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Recently, Data Protection and Recovery Software market are disrupted by innovative technologies such as server virtualization, disk-based backup, and cloud services where emerging players are playing an important role. Tier one players such as IBM, Hewlett Packard Enterprise, EMC Corporation, Symantec Corporation and Microsoft Corporation are also moving towards these technologies through partnerships and acquisitions.\r\nThe major factor driving data protection and recovery software market is the high adoption of cloud-based services and technologies. Many organizations are moving towards the cloud to reduce their operational expenses and to provide real-time access to their employees. However, increased usage of the cloud has increased the risk of data loss and data theft and unauthorized access to confidential information, which increases the demand for data protection and recovery solution suites.","materialsDescription":" \r\n<span style=\"font-weight: bold; \">What is Data recovery?</span>\r\nData recovery is a process of salvaging (retrieving) inaccessible, lost, corrupted, damaged or formatted data from secondary storage, removable media or files, when the data stored in them cannot be accessed in a normal way. The data is most often salvaged from storage media such as internal or external hard disk drives (HDDs), solid-state drives (SSDs), USB flash drives, magnetic tapes, CDs, DVDs, RAID subsystems, and other electronic devices. Recovery may be required due to physical damage to the storage devices or logical damage to the file system that prevents it from being mounted by the host operating system (OS).\r\nThe most common data recovery scenario involves an operating system failure, malfunction of a storage device, logical failure of storage devices, accidental damage or deletion, etc. (typically, on a single-drive, single-partition, single-OS system), in which case the ultimate goal is simply to copy all important files from the damaged media to another new drive. This can be easily accomplished using a Live CD or DVD by booting directly from a ROM instead of the corrupted drive in question. Many Live CDs or DVDs provide a means to mount the system drive and backup drives or removable media, and to move the files from the system drive to the backup media with a file manager or optical disc authoring software. Such cases can often be mitigated by disk partitioning and consistently storing valuable data files (or copies of them) on a different partition from the replaceable OS system files.\r\nAnother scenario involves a drive-level failure, such as a compromised file system or drive partition, or a hard disk drive failure. In any of these cases, the data is not easily read from the media devices. Depending on the situation, solutions involve repairing the logical file system, partition table or master boot record, or updating the firmware or drive recovery techniques ranging from software-based recovery of corrupted data, hardware- and software-based recovery of damaged service areas (also known as the hard disk drive's "firmware"), to hardware replacement on a physically damaged drive which allows for extraction of data to a new drive. If a drive recovery is necessary, the drive itself has typically failed permanently, and the focus is rather on a one-time recovery, salvaging whatever data can be read.\r\nIn a third scenario, files have been accidentally "deleted" from a storage medium by the users. Typically, the contents of deleted files are not removed immediately from the physical drive; instead, references to them in the directory structure are removed, and thereafter space the deleted data occupy is made available for later data overwriting. In the mind of end users, deleted files cannot be discoverable through a standard file manager, but the deleted data still technically exists on the physical drive. In the meantime, the original file contents remain, often in a number of disconnected fragments, and may be recoverable if not overwritten by other data files.\r\nThe term "data recovery" is also used in the context of forensic applications or espionage, where data which have been encrypted or hidden, rather than damaged, are recovered. Sometimes data present in the computer gets encrypted or hidden due to reasons like virus attack which can only be recovered by some computer forensic experts.\r\n<span style=\"font-weight: bold;\">What is a backup?</span>\r\nA backup, or data backup, or the process of backing up, refers to the copying into an archive file of computer data that is already in secondary storage—so that it may be used to restore the original after a data loss event. The verb form is "back up" (a phrasal verb), whereas the noun and adjective form is "backup".\r\nBackups have two distinct purposes. The primary purpose is to recover data after its loss, be it by data deletion or corruption. Data loss can be a common experience of computer users; a 2008 survey found that 66% of respondents had lost files on their home PC. The secondary purpose of backups is to recover data from an earlier time, according to a user-defined data retention policy, typically configured within a backup application for how long copies of data are required. Though backups represent a simple form of disaster recovery and should be part of any disaster recovery plan, backups by themselves should not be considered a complete disaster recovery plan. One reason for this is that not all backup systems are able to reconstitute a computer system or other complex configuration such as a computer cluster, active directory server, or database server by simply restoring data from a backup.