Product / Syneto OS

 

Syneto OS

The power is in the software!

A revolutionary datacenter operating system designed to be a single point of management for the entire infrastructure. It takes a powerful hyperconverged engine and combines it with a modern approach to Data Resiliency. 

 

JUMP TO ARCHITECTURE

 

What is SynetoOS?

Syneto OS is a software-defined, cloud-connected operating system designed to deployed on a range of plug-and-play Syneto appliances to build a fully-featured Universal and Resilient Data Management Platform. Thanks to a Zero-Trust approach, it manages data at any level and throughout its lifecycle by unifying virtualisation, storage, backup, restore, and disaster recovery in a single point of management: 

SynetoOS:

A datacenter operating system built using the latest micro-services architecture to provide a modern approach to Data Management. It unifies a host of powerful technologies and services inside a single, easy to user interface.


Data Management:

SynetoOS delivers all of the IT features and services an organization requires to manage data of any kind and across multiple scenarios: virtualisation, storage, data protection and disaster recovery.


Platform:

The power of the SynetoOS software and Data Management services can be deployed on-site using a range of softwaredefined hyperconverged appliances (compute + storage + data protection), creating a complete data management platform.

Journey to the Hybrid Cloud

91% of companies believe hybrid cloud is the best IT model for their business. Our approach to building a hybrid cloud brings together the on-premise services of our Hyperconverged Data Management Platform with the powerful cloud services of Syneto Central.

Hybrid cloud

Universal Data Resilient Platform

On-premise

On-premise IT services: Virtualization, SAN storage, NAS sharing, Instant backup & restore, Disaster Recovery.

Syneto Central - Cloud Services Platform

Cloud

Cloud IT services: Fleet Management Service, SerenITy Pro-active Support, Remote Access Service.

Journey to the hybrid cloud

91% of companies believe hybrid cloud is the best IT model for their business. Our approach to building a hybrid cloud brings together the on-premise services of our Hyperconverged Data Management Platform with the powerful cloud services of Syneto Central.

Hyperconverged Data Management Platform

On-premise

On-premise IT services: Virtualization, SAN storage, NAS sharing, Instant backup & restore, Disaster Recovery.

Hybrid cloud

Syneto Central - Cloud Services Platform

Cloud

Cloud IT services: Fleet Management Service, SerenITy Pro-active Support, Remote Access Service, Desktop as a Service (coming soon).

SynetoOS Benefits

In SynetoOS, hyperconvergence meets data protection, delivering uncompromising simplicity, speed and security. A demonstration of how smart IT can be.

One platform. Management, made easy

  Deploy apps, backup, restore, recover; Everything with one click.

  Rack and play: unbox it, start it and deploy your apps. That’s it.

Backup everything. Restore anytime

  Instant, automatic backups of all the data on the infrastructure.

  Under one minute to recover and restart a VM.



Predictable restore time. Certain recovery

  Recover everything: up and running in 15 minutes after a disaster.

  Certain and predictable recovery. Everytime. Everywhere.

Ransomware immunity. Vaccinate your IT

Instant recovery to point-in-time before attack.

No data loss. No ransom payed. No business delay. 

SynetoOS Services Architecture

SynetoOS is built on a microservices architecture. This provides the best possible user experience, data security, system resiliency and upgradeability. Each micro-service provides a set of IT services, features as well as benefits:


Minerva - Hyperconverged Virtualization with ESXi

Minerva is the micro-service which integrates and orchestrates the VMware ESXi hypervisor for a unified and simplified IT infrastructure management experience. Using it, businesses can easily deploy SynetoOS powered hyperconverged appliances in their existing ESXi infrastructure, adding powerful data protection and data management functionalities.

Total Compatibility

SynetoOS is fully compatible with existing VMware-centric IT infrastructures. By integrating with ESXi, we leverage the broad ecosystem support that the hypervisor enjoys in order to to provide dependable IT solutions.

Integrated Data Protection

By integrating data protection services with virtualization on the same platform, SynetoOS provides straightforward data protection at VM level and instant data recovery for protected VMs.

Ease of Use

Configuring and integrating Syneto appliances within IT infrastructures is simple - IT Managers can reuse existing ESXi knowledge and processes. Managing Syneto appliances is easier.


