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These platforms deliver market-leading performance, scalability and service integration in a chassis-based form factor ideally suited for medium to large enterprise and service provider data centers and large campus environments where scalability, high performance and concurrent services, are essential.
Designed from the ground up to provide flexible processing and scalability, the SRX can meet the network and security requirements of data center hyper-consolidation, rapid managed services deployments, and aggregated security solutions.
The SRX Series Services Gateways provide unrivaled performance and scalability, ensuring uninterrupted expansion and growth of your network infrastructure without sacrificing security. The SRX Series is designed to meet the network and security requirements for data center consolidation, rapid services deployment, and aggregation of security services. The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers.
The SRX is a high-performance, low-latency firewall for small and mid-sized enterprise campuses and data centers. The SRX is a high-performance, low-latency firewall for small and midsized enterprise campuses and data centers. The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures.
Highly effective protection, market-leading performance, reliability and availability ideally suited to service provider, large enterprise, and public sector organizations. The SRX is ideal for securing large enterprise data centers and service provider infrastructures and for aggregating security services. The SRX Services Gateway is built for large enterprise data centers, service provider infrastructure, and public sector networks.
Toggle navigation. Juniper Networks SRX Series Services Gateways Protect your network edge, data center, and cloud applications with Juniper next-generation physical, virtual, and containerized firewalls. Small Enterprise. SRX Services Gateway The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers.
SRX Services Gateway The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures.
Also, traffic can enter and exit any port on either chassis. This model is flexible compared to the traditional model of forcing traffic to only go through an active member. A firewall at the data center core needs to maintain many concurrent sessions. Although servers may maintain long-lived connections, they are more likely to have connectivity bursts that last a short period of time. This, coupled with the density of running systems, increases the required number of concurrent connections, but at the rate of new connections per second.
If a firewall fails to create sessions quickly enough, or falls behind in allowing the creation of new sessions, transactions are lost. It can meet the scaling needs of today as well as those of tomorrow. Placing a firewall inside the data center core is always challenging, and typically the overall needs of the data center dictate the placement of the firewall. However, there is a perfect location for the deployment of our SRX, as shown in Figure , which builds on the example shown as part of the two-tier data center in Figure This location in the data center network is called the services tier , and it is where services are provided to the data center servers on the network traffic.
This allows the creation of a pool of resources that can be shared among the various servers. It is also possible to deploy multiple firewalls and distribute the load across all of them, but that increases complexity and management costs.
The trend over the past five years has been to move toward consolidation for all the financial and managerial reasons you can imagine. In the data center core, AppSecure and IPS are two key services to include in the data center services tier design. The AppSecure feature allows the SRX to look for attack patterns, unlike other security products.
AppSecure can perform actions like application firewalling, application Quality of Service QoS , and advanced application usage reporting. Because all of the connections to the critical servers will pass through the SRX, adding the additional protection of the IPS technology provides a great deal of value, not to mention additional security for the services tier. Although most administrators are more likely to use the services of a service provider than they are to run one, looking at the use case of a service provider can be quite interesting.
Providing connectivity to millions of hosts in a highly available and scalable method is an extremely tough proposition. Accomplishing this task requires a herculean effort of thousands of people. Extending a service provider network to include stateful security is just as difficult.
Traditionally, a service provider processes traffic in a stateless manner, meaning that each packet is treated independently of any other. In a stateful processing device, each packet is matched as part of a new or existing flow. Each packet must be processed to ensure that it is part of an existing session, or a new session must be created. All of the fields of each packet must be validated to ensure that they correctly match the values of the existing flow.
Scaling a device to do this is extremely challenging. On the left, several customers are shown, and depending on the service provider environment, this could be several dozen to several thousand for the purposes of explanation, only a handful are needed.
The service provider can minimize its operational costs and maximize the density of customers on a single device. Our second scenario for service providers involves protecting the services that they provide. Although a service provider provides access to other networks, such as the Internet, it also has its own hosted services.