\r\nSince a backup system contains at least one copy of all data considered worth saving, the data storage requirements can be significant. Organizing this storage space and managing the backup process can be a complicated undertaking. A data repository model may be used to provide structure to the storage. Nowadays, there are many different types of data storage devices that are useful for making backups. There are also many different ways in which these devices can be arranged to provide geographic redundancy, data security, and portability.\r\nBefore data are sent to their storage locations, they are selected, extracted, and manipulated. Many different techniques have been developed to optimize the backup procedure. These include optimizations for dealing with open files and live data sources as well as compression, encryption, and de-duplication, among others. Every backup scheme should include dry runs that validate the reliability of the data being backed up. It is important to recognize the limitations and human factors involved in any backup scheme.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Data_Protection_and_Recovery_Software__1_.png","alias":"data-protection-and-recovery-software"},"233":{"id":233,"title":"Transaction Processing Monitors","description":" <span style=\"font-weight: bold; \">A transaction processing monitor (TPM)</span> is a program that monitors transactions from one stage to the next, ensuring that each one completes successfully; if not, or if an error occurs, the TM Monitor takes the appropriate action. A transaction processing monitor’s main purpose/objective is to allow resource sharing and assure optimal use of the resources by applications. This term is sometimes shortened to TP monitor.\r\nA transaction processing monitor is critical in multi-tier architectures. With processes running on different platforms, a given transaction may be forwarded to any one of several servers. Generally, the TP monitor handles all load balancing. After completing each transaction, the TPM can process another transaction without being influenced by the prior transaction. In other words the TPM model essentially is stateless.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Transaction Processing Monitor architecture</span></p>\r\n<p class=\"align-left\">In the TP Monitor Architecture, ACID transactions are initiated by a Begin-Transaction call and terminated by either a Commit-Transaction or an Abort-Transaction call. When initiated, each transaction is assigned a unique identiier and entered into a transaction table managed by the Transaction Manager. Each entry in the transaction table contains the transaction identiier (TRID), the transaction status, and other information. When a transaction calls a transaction control operation, such as Commit-Transaction, the Transaction Manager is responsible for carrying out the execution of the command and recording information in the transaction table. </p>\r\n<ul><li><span style=\"font-weight: bold; \">Process per client model</span> - instead of individual login session per terminal, server process communicates with the terminal, handles authentication, and executes actions.</li><li><span style=\"font-weight: bold; \">Single process model</span> - all remote terminals connect to a single server process. Used in client-server environments.</li><li><span style=\"font-weight: bold; \">Many-server single-router model</span> - multiple application server processes access a common database; clients communicate with the application through a single communication process that routes requests.</li><li><span style=\"font-weight: bold; \">Many server many-router model</span> - multiple processes communicate with clients.</li></ul>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">In general, a TPM provides the following functionality:</span></p>\r\n<ul><li>Coordinating resources</li><li>Balancing loads</li><li>Creating new processes as/when needed</li><li>Providing secure access to services</li><li>Routing services</li><li>Wrapping data messages into messages</li><li>Unwrapping messages into data packets/structures</li><li>Monitoring operations/transactions</li><li>Managing queues</li><li>Handling errors through such actions as process restarting</li><li>Hiding interprocess communications details from programmers</li></ul>\r\n<br /><br /><br />\r\n\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Advantages of TP Monitors </h1>\r\nComplex applications are often built on top of several resource managers (such as DBMSs, operating systems, user interfaces, and messaging software). A TPM is a middleware component that provides access to the services of a number of resource managers and provides a uniform interface for programmers who are developing transactional software. \r\n<ul><li>Transaction routing the TP Monitor can increase scalability by directing transactions to specific DBMSs. </li><li> Managing distributed transactions the TP Monitor can manage transactions that require access to data held in multiple, possibly heterogeneous, DBMSs. For example, a transaction my require to update data items held in an Oracle DBMS at site 1, an Informix DBMS at site 2,and an IMS DBMS at site 3. TP Monitors normally control transactions using the X/Open Distributed Transactions Processing (DTP) standard. A DBMS that supports this standard can function as a resource manager under the control of a TP Monitor acting as a transaction manager.</li><li> Load balancing the TP Monitor can balance client requests across multiple DBMSs on one or more computers by directing client service calls to the least loaded server. In addition, it can dynamically bring in additional DBMSs as required to provide the necessary performance.