Jupiter - Secure & Efficient Data Storage

Appliances running SynetoOS provide enterprise-grade data storage & data management capabilities through Jupiter. It is the filesystem service and features a copy-on-write transactional model which leverages instant backup & recovery, zero-copy cloning, integrated compression and end-to-end data integrity checks to deliver a suite of services that provides IT managers with a future-proof data fabric for their most important digital assets.

Secure File & Block Storage

Through Jupiter SynetoOS directly manages the storage subsystem, bypassing the hypervisor virtualization. This enables delivery of both file and block storage with flexible data management capabilities and a significantly reduced cryptolocker attack surface.

Efficient Data Management

The Jupiter file system provides inline data-compression (~2x), with minimal CPU overhead, instant backup at the storage level, instant restore irrespective of VM size and zero-copy cloning of virtual machines without consuming extra storage space.

Data Integrity Guarantee

Syneto’s Jupiter file system employs proven technologies to provide data integrity guarantees: copy-on-write, end-to-end 256 bit checksum checks, recurrent integrity checks.


Chronos - SLA Management with Machine Learning

Chronos is The Keeper of Time. An advanced scheduling engine which uses Machine Learning algorithms to dynamically create and schedule tasks across the operating system. The micro service analyzes available system resources, existing tasks, workloads and user patterns in order create and schedule tasks in the most efficient way possible.

Dynamic SLA Policies

Chronos is designed to make data protection even simpler and more automated across your environment. Simply define protection levels (SLAs) for a data entity (datastore, VM, file share) and Chronos finds the best time to execute the task.

Set & Forget Approach

Instead of legacy backup jobs which are imperative - i.e. you have to choose what time to start, the frequency, replication target and consistency, Chronos allows you to configure system-wide policies which are executed automatically.

Efficient Management

Automated SLA Policies means no longer undergoing the manual process of scheduling jobs. Chronos uses Machine learning algorithms to determine the best time to implement your SLAs from a workload, resource availability and level of protection point of view.


Mars - Automatic Task Execution

Mars is the SynetoOS micro service which executes systemwide tasks. In conjunction with Chronos it executes schedule processes like the taking of data snapshots, on/off replications and VM/hypervisor control.

This allows pre-defined actions like a data protection schedule to take place without the manual input of an IT manager.

Hyperconverged data protection

Using the Mars micro-service SynetoOS can execute hypervisor-level operations like pausing a VM while also leveraging the filesystem to create a data snapshot and replicating to another Syneto appliance. This means SynetoOS not only converges virtualization, storage and networking but also data protection and Disaster Recovery.

Automatic SLA-based replication

Automatic task execution also extends to replicating snapshots of data entities to other SynetoOS-based systems and together with Chronos allows IT managers to automate replication for Disaster Recovery using data protection schedules.

Workflow automation

Free your time and resources to focus on innovation and security. The Mars services removes tedious, manual touch points from your workflow by automatically executing tasks previously defined using the Chronos service. This frees IT personal from manual backups, schedules, DR tests, etc.


Mercury - Cloud-connected (hybrid cloud)

Mercury is the master of communication. It is the service which links on-premise SynetoOS deployments with the Central cloud services platform. Central provides a range of cloud-based services which improve management, visibility, access and protection of company data.

By joining the Central SaaS cloud platform with the private cloud created by SynetoOS, Mercury creates a simple, fast and secure hybrid cloud experience.

Easy Management

Mercury connects the various on-site and cloud technologies and services, ensuring a unified experience that is coherent and user-friendly. This integration is pivotal in maintaining operational continuity and ensuring that the management of data is both intuitive and efficient from the core, to the edge, to the cloud.

Intelligent monitoring

Mercury uses the SerenITy cloud service in Central to proactively identify issues in SynetoOS and automatically open support tickets. This allows engineers to solve anything before it leads to downtime or data loss.

Secure Remote Access

For remote access to business applications and data on SynetoOS, Mercury uses the Remote Access Service in Central. This service manages remote access to SynetoOS instances from a central, cloud-based service and features granular permissions, 2FA and a 2048-encryption with PFS.


Where to run SynetoOS?

We have designed and built a range of hardware appliances specifically deisgned around SynetoOS: the HYPER Series. Our appliances offer maximum performance, compatibility and ease o use for a wide range of deployment scenarios, from small design studios to large production environments and secondary infrastructure.

