SKU: 57547319723

Porsche 917K - 1970 Daytona Winner - Gulf Livery

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Porsche 917K - 1970 Daytona Winner - Gulf LiveryArguably one of the most iconic race cars in the history of motorsport, the Porsche 917s conception stemmed from an unexpected change to Commission Sportive Internationale, then the independent competition arm of the FIA, sanctioning rules. After the 1967 race season, it was announced that all future prototype engines would be limited to 3. 0 litres, in order to reduce the speeds generated at the fast endurance tracks, whilst also enticing

Arguably one of the most iconic race cars in the history of motorsport, the Porsche 917’s conception stemmed from an unexpected change to Commission Sportive Internationale, then the independent competition arm of the FIA, sanctioning rules. After the 1967 race season, it was announced that all future prototype engines would be limited to 3.0 litres, in order to reduce the speeds generated at the fast endurance tracks, whilst also enticing manufacturers who were already building three-litre Formula One engines into endurance racing. Well aware that few manufacturers were up to the challenge immediately, the CSI also announced a new Group 4 sports car series, which allowed engine displacements of up to 5.0 litres, but required at least 25 units be produced for homologation. Porsche, already hard at work polishing its 3.0-litre race car, the 908, stunned the world when it unveiled a second prototype race car aimed at the Group 4 category: the 917. Despite the FIA’s doubts, Porsche presented the FIA with 25 units just three weeks after the 917’s debut at the Geneva Motor Show in March of 1969.

Powering the early 917 was a 4.5-litre Flat-12 engine, designed by the noted Porsche engineer Hanz Mezger. To curtail development costs, the engine borrowed heavily from its 3.0-litre counterpart found in the Porsche 908. The 1969 race engines produced 580 bhp and 376 lb-ft of torque. Later models had the option to run larger-displacement engines of 4.9, 5.0 and eventually 5.4 litres, each providing a corresponding bump in performance. The Flat-12 would go on to become the 917’s most defining trait.

While the engine was an immediate success, the car’s body and aerodynamics were anything but. Early tests were worrisome. The car wandered heavily under braking and was diabolical in high-speed turns. None of the regular Porsche drivers wanted to race it. But the engineers at Porsche soldiered on, eventually adding wider rear wheels and a few other changes that made the 917 into a more controllable machine. Short and long-tail versions of the car were developed, but while the 917 long-tail is a thing of beauty, the shape made famous by a flurry of victories is the short version, better known as the 917K, for “Kurtz.”

The 917K did not have to wait long for success. On its public debut at the 1970 Daytona 24 Hours, John Wyer's Gulf-sponsored team finished 1-2 in the race, with the winning car breaking the distance record by 190 miles. This victory effectively began the 917K's domination of the World Sportscar Championship for the next two seasons. Porsche’s first overall victory at the 24 Hours of Le Mans soon followed, a momentous occasion for the German marque, but only one of many more to follow. Triumphs that year came quickly and resoundingly and, in total, the 917K’s first full year of competition would bring seven major victories. 1971 was no different, with six major victories topped by another overall win at Le Mans. Later that year, development of the Can-Am version would start, a car so dominant that the series lost popularity in the United States, never to return.

Today, the 917K is revered as one of the most iconic race cars of all time. It was the car that brought Porsche its first overall victory at the world’s most gruelling race, and the car that would go on to set one of the most impressive records of dominance in prototype racing series the world has ever seen. If its racing achievements alone were not enough, the car would go on to be immortalized on the big screen by Steve McQueen in the film ‘Le Mans'.

This fine 1:8 scale model of the Porsche 917K is based on the #2 car driven to victory by Pedro Rodríguez and Leo Kinnunen, with a single stint provided by Brian Redman, at the 24 Hours of Daytona in 1970. On the awesome 31-degree high bankings of the Daytona Speedway, ex-Aston Martin race team manager John Wyer's Gulf-sponsored team finished 1-2 in the race, with Jo Siffert and Redman (in his actual car) taking the second podium place. The #2 lead car annihilated its rivals, breaking the distance record by 190 miles, 48 laps ahead of the #28 works Ferrari in third. It was the first race in which the iconic Porsche 917K appeared, and this victory was effectively the start of 917K's domination of the WSC for the next two seasons.

This model has been handcrafted and finished in our workshops with the co-operation and assistance of Porsche regarding original finishes, materials, archive imagery and drawings. The use of supremely accurate digital scanning of the original car has allowed us to perfectly recreate every detail at scale. Furthermore, it has undergone detailed scrutiny by both engineering and design teams to ensure complete accuracy of representation.

The Porsche 917K Daytona 1970 is limited to just 199 pieces.

