#Non-Volatile SRAM memory
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45bvxi-infineon-6042923
Non-Volatile SRAM memory, Non-Volatile SRAM, Non volatile memory
CY62167EV30 Series 16 Mb (1M x 16/2M x 8) 2.2 - 3.6 V 45 ns Static RAM -TSOP-48
#RAM#Static RAM#Asynchronous SRAM#CY62167EV30LL-45ZXIT#Infineon#Non-Volatile SRAM memory#Non-Volatile SRAM#Surface Mount Flash Memory#Memory chips#Random-Access Memory#Volatile Memory#Programming System Devices
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62148ell-55sxit-infineon-7570237
Memory ICs, Random Access Memory, Fast asynchronous SRAM, low power SRAM
CY62148E Series 4 Mbit (512 K x 8) 5.5 - 5.5 V 55 ns Static RAM-SOIC-32
#Infineon#CY62148ELL-55SXIT#RAM#Static RAM#Asynchronous SRAM#Memory ICs#Fast asynchronous SRAM#low power SRAM#circuits#non volatile memory#What is synchronous SRAM#Sync SRAMs#Static random-access memory#volatile SRAM#non volatile sram#flash memory
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/as6c4008-55sintr-alliance-memory-6950125
SRAM memory, what is SRAM, flash memory card, non volatile memory
AS6C4008 Series 4-Mbit (512 K x 8) 3 V 55 ns CMOS Static RAM - SOIC-32
#Alliance Memory#AS6C4008-55SINTR#RAM#Static RAM#Asynchronous SRAM#what is SRAM#flash memory card#non volatile memory#flash memory card reader#static ram and dynamic ram#Types of SRAM#SDRAM#SRAM cell#cmos SRAM cell#SRAM vs dram
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45zxat-infineon-5174854
What is SRAM, static ram, nominal supply voltage, Types of Non Volatile RAM
CY62167EV30 Series 16 Mb (1M x 16/2M x 8) 2.2 - 3.6 V 45 ns Static RAM -TSOP-48
#RAM#Static RAM#Asynchronous SRAM#CY62167EV30LL-45ZXAT#Infineon#what is SRAM#nominal supply voltage#Types of Non Volatile RAM#Static random access memory#SRAM memory#SRAM memory chips#flip-flop circuit#memory organization
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45zxit-infineon-9160615
EEPROMs chips, Non volatile RAM memory, NV RAM memories, ram memory
CY62167EV30 Series 16 Mb (1M x 16/2M x 8) 2.2 - 3.6 V 45 ns Static RAM -TSOP-48
#Infineon#CY62167EV30LL-45ZXIT#RAM#Static RAM#Asynchronous SRAM#EEPROMs chips#Non volatile RAM memory#NV RAM memories#ram memory#Static random access memory#Parallel SRAM#non volatile memories#non volatile SRAM types
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45zxi-infineon-9364399
Volatile memory, Computer memory, battery backed SRAM, ram memory
CY62167EV30 Series 16 Mb (1 M x 16/2 M x 8) 2.2 - 3.6 V 45 ns Static RAM-TSOP-48
#RAM#Static RAM#Asynchronous SRAM#CY62167EV30LL-45ZXI#Infineon#Volatile memory#Computer memory#battery backed SRAM#Random Access Memory#Static random access memory#Parallel SRAM memory#Nvram flash memory#what is Non Volatile SRAM
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45bvxit-infineon-8026254
SRAM memory card, SRAM memory chips, Static ram, SRAM memory
CY62167EV30 Series 16 Mb (1M x 16 / 2 M x 8) 3 V 45 ns Static RAM - FBGA-48
#Infineon#CY62167EV30LL-45BVXIT#RAM#Static RAM Asynchronous#SRAM#memory card#chips#SRAM memory#Non Volatile SRAM#SRAM chip#Static ram manufacturers#asynchronous memory interface#SRAM in microprocessor
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62167ev30ll-45bvxit-infineon-1068579
Non Volatile SRAM memory, What is SRAM, SRAM manufacturers, SRAM chip
CY62167EV30 Series 16 Mb (1M x 16 / 2 M x 8) 3 V 45 ns Static RAM - FBGA-48
#RAM#Static RAM Asynchronous#SRAM#CY62167EV30LL-45BVXIT#Infineon#Non Volatile SRAM memory#What is SRAM#manufacturers#SRAM ram chip#Static random access memory#SRAM memories#Memory Density#Programming System Devices