For these services, firewalls are typically deployed, as shown in our example topology in Figure They are all the critical types of attacks that the provider needs to be aware of and defend. In the case of a traditional DoS attack, the screen feature can be utilized. Once these thresholds have been exceeded, protection mechanisms are enacted to minimize the threat of these attacks.
We discuss the screen feature in detail in Chapter More and more people who would typically not use the Internet are now accessing the Internet through these mobile devices, which means that access to the public network is advancing in staggering demographic numbers. This explosion of usage has brought a new challenge to mobile operators: how to provide a resilient data network to every person in the world. Such a mobile network, when broken down into smaller, easy-to-manage areas, provides a perfect example of how an SRX Series firewall can be utilized to secure such a network.
For mobile carrier networks, an SRX is the right choice for a few specific reasons: its high session capacity and its high connections-per-second rate.
In the network locations where this device is placed, connection rates can quickly vary from a few thousand to several hundred thousand. A quick flood of new emails or everyone scrambling to see a breaking news event can strain any well-designed network. Figure shows a simplified example of a mobile operator network. By protecting the network, it ensures that its availability and the service that customers spend money on each month continues. If the protection of the handsets is the responsibility of the handset provider in conjunction with the carrier, the same goes for the cellular or 3G Internet services that can be utilized by consumers using cellular or 3G modems.
For any service provider, mobile carriers included, the provided services need to be available to the consumers. As shown in Figure , the SRX devices are deployed in a highly available design. Of course, this failover is transparent to the end user for uninterrupted service and network uptime that reaches to the five, six, or even seven 9s, or The idea of providing any service to anyone at any time to any scale with complete resilience is a dream that is becoming a reality for many organizations.
Both cloud computing vendors and large enterprises are providing their own private clouds. Although each cloud network has its own specific design needs, the SRX Series can and should play an important role.
It must scale in the number of running operating systems it can provide. It must scale in the number of physical servers that can run these operating systems. And it must scale in the available number of networking ports that the network provides to the servers. The SRX Series must be able to scale to secure all of this traffic, and in some cases, it must be able to be bypassed for other services. Figure depicts this scale in a sample cloud network that is meant to merely show the various components and how they might scale.
The same goes for the network. It is simple to provide more VLANs in the network, but it is hard to ensure that the network has the capacity to handle the needs of the servers. The same goes for the SRX Series firewalls. For the SRX Series in particular, the needs of the cloud computing environment must be well planned. As we discussed in regard to service providers, the demands of a stateful device are enormous when processing large amounts of traffic. Because the SRX Series device is one of the few stateful devices in the cloud network, it needs to be deployed to scale.
As Figure shows, the SRX is chosen for this environment because it can be deployed in many different configurations based on the needs of the deployment. The capabilities of the SRX are discussed in Chapter 2. Because of the dynamic nature of cloud computing, infrastructure provisioning of services must be done seamlessly.
This goes for every component in the network, including the servers, the network, and the firewalls. Juniper Networks provides several options for managing all of its devices, as shown in Figure , which illustrates the management paradigm for the devices. Just as the provisioning model scales for the needs of any organization, so does the cloud computing model. On the far left in Figure , direct hands-on or user device management is shown.
This is the device management done by an administrator through the CLI or web management system J-Web. The next example is the command of the device by way of its native application programming interface API; either Junos automation or NETCONF, both of which we discuss in Chapter 2 , where either a client or a script would need to act as the controller that would use the API to provision the device.
The remaining management examples are similar to the first two examples of the provisioning model, except they utilize a central management console provided by Juniper Networks. Lastly, management option six is the most layered and scalable approach. Although this approach seems highly layered, it provides many advantages in an environment where scaling is required.
First, it allows for the creation of a custom application to provide network-wide provisioning in a case where a single management product is not available to manage all of the devices on the network.
