integration into a variety of platforms, supporting a broad range of applications from simple consumer electronics to advanced computing systems. By offering enhanced tuning capabilities, it allows developers to fine-tune performance metrics, ensuring that systems can operate within their optimal performance windows. Developers utilizing YouDDR benefit from a thoroughly tested and verified subsystem that significantly simplifies the design cycle. This not only reduces development time but also enhances the likelihood of first-pass success, providing a competitive edge in manufacturing efficiency and product launch speed.

Brite Semiconductor (Shanghai) Corporation Limited
DDR, Embedded Memories, eMMC, Flash Controller, HMC Controller, Mobile DDR Controller, SDRAM Controller, SRAM Controller, Standard cell
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ReRAM IP Cores for Embedded NVM in MCU & SOCs

CrossBar's ReRAM IP Cores present a sophisticated solution for enhancing embedded NVM within Microcontroller Units (MCUs) and System-on-Chip (SoC) architectures. Designed to work with advanced semiconductors and ASIC (Application-Specific Integrated Circuit) designs, these cores offer efficient integration, performance enhancement, and reduced energy consumption. The technology seeks to equip contemporary and next-generation chip designs with high-speed, non-volatile memory, enabling faster computation and data handling. Targeting the unique needs of IoT, mobile computing, and consumer electronics, the ReRAM IP Cores deliver scalable memory solutions that exceed traditional flash memory limits. These cores are built to be stackable and compatible with existing process nodes, highlighting their versatility. Furthermore, the integration of ReRAM technology ensures improved energy efficiency, with the added benefit of low latency data access—a critical factor for real-time applications and processing. These IP cores provide a seamless route to incorporating high-performance ReRAM into chips without major redesigns or adjustments. As the demand for seamless, secure data processing grows, this technology enables manufacturers and designers to aptly meet the challenges presented by ever-evolving digital landscapes. By minimizing energy usage while maximizing performance capabilities, these IP cores hold potential for transformative applications in high-speed, secure data processing environments.

CrossBar Inc.
12 Categories
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AndeShape Platforms

The AndeShape Platforms are designed to streamline system development by providing a diverse suite of IP solutions for SoC architecture. These platforms encompass a variety of product categories, including the AE210P for microcontroller applications, AE300 and AE350 AXI fabric packages for scalable SoCs, and AE250 AHB platform IP. These solutions facilitate efficient system integration with Andes processors. Furthermore, AndeShape offers a sophisticated range of development platforms and debugging tools, such as ADP-XC7K160/410, which reinforce the system design and verification processes, providing a comprehensive environment for the innovative realization of IoT and other embedded applications.

Andes Technology
Embedded Memories, Microcontroller, Processor Core Dependent, Processor Core Independent, Standard cell
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Secure OTP

Secure OTP by PUFsecurity offers a tamperproof data storage solution designed for the next generation of secure memory needs. It is an enhanced anti-fuse OTP memory that provides secure storage for key data across various forms, ensuring that data in transit, use, or rest remains protected. This technology integrates physical macros, a digital RTL controller, and a resilient anti-tamper shell to guard against hardware attacks. As IoT devices become increasingly susceptible to early-stage attacks, Secure OTP presents a reliable means to safely store sensitive data such as keys and boot code. By transitioning to this tamperproof storage format, devices can effectively mitigate vulnerabilities inherent in legacy storage systems, fortifying data security at the hardware level.

PUFsecurity
Embedded Memories, Embedded Security Modules, SRAM Controller
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Digital I/O

Certus Semiconductor's Digital I/O solutions are engineered to meet various GPIO/ODIO standards. These versatile libraries offer support for standards such as I2C, I3C, SPI, JEDEC CMOS, and more. Designed to withstand extreme conditions, these I/Os incorporate features like ultra-low power consumption, multiple drive strengths, and high levels of ESD protection. These attributes make them suitable for applications requiring resilient performance under harsh conditions. Certus Semiconductor’s offerings also include a variety of advanced features like RGMII-compliant IO cells, offering flexibility for different project needs.

Premium Vendor
Certus Semiconductor
GLOBALFOUNDRIES, Samsung, TSMC
55nm
AMBA AHB / APB/ AXI, Embedded Memories, I/O Library, I2C, Input/Output Controller, Receiver/Transmitter, SDRAM Controller, USB
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Bipolar-CMOS-DMOS (BCD) Technology for Power Management

BCD technology uniquely combines the traits of Bipolar, CMOS, and DMOS transistors to deliver efficient power management solutions. This technology is engineered to handle a range of power requirements, making it a versatile choice for applications spanning from consumer electronics to industrial equipment. The blend of these transistor types offers both high voltage handling capabilities and precise digital control. Bipolar transistors contribute excellent analog performance, while CMOS transistors provide intricate digital logic benefits. DMOS transistors add high current and voltage tolerance, resulting in a robust technology that excels in power-driving applications. This combination allows devices to efficiently manage power dissipation, significantly reducing energy waste and enabling longer battery life for portable devices. The BCD process supports the implementation of complex circuits with enhanced reliability. It is well-suited for automotive industries and consumer products requiring solid state power control. With the integration of multiple transistor types, the technology advances superior power management solutions, offering improved efficiency, thermal performance, and scalability. Tower Semiconductor ensures this process is backed by comprehensive design resources, allowing customers to harness the full potential of BCD technology for diverse applications.