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HYPER Core 3000 H/H2/AF G4

Technical Specifications

HYPER Core Front View HYPER Core Back View
Use Case Mid-size to Large Private Clouds, CPU & Storage Demanding Applications, BC-DR, File Storage.
Compute Options Highest Frequency

Dual Intel® CPU

Xeon® 4th Gen.
Gold 5420+

28 Cores

Base: 2.00 GHz
(Turbo: 4.10 GHz)
Max. Cores

Dual Intel® CPU

Xeon® 4th Gen.
Gold 6430

32 Cores

Base: 2.10 GHz
(Turbo: 3.40 GHz)
Balanced

Dual Intel® CPU

Xeon® 4th Gen.
Gold 5418Y

24 Cores

Base: 2.00 GHz
(Turbo: 3.80 GHz)
Entry Level

Dual Intel® CPU

Xeon® 4th Gen.
Gold 5416S

16 Cores

Base: 2.00 GHz
(Turbo: 4.00 GHz)
Lowest Price

Dual Intel® CPU

Xeon® 4th Gen.
Silver 4410Y

12 Cores

Base: 2.00 GHz
(Turbo: 3.90 GHz)
Storage Options Hybrid

12x HDDs

8 to 12 TB
Hybrid2

6x HDDs + 6x SSDs

8 to 12 TB HDD + 1.92, 3.84 or 7.68 TB SSD
All-flash

6 or 12x SSDs

3.84 to 7.68 TB
Net Capacity * Hybrid: 43.2 to 64.8 TB Hybrid2: 21.6 to 32.4 TB + 5.18 to 20.73 TB All-flash: 10.36 to 41.47 TB
Effective Capacity ** Hybrid: 64.8 to 97.2 TB Hybrid2: 32.4 to 48.6 TB + 7.77 to 31.10 TB All-flash: 15.6 to 62.2 TB
OS Drives Hybrid/Hybrid2:2x SSDs [480 GB] All-flash:2x SSDs [240 GB]
Hypervisor Drive 1x NVMe [512 GB]
RAM Options 128 GB up to 2048 GB DDR5 @ 4800 Mbps
Expandability Up to 2x Syneto Expansion Shelves (JBODs) with Add-on Controller Card

Chassis 2U, rack-mountable, 12 Bays 3.5”
Connectivity 2x 10 GbE RJ45 (autosense) + 1x 1 GbE RJ45 (IPMI)
Add-on*** Up to 2x Dual-Port 10 or 25 GbE, SFP+ or BASE-T (RJ45)
Power 2 x 920 W (redundant, hot-swap), 100-240 V, 50-60 Hz
Dimensions H: 89 mm, W: 437 mm, D: 647 mm, W: ~25 kg
Cooling 3000 BTU/hour (maximum)
Temp. & Humidity 5°C - 35°C (50°F - 95°F) | 8% - 90% (non-condensing)

*The net capacity gives you a realistic estimate by factoring the capacity reduction caused by vendors reporting disk sizes in decimal units (1KB = 1000 bytes), while OS uses binary units (1KB = 1024 bytes) plus space reserved by the file system for internal service processes.

**Effective Capacity: calculated using a conservative 1.5x compression ratio. Effective capacity varies depending on types of data stored.

*** With 2x PCIe expansion slots, there are several possible add-on configurations: 1x Network Card + 1x JBOD Controller, 2x Network Cards or 2x JBOD Controllers.

HYPER Core 2000 AF G4

Technical Specifications

HYPER Core Front View HYPER Core Back View
Use Case Performance-intensive Virtualized Applications and Databases
Compute Options Highest Frequency

Single Intel® CPU

Xeon® 4th Gen.
Gold 5420+

28 Cores

Base: 2.00 GHz
(Turbo: 4.10 GHz)
Max. Cores

Single Intel® CPU

Xeon® 4th Gen.
Gold 6430

32 Cores

Base: 2.10 GHz
(Turbo: 3.40 GHz)
Balanced

Single Intel® CPU

Xeon® 4th Gen.
Gold 5418Y

24 Cores

Base: 2.00 GHz
(Turbo: 3.80 GHz)
Entry Level

Single Intel® CPU

Xeon® 4th Gen.
Gold 5416S

16 Cores

Base: 2.00 GHz
(Turbo: 4.00 GHz)
Lowest Price

Single Intel® CPU

Xeon® 4th Gen.
Silver 4410Y

12 Cores

Base: 2.00 GHz
(Turbo: 3.90 GHz)
Storage Options All-flash
4x SSDs 8x SSDs
1.92, 3.84 or 7.68 TB
Net Capacity * With 4x SSDs 3.45 to 13.82 TB With 8x SSDs 5.18 to 20.73 TB
Effective Capacity ** With 4x SSDs: 5.18 to 20.73 TB With 8x SSDs: 10.36 to 41.47 TB
OS Drives All-flash:2x SSDs [240 GB]
Hypervisor Drive 1x NVMe [512 GB]
RAM Options 128 GB up to 1024 GB DDR5 @ 4800 Mbps
Expandability Up to 2x Syneto Expansion Shelves (JBODs) with Add-on Controller Card

