Mainframe IT professionals always get excited when IBM announces a new version of its stalwart mainframe z Systems platform. Coming more than two years after the IBM z13, the previous major upgrade z System upgrade, IBM is bolstering the platform with a slew of useful new and improved capabilities. IBM is touting the capabilities of the z14 as being able to deliver additional value to the customer via continuous hardware and software innovation. Mainframe customers look to the new capabilities of a new hardware release to help plan their future capacity requirements so it is vital that existing customers understand the benefits of the new machine.
But IBM is shooting higher with the z14; whereas most new mainframe rollouts focus on improving the experience for the installed base, the z14 is also targeting new installations.
The IBM z14 provides Pervasive Encryption, making the platform one of the most secure hardware offerings available. Specialized cryptographic hardware is utilized to encrypt data and protect encryption keys, enabled through integration with a tamper-responding cryptographic HSM.
The IBM z14 pervasively protects all application and database data, without interrupting business applications and operations, all the time, at any scale. True end-to-end data protection is provided for all in-flight network data and APIs.
Imagine being able to protect all your data and applications without requiring IT or programmer action. With the z14 this becomes reality instead of imagination. This move is a clear indication that IBM is working hard to attract new customers to the mainframe with the z A platform with end-to-end protection has clear benefits for organizations with stringent security requirements, significant compliance needs such as GDPR complianceor for any company looking to improve the security of their operations or comply with new or existing industry and governmental regulations.
With the increasing acceptance of blockchain applications and their integration into core business processes, security, encryption, and resiliency become more important. IBM also announced more flexible pricing options to make it easier for customers to affordably adopt and utilize the IBM z14 for any type of workload that needs to be run.
Dubbed Container Pricing and comprising three new models, customers can identify workload to containers and pay for them independently of any other workload at a reduced price. Container Pricing is an important breakthrough for mainframe customers because it offers competitive economics versus alternative platforms such as public clouds and on-premises x86 servers.The Value of IBM Z Mainframes
Furthermore, customer can change the container size as needed. The DevTest solution provides an option for bringing development and testing workload back to the mainframe. Why is this important? Well, historically development and productions workloads are charged the same way on the mainframe. As such, many customers have moved testing off the mainframe to reduce cost. But doing so can cause issues because of platform compatibility. The New Application Solution provides an option for co-locating new workloads with existing workloads but paying a reduced amount for the new workload without impacting existing workload capacity or billing.
The container size defined for the new application sets the billing for all capacity-priced IBM software; licensing is only to the container size. New is defined as anything new purchased or written and modernized workloads.
The final Container Pricing model is designed for Payment systems. In this case, pricing is based on the business metric of payments volume processed, not the available capacity.
Traditionally, to process a payment requires a combination of online and batch processes to complete. Modern business has driven the time to completion for a payment from 24 hours or longer to as little as ten seconds.
This makes the workload extremely spikey. In many cases, capacity as a metric breaks down because of the massive amount of capacity that must be provisioned to meet new payment processing demands. Instead, with the Payment Solution, the customer defines all the processes that comprise a payment and a new MLC-based metric enables the client to pay by the payment which can be as low as a quarter of a cent per payment.
The models will also be made available for customers on the IBM z The goal is to open up the mainframe for all manner of workload, especially CPU intensive workloads requiring security and protection at a reasonable price. Power is the third aspect of the IBM z14 announcement. The system is capable of running more than 12 billion encrypted transactions per day on a single system. And the IBM z14 delivers industry leading scale to meet the needs of modern connected workloads. It can run a million Docker containers on single platform.
The system supports up to ten active cores PUs per chip running at 5.The new server has 30 customer-characterizable cores running at 5. The new mainframe computer z14 ZR1 is a single, air-cooled frame, with the industry standard inch frame.
Since there is only one model, the machine will not experience a model change when growing from 1 to 30 cores. For many customers, this change is a significant cost savings compared to the model upgrades on z13s, or earlier business class machines. The memory doubled in size from 4TB on the z13 to 8TB. For the traditional operating systems, there are sub-capacity settings on up to 6 general purpose engines, with a maximum of PCI or MIPS.