Tower Semiconductor Ltd.
Tower
65nm, 130nm, 180nm
Analog Subsystems, DC-DC Converter, Embedded Memories, Power Management, SDRAM Controller, Standard cell, Temperature Sensor
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aiData

aiData is designed to streamline the data pipeline for developing models for Advanced Driver-Assistance Systems and Automated Driving solutions. This automated system provides a comprehensive method of managing and processing data, from collection through curation, annotation, and validation. It significantly reduces the time required for data processing by automating many labor-intensive tasks, enabling teams to focus more on development rather than data preparation. The aiData platform includes sophisticated tools for recording, managing, and annotating data, ensuring accuracy and traceability through all stages of the MLOps workflow. It supports the creation of high-quality training datasets, essential for developing reliable and effective AI models. The platform's capabilities extend beyond basic data processing by offering advanced features such as versioning and metrics analysis, allowing users to track data changes over time and evaluate dataset quality before training. The aiData Recorder feature ensures high-quality data collection tailored to diverse sensor configurations, while the Auto Annotator quickly processes data for a variety of objects using AI algorithms, delivering superior precision levels. These features are complemented by aiData Metrics, which provide valuable insights into dataset completeness and adequacy in covering expected operational domains. With seamless on-premise or cloud deployment options, aiData empowers global automotive teams to collaborate efficiently, offering all necessary tools for a complete data management lifecycle. Its integration versatility supports a wide array of applications, helping improve the speed and effectiveness of deploying ADAS models.

aiMotive
AI Processor, AMBA AHB / APB/ AXI, Audio Interfaces, Content Protection Software, Digital Video Broadcast, Embedded Memories, H.264, Processor Core Dependent, Vision Processor
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LEE Flash G2

Floadia's LEE Flash G2 transcends standard flash memory by blending the qualities of logic and memory. This provides a dual benefit of non-volatile performance with logic-level operation, achieved through its unique tri-gate transistor architecture. The G2 cell combines a SONOS transistor with switching transistors, offering high-speed, non-volatile SRAM capabilities. The G2 memory's design addresses one of the major challenges in memory technology: reducing power consumption. By employing a programming current that is substantially lower than conventional floating gate NVMs, it considerably lowers power demands. This technology allows for the memory and logic circuits to be connected directly, enabling more efficient chip architectures. Additionally, the LEE Flash G2 supports a novel application where it can function as Non-Volatile SRAM (NV-SRAM). This combination eliminates the need for dedicated flash blocks, thereby streamlining the microcontroller architecture and enabling rapid wake-up or sleep modes. Such a configuration enhances the overall efficiency of systems, especially in complex SOC and FPGA designs.

Floadia Corporation
Embedded Memories, Flash Controller, NAND Flash, SRAM Controller
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System IP

Ventana's System IP is a critical component for next-generation RISC-V platforms, providing essential support for integrating high-performance CPUs into sophisticated computing architectures. This IP block enables system-level functionality that aligns with the stringent demands of modern computing environments, from cloud infrastructures to advanced automotive systems. Equipped with comprehensive system management capabilities, the System IP includes crucial components such as memory management units and I/O handling protocols that enhance the overall efficiency and reliability of RISC-V-based systems. It is optimized for virtualization and robust security, essential for maintaining integrity in high-traffic data centers. The System IP supports seamless integration with Ventana's Veyron processor families, ensuring scalability and consistent performance under demanding workloads. Its design allows for easy customization, making it an ideal choice for companies looking to innovate and expand within the rapidly evolving field of high-performance computing.

Ventana Micro Systems
AMBA AHB / APB/ AXI, CXL, Embedded Memories, MIPI, Processor Core Independent
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PermSRAM

PermSRAM is a highly adaptive nonvolatile memory macro designed to operate on standard CMOS fabrication processes. It supports a variety of process nodes ranging from 180nm to 28nm and beyond. One of its key features is its ability to offer diverse functionalities such as one-time programmable ROM and pseudo multi-time PROM, along with a multipage configuration that greatly broadens its utility across different applications. A prominent attribute of PermSRAM is its security-oriented design. It incorporates a non-rewritable hardware safety lock for secure code storage, which ensures data integrity and tamper resistance. This product caters to a wide span of memory sizes, from 64 bits to a robust 512K bits, accommodating both minimal and extensive data storage requirements. PermSRAM's inherently stable yield and reliability are complemented by its automotive-grade data retention, making it ideal for demanding applications that require long-term data retention capability at high temperatures. Furthermore, it operates efficiently without the need for a charge pump in read operations, offering significant efficiency and area savings.

NSCore
All Foundries
28nm, 130nm
Embedded Memories, Flash Controller, NAND Flash, ONFI Controller, SRAM Controller
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Spectral CustomIP

Spectral CustomIP encompasses an expansive suite of specialized memory architectures, tailored for diverse integrated circuit applications. Known for breadth in memory compiler designs, Spectral offers solutions like Binary and Ternary CAMs, various Multi-Ported memories, Low Voltage SRAMs, and advanced cache configurations. These bespoke designs integrate either foundry-standard or custom-designed bit cells providing robust performance across varied operational scenarios. The CustomIP products are engineered for low dynamic power usage and high density, utilizing Spectral’s Memory Development Platform. Available in source code form, these solutions offer users the flexibility to modify designs, adapt them for new technologies, or extend capabilities—facilitating seamless integration within standard CMOS processes or more advanced SOI and embedded Flash processes. Spectral's proprietary SpectralTrak technology enhances CustomIP with precise environmental monitoring, ensuring operational integrity through real-time Process, Voltage, and Temperature adjustments. With options like advanced compiler features, multi-banked architectures, and standalone or compiler instances, Spectral CustomIP suits businesses striving to distinguish their IC offerings with unique, high-performance memory solutions.