</li><li>Funnelling in environments with a large number of users, it may sometimes be difficult for all users to be logged on simultaneously to the DBMS. In many cases, we would find that users generally do not need continuous access to the DBMS. Instead of each user connecting to the DBMS, the TP Monitor can establish connections with the DBMSs as and when required, and can funnel user requests through these connections. This allows a larger number of users to access the available DBMSs with a potentially much smaller number of connections, which in turn would mean less resource usage. </li><li> Increased reliability the TP Monitor acts as a transaction manager, performing the necessary actions to maintain the consistency of the database, with the DBMS acting as a resource manager. If the DBMS fails, the TP Monitor may be able to resubmit the transaction to another DBMS or can hold the transaction until the DBMS becomes available again.</li></ul>\r\nTP Monitors are typically used in environments with a very high volume of transactions, where the TP Monitor can be used to offload processes from the DBMS server. Prominent examples of TP Monitors include CICS and Encina from IBM (which are primarily used on IBM AIX or Windows NT and bundled now in the IBM TXSeries) and Tuxedo from BEA Systems.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Transaction_Processing_Monitors.png","alias":"transaction-processing-monitors"}},"branches":"Information Technology","companyUrl":"https://www.unitrends.com/","countryCodes":[],"certifications":[],"isSeller":true,"isSupplier":false,"isVendor":true,"presenterCodeLng":"","seo":{"title":"Unitrends","keywords":"with, Unitrends, automation, policy, spin-up, protection, Seamless, application","description":"Unitrends increases uptime, productivity, and confidence in a world in which IT professionals must do more with less. Our all-in-one backup appliances simplify data protection, application spin-up, and SLA policy automation. Seamless integration with the cloud","og:title":"Unitrends","og:description":"Unitrends increases uptime, productivity, and confidence in a world in which IT professionals must do more with less. Our all-in-one backup appliances simplify data protection, application spin-up, and SLA policy automation. Seamless integration with the cloud","og:image":"https://old.roi4cio.com/uploads/roi/company/Unitrends.jpg"},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":2076,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/unitrends-logo.png","logo":true,"scheme":false,"title":"Unitrends Backup","vendorVerified":0,"rating":"1.40","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"unitrends-backup","companyTitle":"Unitrends","companyTypes":["vendor"],"companyId":3891,"companyAlias":"unitrends","description":"Unitrends Backup software is a core element of Unitrends integrated suite of all-in-one physical appliance, backup software and cloud empowered DR services.\r\nUnitrends Backup is designed with the flexibility and adaptability to eliminate multiple point solutions and decrease the amount of time IT staff must spend managing backup and recovery. Unitrends Backup software provides complete backup and recovery for your physical and virtual assets. It runs on the hardware of your choice as a virtual backup appliance. And, it can be deployed on your premises or in select hyperscale clouds, such as Microsoft Azure and Amazon Web Services. From a single pane of glass, Unitrends intuitive user interface enables granular control of backup and recovery, on the enterprise premises, in the cloud, and across both environments. The customizable dashboard allows even the most complex task to be completed quickly and efficiently. Available in 4 editions, Unitrends Backup provides you with the flexibility required to address your evolving continuity requirements. Whether you’re trying to protect one VMware vSphere host with a hand full of VM’s or a mixed data center and cloud environment with physical servers and thousands of vSphere and Hyper-V virtual machines, Unitrends Backup does it all.\r\n<b>Key features:</b>\r\n<ul> <li>All-in-one solution — Provides integrated backup, replication, deduplication, archive and instant recovery, eliminating the complexity and expense of multiple solutions.</li> <li>Intuitive user experience -- Reduces administration time through use of a customizable drag-and-drop management control dashboard. Operations can be completed with 60% fewer clicks than required by competitive alternatives.</li> <li>Heterogeneous protection — Delivers virtual and physical protection of over 250 versions of operating systems, hypervisors and applications.</li> <li>Flexible virtual protection — Host and guest level protection for VMware VSphere, Microsoft Hyper-V, and Citrix XenServer.</li> <li>Protects large scale deployments — Enhanced storage integration with NDMP NAS protection, automated recovery testing, and compliance testing tools.</li> <li>Cloud-Empowered continuity — Integrated with Unitrends Cloud for long term retention and Unitrends Disaster Recovery services (DRaaS) to provide rapid spin-up in the cloud of critical servers in the event of a local outage.</li> <li>3rd Party cloud integration —Integrate with 3rd party hyperscale clouds for low cost cloud storage or choose to provide protection for cloud workloads and off-site backup copies of on premises backups by running Unitrends Backup in the Microsoft Azure Cloud or Amazon Web Services. Unitrends Backup can even be used to create cloud-based off-site backup copies for your local backups or to protect your workloads running as VMs within that same cloud.