The z14 ZR1 boasts of several performance improvements over the z13 server. Improvements stem from 9 cores on the new chip design, pipeline optimizations, improved branch predictions, cache redesigns and four dynamic address translations engines, versus the one on the z There is a cost for this flexibility, but it is significantly less than a fully populated server. Customers will have one time, and one time only on the initial order, to choose whether they will have internal disk in this server.
If migrating from a z13, make note that the PCIe drawers do not move forward. Most cards can move forward, except the InfiniBand Coupling Links.
How much does ibm z14 cost
The z14 ZR1 comes with four, which enables rolling firmware maintenance. The resources defined in the Resource Group will be unavailable during the maintenance, which IBM is quoting to take only minutes to install. The industry is continuously addressing the security issue. There is such a new excitement around the z14 ZR1. Today, new uses for the mainframe, that were never imagined in the data processing world a few years ago, are now mainstream due to the capabilities of the z14 ZR1.
Please contact your Mainline Account Executive directly, or click here to contact us with any questions. Your email address will not be published. Marianne Eggett z Systems Solutions Consultant. Submit a Comment Cancel reply Your email address will not be published. Search for:.In order of cost lowest to highestit is more cost-efficient to use the model 1, 2 and then 3. The cost of the put or get is largely dependent upon the message properties, including size, persistence, type of queue i.
This update adds significant cost to both the MQ queue manager and the Db2 subsystem as well as some increase to the MQ channel initiator. The following chart shows a breakdown of the cost by address space as a result of changing which listener was connected into. We also saw that the rate the client was able to connect and disconnect was limited on the client machine due to the local cost of the cipher processing — the majority of the cipher processing was performed on the client machine.
This can make a notable difference to the cost of the connect and disconnect as well as reducing the amount of data logged to the MQ channel initiator job log. MQ offers a number of ways to prevent or limit connections from particular clients. MAXINSTC specifies the maximum number of simultaneous instances of a server-connection channel that can be started from a single client.
For our simple testing we blocked all access from the client machine. In all of these cases, no TLS cipher was set, so the costs can be compared against the basic connections.
The X and X messages could be suppressed but again doing so makes determination of problem clients more difficult. This type of failed connection costs of the order of microseconds per failure. Skip to main content Press Enter. Sign In or Join. Skip auxiliary navigation Press Enter. Skip main navigation Press Enter.
The New IBM z13 Is Not Your Father’s Mainframe
Toggle navigation. IBM MQ. View Only. Back to Library. Wed March 04, PM. Vasily Shcherbinin. The cost of the connect can be higher than the combined total of the other APIs. Does a shared listener make a difference to the cost? Yes — using a shared listener means that MQ needs to update Db2 to ensure a consistent state.
What about using TLS ciphers to protect my channel? This increase in cost was primarily in the MQ channel initiator address space. Can I reduce the cost of my connections? This represents a microsecond increase on the cost of a successful connection.
What about rogue connections? Entry Details. Statistics 0 Favorited.
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Email an expert Call IBM 1 We finance possibilities. You may also be interested in. IBM z15 IBM z15 extends security, resiliency and agility to your hybrid cloud with encryption everywhere, Instant Recovery and cloud native development. Expert resources to help you succeed. Product documentation Find answers quickly in IBM product documentation. Support Learn more about product support options. IBM Redbooks Complimentary, step-by-step guides for download and mobile.IBM quit making PCs inand it quit making servers last year.
But it looks like Big Blue will keep pumping out its mainframes forever. On Tuesday, IBM launched the z13, which it bills as the first mainframe specifically designed to accommodate the booming mobile app economy. Mainframes—the refrigerator-sized, pre-PC computers beloved of government, corporations, and Tron —were long synonymous with IBM, which introduced its first mainframe in The company has long since reinvented itself as a provider of business services rather than hardware.
But it turns out the old standby is still around.
The mainframe of today is designed to serve a very different world—and economy. IBM claims the z13 mainframe is the first system able to process 2. It can encrypt mobile transactions in real-time and provide on-the-fly insights on all transactions that pass through it.
The mainframe of today serves a very different world—and economy. The concept of a "mobile transaction" is a bit of marketing-speak. Tons of transactions take place via mobile devices, and the mainframe is good at transaction processing. Put them together, and voila: a computer the size of a backyard shed becomes a mobile product.
