Big news for engineers and procurement teams: Mitsumi MEMS sensors are now officially in distribution, and you can order them directly through our authorized distribution partners. Whether you’re designing for medical devices, HVAC systems, robotics, or industrial automation, Mitsumi’s MEMS sensor portfolio delivers the precision and reliability your application demands. Five product series are now available to source and order: • MMR920: MEMS Gauge Pressure Sensor | 24-bit digital resolution, I2C / SPI interface, ±100 cmH₂O range • MMR940: Differential Pressure Sensor | True differential, contamination-resistant "deadhead" design, detects changes as low as 1 Pascal • MMS601: Digital Differential Pressure Sensor | Calorimetric MEMS technology, patent-pending bypass flow design for high dust contamination resistance (Engineering samples Aug 2026) • MMS702: Infrared Temperature Sensor | Non-contact, MEMS thermopile, 1×8 pixel array, 50° field of view, ideal for occupancy detection & thermal scanning • MMS101: 6-Axis Force Torque Sensor | The world’s smallest digital 6-axis F/T sensor, fully calibrated, SPI interface, built for robotic fingers, robotic surgery, and miniature aerial vehicles All sensors are RoHS and REACH-compliant, engineered to MinebeaMitsumi’s exacting global standards. From blood pressure monitors and CPAP devices to smart meters, VAV damper control, and precision robotics, there’s a sensor in this lineup for your design. Now in stock and ready to order through our authorized distribution partners. Request samples, download datasheets, and explore the full Mitsumi MEMS sensor lineup at https://nmbtc.com/. #Mitsumi #MinebeaMitsumi #NMBTechnologies #NMBTC #MEMSSensors #ArrowElectronics #DigiKey #ElectroSonic #OnlineComponents #MasterElectronics #MouserElectronics #PressureSensor #ForceTorqueSensor #InfraredSensor #MEMS #Robotics #IndustrialAutomation #MedicalDevices #HVAC #SmartSensors #IoT #ElectronicComponents #NowInDistribution #Engineering #SensorTechnology #Microelectronics #CPAP #Semiconductor
Mitsumi MEMS Sensors Now in Distribution
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Sensors are becoming prevalent in a myriad of applications that touch our lives every day and under our Mitsumi brand we offer a plethora of unique products, which are readily available at several of our distributor partners.
Big news for engineers and procurement teams: Mitsumi MEMS sensors are now officially in distribution, and you can order them directly through our authorized distribution partners. Whether you’re designing for medical devices, HVAC systems, robotics, or industrial automation, Mitsumi’s MEMS sensor portfolio delivers the precision and reliability your application demands. Five product series are now available to source and order: • MMR920: MEMS Gauge Pressure Sensor | 24-bit digital resolution, I2C / SPI interface, ±100 cmH₂O range • MMR940: Differential Pressure Sensor | True differential, contamination-resistant "deadhead" design, detects changes as low as 1 Pascal • MMS601: Digital Differential Pressure Sensor | Calorimetric MEMS technology, patent-pending bypass flow design for high dust contamination resistance (Engineering samples Aug 2026) • MMS702: Infrared Temperature Sensor | Non-contact, MEMS thermopile, 1×8 pixel array, 50° field of view, ideal for occupancy detection & thermal scanning • MMS101: 6-Axis Force Torque Sensor | The world’s smallest digital 6-axis F/T sensor, fully calibrated, SPI interface, built for robotic fingers, robotic surgery, and miniature aerial vehicles All sensors are RoHS and REACH-compliant, engineered to MinebeaMitsumi’s exacting global standards. From blood pressure monitors and CPAP devices to smart meters, VAV damper control, and precision robotics, there’s a sensor in this lineup for your design. Now in stock and ready to order through our authorized distribution partners. Request samples, download datasheets, and explore the full Mitsumi MEMS sensor lineup at https://nmbtc.com/. #Mitsumi #MinebeaMitsumi #NMBTechnologies #NMBTC #MEMSSensors #ArrowElectronics #DigiKey #ElectroSonic #OnlineComponents #MasterElectronics #MouserElectronics #PressureSensor #ForceTorqueSensor #InfraredSensor #MEMS #Robotics #IndustrialAutomation #MedicalDevices #HVAC #SmartSensors #IoT #ElectronicComponents #NowInDistribution #Engineering #SensorTechnology #Microelectronics #CPAP #Semiconductor