</li> <li>Recovery Assurance — Enterprise Plus includes the industry’s only automated recovery solution for Windows Physical, VMware, and Hyper-V virtual environments, dramatically educing the cost of disaster recovery testing and increasing confidence in being able to meet your RTO Goals.</li> <li>Adaptive inline deduplication — Enables an average deduplication ratio of 20:1 or higher without requiring expensive and complex third-party deduplication devices or software.</li> <li>WAN-optimized replication — Delivers 2nd site WAN optimized backups by combining deduplication, deduplication acceleration, compression, and encryption for secure byte-level data transmission.</li> <li>Instant Recovery — The only solution that provides Instant Recovery for Windows, VMware vSphere, Microsoft Hyper-V and Unified Bare Metal Recovery.</li> <li>World-class RPO — Provides near continuous data protection by enabling backups as often as every 60 seconds.</li> <li>Hyper-V Change Block Tracking — Improves incremental backup windows by up to 50X, allowing for much shorter RPOs for hypervisor level backups.</li> <li>Unitrends Bridge — Delivers local instant recovery of physical (P2V) or virtual (V2V) workloads in one click.</li> <li>Distributed Enterprise Management — Distributed Enterprise Management is a feature in Unitrends Backup software that allows administrators to grant role-based management rights of specific backup files. This enables controlled self-service recovery and improved security by allowing owners to manage and control their own backup and continuity data.</li> <li>Automated Ransomware Detection — Unitrends Backup includes artificial intelligence that runs during every backup, analysing the randomness of file changes to identify backups infected by ransomware. Upon detection email and dashboard alerts are immediately sent to administrators and all suspected backups are flagged with an icon.</li> </ul>","shortDescription":"Unitrends Backup software is a core element of Unitrends integrated suite of all-in-one physical appliance, backup software and cloud empowered DR services.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":6,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Unitrends Backup","keywords":"","description":"Unitrends Backup software is a core element of Unitrends integrated suite of all-in-one physical appliance, backup software and cloud empowered DR services.\r\nUnitrends Backup is designed with the flexibility and adaptability to eliminate multiple point solutio","og:title":"Unitrends Backup","og:description":"Unitrends Backup software is a core element of Unitrends integrated suite of all-in-one physical appliance, backup software and cloud empowered DR services.\r\nUnitrends Backup is designed with the flexibility and adaptability to eliminate multiple point solutio","og:image":"https://old.roi4cio.com/fileadmin/user_upload/unitrends-logo.png"},"eventUrl":"","translationId":2077,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[{"id":71,"title":"Backup and Recovery"}],"testingArea":"","categories":[{"id":46,"title":"Data Protection and Recovery Software","alias":"data-protection-and-recovery-software","description":"Data protection and recovery software provide data backup, integrity and security for data backups and it enables timely, reliable and secure backup of data from a host device to destination device. Recently, Data Protection and Recovery Software market are disrupted by innovative technologies such as server virtualization, disk-based backup, and cloud services where emerging players are playing an important role. Tier one players such as IBM, Hewlett Packard Enterprise, EMC Corporation, Symantec Corporation and Microsoft Corporation are also moving towards these technologies through partnerships and acquisitions.\r\nThe major factor driving data protection and recovery software market is the high adoption of cloud-based services and technologies. Many organizations are moving towards the cloud to reduce their operational expenses and to provide real-time access to their employees. However, increased usage of the cloud has increased the risk of data loss and data theft and unauthorized access to confidential information, which increases the demand for data protection and recovery solution suites.","materialsDescription":" \r\n<span style=\"font-weight: bold; \">What is Data recovery?</span>\r\nData recovery is a process of salvaging (retrieving) inaccessible, lost, corrupted, damaged or formatted data from secondary storage, removable media or files, when the data stored in them cannot be accessed in a normal way. The data is most often salvaged from storage media such as internal or external hard disk drives (HDDs), solid-state drives (SSDs), USB flash drives, magnetic tapes, CDs, DVDs, RAID subsystems, and other electronic devices. Recovery may be required due to physical damage to the storage devices or logical damage to the file system that prevents it from being mounted by the host operating system (OS).\r\nThe most common data recovery scenario involves an operating system failure, malfunction of a storage device, logical failure of storage devices, accidental damage or deletion, etc. (typically, on a single-drive, single-partition, single-OS system), in which case the ultimate goal is simply to copy all important files from the damaged media to another new drive. This can be easily accomplished using a Live CD or DVD by booting directly from a ROM instead of the corrupted drive in question. Many Live CDs or DVDs provide a means to mount the system drive and backup drives or removable media, and to move the files from the system drive to the backup media with a file manager or optical disc authoring software. Such cases can often be mitigated by disk partitioning and consistently storing valuable data files (or copies of them) on a different partition from the replaceable OS system files.