Second, the native Juniper application is developed specifically around the Juniper devices, thus taking advantage of the inherent health checks and services without having to integrate them. To simplify the SRX Series learning process, this book consistently uses a single topology that contains a number of SRX Series devices and covers all of the scenarios, many of the tutorials, and all of the case studies in the book.
A single reference network allows the reader to follow along and only have to reference one network map. For readers who are interested in or are using the data center SRX products, these are discussed as well, but the larger devices are not the focus for most of the scenarios. Where differences exist, they will be noted. The network consists of three branch deployments, two data center firewall deployments, and remote VPN users. Five of the topologies represent HA clusters with only a single location that specifies a non-HA deployment.
Although three of the locations are called branches , they could also represent standalone offices without a relationship to any other location. The first location to review is the South Branch location. This device is a small, low-cost appliance that can provide a wide range of features for a location with 2 to 10 users and perhaps a wireless access point, as shown in the close-up view in Figure The West Branch, shown in Figure , is a larger remote branch location.
These firewalls are larger in capacity than the SRX devices in terms of ports, throughput, and concurrent sessions. They are designed for a network with more than 10 users or where greater throughputs are needed. Because this branch has more local users, HA is required to prevent loss of productivity due to loss of access to the Internet or the corporate network. This deployment represents both a large branch and a typical office environment where support for hundreds of users and several gigabits per second of throughput is needed.
The detailed view of the East Branch is shown in Figure This deployment, much like that of the West Branch, utilizes HA. The SRX provides the highest possible throughput for these features compared to any other branch product line. Deployment of the campus core firewalls of our reference network will be our first exploration into the high-end or data center SRX Series devices.
The deployment uses SRX products, and more than 98 percent of the data center SRX Series firewalls sold are deployed in a highly available deployment, as represented here.
These firewalls secure the largest network in the reference design, and Figure illustrates a detailed view of the campus core. Each network has a simple switch to allow multiple hosts to talk to each other. The SRX firewalls are perfect for providing interface density with high capacity and performance. In the DMZ network, several important servers are deployed.
These servers provide critical services to the network and need to be secured to ensure service continuity. This DMZ deployment is unique compared to the other network deployments because it is the only one that highlights transparent mode deployment, which allows the firewall to act as a bridge. Instead of routing packets like a Layer 3 firewall would, it routes packets to a destination host using its media access control MAC address.
This allows the firewall to act as a transparent device, hence the term. The second client type highlighted is a third-party client, which is not provided by Juniper but is recommended when a customer wants to utilize a standalone software client. We will cover both use cases in Chapter Last, customers often deploy a MAG Pulse appliance. The reference network contains the most common deployments for the SRX Series products, allowing you to see the full breadth of topologies within which the SRX Series is deployed.
The depicted topologies show all the features of the SRX Series in ways in which actual customers use the products. We intend for real administrators to sit down and understand how the SRX Series is used and learn how to configure it. We have seen the majority of SRX Series deployments in the world and boiled them down to our reference network.
This chapter covered the most common deployment options for an SRX. This by no means covers all of the possible types of configurations. The new types of designs that customers use to solve complex network issues always impress us at Juniper Networks.
By harnessing the power of Junos and a bit of creativity, the SRX can solve most network deployments. This speaks volumes about the capabilities of the SRX. Often we are tapping into new possible deployment models to solve complex problems. The development of the SRX tends to focus on the use cases covered in this book. It ensures that the SRX can offer optimal solutions for the most desired use cases. These specific scenarios are covered in various test beds ensuring the best possible stability and features to solve these common problems.
What security concept did the SRX inherit from its predecessor that simplified policy creation? Deep packet inspection allows looking inside of the application layer of a packet. This concept is called zones. It allows for a simpler abstract to use when creating policies.
It also reduces the lookup tables for policies, providing faster lookups for matches. Security Design is the application that simplifies policy management for the SRX devices. The SRX is focused on providing services, whereas the NetScreen devices were focused on stateful inspection. The two SRX device classes are branch and data center. The data center devices are also often called high-end firewalls. Skip to main content.