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Infineon has completed its acquisition of ams OSRAM’s non-optical analogue and mixed-signal sensor portfolio, expanding its industrial, automotive, and medical sensing capability. #Sensors #Analogue #EmbeddedSystems
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The Elastic Strain Sensor Market is witnessing increasing demand as industries adopt advanced sensing technologies for real-time structural health monitoring, wearable electronics, healthcare devices, robotics, and smart manufacturing. Continuous innovations in flexible materials and sensor technologies are expected to support market expansion through 2032, driven by the need for accurate, durable, and high-performance strain measurement solutions. 𝗕𝘆 𝗧𝘆𝗽𝗲: • Resistive Elastic Strain Sensors • Capacitive Elastic Strain Sensors • Piezoelectric Elastic Strain Sensors • Optical Elastic Strain Sensors • Others 𝗕𝘆 𝗔𝗽𝗽𝗹𝗶𝗰𝗮𝘁𝗶𝗼𝗻: • Healthcare & Wearable Devices • Industrial Monitoring • Robotics • Automotive • Aerospace & Defense • Consumer Electronics • Others 𝗕𝘆 𝗥𝗲𝗴𝗶𝗼𝗻: • North America • Europe • Asia-Pacific • South America • Middle East & Africa 𝗕𝘆 𝗟𝗲𝗮𝗱𝗶𝗻𝗴 𝗞𝗲𝘆 𝗣𝗹𝗮𝘆𝗲𝗿𝘀: • Bolt • TE Connectivity • HBK - Hottinger Brüel & Kjær • Vishay Precision Group, Inc. (VPG) • Kyowa Electronic Instruments Co. Ltd. • HBM Nigeria • OMEGA Engineering • BCM SENSOR TECHNOLOGIES bv • Sensor Technology LTD • Micron Optics, Inc. 𝗥𝗲𝗾𝘂𝗲𝘀𝘁 𝗳𝗼𝗿 𝗦𝗮𝗺𝗽𝗹𝗲 𝗥𝗲𝗽𝗼𝗿𝘁: https://lnkd.in/eHWGYZZv #ElasticStrainSensor #StrainSensorMarket #FlexibleElectronics #WearableTechnology #IndustrialAutomation #SmartSensors #HealthcareTechnology #Robotics #AutomotiveTechnology #MarketResearch #IndustryAnalysis #TechnologyTrends #Sensors #Manufacturing #LinkedInPost
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Innovation in PCB Assembly: How Advances in SMT Technology Are Redefining Electronics Manufacturing Every millimeter matters in today's electronics. From wearables and medical devices to EVs and industrial automation, the demand for smaller, smarter, and more reliable electronic products continues to grow. At the heart of this transformation is Surface Mount Technology (SMT). Some of the key innovations driving the industry include: 1) High-speed placement systems capable of handling ultra-miniature components with remarkable accuracy. 2) AI-powered inspection that detects defects in real time, reducing rework and improving first-pass yield. 3) Advanced solder paste inspection (SPI) and automated optical inspection (AOI) that ensure quality at every stage of production. 4) Smart factory connectivity, where machines communicate seamlessly to optimize throughput, monitor performance, and support predictive maintenance. The result: 1) Higher production efficiency 2) Improved product reliability 3) Reduced manufacturing costs 4) Faster time-to-market The future of PCB assembly lies in combining automation, data intelligence, and uncompromising quality. #ElectronicsManufacturing #PCBAssembly #SMT #Industry40 #SmartManufacturing #Automation #Quality #Innovation #Electronics #ManufacturingExcellence
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Pixellligent's high refractive index materials can be used in more than #XR waveguides and #OLEDdisplays. Learn how the performance of CMOS sensors can benefit from patterned HRI materials. https://lnkd.in/e5i8VnC2