Spectral Design & Test Inc.
GLOBALFOUNDRIES
22nm
Embedded Memories, I/O Library, Processor Core Dependent, SDRAM Controller, Standard cell
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TwinBit Gen-2

TwinBit Gen-2 represents the next evolution in NSCore's non-volatile memory offering, supporting process nodes from 40nm to 22nm and beyond. Maintaining the foundational benefits of its predecessor, TwinBit Gen-2 further elevates its efficiency with the inclusion of the Pch Schottky Non-Volatile Memory Cell, which facilitates ultra-low-power operations without additional masks or process steps. The Gen-2 variant is engineered with an increased focus on minimizing power consumption while ensuring strong functional performance. It is adept at handling a wide range of program/erase dynamics through controlled hot carrier injection, offering refined operational flexibility for diverse applications. This memory technology serves applications requiring robust data management in tightly constrained power scenarios. Like its predecessor, TwinBit Gen-2 excels in environments demanding longevity and durability, boasting comprehensive integration flexibility into existing systems. Its ability to harmonize cutting-edge non-volatile memory design with the demands of smaller process nodes makes it highly beneficial for forward-looking applications.

NSCore
All Foundries
22nm, 22nm FD-SOI
DDR, Embedded Memories, NAND Flash, ONFI Controller, SDRAM Controller, SRAM Controller
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12bit 1MSPS ADC

The 12-bit ADC with a maximum conversion rate of 1MSPS is designed on Samsung's 100nm LF6 CMOS technology. This ADC supports a wide operating range, with an analog supply voltage varying from 2.7V to a peak of 5.5V. It features a multi-channel configuration accommodating 16 single-ended inputs, offering extensive input range flexibility from the analog ground to the supply voltage. Alongside its high signal-to-noise ratio (SNR) of 70.7dB, the ADC provides robust performance for a diverse set of applications requiring reliable signal acquisition and conversion, ensuring data fidelity.

Leo LSI Co., Ltd.
Samsung
1000nm
A/D Converter, Analog Subsystems, Embedded Memories
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AHB-Lite Memory

The AHB-Lite Memory module is a fully parameterized component tailored for integration in AHB-Lite based designs. As a soft IP, it provides flexible and efficient on-chip memory access, offering a simple integration path into various system architectures. This memory module is crafted to support a wide array of applications that require dependable and swift data storage solutions. Roa Logic has designed this component to embody high reliability and operational efficiency. The memory’s design is optimized for quick data retrieval and storage, making it a critical component for applications that demand immediate access to data. Its adaptability accommodates different data storage requirements, ensuring that it aligns with the performance demands of contemporary embedded systems. The AHB-Lite Memory module guarantees seamless integration and stable operational capacity, reinforcing Roa Logic's dedication to offering solutions that drive system performance. Its configurable design ensures it's well-suited to both small-scale and expansive architectures, maintaining efficiency across diverse computing environments.

Roa Logic BV
DDR, Embedded Memories, SDRAM Controller
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High-Speed Low-Power SRAM

Designed to address the evolving power needs of integrated circuits, Xenergic's High-Speed Low-Power SRAM emerges as a leading solution for energy-conscious applications. By optimizing both dynamic power and leakage, this SRAM offers a 70% to 90% reduction in power usage, making it ideal for sensors, wearables, and other low-power devices. Its architecture allows for high efficiency in edge computing applications, minimizing latency while bringing computation closer to the data source.\n\nWith critical features like reduced leakage and dynamic power consumption, this SRAM ensures that your SoC stays competitive in terms of power efficiency. By enabling the SoC to serve multiple features without significant energy drain, it becomes a perfect match for always-on mobile and IoT applications, enhancing user convenience and experience. The SRAM integrates seamlessly into existing designs, aided by comprehensive memory interface views and support for a range of standard optional memory features.

Xenergic Ab
Embedded Memories, SDRAM Controller
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65nm 8ch 12bit 1MSPS Low power ADC

The 65nm 12-bit ADC provides an optimal balance of performance and power efficiency for modern semiconductor applications. Capable of managing a 1MSPS conversion rate, this ADC functions on an analog power supply between 2.4V and 3.6V and a digital supply from 1.08V to 1.32V. With low power consumption and compact design, it is suitable for systems where space and energy efficiency are paramount. Whether for data acquisition or sensor networks, the device is crafted to enhance battery-powered systems with reliable performance across varying operational conditions.

Leo LSI Co., Ltd.
UMC
65nm
A/D Converter, Embedded Memories
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IP Platform for Low-Power IoT

The silicon IP Platform for Low-Power IoT by Low Power Futures integrates pre-validated, configurable building blocks tailored for IoT device creation. It provides a turnkey solution to accelerate product development, incorporating options to employ both ARM and RISC V processors. With a focus on reducing energy consumption, the platform is prepared for various applications, ensuring a seamless transition for products from conception to market. The platform is crucial for developing smart IoT solutions that require secure and reliable wireless communications across industries like healthcare, smart home, and industrial automation.

Low Power Futures
12 Categories
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LEE Flash G1

The LEE Flash G1 from Floadia is designed as a cost-effective SONOS technology solution. This nonvolatile memory offers remarkable cost efficiency, employing a low-cost process that requires minimal additional masks, thus reducing fabrication complexity. The design ensures compatibility with existing semiconductor processes, making it economical without sacrificing quality or performance. This flash memory is built on a robust SONOS architecture, which stands out for its high reliability, a crucial factor in memory retention and endurance. The electric charge retention mechanism in SONOS is distinct from the traditional floating gate charge storage, offering superior reliability due to its resistance to leakage through defects. By utilizing Fowler Nordheim (FN) tunneling, the G1 guarantees minimal oxide damage and sustains a high level of performance even after many cycles. Additionally, the G1's design focuses on simplifying manufacturing processes by using common materials, allowing for seamless integration into existing foundry workflows. This ease of implementation, combined with its robustness and low power requirements, makes the LEE Flash G1 a key product in high-demand, cost-sensitive applications.

