Choose a country or area to see content specific to your location
What are you looking for?
Bridging design and physical testing to evaluate drop, impact, shock, and vibration compliance before hardware exists.
Unlock your free upgrade to the next bandwidth tier.
Strengthen 1.6T network reliability for AI-scale workloads from transceivers to interconnects.
Pair Keysight VSA software with the new XA5 signal analyzer for advanced visualization, demodulation, and analysis — start your 30-day trial today.
With extra memory and storage, these enhanced NPBs run Keysight's AI security and performance monitoring software and AI stack.
Explore end-to-end workflows spanning IC design, validation, wafer test, and photonics.
Explore curated support plans, prioritized to keep you innovating at speed.
Achieve 200+ Gbaud multi-level modulated signals with high-speed AWGs for digital and optical standards.
Maximize accuracy and performance with precision accessories engineered for Keysight instruments.
Explore dual-channel and ultra-wideband signal analysis for demanding RF workflows.
Get faster, clearer insights with our new multicore, 12-bit oscilloscope up to 33 GHz. Trade in your old oscilloscope and get credit toward a new XR8.
Authoritative application notes, data sheets, reference designs, and test procedures to accelerate design and validation decisions.
Hands‑on bootcamps that teach system design, test methods, and production workflows engineers can apply immediately.
Success Stories
Quick access to support related self-help tasks.
Additional content to support your product needs.
Explore services to accelerate every step of your innovation journey.
Training Targets provide a practical and controlled environment for learning, developing, and validating fault injection techniques. Designed to model the behavior of modern embedded devices, these platforms enable security engineers, researchers, evaluation laboratories, and development teams to gain hands-on experience with real-world fault injection attacks without risking production hardware.
The DS1030A and DS1031A Training Targets are based on ARM Cortex-M4 architectures and have been specifically modified to support advanced fault injection evaluations. They include a range of cryptographic implementations, configurable countermeasures, and documented attack points, allowing users to explore how voltage, electromagnetic, optical, and timing-based faults can influence device behavior. By providing realistic targets with repeatable characteristics, these platforms help users better understand fault mechanisms, attack execution, and vulnerability discovery.
Integrated with the Inspector software suite and supported by source code and development tools, the Training Targets can also be used for prototyping, research, and custom experimentation. Whether used for education, tool validation, certification preparation, countermeasure evaluation, or security research, they provide a reliable foundation for building hands-on fault injection expertise and accelerating hardware security testing workflows.
Perform voltage, electromagnetic, optical, and timing-based fault injection experiments using realistic embedded targets.
Assess the effectiveness of protective mechanisms and observe how devices respond to different fault conditions.
Combine training hardware, source code, and software tools in a single platform for education, experimentation, and development.
Leverage documented attack points and stable target behavior to reproduce results and compare testing methodologies.
Memory
1 MB Flash, 196 KB SRAM
Instrument Type
ARM Cortex-M4F Development Board
Frequency
168 MHz
Product type
Software crypto training target, Hardware crypto training target
Technology
Device Security
The DS1030A Software Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
The DS1030A Software Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
DS1030A
The DS1030A Software Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
The DS1030A Software Crypto Training Target is a development board based on an ARM Cortex-M4F core working at a 168MHz clock speed. It has been physically modified and programmed to act as a training target for side channel analysis (SCA) and fault injection (FI) attacks. It may also be used for development and prototyping, thanks to the provided source code and integrated development environment (IDE).
The DS1031A Hardware Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
The DS1031A Hardware Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
DS1031A
The DS1031A Hardware Crypto Training Target is a training target and development/prototyping board for side channel analysis and fault injection.
The DS1031A Hardware Crypto Training Target is a development board based on an ARM Cortex-M4F core working at a 168MHz clock speed. It has been physically modified and programmed to act as a training target for side channel analysis (SCA) and fault injection (FI) attacks. The source code and integrated development environment (IDE) provided with the target allow it to also be used for development and prototyping.
Innovate at speed with curated support plans and prioritized response and turn-around times.
Get predictable, lease-based subscriptions and full lifecycle management solutions—so you reach your business goals faster.
Experience elevated service as a KeysightCare subscriber to get committed technical response and more.
Ensure your test system performs to specification and meets local and global standards.
Make measurements quickly with in-house, instructor-led training, and eLearning.
Download Keysight software or update your software to the newest version.
A training target is a purpose-built hardware platform designed to help users learn, develop, and validate fault injection techniques. Unlike production devices, training targets are specifically engineered to expose security-relevant behavior and provide a repeatable environment for experimentation.
Training targets provide documented attack points, known cryptographic implementations, and predictable behavior, allowing users to focus on learning fault injection techniques and evaluation methodologies without the risk of damaging production hardware or disrupting development activities.
Training Targets are commonly used by:
The Training Targets support a variety of fault injection evaluations, including:
The DS1030A focuses primarily on software-based cryptographic implementations, while the DS1031A includes hardware cryptographic functionality that more closely resembles the hardware accelerators found in modern secure devices. Together, they allow users to explore different fault injection attack methods, fault effects, and security challenges.
Software and hardware cryptographic implementations often respond differently to fault injection attacks and implement different protection mechanisms. Evaluating both provides a broader understanding of real-world targets, as production devices may implement cryptography in software, hardware, or a combination of both.
Yes. The Training Targets include configurable countermeasures that allow users to observe how security protections affect fault injection attack success rates and device behavior under fault conditions.
Yes. They provide a structured and repeatable environment for learning fault injection concepts and attack methodologies. At the same time, they are sophisticated enough to support advanced research, tool validation, and professional security evaluations.
Yes. The platforms are specifically designed to support both methodologies, allowing users to perform active fault injection attacks as well as passive side-channel measurements using the same target hardware.
The Training Targets integrate seamlessly with the Inspector software suite for test automation, execution, analysis, and reporting. They also include source code, development tools, and documentation, enabling custom experimentation and prototyping.
Yes. Source code, development tools, and documentation are provided to support customization, prototyping, research activities, and the development of new attack scenarios
The best choice depends on your evaluation goals. The DS1030A is ideal for exploring software-based cryptographic implementations, while the DS1031A enables evaluation of hardware cryptographic functionality and related fault injection attack scenarios. The Keysight Device Security team can help recommend the most appropriate platform for your training and research objectives.
The Training Targets support a range of fault injection methodologies, including voltage glitching, electromagnetic fault injection, optical fault injection, and timing-based attacks. This enables users to gain hands-on experience with many of the techniques used in real-world hardware security assessments.