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The Wi-Fi 6 IP from Actt adheres to the 802.11ax standard, offering backward compatibility with previous Wi-Fi versions like Wi-Fi 4 and Wi-Fi 5. This versatile wireless communication IP emerges as an efficient solution for high-speed network devices, greatly benefiting environments where reliable and extensive data throughput is mandatory. Engineered to cater to advanced connectivity scenarios, this IP supports large-scale networking solutions, enhancing the performance of smart homes and advanced industrial systems. These comprehensive capabilities enable devices to leverage higher capacity, SSID enhancements, and reduced latency, fostering a significant improvement in user experience. The Wi-Fi 6 IP aligns with the growing need for robust wireless networks by providing both stability and efficiency in communications, essential for next-gen networking devices. Its seamless integration capabilities make it suitable for various consumer electronics, ensuring enhanced connectivity in busy and connected ecosystems.
Actt's 2.4GHz ISM Band RF offering is a high-performance RF IP optimized for low power consumption, essential for the development of Bluetooth and Wi-Fi SoC devices. This IP is designed to be IIT- and IEEE 802.1x-compliant to ensure comprehensive compatibility with the latest technological standards in wireless communications. The IP boasts an optimized architecture that minimizes energy use while maintaining high performance, an integral feature for portable and wear-resistant electronics. Its robustness is demonstrated by its ability to function across a wide temperature range, from -40°C to 105°C, making it ideal for wearables and wireless sensor networks. With capabilities like a fully integrated transceiver and embedded Balun requiring no extra components or masks, the 2.4GHz ISM Band RF stands out as a flexible and scalable solution. Its small footprint and low power requirements make it highly desirable in consumer electronics, IoT devices, and automotive applications.
Actt's SuperMTP® technology represents a leap in embedded MTP solutions, ideal for automotive and industry-specific electronics. With high-performance metrics and reliable storage, this IP reflects Actt's commitment to technological innovation. Although still under development, the SuperMTP® aims to integrate seamlessly with advanced automotive applications, providing robust, non-volatile memory capabilities. The standout features include its ability to handle high-density data efficiently. It is a solution built to withstand the demanding conditions typical of automotive environments, such as extreme temperatures and electromagnetic interference. This makes it especially suitable for next-generation automotive electronics, enhancing both the performance and reliability of onboard systems. Beyond automotive, SuperMTP® is designed for a broad range of applications in consumer and industrial electronics, emphasizing low power consumption and data integrity. Its adaptability to different processes and environments makes it a versatile choice for developers seeking to implement dependable MTP technology in their designs.
LogicFlash Pro® eFlash serves as a premium eFlash solution aiming for high storage reliability combined with impressive performance metrics. It is engineered to meet the needs of modern embedded systems, offering extensive capacity while maintaining superior speed and dependability. Designed for high-performance environments, LogicFlash Pro® provides expansive data retention capabilities suitable for devices requiring large-scale data operations. This IP effectively addresses the varying demands of different technological areas including automotive and consumer electronics, where performance cannot be compromised. The integration potential of LogicFlash Pro® within advanced electronic architectures enables manufacturers to deliver on their promise of reliability and efficiency. It complements devices that demand extensive data storage with quick access times, supporting sustained use over time with minimal wear, ensuring consistent operation in critical consumer and industrial technology sectors.
The SerDes (Serializer/Deserializer) IP from Actt is a crucial technology enabling high-speed data transfer between integrated circuits over short and long distances, supporting interface protocols such as USB, PCIe, and SATA. This IP is crucial for industries requiring rapid data processing and transmission, such as telecommunications and computer systems. Engineered to optimize signal integrity and significantly reduce signal degradation, Actt's SerDes IP facilitates efficient data serialization and deserialization. This feature ensures data integrity over various interfaces, regardless of the complexity of the systems involved. With the dynamic architectural demands of contemporary digital circuits, the SerDes IP is adaptable, addressing both current and future connectivity needs. It’s scalable, allowing integration into complex circuit designs seamlessly, meeting the high data rates demanded by modern networking and computing equipment.