Floadia Corporation
Embedded Memories, Flash Controller, NAND Flash, SRAM Controller
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Xilinx Serial PROM Programming Solution

The Xilinx Serial PROM Programmer by Roman-Jones is a competitive solution designed to streamline the programming process for Xilinx Serial PROM devices. This acclaimed programmer is recognized for its affordability and ease of use, demonstrating exceptional compatibility with any Xilinx Serial PROM part. It operates through a simple parallel port interface, obviating the need for specialized interface cards. Users can benefit from software support across multiple platforms, including DOS and various Windows versions, and the device is powered conveniently by a 9-volt battery, eliminating the requirement for an AC adapter. This product includes an external programmer coupled with proprietary interface software, which has received certification and endorsement from Xilinx. Its setup is straightforward, allowing for seamless co-existence with existing printer connections using an AB switchbox. The package supports a range of industry-standard file formats such as Intel Hex, Motorola S-Record, and Binary files crafted by Xilinx compilers, catering to diverse programming needs. Further enhancing its utility, the programmer includes options for socket adapters, enabling compatibility with varying package types including the 8-pin DIP and additional configurations. This adaptability ensures the programmer fulfills a wide array of customization requirements, making it a versatile tool for any electronics professional working with Xilinx Serial PROMs.

Roman-Jones, Inc.
AMBA AHB / APB/ AXI, Embedded Memories, Receiver/Transmitter, SATA
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LEE Flash ZT

Offering a zero additional mask solution, LEE Flash ZT stands for a zero-technology-cost addition to Floadia’s flash memory repertoire. It is particularly valued for its minimal impact on manufacturing processes while maintaining robust performance attributes inherent to Floadia's memory products. This memory eliminates additional mask requirements in the production process, which not only reduces costs but also simplifies the manufacturing workflow. The ZT model effectively retains the essential features of robustness and high reliability, necessary for modern semiconductor applications, through its efficient architecture. In terms of functionality, the ZT adheres to high standards of charge retention and endurance, similar to other products in Floadia's lineup. With this design choice, Floadia ensures that the technology maintains the integrity and reliability expected from advanced embedded memory solutions, making it suitable for a wide array of industrial applications.

Floadia Corporation
Embedded Memories, Flash Controller, NAND Flash, SRAM Controller
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Non-Volatile Memory (NVM) Solutions

Tower Semiconductor's non-volatile memory solutions leverage cutting-edge design to enhance data retention and simplify integration within various devices. The solutions include advanced Y-Flash and e-Fuse technologies, offering reliable data storage options that retain information without a constant power supply. This makes them ideal for applications requiring persistent data, ranging from consumer electronics to critical industrial controls. The NVM solutions are designed to offer high endurance and retention periods, granting devices the capability to operate effectively across diverse environmental conditions. Y-Flash supports fast write and erase times, while e-Fuse enables secure, permanent programming options, prototyping a versatile memory solution suitable for field programming and personalization. In addition to their technological sophistication, these solutions are supported by a comprehensive suite of design resources including detailed libraries and validation data. This ensures seamless integration with existing architectures, allowing designers to rapidly bring enhancements to market. As such, Tower Semiconductor's NVM offerings signify a blend of reliability, adaptability, and innovation in modern data storage technology.

Tower Semiconductor Ltd.
Tower
65nm, 130nm, 180nm
Embedded Memories, Flash Controller, HBM, HMC Controller, I/O Library, NAND Flash, NVM Express, ONFI Controller, SDRAM Controller, SRAM Controller
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I/O

Analog Bits provides robust I/O solutions that are essential for the efficient transfer of signals between semiconductor devices and their external environment. These input/output interfaces are designed to meet the most demanding performance criteria, ensuring fast data rates and minimal signal distortion. Their I/O IP solutions can accommodate a variety of protocols, including high-speed digital interfaces and analog conversions, offering versatility and support for applications such as networking, data processing, and consumer electronics. By optimizing the signal integrity and electromagnetic compatibility, these I/Os enhance the overall system performance. Equipped with advanced features for low power consumption, these I/Os contribute to reducing the overall energy footprint of semiconductor devices, making them ideal for battery-operated devices and environmentally sensitive applications. Analog Bits' I/Os are comprehensively integrated to function seamlessly within mixed-signal environments, further broadening their application range.

Analog Bits
Samsung, TSMC
16nm, 20nm
AMBA AHB / APB/ AXI, Analog Multiplexer, D2D, Embedded Memories, I/O Library, Input/Output Controller, Interlaken, MIPI, Multi-Protocol PHY, Peripheral Controller, Receiver/Transmitter, USB
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CodaCache Last-Level Cache

CodaCache Last-Level Cache is an advanced, shared cache solution specifically designed to minimize memory latency and boost SoC performance. Its configurable nature allows it to be tailored to specific design needs, optimizing data flow and enhancing power efficiency across the chip. This cache helps overcome common SoC challenges related to timing closure, performance, and layout congestion by providing a flexible caching architecture that ensures effective data management and reliable operations. Its role in optimizing memory hierarchy enhances computational speeds and system reliability. CodaCache is particularly beneficial for applications that require rapid access to large data sets, ensuring that power consumption is minimized while maintaining high performance standards. Its versatility and efficiency make it a top choice for industries striving for high data throughput and low latency operations.

