#CMOS-compatible
Researchers have built a CMOS-compatible photodiode for the room-temperature detection of short-wave IR. The new device has the potential to expand the accessibility of SWIR cameras for night vision and other applications.
Hyperdoped Silicon Photodiode Sets Efficiency Record
A new light-trapping architecture could lead to CMOS-compatible night-vision technology.
physics.aps.org
July 30, 2026 at 5:34 PM
Day 268(25) - #sharptember - Just a year after the PC-1211, Sharp are back with this, the PC-1500 - a proper 8 bit computer in your pocket! Wikipedia says it's a Z-80 in there - it's not really, it's a unique CMOS CPU developed by Sharp that's similar, but not compatible ... 1/3
September 25, 2025 at 4:48 PM
Diraq establishes dedicated silicon spin-qubit measurement lab in Albuquerque with New Mexico state funding and DARPA QBI backing. Targets 150,000 physical qubits by 2029 using CMOS-compatible semiconductor architecture.

#SiliconQubits #QuantumHardware #News
Diraq Opens Silicon Spin-Qubit R&D Laboratory in Albuquerque with DARPA and State Support
quantumcomputingreport.com
September 30, 2026 at 10:29 AM
Before I started my current job, I came up with a retrocomputing project that was far too ambitious. I was really enamored with the WDC 65C816, the CPU in the Apple IIGS and Super Nintendo, among others. It's almost 100% backwards compatible to the 65C02, which was a CMOS 6502 with bug fixes.
October 14, 2025 at 4:34 PM
Overall, these results demonstrate that the proposed single-step lithographic metal definition process represents a robust, viable, and cost-efficient route toward CMOS-compatible reconfigurable Silicon Nitride photonics.
June 29, 2026 at 12:42 AM
I probably did ask, but I also probably forgot the answer. I think the "4" is the revision number, i.e. it's the 4th version of the P5. Some of those versions would have been internal only.

I believe the "C" meant it ran at lower CMOS voltages (3.3v) instead of the TTL-compatible 5V.
December 29, 2024 at 6:02 AM
A paper introduces a CMOS-compatible memristor biosensor with threshold-sensing at nanowatt power levels, reducing energy use and simplifying the system. PMID:41339383, Nat Commun 2025, @NatureComms https://doi.org/10.1038/s41467-025-66372-w #Medsky #Pharmsky #RNA #ASHG #ESHG 🧪
Demonstration of CMOS-compatible memristor-based electrochemical biosensor transducer with threshold-sensing functionality | Nature Communications
Many electrochemical biosensors operate based on a threshold-sensing (TS) method, which indicates the presence of a disease when the concentration of a biomarker exceeds a predetermined, disease-specific threshold. The TS in biosensor systems is often implemented using power-hungry signal processing (SP) modules or computers, which increases energy consumption and system complexity. Here, we propose a memristor-based bio-to-electrical transducer with built-in TS functionality, allowing TS to be performed directly within the transducer instead of relying on SP modules and computers. Fabricated resistive random-access memory-based TaOX/Ta2O5 memristors meet the transducer requirements, such as a high on/off ratio greater than 30 while maintaining a long unit pulse width exceeding 10 μs. The intended operation of the proposed transducer was experimentally confirmed by the immediate change in resistance of the memristor (RM) from high resistance state to low resistance state. Using this pr
doi.org
December 31, 2025 at 11:10 AM
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July 17, 2026 at 3:02 PM
Researchers achieve 25-microsecond transmon coherence using 2D materials fabricated with existing CMOS processes, demonstrating a scalable pathway toward solid-state quantum processors without requiring entirely new manufacturing infrastructure.