Start your free trial. Chapter 1. Welcome to the SRX. Evolving into the SRX. ScreenOS to Junos. Note Junos has evolved greatly from its initial days as a spin-off of BSD.
Inherited ScreenOS features. Table ScreenOS-to-Junos major feature comparisons. Device management. Integrate with a heterogeneous network environment. Integrate with many different types of management platforms.
Provide this within an easy-to-use web interface. Built for Services. Deployment Solutions. Small Branch. Medium Branch. Large Branch. Data Center. Data Center Edge. Data Center Services Tier. Service Provider. Mobile Carriers. Cloud Networks. Note Although three of the locations are called branches , they could also represent standalone offices without a relationship to any other location.
Study Questions. Questions What is the importance of deep packet inspection? What are the two classes or types of SRX devices? Get it now. Start your free trial Become a member now. Virtual routers VRs. Yes as routing instances.
Deep packet inspection. Yes as full intrusion prevention. Yes as NAT objects. Yes as NAT policies. IPsec virtual private network VPN. Dynamic routing.
If you are not using any specific feature or license , you can delete the license from both devices in a chassis cluster. You need to connect to each node separately to delete the licenses.
For details, see Example: Deleting a License Key. You can verify the licenses installed on both the devices in a chassis cluster setup by using the show system license installed command to view license usage. Use the fields License version and Features to make sure that licenses installed on both the nodes are identical. This topic provides licensing information for SRX Series devices running logical systems and tenant systems.
Starting in Junos OS Release Starting in Junos OS Releases One license for a primary logical system and the other two licenses for user-defined logical system or tenant system.
The system does not allow you to configure additional logical systems or tenant systems if the number of logical systems and tenant systems exceeds the number of available licenses. In the earlier releases, the system allowed you to configure an additional logical system even if the number of logical systems exceeds the number of available licenses, but with a warning message of non-licensed logical-systems do not pass traffic.
You can purchase licenses for additional logical systems and tenant systems that you intend to create. If you intend to configure an interconnect logical system or interconnect tenant system to use as a switch, it also requires separate licenses.
We enforce that you do not configure more logical systems or tenant systems than the number of licenses you have purchased. If the number of logical systems or tenant systems that you attempt to configure exceeds the number of licenses that you have purchased, then the system displays an error message similar to the following:.
You can use the show system license status all-logical-systems-tenants or show system license usage commands to view the active logical systems and tenant systems on the device. When you use SRX Series devices running logical systems or tenant systems in a chassis cluster , you must purchase and install the same number of licenses for each node in the chassis cluster. Logical systems or tenant systems licenses pertain to a single chassis, or node, within a chassis cluster and not to the cluster collectively.
The majority of Content Security features function as a subscription service requiring a license. You can redeem this license once you have purchased your subscription license SKUs.
You redeem your license by entering your authorization code and chassis serial number into the Customer Service license portal interface. Once your entitlement is generated, you can use the CLI from your device to send a license update request to the license portal.
The license portal then sends your subscription license directly to the device. License enforcement is supported on all SRX Series devices. Licensed features including anti-virus or Enhanced Web Filtering will not function until a license has been installed. The license must be installed after installing or upgrading to a new Junos OS Release version. Unlicensed features such as Content Security blocklists and allowlists will continue to function without a license.
The device reserves additional memory for Content Security features and hence decreases the session capacity. These devices do not require any command for memory allocation. Access the SRX Series device console through the serial cable plugged into the console port on the device or by using a terminal session such as SSH.
The Junos OS application signature package update is a separately licensed subscription service. You must install the application signature package update license key on your device to download and install the signature database updates provided by Juniper Networks.
If your license key expires, you can continue to use the locally stored application signature package content. These instructions assume that you already have the license. If you did not order the license during the purchase of the device, contact your account team or Juniper customer care for assistance.