Arteris
AI Processor, AMBA AHB / APB/ AXI, Embedded Memories, Flash Controller, I/O Library, NAND Flash, ONFI Controller, SDRAM Controller, SRAM Controller, Standard cell, WMV
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LEE Fuse ZA

LEE Fuse ZA from Floadia offers a unique approach with its zero additional mask anti-fuse memory technology. Designed for one-time programmable (OTP) applications, this memory type is cost-efficient and easily adaptable to existing manufacturing processes without requiring additional masks. The ZA fuse is characterized by its reliable anti-fuse mechanism, providing secure data retention. It excels in applications requiring a permanent programming solution and offers high endurance due to its robust design. By eliminating the need for complex mask layers, the LEE Fuse ZA significantly cuts down production costs while maintaining superior performance. Its compatibility with standard CMOS processes further underscores its suitability for various implementations where cost efficiency and reliability are paramount. The design guarantees effective fuse operation, making the LEE Fuse ZA a popular choice for applications in diverse sectors needing a robust OTP solution.

Floadia Corporation
Embedded Memories, Flash Controller, NAND Flash, SRAM Controller
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DRAM Memory Modules

Avant Technology's DRAM Memory Modules are designed to meet the stringent requirements of industrial, commercial, and consumer applications. These JEDEC-compliant modules excel in environments like gaming, Point-of-Sale systems, kiosks, medical devices, and automation, where reliability and performance are critical. Avant's DRAM offerings include a wide variety of DIMMs, each tailored for different use cases with options for low voltage, high capacitance, and low power consumption, ensuring compatibility with diverse application needs. The DRAM modules come in various form factors such as UDIMM, SODIMM, ECC DIMM, and Mini DIMM, providing flexibility for integration into different systems. These form factors are equipped with interfaces such as DDR3, DDR4, and DDR5, enabling seamless performance upgrades and adaptations to newer technology standards. This adaptability is crucial for businesses seeking to maintain cutting-edge performance while managing costs. With a focus on durability and efficiency, Avant's DRAM memory solutions cater to a range of temperature conditions, making them suitable for both industrial and commercial use. Their robust design ensures prolonged lifespan and stability, a testament to Avant Technology's dedication to quality and reliability in memory solutions.

Avant Technology Inc.
DDR, Embedded Memories, eMMC, RLDRAM Controller, SDRAM Controller
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High Bandwidth Memory IP

Global Unichip Corp.'s High Bandwidth Memory solution is engineered to facilitate vast data transfer rates crucial for AI and high-performance computing tasks. This product is pivotal in reducing latency and increasing bandwidth, addressing performance bottlenecks often faced in data-intensive applications. Through the integration of advanced packaging technologies, the High Bandwidth Memory enables seamless communication between systems, enhancing operational efficiencies. The solution also supports multiple process nodes which allows for scalability across various semiconductor technologies. This adaptability ensures it meets diverse industry requirements from data centers to AI-driven applications. This IP’s design also promotes efficient thermal management, necessary for maintaining optimal function under high workloads. Emphasizing innovations in interconnectivity, the High Bandwidth Memory works hand in hand with other IPs in GUC’s portfolio, creating a comprehensive ecosystem for modern semiconductor solutions. Its design is aligned with global standards for memory solutions, ensuring broad compatibility and ease of integration into existing systems, leading to quicker deployment and reduced time-to-market.

Global Unichip Corp.
TSMC
10nm, 20nm, 28nm
DDR, Embedded Memories, eMMC, Flash Controller, HBM, NAND Flash, Processor Core Independent, RLDRAM Controller, SDRAM Controller, Standard cell
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Foundation IP

Dolphin Semiconductor's Foundation IPs are crafted to enhance the efficiency and cost-effectiveness of System-on-Chip (SoC) designs through robust offerings of embedded memories and standard-cell libraries. Specially designed for energy-efficient applications, these components help optimize space and power usage while ensuring the cutting-edge performance of modern electronic devices. Incorporated within Dolphin's Foundation IP portfolio are standard cells that allow chip designers to achieve up to 30% density gains at the cell level, compared to conventional libraries. Further, these components are engineered to support always-on applications with exceptionally low leakage rates. The Foundation IP suite optimizes SoC designs by delivering dramatically reduced leakage and area consumption, avoiding the additional cost and complexity of using a regulator. The memory compilers within Foundation IPs offer ultra-low power and high-density memory solutions, including SRAM and via-programmable ROMs. These are formulated to deliver up to 50% energy savings, providing flexibility with multi-power modes and adaptable to varied instances. With optimization for TSMC processes, Dolphin's Foundation IPs provide an essential backbone for creating innovative, efficient, and sustainable SoC products.

Dolphin Semiconductor
TSMC
All Process Nodes, 40nm, 180nm
Embedded Memories, I/O Library, Standard cell
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Vega eFPGA

The Vega eFPGA is a flexible programmable solution crafted to enhance SoC designs with substantial ease and efficiency. This IP is designed to offer multiple advantages such as increased performance, reduced costs, secure IP handling, and ease of integration. The Vega eFPGA boasts a versatile architecture allowing for tailored configurations to suit varying application requirements. This IP includes configurable tiles like CLB (Configurable Logic Blocks), BRAM (Block RAM), and DSP (Digital Signal Processing) units. The CLB part includes eight 6-input Lookup Tables that provide dual outputs, and also an optional configuration with a fast adder having a carry chain. The BRAM supports 36Kb dual-port memory and offers flexibility for different configurations, while the DSP component is designed for complex arithmetic functions with its 18x20 multipliers and a wide 64-bit accumulator. Focused on allowing easy system design and acceleration, Vega eFPGA ensures seamless integration and verification into any SoC design. It is backed by a robust EDA toolset and features that allow significant customization, making it adaptable to any semiconductor fabrication process. This flexibility and technological robustness places the Vega eFPGA as a standout choice for developing innovative and complex programmable logic solutions.