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Joining forces to monitor water levels. 💧 Altemak and Corezzle Electronics are coming together on a next-generation project for water level monitoring and control systems. We are preparing to power our partner's upcoming water level monitoring and control solutions through our SiP modules and our manufacturing and supply capabilities. At the heart of these solutions is the NAR-X125. Built around a contactless, radar-based measurement architecture, it is designed to track water levels accurately at ranges of up to 20 meters. Technical overview: ✓ 60 GHz Pulsed Coherent Radar (PCR) with integrated baseband, RF front-end and Antenna-in-Package (AiP), all in one package ✓ Accurate water level measurement up to 20 meters ✓ 32-bit ARM Cortex-M4 MCU for sensor fusion and control ✓ Compact 18.6 x 15 mm form factor, optimized for maximum antenna gain ✓ Operating temperature -40°C to +85°C ✓ UART, I2C, GPIO interfaces; programming and debug over SWD/JTAG ✓ Can be integrated behind plastic or glass radomes with no physical aperture required ✓ LGA solder pads, reel packaging for automated assembly ✓ Designed and packaged in Türkiye Within the scope of our mutual cooperation and supply discussions, we aim to support our partner's growth targets with our supply capacity. Generative Hardware. Innovation Accelerated. 🌐 corezzle.com #Corezzle #CorezzleElectronics #NARX125 #SiP #SystemInPackage #IoT #WaterLevelMonitoring #Radar #EmbeddedSystems #Semiconductor #Türkiye #Altemak #Partnership #InnovationAccelerated
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SRAM and ROM Design IP Market to reach USD 784.47 Million by 2035 𝐃𝐨𝐰𝐧𝐥𝐨𝐚𝐝 𝐒𝐚𝐦𝐩𝐥𝐞 𝐏𝐃𝐅: https://lnkd.in/dDQ59aWi The SRAM and ROM design IP market is experiencing robust growth, driven by escalating demand for highly efficient and scalable memory solutions in cutting-edge technologies such as AI, IoT, and autonomous vehicles. As modern applications require lower power consumption coupled with high-speed performance, the customization and optimization of Static Random-Access Memory (SRAM) and Read-Only Memory (ROM) design intellectual property have become critical for semiconductor manufacturers. Companies are investing significantly in research and development to enhance memory capacity while minimizing silicon area, which has fueled the competition among key players to offer differentiated products. The rise of cloud computing platforms further accelerates demand for advanced memory technologies, propelling the integration of SRAM and ROM IP blocks into System-on-Chip (SoC) designs to enable seamless data processing capabilities. Consequently, strategic partnerships and acquisitions are pivotal trends shaping this dynamic market as companies aim to broaden their technology portfolios to cater to diverse application to cater to diverse application requirements across multiple end-use industries, strengthen their competitive positioning, and address the evolving performance, power efficiency, and reliability demands of next-generation semiconductor devices. SRAM and ROM Design IP Companies are: Arm Synopsys Inc Cadence System Design and Analysis Siemens EDA (Siemens Digital Industries Software) eMemory Silvaco Inc Dolphin Semiconductor VeriSilicon Holdings Co., Ltd. sureCore Ltd Rambus Kilopass (is now a part of Synopsys) SST (Silicon Storage Technology Inc.) GSI Technology Flex Logix Technologies Inc. Everspin Technologies Renesas Electronics TDK Avalanche Technology Inc. Faraday The TekStart Group #SRAM #ROM #DesignIP #Semiconductor #ChipDesign #ASIC #SoC #EDA #IntegratedCircuits #Electronics #SemiconductorIndustry #HardwareDesign #IPCore #DigitalDesign #MarketTrends
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Why are semiconductor giants investing heavily in sensors? Infineon's €570 million acquisition of ams OSRAM's automotive sensor business is more than just another M&A headline—it's a strong signal of where the semiconductor industry is heading. As AI, electrification, and industrial automation continue to accelerate, sensors are becoming just as critical as processors. Every intelligent system relies on accurate sensing to interact with the real world. This move strengthens Infineon's position in automotive, industrial, and medical applications, while also highlighting a broader industry trend: leading semiconductor companies are focusing on building more complete system solutions rather than individual components. For buyers and supply chain professionals, it's also a reminder that the sensor market is becoming increasingly strategic, with continued investment in technologies such as magnetic, pressure, current, and position sensing. What impact do you think this acquisition will have on the sensor market over the next few years? #Semiconductors #Infineon #Sensors #Automotive #IndustrialAutomation #SupplyChain #Electronics #EmbeddedSystems #AI #USEMI