Starting from Junos OS There is no separate license key for AppSecure is available. Starting from You can install the license on the SRX Series device using either the automatic method or manual method as follows:. To install or update your license automatically, your device must be connected to the Internet. Use the show system license command command to view license usage, as shown in the following example:.
Help us improve your experience. Let us know what you think. Do you have time for a two-minute survey? Maybe Later. Licenses for SRX Series. Software Feature Licenses for SRX Series Devices Each feature license is tied to exactly one software feature, and the license is valid for one device. Understanding Chassis Cluster Licensing Requirements There is no separate license required for chassis cluster.
Before adding new licenses, complete the following tasks: Purchase the required licenses. To install licenses on the primary node of an SRX Series device in a chassis cluster:. Note: You must install the updated license on both nodes of the chassis cluster before the existing license expires.
Tip: If you are not using any specific feature or license , you can delete the license from both devices in a chassis cluster. Verifying Licenses on an SRX Series Device in a Chassis Cluster Purpose Action Meaning Purpose You can verify the licenses installed on both the devices in a chassis cluster setup by using the show system license installed command to view license usage.
Action Licenses details on node 0. Meaning Use the fields License version and Features to make sure that licenses installed on both the nodes are identical. If the number of logical systems or tenant systems that you attempt to configure exceeds the number of licenses that you have purchased, then the system displays an error message similar to the following: user host commit error: 2 more multitenancy license s are needed!
Understanding Tenant Systems. Understanding Content Security Licensing The majority of Content Security features function as a subscription service requiring a license. Note: Content Security requires 1 GB of memory.
You can install the license on the SRX Series device using either the automatic method or manual method as follows: Install your license automatically on the device. Install the licenses manually on the device. Verify the license is installed on your device. Enhanced Web Filtering 1 year, 3 years and 5 years subscription. Intrusion Detection and Prevention 1 year, 3 years and 5 years subscription.
These platforms deliver market-leading performance, scalability and service integration in a chassis-based form factor ideally suited for medium to large enterprise and service provider data centers and large campus environments where scalability, high performance and concurrent services, are essential. Designed from the ground up to provide flexible processing and scalability, the SRX can meet the network and security requirements of data center hyper-consolidation, rapid managed services deployments, and aggregated security solutions.
The SRX Series Services Gateways provide unrivaled performance and scalability, ensuring uninterrupted expansion and growth of your network infrastructure without sacrificing security. The SRX Series is designed to meet the network and security requirements for data center consolidation, rapid services deployment, and aggregation of security services.
The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers. The SRX is a high-performance, low-latency firewall for small and mid-sized enterprise campuses and data centers. The SRX is a high-performance, low-latency firewall for small and midsized enterprise campuses and data centers. The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures.
Highly effective protection, market-leading performance, reliability and availability ideally suited to service provider, large enterprise, and public sector organizations.
The SRX is ideal for securing large enterprise data centers and service provider infrastructures and for aggregating security services. The SRX Services Gateway is built for large enterprise data centers, service provider infrastructure, and public sector networks. Toggle navigation. Juniper Networks SRX Series Services Gateways Protect your network edge, data center, and cloud applications with Juniper next-generation physical, virtual, and containerized firewalls.
Small Enterprise. SRX Services Gateway The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers. SRX Services Gateway The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures.
It integrates security, routing, and switching for distributed enterprise offices in a single device. These platforms deliver market-leading performance, scalability and service integration in a chassis-based form factor ideally suited for medium to large enterprise and service provider data centers and large campus environments where scalability, high performance and concurrent services, are essential. Designed from the ground up to provide flexible processing and scalability, the SRX can meet the network and security requirements of data center hyper-consolidation, rapid managed services deployments, and aggregated security solutions.
The SRX Series Services Gateways provide unrivaled performance and scalability, ensuring uninterrupted expansion and growth of your network infrastructure without sacrificing security. The SRX Series is designed to meet the network and security requirements for data center consolidation, rapid services deployment, and aggregation of security services.