Rapid Silicon
CPU, Embedded Memories, Multiprocessor / DSP, Processor Core Independent, Vision Processor, WMV
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Cyclone V FPGA with Integrated PQC Processor

The Cyclone V FPGA with Integrated PQC Processor by ResQuant is a specialized product that comes pre-equipped with a comprehensive NIST PQC cryptography suite. This FPGA is tailored for applications requiring a robust proof-of-concept for quantum-safe implementations. It ensures seamless integration into existing systems, providing a practical platform for testing and deployment in quantum-secure environments. This product is available at a competitive price and represents an ideal starting point for entities looking to explore and adopt quantum-resilient technologies. Its configuration allows for straightforward implementation in diverse hardware infrastructures while offering a reliable option for organizations aiming to stay ahead in the evolving cyber security landscape. By incorporating the latest in cryptographic standards and ensuring vendor independence, the Cyclone V FPGA with Integrated PQC Processor by ResQuant effectively bridges current hardware technologies and future-proof security needs. It supports industry-wide applications, from IoT and ICT to automotive and military sectors, underscoring ResQuant's versatility in hardware security solutions.

ResQuant
All Foundries
All Process Nodes
13 Categories
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SuperFlash® Technology

SuperFlash® technology is distinguished by its proprietary split-gate Flash memory architecture, designed to deliver high performance with simplified integration into System-on-Chip (SoC) solutions. This technology ensures reliability and efficiency across various industrial applications. It offers compatibility with standard silicon CMOS and has been proven to possess high endurance and excellent data retention capabilities. Given its ability to withstand extreme temperatures while maintaining performance, SuperFlash® is ideal for applications in the automotive sector requiring stringent reliability standards.\n\nThis technology spans multiple process nodes, from 500nm down to 28nm, solidifying its flexibility and adaptability across different foundry platforms. With a distinct advantage of low power consumption, SuperFlash® emerges as a preferred choice for resource-constrained environments, such as IoT devices and smart cards. Its consistent performance in high-temperature conditions and immunity to stress-induced leakage current further underscore its robustness.\n\nThe adaptability of SuperFlash® technology is enhanced by tailored licensure options, which accommodate a wide array of business needs—from semiconductor manufacturers to fabless design firms. This licensing flexibility ensures that businesses of all sizes can effectively integrate SST's Flash solutions, supporting a diverse spectrum of applications spanning automotive to consumer electronics.

Silicon Storage Technology, Inc.
All Foundries, HHGrace, Samsung, SMIC, TSMC, UMC, X-Fab
22nm, 28nm, 40nm, 55nm, 65nm, 90nm, 130nm, 150nm, 180nm, 250nm
Embedded Memories, Flash Controller, NAND Flash, SDRAM Controller, SRAM Controller
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NuRAM Low Power Memory

The NuRAM Low Power Memory represents a state-of-the-art memory solution utilizing advanced MRAM technology. Engineered to provide rapid access times and extremely low leakage power, NuRAM is significantly more efficient in terms of cell area compared to traditional SRAM, being up to 2.5 times smaller. This makes it an ideal replacement for on-chip SRAM or embedded Flash, particularly in power-sensitive environments like AI or edge applications. The emphasis on optimizing power consumption makes NuRAM an attractive choice for enhancing the performance of xPU or ASIC designs. As modern applications demand higher efficiency, NuRAM stands out by offering crucial improvements in power management without sacrificing speed or stability. The technology offers a compelling choice for those seeking to upgrade their current systems with memory solutions that extend battery life and deliver impressive performance. NuRAM is particularly beneficial in environments where minimizing power usage is critical while maintaining high-speed operations. This makes it a preferred choice for applications ranging from wearables to high-performance computing at the edge.

Numem
DDR, Embedded Memories, SDRAM Controller, SRAM Controller
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SoC Platform

The SoC Platform by SEMIFIVE enables swift and minimal-effort design of system-on-chip solutions through their streamlined platforms. Built with silicon-proven IPs and optimized methodologies, these platforms significantly reduce costs and risks while ensuring a faster turnaround time. The platform supports domain-specific architectures and offers a pre-configured and verified IP pool, facilitating quick hardware and software bring-up. This platform stands out for its ability to turn ideas into silicon by leveraging SEMIFIVE’s infrastructure and IP partnerships. It promises substantial cost reduction in areas like design NRE, fabrication, and IP licenses, offering savings upwards of 50% compared to industry norms. Its rapid development process is poised to cut development times in half, maintaining high levels of design and verification reusability. The SoC Platform also minimizes engineering risks associated with the complexities of cutting-edge process technologies. By utilizing pre-verified platform IP pools and silicon-proven design components, SEMIFIVE offers a highly reliable and efficient path from concept to silicon production.