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Bringing intelligent edge devices to market requires more than processing power. It requires a platform that reduces development complexity, accelerates product design, and scales across multiple industrial applications. VVDN's i. MX 95 System on Module is built to help OEMs accelerate product development with a production-ready, SMARC-compliant platform powered by the NXP i.MX 95 applications processor. With integrated AI acceleration, real-time processing, advanced multimedia capabilities, and industrial connectivity, it provides a strong foundation for next-generation embedded systems. Whether developing industrial automation equipment, robotics, smart healthcare devices, machine vision systems, or intelligent transportation solutions, OEMs can leverage the module to shorten development cycles, reduce engineering effort, and focus on product innovation. Discover how the VVDN - NXP - i.MX 95 SoM can help accelerate your next embedded product: https://lnkd.in/gnNF8w5T #OEM #EmbeddedSystems #EdgeAI #IndustrialAutomation #ProductEngineering #SystemOnModule #IndustrialIoT #DigitalTransformation #NXP #VVDN
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Download the PDF for clear view of information in it. 🚀 Sensor Engineering Series | Part 3 How does a security camera capture crystal-clear images? How do smart health devices detect biological signals? How can machines measure weight with extreme precision? The answer lies in advanced sensors that convert physical, biological, and environmental phenomena into meaningful digital information. Welcome to Part 3 of my Sensor Engineering Series, where we continue exploring the internal architecture, working principles, and real-world applications of modern sensing technologies. 📖 In this edition, we cover: 🔹 Humidity Sensor – Measures the amount of moisture in the air by detecting changes in electrical properties caused by humidity. 🔹 Radar Sensor – Uses radio waves to detect an object's distance, speed, and direction, even in low-visibility conditions. 🔹 Biosensor – Detects biological or chemical substances using a bioreceptor and transducer for medical, environmental, and industrial applications. 🔹 Load Cell Sensor – Measures force and weight by converting mechanical strain into precise electrical signals through strain gauges. 🔹 CMOS Image Sensor – Converts incoming light into digital images using millions of photodiodes and pixel circuits. These sensors are transforming industries such as: 📸 Digital Imaging & Computer Vision ❤️ Healthcare & Medical Diagnostics 🏭 Industrial Automation 🚗 Automotive Safety Systems 🤖 Robotics & AI 🌦️ Environmental Monitoring 🌐 Smart IoT Devices 📦 Manufacturing & Quality Control Understanding how these sensors work internally—from sensing elements and analog front-end circuits to digital signal processing—provides the foundation for designing intelligent embedded systems and next-generation electronic products. Every sensor is engineered to solve a unique problem, and together they enable the technologies shaping our future. 💬 Which of these sensors do you think has the greatest impact on modern technology, and which one would you like to explore in more detail? #SensorEngineering #Sensors #HumiditySensor #RadarSensor #Biosensor #LoadCell #CMOS #ImageSensor #EmbeddedSystems #ElectronicsEngineering #IoT #Robotics #Automation #Semiconductor #FirmwareEngineering #EngineeringStudents #STEM #Technology
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