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HN804: How Prisma SASE Builds on Public Clouds for Scale, Resiliency (Sponsored)

How do you architect a Secure Access Service Edge (SASE) to provide critical security services to millions of endpoints distributed across the planet? How do you build such a service for scale, performance, and resiliency? One option is to build your own PoPs or use colocation facilities, run your own infrastructure stack, and connect everything ... Read more »

7 April 2026 at 09:31 am
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HN804: How Prisma SASE Builds on Public Clouds for Scale, Resiliency (Sponsored)

In the rapidly evolving landscape of cybersecurity, organizations are increasingly turning to Secure Access Service Edge (SASE) solutions to protect their distributed endpoints and ensure secure access to sensitive data. One of the key challenges in deploying a SASE architecture is achieving scale, performance, and resiliency across a global network of millions of endpoints. Traditional approaches, such as building proprietary data centers or colocation facilities, can be costly, time-consuming, and complex to manage. However, a more efficient and scalable alternative is leveraging public clouds to build a SASE infrastructure.

HN804, a leading provider of cloud-native SASE solutions, has pioneered an approach that harnesses the power of public clouds to deliver a highly scalable, resilient, and performant SASE architecture. By building on public clouds, HN804 eliminates the need for organizations to invest in expensive on-premises infrastructure or rely on third-party colocation providers. Instead, the company leverages the global network of public cloud data centers, ensuring that security services are delivered from the edge of the network, close to the endpoints they protect.

One of the primary advantages of using public clouds for SASE is the inherent scalability of cloud resources. As the number of endpoints grows, organizations can easily scale up their security services by adjusting cloud resource allocations. This flexibility allows companies to respond quickly to changing security threats and accommodate sudden spikes in endpoint activity without the need for significant upfront infrastructure investments.

Resiliency is another critical factor in a SASE architecture, as outages or downtime can have severe consequences for business operations and user experience. By deploying SASE on public clouds, HN804 ensures high availability and fault tolerance through the redundancy and geographic distribution of cloud infrastructure. Public clouds offer multiple availability zones and regions, which means that if one zone or region experiences an outage, traffic can be automatically rerouted to another, ensuring minimal disruption to services.

Performance is also a key consideration in a global SASE deployment. To ensure that security services are delivered quickly and efficiently, HN804 utilizes the extensive global network of public cloud data centers. By placing security services closer to endpoints, the company reduces latency and improves response times, which is crucial for real-time threat detection and mitigation. Additionally, public clouds offer advanced networking capabilities, such as low-latency peering and direct connectivity, which further enhance the performance of SASE services.

Another benefit of using public clouds for SASE is the ability to take advantage of cloud-native features, such as automated orchestration, self-healing, and machine learning-driven threat detection. These capabilities enable HN804 to deliver advanced security services with minimal manual intervention, ensuring that organizations can focus on their core business activities while relying on a robust, automated security infrastructure.

However, building a SASE architecture on public clouds is not without its challenges. One of the main concerns is the security posture of the cloud infrastructure itself. Public clouds are designed to be secure, but organizations must ensure that their SASE services are properly configured and that access controls are in place to prevent unauthorized access. HN804 addresses these concerns by implementing strict security protocols, including encryption, multi-factor authentication, and continuous monitoring of cloud resources.

In conclusion, HN804's approach to building a SASE architecture on public clouds offers a scalable, resilient, and performant solution for organizations with millions of distributed endpoints. By leveraging the global network and advanced capabilities of public clouds, HN804 enables companies to deliver critical security services without the need for extensive on-premises infrastructure. As the demand for secure and efficient access management continues to grow, cloud-native SASE solutions like those provided by HN804 are poised to become the standard for modern cybersecurity architectures.

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