The June 2024 edition of the MPS Power Up is here! 📩 This month, dive into the diverse range of battery charger topologies, explore essential topics for understanding EMC and Power Electronics, and discover much more!
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Strong, stronger, StrongIRFET™ 2 MOSFETs from Infineon Technologies - at Rutronik 💪 The new generation scores with higher current load tolerance, improved Rds(on), and lower nominal Qg. This eliminates the need to connect several components in parallel, resulting in more space savings on the PCB. The StrongIRFET™ 2 MOSFETs are also significantly more robust and suitable for both low and high switching frequencies. Further features at a glance: ➡ Industry-standard housing with through-hole ➡ Precisely fitting products ➡ Lead-free coating ➡ RoHS compliant Examples of possible applications: ➡ Adapters ➡ Battery-powered applications ➡ Battery management ➡ Light electric vehicles #Rutronik #Infineon #electronicsworldwide #yourglobalbroadliner
Higher power efficiency for an improved overall system: The StrongIRFET™ 2 MOSFETs from Infineon available at Rutronik
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Real time PSRR comparison showing superior results (Nearly 12 db) of Zenith Semiconductor's power management product over the BOM compatible competition, exact same board, component values, and load. Top trace is AC signal on top of input DC supply, pink trace Zenith output voltage, green trace competitor output voltage. If you look close at low frequency you can even see the better noise performance of the Zenith product. Stay tuned as Zenith reaches higher.
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🔌 Impact of Switching Frequency on Electric Motor Drive Design🔌 Recently, I stumbled upon an article from Infineon that shed light on a topic rarely discussed: the profound impact of switching frequency on machine losses and the identification of the optimal switching frequency for motor drive operations. It was an eye-opener, to say the least 🤓. Here are my thoughts on what the article didn't cover: - Switching frequency isn't the only variable at play; the modulation strategy also holds significant importance 🎛️. - The "optimal" switching frequency isn't static; it varies with the machine's operating speed. There's a need to identify the optimal frequency for each scenario, necessitating a variable frequency drive 🔄. - The concept of "optimum" was clearly pronounced in this case. However, with different machine designs, the "optimal" frequency might shift (either higher or lower), leading to trade-offs in other areas such as maximum speed and overall machine efficiency 📊. This article further highlight the critical need for an optimization of the inverter and motor across a broad spectrum of operating conditions. 🌍
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Addressing Space Constraints? Consider Embedded Resistors! As electronic devices become smaller yet more powerful, embedded resistors offer a solution for saving space and improving board performance. Discover the reasons driving the adoption of embedded resistors and start optimizing your designs today! #EmbeddedResistors #SpaceSaving #BoardPerformance #ElectronicDesign #optimization
Tackling Space Limitations? It's time for Embedded Resistors! As the footprint of electronic equipment shrinks and functionality soars, embedded resistors are the key to achieving more space and enhancing board performance. Learn more about the driving factors behind the switch to embedded resistors and optimize your designs today! Read more in our "Benefits of Embedded Resistors" article in our Technical Library: https://bit.ly/3UwcKl2 #EmbeddedResistors #SpaceOptimization #TechInnovation #ElectronicsDesign
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POWR-SPEED High-Speed Fuses | Littelfuse Littelfuse POWR-SPEED High-Speed Fuses are tailored for performance and efficiency to better safeguard important power semiconductors against short circuits. These fuses are specifically designed to have the short-circuit properties necessary for protecting semiconductor devices, such as low energy let-through (l2t), low peak currents (IPEAK), low-arc voltage and high heat dissipation. Learn More>>https://lnkd.in/grHcd8u3
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𝗖𝗣𝗠𝟲𝟬𝟭-𝗣 is designed precisely to perform PD measurements in dual frequency ranges; 0.01MHz – 100MHz as well as 200 MHz – 3000 MHz. With the help of advanced electronics embedded inside CPM601. 𝗕𝗲𝗻𝗲𝗳𝗶𝘁𝘀: • Highly immune to noise • Suitable for Online or Offline PD measurements • Transient overvoltage protection 👉 Learn More: https://bit.ly/3KW3YqH #ruggedmonitoring #cpm601 #monitors #sensors #partialdischarge #overvoltage #partialdischargemonitor
CPM601-P | Partial Discharge Monitor
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Discover how dual side cooling technology can drastically enhance your electronics' performance and efficiency. 🔌 Dive into the world of enhanced power efficiency with our latest innovation – the DFN5060 Dual Side Cooling MOSFET, equipped with revolutionary cover clip technology. Designed to cater to high-demand applications, our new package dramatically improves thermal performance and energy efficiency. The DFN5060 Dual Side Cooling MOSFET: - Offers significantly lower thermal resistance both on top and bottom. - Incorporates the cutting-edge Split Gate Trench MOSFETs for reduced conduction losses. - Supports applications demanding higher power density and rigorous thermal management. 🚗 Especially ideal for automotive applications such as electric power steering, our MOSFETs ensure your designs are robust, reliable, and ready for the future of mobility. Learn more: 🔗 https://lnkd.in/gvfZiJEP #MCC #MOSFET #PowerManagement #Innovation #Electronics #Semiconductors #ThermalManagement #Engineering
Revolutionize Your Devices! Why Dual Side Cooling is a Game-Changer for Electronics
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High Speed CAN, memory module, digital integrated circuits, Transceiver
PCA9532PW,118 in Reel by NXP | I2C | Future Electronics
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Mosfet vs transistor, High voltage transistor, Mosfet circuits, transistor circuits
IRFR024NTRPBF in Reel by Infineon | Mosfets | Future Electronics
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Power-Efficient 36V-Rated Op Amps Intended for use in industrial systems, the TSB952 dual-channel operational amplifier (op amp) devices now being produced by STMicroelectronics have a 52MHz gain bandwidth and a 88dB (typical) common mode rejection ratio (CMMR). Their supply voltage range spans from 4.5V to 36V, allowing them to be used with a broad selection power sources and connected to numerous standard voltage rails. They draw just 3.3mA of current per channel when operating at 36V. 4kV human body model (HBM) and 1.5kV charged device model (CDM) electro-static discharge (ESD) resilience is supported, with a... READ MORE https://lnkd.in/eB4NYvBy Ronan Mulvaney Alexander Jurman Andrew Hurman Nelly DIMEY Marco Angelici Francesco Muggeri Alexis Breton Fabio Chelli Antonio De Nunzio Anthony Quelen Mike Miller Eric Ponsy Vaughan Matthews
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