\r\nAnother scenario involves a drive-level failure, such as a compromised file system or drive partition, or a hard disk drive failure. In any of these cases, the data is not easily read from the media devices. Depending on the situation, solutions involve repairing the logical file system, partition table or master boot record, or updating the firmware or drive recovery techniques ranging from software-based recovery of corrupted data, hardware- and software-based recovery of damaged service areas (also known as the hard disk drive's "firmware"), to hardware replacement on a physically damaged drive which allows for extraction of data to a new drive. If a drive recovery is necessary, the drive itself has typically failed permanently, and the focus is rather on a one-time recovery, salvaging whatever data can be read.\r\nIn a third scenario, files have been accidentally "deleted" from a storage medium by the users. Typically, the contents of deleted files are not removed immediately from the physical drive; instead, references to them in the directory structure are removed, and thereafter space the deleted data occupy is made available for later data overwriting. In the mind of end users, deleted files cannot be discoverable through a standard file manager, but the deleted data still technically exists on the physical drive. In the meantime, the original file contents remain, often in a number of disconnected fragments, and may be recoverable if not overwritten by other data files.\r\nThe term "data recovery" is also used in the context of forensic applications or espionage, where data which have been encrypted or hidden, rather than damaged, are recovered. Sometimes data present in the computer gets encrypted or hidden due to reasons like virus attack which can only be recovered by some computer forensic experts.\r\n<span style=\"font-weight: bold;\">What is a backup?</span>\r\nA backup, or data backup, or the process of backing up, refers to the copying into an archive file of computer data that is already in secondary storage—so that it may be used to restore the original after a data loss event. The verb form is "back up" (a phrasal verb), whereas the noun and adjective form is "backup".\r\nBackups have two distinct purposes. The primary purpose is to recover data after its loss, be it by data deletion or corruption. Data loss can be a common experience of computer users; a 2008 survey found that 66% of respondents had lost files on their home PC. The secondary purpose of backups is to recover data from an earlier time, according to a user-defined data retention policy, typically configured within a backup application for how long copies of data are required. Though backups represent a simple form of disaster recovery and should be part of any disaster recovery plan, backups by themselves should not be considered a complete disaster recovery plan. One reason for this is that not all backup systems are able to reconstitute a computer system or other complex configuration such as a computer cluster, active directory server, or database server by simply restoring data from a backup.\r\nSince a backup system contains at least one copy of all data considered worth saving, the data storage requirements can be significant. Organizing this storage space and managing the backup process can be a complicated undertaking. A data repository model may be used to provide structure to the storage. Nowadays, there are many different types of data storage devices that are useful for making backups. There are also many different ways in which these devices can be arranged to provide geographic redundancy, data security, and portability.\r\nBefore data are sent to their storage locations, they are selected, extracted, and manipulated. Many different techniques have been developed to optimize the backup procedure. These include optimizations for dealing with open files and live data sources as well as compression, encryption, and de-duplication, among others. Every backup scheme should include dry runs that validate the reliability of the data being backed up. It is important to recognize the limitations and human factors involved in any backup scheme.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Data_Protection_and_Recovery_Software__1_.png"},{"id":233,"title":"Transaction Processing Monitors","alias":"transaction-processing-monitors","description":" <span style=\"font-weight: bold; \">A transaction processing monitor (TPM)</span> is a program that monitors transactions from one stage to the next, ensuring that each one completes successfully; if not, or if an error occurs, the TM Monitor takes the appropriate action. A transaction processing monitor’s main purpose/objective is to allow resource sharing and assure optimal use of the resources by applications. This term is sometimes shortened to TP monitor.\r\nA transaction processing monitor is critical in multi-tier architectures. With processes running on different platforms, a given transaction may be forwarded to any one of several servers. Generally, the TP monitor handles all load balancing. After completing each transaction, the TPM can process another transaction without being influenced by the prior transaction. In other words the TPM model essentially is stateless.