LS1022ASE7EKB Allicdata Electronics
Allicdata Part #:

LS1022ASE7EKB-ND

Manufacturer Part#:

LS1022ASE7EKB

Price: $ 20.22
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: LS1 32BIT ARM SOC 600MHZ DDR3L
More Detail: ARM® Cortex®-A7 Microprocessor IC QorlQ LS1 2 Core...
DataSheet: LS1022ASE7EKB datasheetLS1022ASE7EKB Datasheet/PDF
Quantity: 1000
84 +: $ 18.37840
Stock 1000Can Ship Immediately
$ 20.22
Specifications
Series: QorlQ LS1
Packaging: Tray 
Part Status: Active
Core Processor: ARM® Cortex®-A7
Number of Cores/Bus Width: 2 Core, 32-Bit
Speed: 600MHz
Co-Processors/DSP: Multimedia; NEON™ SIMD
RAM Controllers: DDR3L, DDR4
Graphics Acceleration: No
Ethernet: GbE (2)
SATA: SATA 3Gbps (1)
USB: USB 2.0 (1)
Voltage - I/O: --
Operating Temperature: 0°C ~ 105°C
Package / Case: 525-FBGA, FCBGA
Supplier Device Package: 525-FCPBGA (19x19)
Description

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Microprocessors are responsible for processing information in a wide variety of electronic products, from automotive systems to mobile phones. The LS1022ASE7EKB is a low-power ARM processor developed by NXP Semiconductors, and it’s a powerful and reliable option for embedded systems applications. This processor offers a range of features that make it attractive for use in a variety of products. Furthermore, the LS1022ASE7EKB’s flexible configuration and functional capabilities make it a viable choice for a range of embedded applications.

LS1022ASE7EKB Application Field

The primary application fields of the LS1022ASE7EKB processor are industrial control, automotive, healthcare, and consumer electronics. It is mainly used for embedded systems, where its small size, low power consumption, and robust performance make it an ideal choice for the task. It is also suitable for general-purpose digital signal processing tasks, such as image processing, speech recognition, and other compute-intensive processes.

The LS1022ASE7EKB processor is also commonly used in robotics, since its low-power design makes it easily able to support robots with limited electricity resources. Its low cost and feature-rich design also make it a popular choice for academic projects in the field of robotics. Additionally, its 32-bit architecture ensures it is compatible with various programming languages, allowing for easy exploration and experimentation with robotic technology.

LS1022ASE7EKB Working Principle

The LS1022ASE7EKB processor operates on a 32-bit ARM Cortex-A53. It runs up to 1.3 GHz and supports several types of code, including C & C++. It also includes a floating-point unit, memory management unit, and vector floating-point extensions.

The processor is powered by two PLLs, Primary PLL and Auxiliary PLL, that allow the processor to clock itself at higher speeds as needed. This allows the processor to operate at a lower power level than alternatives, yet still remain responsive to user input. It also supports 64-bit instructions, allowing for enhanced performance compared to standard 32-bit ARM cores.

The processor supports 64-bit addressing, allowing for access to large memory spaces. This is a useful feature for some embedded applications, particularly those used in robotics, industrial systems, and consumer electronics. The processor also supports multiple peripherals, including a display controller and DMA engine.

The processor contains several security features, such as secure boot and memory protection, that protect against malicious code attempts. These features also make it suitable for use in applications such as automotive or healthcare systems that require strong security measures. Additionally, the processor includes data encryption capabilities, allowing for secure transmissions over the internet and other communication media.

Conclusion

In conclusion, the LS1022ASE7EKB is an advanced ARM processor suitable for a variety of embedded systems. Its features and capabilities make it an attractive choice for applications in industrial control, automotive, healthcare, and consumer electronics. It is also suitable for general-purpose digital signal processing applications and robotics. Furthermore, its low-power design and security features make it a viable choice for embedded systems that require reliable performance, power management, and secure communication.

The specific data is subject to PDF, and the above content is for reference

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