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Elevate your 1:8 scale collection with one of our elegant, harmonious and handcrafted display cabinets, stands or plinths.

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This model is just one of several 1:8 and 1:8 scales in the Porsche 917 Collection.

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★★★★★ 5
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I really could not be happier with the pace and level of detail this book provides. I am a very surface-level Linux user and I wanted to dive in head first. I often find that when I learn about something that I consider really hard or intimidating in tech, I get better at day-to-day use of the tools and my confidence grows. This book is a real confidence-booster if you crave the knowledge of how things work under the hood.
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Wenhui Zhang
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Great book to read
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Great book to keep you updated about upstream Linux
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Reviewed in the United States on March 18, 2024
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Dieter
Lexington, US
★★★★★ 5
A Hands-On and Deep Guide to Linux Kernel Programming
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Linux Kernel Programming, Second Edition is a very practical and well-structured book for anyone who wants to understand how the Linux kernel works. It focuses on both theory and real hands-on learning. The book uses a clear style and explains complex topics in a simple way. It is designed to help readers build real skills, not just read concepts. It is especially useful for developers who want to work closer to the operating system. One of the most interesting parts of the book is the strong introduction to kernel programming. It explains how to set up a development environment, build the Linux kernel from source, and write the first kernel module. This section gives readers a solid starting point and builds confidence early in the learning process. It also explains why loadable kernel modules are widely used in real-world projects. Another highlight is the deep coverage of kernel internals. The book explains core concepts such as kernel architecture, processes, threads, and the difference between user mode and kernel mode. These ideas are often hard to understand, but the book presents them in a clear and structured way. This helps readers see how the operating system really works under the surface. The memory management section is especially strong and detailed. The book spends several chapters explaining how memory is allocated and managed inside the kernel. It also explains advanced topics such as page allocation, memory reclaim, and the out-of-memory system. These chapters are very useful for understanding performance and stability in real systems. Another very interesting section is the coverage of CPU scheduling. The book explains how the Linux kernel decides which task runs at a given time. It introduces scheduling policies, priorities, and modern features like control groups. The explanations are practical and supported by examples, which makes the topic easier to follow. The chapters on kernel synchronization are also a major highlight. They explain concepts such as locks, atomic operations, and deadlock prevention. These topics are critical for writing safe and reliable kernel code. The book also shows real examples and common mistakes, which helps readers avoid problems in their own work. Another strength of the book is its hands-on approach. It includes many kernel modules, scripts, and examples that readers can try themselves. This makes learning more engaging and helps turn theory into real skills. The focus on practical work makes the book stand out from more theoretical resources. Overall, this book is a great choice for developers, system programmers, and engineers who want to understand the Linux kernel in depth. It starts with the basics and moves into advanced topics in a smooth way. The combination of clear explanations and practical examples makes it a strong and valuable learning resource.
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Ember
Charlottesville, US
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Binding glue fell apart in less than a week and the pages fell out. Content is great though and I have a shiny new kernel based on Kali. 4 stars despite the binding because the content is top tier if you love all things Linux 🤌
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Reviewed in the United States on July 4, 2025
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S Navin
Louisville, US
★★★★★ 5
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Format: Paperback, Format: Paperback
Linux Kernel Programming - Second Edition: A Comprehensive and Practical Guide to Kernel Internals, Writing Modules, and Kernel Synchronization is an outstanding resource for anyone eager to understand the inner workings of the Linux kernel. Whether you're a beginner looking to get started or an experienced developer aiming to deepen your knowledge, this book delivers a well-structured and hands-on approach to kernel programming. The book starts with the fundamentals—setting up a kernel development environment, understanding kernel release nomenclature, and compiling the 6.x Linux kernel from source. As you progress, it dives into advanced topics such as kernel configuration, writing and debugging loadable kernel modules (LKMs), kernel synchronization mechanisms, memory management, CPU scheduling, and much more. Each chapter builds on practical examples, ensuring that readers not only understand the theory but also learn how to apply it in real-world scenarios. One of the book's biggest strengths is its focus on practical application. From exploring the kernel build process and bootloader configurations to working with Git for kernel development and troubleshooting system crashes using debugging tools, the book provides step-by-step guidance. The coverage of kernel synchronization techniques—including spinlocks, mutexes, and RCU—makes it an invaluable reference for those dealing with concurrent programming in the kernel space. Whether you're an aspiring kernel developer, a DevOps engineer, or a systems programmer, this book is a must-have. The clear explanations, well-structured content, and hands-on exercises make it a perfect companion for anyone wanting to go from a beginner to an expert in Linux kernel programming. Highly recommended for anyone serious about understanding and working with the Linux kernel!
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