SEMIFIVE
Samsung
5nm, 12nm, 14nm
15 Categories
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NeoPUF

NeoPUF is revolutionizing hardware security by providing up to 100 times faster random number generation. This advanced security technology plays a critical role in safeguarding semiconductor devices against emerging threats. It incorporates a hardware-based random number generator which powers the development of the next generation of secure chips, ensuring robust protection from unauthorized access. Positioned as a critical component in the development of secure semiconductors, NeoPUF integrates seamlessly into existing systems, offering a quantum-resilient solution. This capability is vital in defense against potential quantum-era threats, providing security that remains effective even as technology landscapes shift. NeoPUF supports operations across diverse applications, particularly in sensitive environments where data integrity is paramount. As part of PUFsecurity's comprehensive lineup, NeoPUF not only enhances secure storage options but also facilitates reliable identification and anti-cloning features. It is a key enabler of trusted computing across numerous industries, underlining its importance in the modern era where security is indispensable.

eMemory Technology Inc.
TSMC
16nm FFC/FF+
Cryptography Cores, Embedded Memories, Embedded Security Modules, Platform Security, Security Protocol Accelerators, Security Subsystems
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Digital Systems and Security Solutions

VeriSyno Microelectronics offers Digital Systems and Security Solutions designed to enhance the robustness and efficiency of modern digital applications. This comprehensive suite includes IPs for PSRAM interfaces, network protocols like vMAC, and security mechanisms, addressing the critical needs for secure and efficient digital communications. The digital solutions are engineered to meet stringent security protocols, ensuring data integrity and protection in various applications. VeriSyno's expertise in digital system design enables the development of reliable solutions that integrate seamlessly into existing infrastructures, enhancing both system performance and security. These solutions are suitable for a broad spectrum of digital applications, including consumer electronics, automotive, and industrial systems, where efficient data handling and security are paramount. With ongoing innovation, VeriSyno maintains its competitive edge by adapting to emerging industry requirements and introducing forward-thinking digital solutions.

VeriSyno Microelectronics Co., Ltd.
Cryptography Cores, Embedded Memories, Embedded Security Modules, NVM Express, Security Protocol Accelerators, Security Subsystems, V-by-One
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TSP1 Neural Network Accelerator

The TSP1 is an innovative neural network accelerator chip developed by ABR, designed to advance AI capabilities in battery-powered devices. It supports sophisticated applications such as natural voice interfaces and biosignal classification, demonstrating efficient data handling and low power consumption. This chip is engineered to process sensor signals robustly and independently, which enables highly efficient, state-space networks suitable for diverse applications. Benefiting from ABR's pioneering Legendre Memory Unit (LMU) state-space model, the TSP1 represents a new frontier in data processing efficiency, boasting remarkable power savings. This AI chip is tailored for edge computing contexts, proving itself ideal for applications like AR/VR, wearable technology, and smart home setups. With the TSP1, users can expect quick AI inference times, around 20 milliseconds, while maintaining secure on-chip storage and offering interfaces for multi-sensor inputs. The powerful combination of state-space networks and custom-tailored hardware optimization ensures the TSP1 leads in both scalability for large AI models and energy-aware performance for various sectors, including IoT and industrial applications.

Applied Brain Research
All Foundries, Samsung, TSMC
55nm, 65nm, 130nm
13 Categories
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SmartMem Subsystem

The SmartMem Subsystem is designed to enhance memory functionality through a synthesisable and configurable architecture. This memory subsystem significantly boosts power efficiencies and improves both performance and endurance. Not limited to just Numem's own products, it can easily interface with other high-performance MRAMs, RRAM, and Flash technologies, offering versatility across different hardware needs. Built with Numem's thorough memory expertise and innovative patents, the SmartMem Subsystem delivers MRAM performance that rivals SRAM, characterized by much lower standby power. Its intelligent power management system controls MRAM’s non-volatile nature for ultra-efficient operation, making it robust against endurance challenges while seamlessly integrating into varied systems, whether in edge devices or expansive data centers. The subsystem supports software-defined scalability, which negates the necessity for new hardware designs. This makes it an excellent choice for future-proofing memory solutions in AI workloads, ensuring agility and adaptability across rapid advancements in AI applications.

Numem
Embedded Memories, SDRAM Controller, SRAM Controller
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Absolute Linear Position Sensors

The Absolute Linear Position Sensors developed by Riftek Europe are precision instruments designed to measure and check displacements, dimensions, and surface profiles. Utilizing absolute linear encoder technology, these sensors promise an innovative approach to absolute measurement over ranges of 3 mm to 55 mm with a resolution of 0.1 um. These sensors address the demand for accurate measurement within manufacturing environments, ensuring that the run-outs and deformations are controlled to enhance product quality. They are built for reliability, delivering robust performance in challenging industrial conditions where precision is a crucial aspect of equipment and product assembly. Engineered to provide real-time feedback, these sensors aid in automating quality checks and maintaining operational efficiencies. They offer manufacturers the ability to optimize processes and reduce errors, further promoting productivity and reducing material wastage due to inaccurate measurement during production.

Riftek Europe
Embedded Memories, I/O Library, SDRAM Controller, Standard cell
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ReRAM IP Cores for High-Density Data Storage

Designed to scale effectively with the growing needs for high-volume data storage, CrossBar's ReRAM IP Cores for High-Density Data Storage offer clients the ability to manage extensive datasets with ease. The cores excel in providing high-speed data access and retrieval capabilities, making them an ideal choice for data centers, AI infrastructure, and complex analytics platforms. These cores support dense data storage configurations within devices, far surpassing the performance specifications of traditional memory options. CrossBar's ReRAM cores offer significant energy savings in storage operations, enabling data centers to drastically reduce power consumption while increasing throughput and efficiency. This green approach to data storage not only enhances computational performance but also aligns with global sustainability efforts to lower energy expenditure. With high-density capabilities, the ReRAM cores play a critical role in optimizing large-scale data handling and facilitate emerging trends like real-time analytics and advanced machine learning algorithms. Integrated into existing infrastructures, these ReRAM cores transcend traditional memory solutions. The technology's flexibility allows for customization, accommodating varied client needs and extending beyond standard operational limitations. Whether deployed in cloud services, enterprise data warehousing, or sophisticated AI training models, CrossBar's ReRAM cores ensure robust performance, reliability, and scalability in handling complex storage challenges.

