Level 1 — Absolute Beginner
Scientists made a new kind of computer chip.
The chip uses DNA, the same material found inside our bodies.
This new chip uses much less power than normal chips.
It could help make computers and AI better in the future.
- scientist
- a person who studies and researches how things work
- chip
- a small electronic part used inside computers
- DNA
- the material inside living cells that carries instructions for life
- power
- the energy needed to make something work
- store
- to keep information for later use
- data
- information stored or used by a computer
- energy
- the power needed to do work or run a machine
- computer
- a machine that stores and processes information
Level 2 — Elementary
Researchers have created a new kind of memory device by combining synthetic DNA with a semiconductor material, resulting in a chip that uses about 100 times less power than conventional memory systems.
The device is described as a bio-hybrid technology because it fuses biological material, chemically engineered strands of DNA, with crystalline perovskite, a semiconductor commonly used in solar cells and lasers.
Unlike most memory chips, which separate storage and processing into different parts, this new device can store and process information in the same place, which helps explain its dramatically lower power use.
Scientists say the breakthrough could be especially useful for artificial intelligence systems, which currently require enormous amounts of energy, and for building smaller, more efficient computers in the future.
- synthetic
- made artificially rather than occurring naturally
- semiconductor
- a material used in electronics that partly conducts electricity
- conventional
- traditional or commonly used
- bio-hybrid
- combining biological material with non-living technology
- strand
- a single thin length of a fiber-like material, such as DNA
- crystalline
- having the structure of a crystal
- processing
- the act of a computer performing operations on information
- breakthrough
- an important discovery or development
Level 3 — Intermediate
A team of researchers has unveiled a memory device that fuses chemically synthesized DNA with crystalline perovskite, a semiconductor material widely used in solar cells and lasers, producing a chip capable of storing and processing data at roughly one hundredth the power consumption of conventional memory systems.
The device belongs to a category researchers call bio-hybrid electronics, an approach that borrows the extraordinary information density of biological molecules, a single gram of DNA can theoretically encode around 215 million gigabytes, and pairs it with the electrical properties of a semiconductor capable of interfacing with existing computing architecture.
Its efficiency stems largely from an in-memory computing design, meaning storage and processing occur within the same physical location rather than being shuttled between separate components, a separation that accounts for a significant share of the energy conventional chips consume moving data back and forth.
Researchers involved in the project say the technology remains at an early, laboratory stage but see clear potential applications in artificial intelligence infrastructure, where soaring energy demand has become one of the industry's most pressing constraints, as well as in the broader push toward smaller, more power-efficient computing hardware.
- unveil
- to reveal or present something new publicly
- consumption
- the amount of something used, such as energy
- density
- the amount of something contained within a given space
- architecture
- the underlying structure or design of a system
- in-memory computing
- a design where data is processed in the same place it is stored
- shuttle
- to move something back and forth between two points
- infrastructure
- the basic systems and structures needed for something to operate
- constraint
- a limitation that restricts what is possible
Level 4 — Advanced
A research team has unveiled a memory device that fuses chemically synthesized oligonucleotide strands with crystalline perovskite, a semiconductor already established in solar-cell and laser applications, yielding a chip capable of storing and processing data at approximately one hundredth the power draw of conventional memory architectures.
The device exemplifies what researchers term bio-hybrid electronics, an approach that appropriates the extraordinary information density intrinsic to biological macromolecules, a single gram of DNA can in principle encode on the order of 215 million gigabytes, and couples it to a semiconductor substrate capable of interfacing with existing electronic infrastructure rather than requiring an entirely bespoke fabrication ecosystem.
Its efficiency gains derive substantially from an in-memory computing paradigm, in which storage and computation are co-located within the same physical substrate rather than partitioned across discrete components, thereby eliminating the data-shuttling overhead that constitutes a disproportionate share of energy expenditure in conventional von Neumann-style architectures.
Researchers involved caution that the technology remains confined to laboratory-scale demonstration, with questions of manufacturing scalability, long-term stability of the biological component, and integration cost still unresolved, even as they identify artificial intelligence infrastructure, currently constrained by an escalating energy footprint, as the most immediately plausible beneficiary of a mature version of the approach.
- oligonucleotide
- a short chain of synthetic DNA or RNA nucleotides
- substrate
- the underlying layer or material on which a device is built
- bespoke
- custom-made for a particular purpose rather than standardized
- co-located
- positioned together in the same place
- overhead
- extra resources or cost required to support an operation
- von Neumann architecture
- a traditional computer design that separates memory and processing
- scalability
- the capacity of a system to grow or be produced at larger scale
- footprint
- the overall impact or resource use of something, such as energy