Invented by James Michael Gardner, Scott A. Linn, Stephen D. Panshin, Jefferson P. Ward, David Owen ROETHIG, David N. Olsen, Anthony D. Studer, Michael W. Cumbie, Sirena Chi LU, Hewlett Packard Development Co LP

The market for logic circuitry has been experiencing significant growth in recent years, driven by the increasing demand for advanced electronic devices and the rapid development of emerging technologies such as artificial intelligence, Internet of Things (IoT), and autonomous vehicles. Logic circuitry plays a crucial role in the functioning of these technologies, enabling the processing and manipulation of digital signals. Logic circuitry refers to the building blocks of digital electronic systems, which are responsible for performing logical operations such as AND, OR, and NOT. These circuits are composed of transistors and other electronic components that can be combined to create complex logic functions. The market for logic circuitry encompasses a wide range of products, including logic gates, flip-flops, multiplexers, decoders, and registers. One of the key drivers of the logic circuitry market is the increasing demand for high-performance electronic devices. With the growing complexity of applications and the need for faster processing speeds, there is a rising demand for logic circuits that can handle large amounts of data and perform complex operations in real-time. This is particularly evident in sectors such as telecommunications, automotive, aerospace, and defense, where the demand for high-speed data processing and reliable performance is critical. Another factor contributing to the growth of the logic circuitry market is the rapid development of emerging technologies. Artificial intelligence, for example, relies heavily on logic circuitry to process and analyze vast amounts of data, enabling machines to learn, reason, and make decisions. As AI continues to advance and find applications in various industries, the demand for advanced logic circuitry will only increase. The Internet of Things is another area driving the demand for logic circuitry. With the proliferation of connected devices, there is a need for efficient and reliable logic circuits that can handle the communication and processing requirements of IoT devices. Logic circuitry enables the seamless integration of sensors, actuators, and other components in IoT devices, allowing them to collect, transmit, and analyze data. Furthermore, the automotive industry is witnessing a rapid shift towards autonomous vehicles, which heavily rely on logic circuitry for their operation. From sensor fusion to decision-making algorithms, logic circuits play a vital role in enabling autonomous vehicles to perceive their surroundings, make real-time decisions, and navigate safely. In terms of geographical distribution, the logic circuitry market is dominated by North America, followed by Asia Pacific and Europe. North America has a strong presence of major semiconductor manufacturers and technology companies, driving the demand for logic circuitry. Asia Pacific, on the other hand, is witnessing significant growth due to the increasing adoption of electronic devices and the rapid industrialization in countries like China, Japan, and South Korea. In conclusion, the market for logic circuitry is experiencing robust growth due to the increasing demand for advanced electronic devices and the rapid development of emerging technologies. As the complexity of applications continues to grow, logic circuitry will play a crucial role in enabling the processing and manipulation of digital signals. With the rise of AI, IoT, and autonomous vehicles, the demand for advanced logic circuitry is expected to continue its upward trajectory, making it a promising market for semiconductor manufacturers and technology companies.

The Hewlett Packard Development Co LP invention works as follows

A logic circuit for an replaceable print component can generate count values within a range of count values defined by the highest and lowest counts.

Background for Logic circuitry

Subcomponents can communicate in various ways. You can use the Serial Peripheral Interface protocol (SPI), Bluetooth Low Energy (BLE), Near Field Communications(NFC), or any other type of digital or analog communication.

Some 2D and 3-D printing systems have one or more replacement print apparatus components such as print materials containers (e.g. inkjet cartridges, toner cartridges, ink supplies, 3D printing agent supplies, build material supplies etc. Inkjet printhead assembly, etc. In some examples logic circuitry connected to the replaceable components of the printing apparatus communicates with the logic circuitry in the printing apparatus where they are installed. For example, the logic circuitry can exchange information about their identity, capabilities and status. Print material containers can also include circuitry that executes one or more monitoring tasks, such as level sensing.

BRIEF DESCRIPTION DES DRAWINGS

Non-limiting Examples will be described now with reference to the drawings in which:

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIGS. “FIGS.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

FIG. “FIG.

Click here to view the patent on Google Patents.