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--nvram--quantum-trap-nvsram/m95m02-drmn6tp-stmicroelectronics-7140290
SRAM chip, SRAM memory card, SRAM memory chips, static random access memory
M95M02 Series 2 Mb (256 K x 8) 5.5 V Serial SPI Bus EEPROM - SOIC-8
#RAM#NVRAM#Nonvolatile SRAM (NVSRAM)#M95M02-DRMN6TP#STMicroelectronics#Ram digital#what is SRAM#non volatile SRAM#static RAM#SRAM chip#card#static random-access memory#RAM digital to analog converter#SRAM programming
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--nvram--quantum-trap-nvsram/m95m02-drmn6tp-stmicroelectronics-8011669
NV SRAM memory, nv ram, Parallel sram, non volatile memories, nonvolatile sram
M95M02 Series 2 Mb (256 K x 8) 5.5 V Serial SPI Bus EEPROM - SOIC-8
#STMicroelectronics#M95M02-DRMN6TP#RAM#NVRAM#Nonvolatile SRAM (NVSRAM)#Non volatile memory#static random access memory#NV SRAM memory#Parallel sram#nonvolatile sram#Types of Non Volatile SRAMs#Non volatile ram memory
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https://www.futureelectronics.com/p/semiconductors--memory--RAM--static-ram--asynchronous/cy62148ell-55sxit-infineon-7570237
Memory ICs, Random Access Memory, Fast asynchronous SRAM, low power SRAM
CY62148E Series 4 Mbit (512 K x 8) 5.5 - 5.5 V 55 ns Static RAM-SOIC-32
#Infineon#CY62148ELL-55SXIT#RAM#Static RAM#Asynchronous SRAM#Memory ICs#Fast asynchronous SRAM#low power SRAM#circuits#non volatile memory#What is synchronous SRAM#Sync SRAMs#Static random-access memory#volatile SRAM#non volatile sram#flash memory
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https://www.futureelectronics.com/p/semiconductors--memory--storage--embedded-storage/emmc04g-mt32-01g02-kingston-3178976
What Is Nand Flash Memory, Non volatile memory, Flash memory manufacturers
4GB I-temp eMMC 5.1 (HS400) 153FBGA 4GB5.1 11.5x13x0.8
#Memory ICs#Flash Memory#Nand Flash Memory#EMMC04G-WT32-01G02#Kingston#flash storage upgrade#NAND memory#eMMC memory#Non volatile memory#manufacturers#ram memory#Types of Non Volatile SRAMs#USB flash drives
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eNVM Technology at the Core of Chip Innovation: Market to Grow 15.3% CAGR
The global Embedded Non-volatile Memory (eNVM) Market was valued at USD 61.1 Mn in 2022 and is anticipated to expand at an impressive CAGR of 15.3% between 2023 and 2031, reaching USD 218.6 Mn by the end of 2031. This exponential growth is driven by increasing demand for high-performance, energy-efficient memory solutions across several industries including consumer electronics, automotive, telecommunications, and healthcare. Embedded NVM technologies have become essential due to their high speed, low power consumption, secure storage, and integration with advanced chip architectures.
Market Drivers & Trends
One of the primary factors driving the eNVM market is the surge in demand for smartphones and smart wearables. The proliferation of IoT-enabled devices and rising consumer expectations for speed and efficiency in digital devices have made embedded NVM a cornerstone in modern memory architectures.
Key trends include the adoption of 3D NAND flash memory, particularly in devices that require high performance at low densities such as smart speakers, fitness trackers, and media devices. Companies like Samsung are actively scaling up production to meet growing demand.
Additionally, the need for low-power memory devices that offer quick data access is becoming increasingly critical. As devices become smaller and more mobile, battery longevity and processing speed are now paramount. Embedded NVMs meet these demands better than traditional volatile memories like DRAM or SRAM.