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Transaction Processing Monitor architecture</span></p>\r\n<p class=\"align-left\">In the TP Monitor Architecture, ACID transactions are initiated by a Begin-Transaction call and terminated by either a Commit-Transaction or an Abort-Transaction call. When initiated, each transaction is assigned a unique identiier and entered into a transaction table managed by the Transaction Manager. Each entry in the transaction table contains the transaction identiier (TRID), the transaction status, and other information. When a transaction calls a transaction control operation, such as Commit-Transaction, the Transaction Manager is responsible for carrying out the execution of the command and recording information in the transaction table. </p>\r\n<ul><li><span style=\"font-weight: bold; \">Process per client model</span> - instead of individual login session per terminal, server process communicates with the terminal, handles authentication, and executes actions.</li><li><span style=\"font-weight: bold; \">Single process model</span> - all remote terminals connect to a single server process. Used in client-server environments.</li><li><span style=\"font-weight: bold; \">Many-server single-router model</span> - multiple application server processes access a common database; clients communicate with the application through a single communication process that routes requests.</li><li><span style=\"font-weight: bold; \">Many server many-router model</span> - multiple processes communicate with clients.</li></ul>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">In general, a TPM provides the following functionality:</span></p>\r\n<ul><li>Coordinating resources</li><li>Balancing loads</li><li>Creating new processes as/when needed</li><li>Providing secure access to services</li><li>Routing services</li><li>Wrapping data messages into messages</li><li>Unwrapping messages into data packets/structures</li><li>Monitoring operations/transactions</li><li>Managing queues</li><li>Handling errors through such actions as process restarting</li><li>Hiding interprocess communications details from programmers</li></ul>\r\n<br /><br /><br />\r\n\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Advantages of TP Monitors </h1>\r\nComplex applications are often built on top of several resource managers (such as DBMSs, operating systems, user interfaces, and messaging software). A TPM is a middleware component that provides access to the services of a number of resource managers and provides a uniform interface for programmers who are developing transactional software. \r\n<ul><li>Transaction routing the TP Monitor can increase scalability by directing transactions to specific DBMSs. </li><li> Managing distributed transactions the TP Monitor can manage transactions that require access to data held in multiple, possibly heterogeneous, DBMSs. For example, a transaction my require to update data items held in an Oracle DBMS at site 1, an Informix DBMS at site 2,and an IMS DBMS at site 3. TP Monitors normally control transactions using the X/Open Distributed Transactions Processing (DTP) standard. A DBMS that supports this standard can function as a resource manager under the control of a TP Monitor acting as a transaction manager.</li><li> Load balancing the TP Monitor can balance client requests across multiple DBMSs on one or more computers by directing client service calls to the least loaded server. In addition, it can dynamically bring in additional DBMSs as required to provide the necessary performance.</li><li>Funnelling in environments with a large number of users, it may sometimes be difficult for all users to be logged on simultaneously to the DBMS. In many cases, we would find that users generally do not need continuous access to the DBMS. Instead of each user connecting to the DBMS, the TP Monitor can establish connections with the DBMSs as and when required, and can funnel user requests through these connections. This allows a larger number of users to access the available DBMSs with a potentially much smaller number of connections, which in turn would mean less resource usage. </li><li> Increased reliability the TP Monitor acts as a transaction manager, performing the necessary actions to maintain the consistency of the database, with the DBMS acting as a resource manager. If the DBMS fails, the TP Monitor may be able to resubmit the transaction to another DBMS or can hold the transaction until the DBMS becomes available again.</li></ul>\r\nTP Monitors are typically used in environments with a very high volume of transactions, where the TP Monitor can be used to offload processes from the DBMS server. Prominent examples of TP Monitors include CICS and Encina from IBM (which are primarily used on IBM AIX or Windows NT and bundled now in the IBM TXSeries) and Tuxedo from BEA Systems.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Transaction_Processing_Monitors.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"suppliedProducts":[],"partnershipProgramme":null}},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"implementations":{"implementationsByAlias":{},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"agreements":{"agreementById":{},"ids":{},"links":{},"meta":{},"loading":false,"error":null},"comparison":{"loading":false,"error":false,"templatesById":{},"comparisonByTemplateId":{},"products":[],"selectedTemplateId":null},"presentation":{"type":null,"company":{},"products":[],"partners":[],"formData":{},"dataLoading":false,"dataError":false,"loading":false,"error":false},"catalogsGlobal":{"subMenuItemTitle":""}}