LogicFlash® MTP by Actt is a technologically advanced embedded memory product that focuses on logic-process compatibility, significant for various applications. This IP is ideal for industries requiring efficient and high-performance memory solutions. It stands out due to its compatibility with different technological processes, including logic/BCD/HV/SiGe technologies, ranging from 180nm to 55nm. One of the key features is its ability to support innumerable program and erase cycles, up to 10,000 times, which ensures longevity and reliability in applications that require frequent rewriting. LogicFlash® MTP encapsulates the best aspects of flash technology, offering byte programming, sector erasing, and chip erasing capabilities—integral for dynamic storage solutions. Perfectly suited for complex system designs requiring consistent data storage and retrieval, LogicFlash® MTP enhances memory operations while minimizing additional manufacturing challenges. Its high compatibility and robust design make it suitable for a wide array of electronics, from consumer gadgets to automotive control systems.
LogicEE® EEPROM technology caters to applications where reliability and compact data management are paramount. This EEPROM variant designed by Actt utilizes a single poly gate process, differentiating it from conventional double poly gate methods. LogicEE® EEPROM is engineered for use with logic or specialized processes, facilitating easier integration into diverse silicon plans without unnecessary complexity. This IP supports byte programming, byte erasing, and page erasing, offering flexibility for designers working on projects with specific size and performance needs. It also excels in providing a massive 100,000 cycles of program/erase capability, making it ideal for settings requiring frequent data updates and high endurance. Especially advantageous in environments where lower memory density is required, LogicEE® provides optimum functionality, making it the go-to solution for applications within industrial controls, embedded systems, and low-footprint devices. Designers benefit from improved process efficiencies and performance reliability due to its streamlined architecture and easy adaptability.
Actt's USB 2.0 & USB 1.1 IPs provide a seamless solution for integrating traditional and modern USB interfaces into new system layouts. These interfaces support the UTMI standard, while their crystal-free architecture simplifies the design process, reducing costs and enhancing compatibility with third-party controllers. USB 2.0 offers enhanced data transfer capabilities, crucial for applications in multimedia, data storage, and rapid data transmission frameworks. Its backward compatibility with USB 1.1 ensures adaptable integration into existing systems without needing significant architectural overhauls. These IPs are designed to support robust connectivity, ensuring effective data communication across various devices, thus improving user accessibility and experience. They cater to a wider range of demands in the electronics market, aiming to provide both efficiency and reliability within numerous operational settings.
The MIPI D-PHY from Actt serves as an interface IP optimized for mobile applications requiring low power and high throughput. It supports a wide transfer rate up to 1.5 Gbps per lane, complying with the MIPI D-PHY rev1.1 standard and designed to fit the 0.11um logic process. Primarily targeting applications necessitating robust data lanes like display and camera interfaces, this IP is compatible with DSI/DSI-2 and CSI-2 protocols, effectively bridging components that demand synchronized data exchange. This IP's design considers compactness and power efficiency, crucial for consumer electronics and handheld devices. The use of Actt's D-PHY facilitates streamlined system design by lowering power consumption while providing a stable data interface. This makes it an essential component in the creation of multi-functional, compact electronics that demand both high-speed data transfer and minimal energy usage.
The 1.8V to 5.0V Analog Front End by Actt is designed to optimize a range of applications by integrating analog functions with high efficiency. It is engineered to convert analog signals to digital in an environment-friendly way, ensuring that power consumption is kept to a minimum. With an extended voltage range, this product supports multiple use cases, from automotive to smart home applications, providing versatility and efficient energy management. Embedded within numerous IoT devices, the AFE streamlines signal processing tasks, effectively bridging the gap between the analog input world and digital output requirements. Its modular interface promotes compatibility with different electronic configurations, maintaining robust performance across various conditions. Designed for integration, it fits seamlessly into complex system-on-chip designs, facilitating smooth operation and connectivity. Moreover, this AFE can handle fluctuating signal levels while maintaining precision, vital for tasks such as sensor data acquisition and telemetry. This adaptability ensures that users can rely on it for accuracy and consistency, which are paramount in critical applications such as medical devices and industrial control systems.
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