CrossBar Inc.
Embedded Memories, Embedded Security Modules, Flash Controller, NAND Flash, NVM Express, Other, SATA, SDRAM Controller, SRAM Controller
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SRAM - Static Random-Access Memory

Static Random-Access Memory, commonly known as SRAM, is a type of computer memory that uses latching circuitry to store each bit. Its primary feature is its ability to retain data bits in memory as long as power is being supplied. Unlike Dynamic Random-Access Memory (DRAM), which needs periodic refreshing, SRAM does not require refreshing, making it faster and more reliable for certain applications. SRAM is designed to perform read and write operations at a faster rate, often used in applications where speed is critical. It is typically employed in cache memory and other high-speed storage solutions. The architecture of SRAM includes a series of transistors arranged in a way that data is maintained in a stable state, allowing swift access and modification. This type of memory is commonly found in applications where performance and reliability are more important than capacity. SRAM's swift access time and its ability to be used at high speeds make it ideal for use in processors, networking applications, and in various embedded systems requiring rapid data access and processing capabilities.

DXCorr Design
GLOBALFOUNDRIES, TSMC
3nm, 7nm, 7nm LPP, 12nm FinFET, 14nm FinFET, 16nm, 20nm, 22nm FD-SOI, 22nm, 28nm, 28nm SLP, 32nm, 40nm, 40/45nm, 45nm, 55nm, 65nm, 90nm, 180nm, Intel 4, Intel 18A
Embedded Memories, I/O Library, SDRAM Controller, SRAM Controller
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MiniMiser

MiniMiser articulates a revolutionary multi-port register file architecture designed with dual focuses on both low power and high performance. This product delivers over 50% reduction in power consumption, allowing developers to finely tune the power envelope through substituted standard register files with MiniMiser. Such power-saving measures help extend the design's practicality in spaces traditionally constrained by power budgets. With its stress on wide operating voltages and flexibility, MiniMiser effectively replaces standard bit cell implementations without the need for excessive clock domain adjustments, level shifters, or static timing analyses. It operates seamlessly in high-density environments where logic blocks interface and interim calculation storage is necessary, making it integral for AI-enhanced wearables. The product's architecture adapts to multiple performance modes assigning them to varying voltage levels, which keeps instantaneous power demands and total power use in check more effectively. Through these enhancements, MiniMiser innovatively cap size and energy requisites while improving the system's competitive sustainability via elongated recharge cycles and reduced thermal management overhead.

sureCore Ltd.
Embedded Memories, I/O Library, SRAM Controller
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ReRAM as FTP/OTP Memory

Tailored for applications requiring secure non-volatile memory, CrossBar's ReRAM as FTP/OTP Memory offers a refined solution for few-time programmable (FTP) and one-time programmable (OTP) needs. Leveraging the intrinsic properties of ReRAM technology, these applications benefit from reduced write requirements and minimized area without compromising security or performance. This ReRAM variant integrates effectively within standard CMOS processes, providing adaptability whether used independently or embedded within more complex systems. Its non-volatility and high density make it a preferred choice for secure applications where cost-efficient data integrity is essential. The technology supports diverse applications across numerous sectors including automotive, medical, and industrial systems, where quick response times and reliability are critical. The FTP/OTP ReRAM enables provisioning for physical unclonable functions (PUF), further enhancing its security capabilities. Such an implementation provides resistance to invasive attacks and maintains data integrity even under adverse conditions. These features position ReRAM as a powerful tool for managing sensitive data operations and broad pursuits in modern digital infrastructures.

CrossBar Inc.
Cryptography Cores, Cryptography Software Library, Embedded Memories, Embedded Security Modules, Flash Controller, HBM, I/O Library, Mobile DDR Controller, Mobile SDR Controller, NAND Flash
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GCRAM On-Chip Memory

RAAAM's GCRAM technology is a pioneering on-chip memory solution that transforms semiconductor design by substantially reducing silicon area and minimizing power consumption. Offering up to a 50% reduction in silicon area compared to traditional SRAM, GCRAM is an efficient and scalable alternative that aligns with the demands of modern high-performance computing environments. Its design, compatible with standard CMOS processes, eliminates the need for costly additional fabrication steps, making it a cost-effective solution for semiconductor developers. In the context of rapidly advancing fields such as artificial intelligence and machine learning, augmented reality, virtual reality, and 5G networking, GCRAM provides a crucial edge. It addresses the limitations of traditional SRAMs that struggle with scalability at advanced process nodes, offering improved efficiency and reduced costs. Furthermore, GCRAM supports a wide array of applications that demand enhanced memory capacity, serving as a strategic tool for developers seeking to exceed current memory constraints without incurring significant cost increases. This technology effectively carries forward Moore's Law within the on-chip memory space, cementing RAAAM’s role as a frontrunner in semiconductor innovation.

RAAAM Memory Technologies Ltd.
Embedded Memories, SDRAM Controller
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Monolithic Microsystems

Monolithic Microsystems are designed to elevate applications with advanced CMOS-compatible functionalities. These microsystems integrate multiple components on a single chip, reducing size while enhancing performance and reliability. By combining different types of devices such as sensors, actuators, and processing units, Monolithic Microsystems offer versatile solutions that can be applied across various industries including healthcare and automotive. Their compact design ensures space efficiency, which is critical in devices where size constraints are paramount. With robust integration capabilities, these systems facilitate the development of innovative products, enabling faster prototyping and time to market. Their adaptable nature supports a broad spectrum of applications, from precision medical devices to smart automotive systems.

Imec
TSMC
55nm
Embedded Memories, Multiprocessor / DSP, Processor Core Dependent, Processor Core Independent, Vision Processor
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