#2DMaterials #QuantumHardware #News
Two-Dimensional Materials Enable CMOS-Compatible Scalable Quantum Processors
iq.fp2.dev
September 22, 2026 at 3:12 PM
Diraq establece un laboratorio dedicado de medición de qubits de espín de silicio en Albuquerque con financiamiento estatal de Nuevo México y apoyo de DARPA QBI. Objetivo de 150,000 qubits físicos para 2029 utilizando arquitectura de semiconductores compatible con CMOS.
Diraq Abre Laboratorio de I+D de Qubits de Espín de Silicio en Albuquerque con Apoyo de DARPA y el Estado
quantumcomputingreport.com
September 30, 2026 at 10:31 AM
Looks like the GH7 just went on sale. I'm always tempted to upgrade. If you own it, do you think it's a big upgrade from the GH5? Here's an Amazon affiliate link, cause why not?: amzn.to/3KzEmTm
Panasonic LUMIX GH7 Mirrorless Micro Four Thirds Camera with Enhanced Video Speed and Quality, Optimized Workflows from Shooting to Post-Production, Adobe Cloud Compatible & Real-Time LUT, DC-GH7BODY
The LUMIX GH7 allows you to experience dramatic enhancements in the speed and quality of video production, and more. A wide dynamic range with a 25.2M BSI CMOS sensor and improved AF performance with ...
amzn.to
October 6, 2025 at 11:18 AM
Eeroq Develops Advanced Microwave Resonators For Faster, More Accurate Readouts In Quantum Computing

#quantum #quantumcomputing #technology
Eeroq Develops Advanced Microwave Resonators For Faster, More Accurate Readouts In Quantum Computing
EeroQ has developed advanced microwave resonators compatible with its CMOS-based quantum platform, utilizing titanium nitride's kinetic inductance properties to enhance electron measurement speed and ...
quantumzeitgeist.com
February 23, 2025 at 3:05 AM
you’re telling me this resistor is poly?
July 8, 2023 at 3:30 AM
I've managed to make my pc boot again. With a much more stable headspace I noticed the motherboard I ordered wasn't compatible with my CPU, so i just requested a refund and I also checked the CMOS battery. It looks like it might be the culprit of this frustrating situation
April 26, 2026 at 10:28 PM
I'm considering instaling Linux to my old pc, i think Ubuntu or Linux lite could be an option, the thing is that the CMOS isn't working so i first need to fix It but It Will be hard to find out if exists a compatible piece in my old pc
February 3, 2026 at 3:36 PM
Perspective evaluates how 2D materials enable low-loss quantum components via transferable CMOS processes, identifying material reproducibility, manufacturing barriers, and standardized metrology as critical challenges requiring closed-loop process feedback.

#QuantumHardware #2DMaterials #Research
CMOS-Compatible 2D Materials for Scalable Quantum Hardware
arxiv.org
September 17, 2026 at 3:44 PM
New paper online:

Subvolt high-speed free-space modulator with electro-optic metasurface.

Silicon/organic hybrid nanostructures achieve >Gbit s−1 data modulation with #CMOS-compatible driving voltages.

#Metamaterials
#Nanophotonics
#Photonics

www.nature.com/articles/s41...
Subvolt high-speed free-space modulator with electro-optic metasurface - Nature Nanotechnology
Metasurface optical modulators with silicon/organic hybrid nanostructures are demonstrated to achieve >Gbit s−1 data modulation with complementary metal–oxide–semiconductor-compatible driving volta...
www.nature.com
September 10, 2025 at 10:09 AM
"These results establish ALD InOx M3D integration as a scalable and CMOS-compatible platform for next-generation artificial intelligence hardware and advanced electronics."
August 12, 2026 at 6:51 AM
A new hybrid metasurface modulates light at low voltages, enabling energy-efficient, high-speed optical modulation compatible with CMOS technology for advanced communication and sensing applications. doi.org/g97dbk
Hybrid metasurface modulates light at low voltages for energy-efficient optics
Metasurfaces are two-dimensional (2D), nanoengineered surfaces that interact strongly with electromagnetic waves and can control light with remarkable precision.
phys.org
October 20, 2025 at 10:30 AM
These findings establish the feasibility of CMOS-compatible, sMTJ-based probabilistic circuits and mark a key step toward scalable hardware for real-world probabilistic computing applications.
April 17, 2026 at 10:30 PM
⚛️ 🧪 We took a surface technique for ultra-high Si doping from use for cool atomic precision advanced manufacturing (APAM) physics experiments to a CMOS compatible platform that could advance future transistors doi.org/10.1063/5.02... thrilled this was a Featured article in Applied Physics Reviews!
December 24, 2025 at 3:43 PM