The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers. The SRX is a high-performance, low-latency firewall for small and mid-sized enterprise campuses and data centers. The SRX is a high-performance, low-latency firewall for small and midsized enterprise campuses and data centers.
The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures. Highly effective protection, market-leading performance, reliability and availability ideally suited to service provider, large enterprise, and public sector organizations. The SRX is ideal for securing large enterprise data centers and service provider infrastructures and for aggregating security services.
The SRX Services Gateway is built for large enterprise data centers, service provider infrastructure, and public sector networks. Toggle navigation. Juniper Networks SRX Series Services Gateways Protect your network edge, data center, and cloud applications with Juniper next-generation physical, virtual, and containerized firewalls. Small Enterprise. SRX Services Gateway The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers.
Unlock the full power and potential of your network with our open, ecosystem approach. The Juniper Mist Cloud delivers a modern microservices cloud architecture to meet your digital transformation goals for the AI-Driven Enterprise. Apply a Zero Trust framework to your data center network security architecture to protect data and applications. Discover how you can manage security on-premises, in the cloud, and from the cloud with Security Director Cloud. Explore options to quickly connect you with the networking solution you need.
Protect your network edge, data center, and cloud applications with Juniper next-generation physical, virtual, and containerized firewalls. Read report. The highly agile cSRX Container Firewall offers advanced security services to improve visibility and secure applications running in containers and microservices.
The SRX is a high-performance, low-latency next-generation firewall for distributed enterprise campuses and small and midsized data centers.
SRX is a high-performance, low-latency firewall for small and mid-sized enterprise campuses and data centers. SRX is a high-performance, low-latency firewall for small and midsized enterprise campuses and data centers. The SRX firewall is optimized to provide consistent protection across diverse environments with fast, scalable defenses for private enterprise clouds, campus networks, and public cloud infrastructures.
SRX is ideal for securing large enterprise data centers, service provider infrastructure, and public sector networks. SRX is ideal for securing large enterprise data centers and service provider infrastructures and for aggregating security services.
The SRX Firewall is built for large enterprise data centers , service provider infrastructure, and public sector networks. The SRX next-generation firewall connects and secures distributed enterprise locations and consolidates security, SD-WAN, routing, and switching in a small desktop device.
The SRX next-generation firewall connects and secures small distributed enterprise branch offices with consolidated security, SD-WAN, routing, switching, and WAN connectivity in a small, convenient desktop device.
The SRX next-generation firewall connects and secures midsized distributed enterprise branch offices. The SRX next-generation firewall is best suited for midsized and large distributed enterprise branch offices. It consolidates security, routing, switching, and WAN connectivity in a 1 U form factor. It integrates security, routing, and switching for distributed enterprise offices in a single device.
Contractors and freelancers could make up half of the U. The company relies on Juniper networking and security to run its AI-powered SaaS solution and help keep its business operations running smoothly. Juniper Connected Security safeguards users, applications, and infrastructure by extending security to every point of connection, from client to cloud, across the entire network.
Juniper next-generation firewalls reduce the risk of attack and provide granular control of applications, users, and devices through identity-based policies, microsegmentation, VPN connectivity, and validated threat prevention. Accelerate public cloud adoption securely with simple deployment, consistent security, and unified management at every level: within workloads, between applications and instances, and across environments.
Connect applications while protecting data wherever it resides, with validated data center threat mitigation, reliability, and scalable solutions that support your data center architecture initiatives and business requirements. Juniper Connected Security safeguards users, applications, and infrastructure by extending threat intelligence to all connection points across your network. Juniper Support Insights delivers holistic operational health visibility across all Junos OS devices.
Now included with Juniper Care , Support Insights easily and securely connects devices to the cloud and provides actionable intelligence to help organizations optimize their networks. Gartner and Magic Quadrant are registered trademarks of Gartner, Inc.
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