AMD-Xilinx takeover confirmed

Today, AMD and Xilinx  announced they have entered into a definitive agreement for AMD to acquire Xilinx in an all-stock transaction valued at $35 billion. The combination will offer a portfolio of  processor technologies, combining CPUs, GPUs, FPGAs, Adaptive SoCs and software expertise to enable computing platforms for cloud, edge and end devices. The combined ...

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Xilinx adds hardened IP to increase RFSoC performance for 5G

Xilinx has announced an enhanced Zynq RFSoC architecture to meet the requirements of a second wave of 5G. The ZynqRFSoC DFE integrates hardened digital front end application-specific blocks for 5G NR performance. It will operate up to 7.125GHz and is futureproofed for 3GPP and O-RAN radio architectures, says Gilles Garcia, director of Wired Communication, at ...

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Maxim majors on industrial automation with new parts and designs

Maxim has announced a suite of integrated circuits and reference designs for industrial automation using IO-Link communications. IO-Link is a short-range (<20m) point-to-point industrial bus developed to connect sensors and actuators to a local hub, from which the data is transferred to a remote PLC (programmable logic controller) via Ethernet or other long-range field bus. ...

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Toshiba CMOS op-amp draws only 0.27μA

Toshiba has released an micro-power CMOS operational amplifier, drawing a maximum of 600nA and typically 270nA (1.5V supply, -40 to 105°C). Called TC75S102F, it will run from supplies between 1.5V and 5.5V and is rail-to-rail on both input and output. Unusually for an op-amp, no input excursion outside the rails is allowed at all. “Operational amplifiers have ...

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Toshiba CMOS op-amp draws only 0.27μA

Toshiba has released an micro-power CMOS operational amplifier, drawing a maximum of 600nA and typically 270nA (1.5V supply, -40 to 105°C). Called TC75S102F, it will run from supplies between 1.5V and 5.5V and is rail-to-rail on both input and output. Unusually for an op-amp, no input excursion outside the rails is allowed at all. “Operational amplifiers have ...

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Toshiba CMOS op-amp draws only 0.27μA

Toshiba has released an micro-power CMOS operational amplifier, drawing a maximum of 600nA and typically 270nA (1.5V supply, -40 to 105°C). Called TC75S102F, it will run from supplies between 1.5V and 5.5V and is rail-to-rail on both input and output. Unusually for an op-amp, no input excursion outside the rails is allowed at all. “Operational amplifiers have ...

This story continues at Toshiba CMOS op-amp draws only 0.27μA

Or just read more coverage at Electronics Weekly

Toshiba CMOS op-amp draws only 0.27μA

Toshiba has released an micro-power CMOS operational amplifier, drawing a maximum of 600nA and typically 270nA (1.5V supply, -40 to 105°C). Called TC75S102F, it will run from supplies between 1.5V and 5.5V and is rail-to-rail on both input and output. Unusually for an op-amp, no input excursion outside the rails is allowed at all. “Operational amplifiers have ...

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Renesas launches online marketplace

Today, Renesas launches its online Market Place, which offers a one-stop source of solutions that help accelerate technical innovation for the future mobility market. Developers can download various solutions designed for Renesas’ R-Car automotive system-on-chips (SoCs) directly from the Market Place. Developers can also use the Market Place as a portal to obtain reference evaluation ...

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Farnell signs MegiQ

Farnell has added RF and microwave development tools from MegiQ to its test and measurement portfolio. Farnell offers the full MegiQ range of Vector Network Analysers and Antenna Measurement Systems used by designers to develop, test and verify wireless communication equipment and IoT devices. MegiQ products are affordable to to IoT start-ups and universities looking ...

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Tek’s isolated scope probes get smaller and better

Tektronix has announced a second-generation of IsoVu isolated oscilloscope probes, claiming smaller size, easier use and enhanced electrical performance. Isolated probes are for probing power systems when high common-mode voltages and un-grounded systems make life difficult for differential probes. “Engineers working with wide-bandgap technologies such as SiC and GaN face difficult challenges to accurately measure and ...

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