For IBM, staking out this space makes sense. Though the company has, for the most part, left hardware to move towards higher-margin businesses in the age of cloud computing, investing in this particular machine still makes sense.
The company showed its dedication to mobile when it teamed up with Apple back in July to create business apps for iPhones and iPads. Now it's designed a computer to act as a powerful backend engine for apps on those devices.
Across so many industries—retailers, financial institutions, telecommunications services, insurance companies, airlines, and governments, to name just a few—transactions are going increasingly mobile.
If you think about how much banking you do on your tablet or phone, or even how you might check in to your next a flight, this growth starts to make sense. In order to get the job done, IBM says it has equipped the z13 with a processor that contains percent more memory than found on most servers and percent more bandwidth for speedier mobile transactions.
The z13 also does analytics natively, rather than requiring data to be moved off the mainframe to other computing systems. As developers of new applications come to rely on the ease and power of the cloud, the mainframe remains a powerhouse for tasks computers have performed for decades, such as transactions.
IBM has realized it can no longer make money selling traditional hardware, and as of late, the company has been focusing its efforts on software and data analytics, including a recently announced partnership with Twitter. But investing in industrial-grade hardware still aligns with IBM's focus on serving as an engine for business. Business is more mobile than ever. Yet however lightweight those mobile devices feel in your pocket, they can still make good use of a big, powerful machine chugging away in a back room, not going anywhere.
Enterprise IBM. View Comments.GlobalFoundries this week formally introduced its new custom process technology that will be used to manufacture IBM's z14 CPUs, which in turn were announced earlier this year. Initially the companies talked about custom 22 nm, 14 nm and 10 nm technologies, but in their final announcement they only mentioned a year exclusive supply agreement without disclosing particular nodes.
Therefore, it remains to be seen what GlobalFoundries, which is skipping the 10 nm node, is going to offer to its partner a custom 7 nm is a natural guess. Earlier this year IBM announced its z14 processors for mainframes and this week GlobalFoundries disclosed details about the process technology used to make these chips. Meanwhile, the system control SC chip consists of 9.
Needless to say, that both CP and SC are extremely complex and benefit from manufacturing technologies with small feature sizes. In fact, looking at the numbers it appears to be substantially different. GlobalFoundries is not disclosing too many specific details about 14HP, which isn't all that surprising given the situation at hand.
There is a single customer that is going to use it, and IBM does not want to share too many details about how it designs its processors as well. So, while we do understand that SOI can help with increasing frequencies and voltages compared to bulk process technologies, we do not have precise numbers here.
Source: GlobalFoundries. Post Your Comment Please log in or sign up to comment. If you can get that under control in any other way, you're fine Intels way. But if SOI allows tangible frequency increases, I wonder why it's not used more widely. Perentage wise the cost of SOI substrates would dwarf the increased revenue from e. If it was that simple the other foundries would follow that path, too. BTW: should "Gate Height" in the table be "standard cell height"?
An additional benefit is having the application servers physically and logically close to is core DB2 databases on the z server. Since that release, IBM hasn't been resting on its mainframe laurels. The DataPower XI50z is a workload-optimized appliance that helps data and applications on different servers to communicate regardless of the type of platform.
It does this by processing XML and Web services protocols so that data can be understood and used by all types of servers. The company makes big claims for this arrangement. IBM is projecting that workloads from 40 x86 processors running Oracle software can be consolidated onto a z with three processors running Linux, with a resulting drop in overall IT costs. IBM positions this as a first-ever bringing together of the mainframe and distributed computing worlds as an integrated "system of systems.
Over the last two years, no System z models have been end-of-lifed. That means they will quietly fade away, although they will continue to be serviced by the company for years to come.
IBM zEnterprise The z is aimed at mid-sized and growing businesses running mission-critical workloads, hosting private enterprise clouds or looking for a backup, standalone development machine. The microprocessor has a higher-frequency superscalar design up to 14 processors running at 3. The z is IBM's premier mainframe offering. The z has up to 96 cores running at 5. As many as 80 cores are configurable for specialty engines. Drew Robb is a Los Angeles-based freelancer specializing in all aspects of technology, engineering and renewable energy.
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Advertiser Disclosure. By Drew Robb Send Email. Which topic are you interested in? Data Storage.