industry news
Subscribe Now

IAR Systems dominates the tools market for ARM Cortex-M with leading code efficiency

Foster City, CA, United States—September 30, 2014—IAR Systems® announces that its ARM® development tools continue to deliver the market’s best performance for ARM Cortex®-M microcontrollers. CoreMark® benchmark scores for the new ARM Cortex-M7 core adds to a row of unbeaten performance records for the highly optimizing IAR C/C++ Compiler™ for microcontrollers based on the ARM Cortex-M processor family.

IAR Embedded Workbench® is the leading development toolchain for ARM Cortex-M microcontrollers. In addition to the sophisticated IAR C/C++ Compiler, the tools include extensive debugging and analysis possibilities, and offer the broadest device support in the industry covering more than 3,000 ARM devices. Thanks to strong partnerships with the leading microcontroller manufacturers, IAR Systems is able to deliver market-leading performance across a wide spectrum of ARM Cortex-M-based processor families. This unique independence allows customers to pick and choose among the different microcontrollers, finding the perfect choice for their needs while feeling confident they will be able to maximize the features of the selected microcontroller.

IAR Embedded Workbench for ARM delivers best-in-class CoreMark results for ARM Cortex-M:

ARM core Device Compiler CoreMark/MHz
Cortex-M7 ST STM32F756NGH6 IAR C/C++ Compiler for ARM 5.01
Cortex-M4 Freescale Kinetis K70 IAR C/C++ Compiler for ARM 3.40
Cortex-M3 Atmel SAM3SD8CAU IAR C/C++ Compiler for ARM 3.32
Cortex-M0+ Atmel SAM D20 IAR C/C++ Compiler for ARM 2.46
Cortex-M0 ST STM32F051C8 IAR C/C++ Compiler for ARM 2.20

Source: coremark.org

“The latest benchmark for the new ARM Cortex-M7 core is an additional proof of our world-leading performance for ARM,” says Thomas Sporrong, Global FAE Manager, IAR Systems. “While providing advanced optimizations on multiple levels, our tools are easy to use and offer smart features such as runtime analysis, data visualization, code profiling and integrated monitoring of power consumption. This lets our customers create the fastest, most compact applications and helps them keep up with project deadlines.”

“Together with ARM and their new high-performance core we have reached a new milestone for ARM Cortex-M processors with a score above 5 CoreMarks/MHz. This not only shows the capabilities of our optimization team, but also the power of strong partnerships,” says Stefan Skarin, CEO, IAR Systems. “Anyone looking at working with a microcontroller based on any of the ARM Cortex-M cores can be sure we are committed to supporting them with high-performance tools, a powerful ecosystem and a dedicated support and sales team eager to be of service.”

CoreMark was developed by EEMBC, a non-profit industry association for embedded microprocessor benchmarks. CoreMark is a simple, yet sophisticated, benchmark that is designed specifically to test the functionality of a processor core. Running CoreMark produces a single-number score allowing users to make quick comparisons between processors. Scores are published at www.coremark.org.

About IAR Systems

IAR Systems provides developers of embedded systems with world-leading software tools for developing competitive products based on 8-, 16-, and 32-bit processors. Established in Sweden in 1983, the company has over 46 000 customers globally, mainly in the areas of industrial automation, medical devices, consumer electronics, telecommunication, and automotive products. IAR Systems has an extensive network of partners and cooperates with the world’s leading semiconductor vendors. IAR Systems Group AB is listed on NASDAQ OMX Stockholm. For more information, please visit www.iar.com

 

Leave a Reply

featured blogs
Apr 26, 2024
LEGO ® is the world's most famous toy brand. The experience of playing with these toys has endured over the years because of the innumerable possibilities they allow us: from simple textbook models to wherever our imagination might take us. We have always been driven by ...
Apr 26, 2024
Biological-inspired developments result in LEDs that are 55% brighter, but 55% brighter than what?...
Apr 25, 2024
See how the UCIe protocol creates multi-die chips by connecting chiplets from different vendors and nodes, and learn about the role of IP and specifications.The post Want to Mix and Match Dies in a Single Package? UCIe Can Get You There appeared first on Chip Design....

featured video

MaxLinear Integrates Analog & Digital Design in One Chip with Cadence 3D Solvers

Sponsored by Cadence Design Systems

MaxLinear has the unique capability of integrating analog and digital design on the same chip. Because of this, the team developed some interesting technology in the communication space. In the optical infrastructure domain, they created the first fully integrated 5nm CMOS PAM4 DSP. All their products solve critical communication and high-frequency analysis challenges.

Learn more about how MaxLinear is using Cadence’s Clarity 3D Solver and EMX Planar 3D Solver in their design process.

featured paper

Designing Robust 5G Power Amplifiers for the Real World

Sponsored by Keysight

Simulating 5G power amplifier (PA) designs at the component and system levels with authentic modulation and high-fidelity behavioral models increases predictability, lowers risk, and shrinks schedules. Simulation software enables multi-technology layout and multi-domain analysis, evaluating the impacts of 5G PA design choices while delivering accurate results in a single virtual workspace. This application note delves into how authentic modulation enhances predictability and performance in 5G millimeter-wave systems.

Download now to revolutionize your design process.

featured chalk talk

SLM Silicon.da Introduction
Sponsored by Synopsys
In this episode of Chalk Talk, Amelia Dalton and Guy Cortez from Synopsys investigate how Synopsys’ Silicon.da platform can increase engineering productivity and silicon efficiency while providing the tool scalability needed for today’s semiconductor designs. They also walk through the steps involved in a SLM workflow and examine how this open and extensible platform can help you avoid pitfalls in each step of your next IC design.
Dec 6, 2023
18,875 views