Latest Market Trends
Advanced Memory Architectures: Technologies such as MRAM, FRAM, and 3D NAND are being increasingly integrated into devices, offering greater durability and data retention.
Smaller Footprint and Greater Efficiency: Packaging solutions like system-in-package (SiP) and package-on-package (PoP) are gaining popularity, reducing device size while improving performance.
IoT & 5G Integration: The deployment of 5G networks is accelerating the use of embedded NVMs in mobile devices, routers, and smart infrastructure, creating new growth avenues.
Key Players and Industry Leaders
The embedded NVM industry is dominated by a mix of established leaders and emerging innovators. Major players include:
eMemory Technology Inc.
Floadia Corporation
GlobalFoundries Inc.
Infineon Technologies AG
Japan Semiconductor Corporation
Kilopass Technology, Inc.
SK HYNIX INC.
Texas Instruments Incorporated
Toshiba Electronic Devices & Storage Corporation
SMIC
These companies focus on continuous innovation, R&D investments, strategic collaborations, and mergers & acquisitions to strengthen their market presence.
Recent Developments
ANAFLASH (March 2023) commercialized energy-efficient eNVM tech tailored for wearable and autonomous devices.
GlobalFoundries Inc. (Feb 2023) acquired resistive RAM technology from Renesas, broadening its portfolio in low-power memory.
Japan Semiconductor Corporation partnered with Toshiba (May 2022) to co-develop an analog platform with embedded NVM for automotive applications.
These developments underscore the industry's momentum toward high-performance and cost-effective memory solutions.
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Market Opportunities
The rise in smart consumer electronics, increasing industrial IoT applications, and the transition toward connected and autonomous vehicles are creating substantial opportunities in the eNVM market. Additionally, 5G technology is catalyzing the demand for fast, low-latency memory.
The demand for embedded flash memory in secure storage applications, such as smart cards and encryption keys, also opens up new markets. Furthermore, industrial-grade flash memory is becoming increasingly vital for mission-critical applications in manufacturing and automation.
Future Outlook
Looking ahead, the embedded NVM market is expected to evolve with AI and ML advancements, where real-time decision-making requires swift and secure memory operations. The adoption of edge computing will further push the demand for embedded NVM in compact and decentralized systems.
With consistent innovation in NAND flash, MRAM, and emerging memory types, the market is poised for a wave of transformative growth, especially in regions investing heavily in electronics manufacturing and smart infrastructure.
Market Segmentation
By Type:
Flash Memory
EEPROM
nvSRAM
EPROM
3D NAND
MRAM/STT-MRAM
FRAM
Others (PCM, NRAM, etc.)
By End-use Industry:
Automotive
Consumer Electronics
IT & Telecommunication
Media & Entertainment
Aerospace & Defense
Others (Healthcare, Industrial)
The flash memory segment dominates due to its speed, durability, and integration capability, while consumer electronics lead in end-use owing to the explosive demand for mobile and wearable technology.
Regional Insights
Asia Pacific leads the global market, accounting for the largest share in 2022. Countries like China, Japan, South Korea, and Taiwan have established themselves as R&D and manufacturing hubs for electronics and semiconductors.
North America follows, driven by a high adoption rate of IoT, strong presence of leading tech companies, and ongoing 5G infrastructure expansion. The region is also witnessing significant investment in AI-driven devices requiring efficient embedded memory.
Europe, Latin America, and Middle East & Africa also show promising growth trajectories due to increasing industrial automation and digital transformation initiatives.
Why Buy This Report?
Comprehensive Coverage: Detailed insights on global and regional market dynamics.
Data-backed Forecasts: Market projections from 2023โ2031 with CAGR, value, and volume estimates.
Segment-Level Insights: Type-wise and end-use industry-wise breakdown for targeted business strategies.
Competitive Intelligence: Profiles and strategies of key market players.
Strategic Recommendations: Actionable insights for investors, product managers, and decision-makers.
Frequently Asked Questions
Q1. What is the expected CAGR of the embedded non-volatile memory market during the forecast period? The market is projected to grow at a CAGR of 15.3% from 2023 to 2031.
Q2. Which region dominates the global eNVM market? Asia Pacific held the largest market share in 2022 and is expected to maintain its lead during the forecast period.
Q3. Which memory type segment is leading the market? Flash memory dominates the market due to its high speed, durability, and efficiency.
Q4. What factors are driving the market growth? Rising demand for smartphones, smart wearables, IoT integration, low-power memory requirements, and 5G deployment are the key drivers.
Q5. Who are the top players in the market? Key players include eMemory Technology Inc., Infineon Technologies AG, GlobalFoundries Inc., Toshiba, and Texas Instruments.
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Are You Ready? The Field Programmable Gate Array Market is Exploding!
Field Programmable Gate Array (FPGA) Industry Overview
The global Field Programmable Gate Arrays (FPGAs) Market was valued at $10.46 billion in 2022 and is projected to expand at an annual rate of 10.8% from 2023 to 2030. The increasing adoption of field programmable gate arrays in applications such as deep packet inspection, network processing, and security is expected to fuel their demand throughout the forecast period. The preference for FPGA architecture is growing due to its advantages, including low power consumption and high compute density. This trend is being driven by the rising need for efficient data flow and streaming data processing across various applications. For example, in February 2022, QuickLogic Corporation introduced PolarPro 3 to address the shortage of low-power FPGAs. This product is designed for ultra-low power consumption, making it ideal for wearables, handheld devices, and mobile applications. Such product launches by key industry players are anticipated to drive market growth over the forecast period.
Detailed Segmentation:
Type Insights
Mid-range FPGAs are expected to register the highest CAGR of 12.5% over the forecast period, owing to the properties offered by the segment such as low power consumption, small form factor, and high performance for FPGA-based devices. In addition, the advantages of the mid-range type segment that are capable of delivering a significant digital signal processing (DSP) along with embedded memory to logic ratio that enhances the intelligence for several applications is anticipated to drive the segment growth.
Application Insights
The military and aerospace segment is expected to expand at the fastest CAGR of 12.7% over the forecast period. Emergence of embedded field programmable gate array has particularly favored the aviation and defense industry by offering even better integration, reliability, and low power option over the traditional FPGAs, which is expected to drive the military and aerospace segment growth during the forecast period.
Technology Insights
Flash-based FPGAs are expected to register the fastest growth rate of 11.3% over the forecast period. The segment is witnessing high demand as major players upgrade their portfolios of FPGAs to cater to the growing demand from the expanding application base. Additionally, the rising trend favoring flash-based FPGAs over SRAM-based FPGAs due to their lower power consumption is also boosting the segment growth. The utilization of non-volatile flash memory for configuration storage eliminates the need for continuous power, aligning with the industry's emphasis on energy efficiency and power optimization. This power-saving feature is particularly advantageous in battery-powered devices, portable electronics, and energy-constrained applications, which is expected to drive the market growth over the forecast period.
Regional Insights
The South America region is expected to register a significant growth rate of 11.9% over the forecast period. This growth is attributed to the boost in the automobile, industrial, and aerospace sector, where the application of FPGA-based solutions is substantial, especially in Brazil. In addition, the growing demand for connectivity in the region is expected to augment the adoption of advanced telecommunications infrastructure along with the expansion of broadband networks, which is expected to drive the growth of the field programmable gate array market across the region.
Gather more insights about the market drivers, restraints, and growth of the Field Programmable Gate Array (FPGA) Market
Key Companies & Market Share Insights
The market is classified as highly competitive, with the presence of several field programmable gate array market players. The key players operating in the field programmable gate array industry are focusing on strategic alliances, mergers & acquisitions, expansion, and product development to remain competitive in the industry. For instance, in May 2023, Intel Corporation launched their new FPGAs, the Agilex 7 FPGAs with R-Tile. This product from the company is expected to be the first FPGA with CXL and PCIe 5.0 capabilities. Such developments are expected to propel the field programmable gate array market growth over the forecast period. Some of the major players in the global field programmable gate array (FPGA) market:
Intel Corporation
Xilinx, Inc.
Qualcomm Technologies, Inc.
NVIDIA Corporation
Broadcom
AMD, Inc.
Quicklogic Corporation
Lattice Semiconductor Corporation
Achronix Semiconductor Corporation
Microchip Technology Inc.
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