Chassis 1U, rack-mountable, 10 Bays 2.5”
Connectivity 2x 10 GbE RJ45 (autosense) + 1x 1 GbE RJ45 (IPMI)
Add-on*** Up to 2x Dual-Port 10 or 25 GbE, SFP+ or BASE-T (RJ45)
Power 2 x 860 W (redundant, hot-swap), 100-240 V, 50-60 Hz
Dimensions H: 43 mm, W: 437 mm, D: 597 mm, W: ~20 kg
Cooling 2000 BTU/hour (maximum)
Temp. & Humidity 5°C - 35°C (50°F - 95°F) | 8% - 90% (non-condensing)

* The net capacity gives you a realistic estimate by factoring the capacity reduction caused by vendors reporting disk sizes in decimal units (1KB = 1000 bytes), while OS uses binary units (1KB = 1024 bytes) plus space reserved by the file system for internal service processes.

** Effective Capacity: calculated using a conservative 1.5x compression ratio. Effective capacity varies depending on types of data stored.

*** With 2x PCIe expansion slots, there are several possible add-on configurations: 1x Network Card + 1x JBOD Controller, 2x Network Cards or 2x JBOD Controllers.

HYPER Core 2000 H/H2 G4

Technical Specifications

HYPER Core Front View HYPER Core Back View
Use Case Small business environments and remote or branch offices (ROBO).
Compute Options Highest Frequency

Single Intel® CPU

Xeon® 3rd Gen.
Gold 5320+

20 Cores

Base: 2.40 GHz
(Turbo: 4.20 GHz)
Max. Cores

Single Intel® CPU

Xeon® 3rd Gen.
Gold 5320

26 Cores

Base: 2.20 GHz
(Turbo: 3.40 GHz)
Balanced

Single Intel® CPU

Xeon® 3rd Gen.
Gold 4316

20 Cores

Base: 2.30 GHz
(Turbo: 3.40 GHz)
Entry Level

Single Intel® CPU

Xeon® 3rd Gen.
Gold 4314

16 Cores

Base: 2.40 GHz
(Turbo: 3.40 GHz)
Lowest Price

Single Intel® CPU

Xeon® 3rd Gen.
Silver 4310

12 Cores

Base: 2.10 GHz
(Turbo: 3.30 GHz)
Storage Options Hybrid

4x HDDs

8 or 12 TB
Hybrid2

2x HDDs + 2x SSDs

8 or 12 TB HDDs + 1.92, 3.84 or 7.68 TB SSDs
Net Capacity * Hybrid: 14.4 to 21.6 TB Hybrid2: 7.2 to 10.8 TB + 1.72 to 6.91 TB
Effective Capacity ** Hybrid: 21.6 to 32.4 TB Hybrid2: 10.8 to 16.2 TB + 2.58 to 10.36 TB
OS Drives Hybrid/Hybrid2:2x SSDs [480 GB]
Hypervisor Drive 1x NVMe [512 GB]
RAM Options 128 GB up to 512 GB DDR4 @ 3200 Mbps
Expandability Up to 2x Syneto Expansion Shelves (JBODs) with Add-on Controller Card

Chassis 1U, rack-mountable, 4 Bays 3.5” + 2 Bays 2.5” for OS
Connectivity 2x 10 GbE RJ45 (autosense) + 1x 1 GbE RJ45 (IPMI)
Add-on*** Up to 2x Dual-Port 10 or 25 GbE, SFP+ or BASE-T (RJ45)
Power 2 x 500 W (redundant, hot-swap), 100-240 V, 50-60 Hz
Dimensions H: 43 mm, W: 437 mm, D: 650 mm, W: ~20 kg
Cooling 1500 BTU/hour (maximum)
Temp. & Humidity 5°C - 35°C (50°F - 95°F) | 8% - 90% (non-condensing)

* The net capacity gives you a realistic estimate by factoring the capacity reduction caused by vendors reporting disk sizes in decimal units (1KB = 1000 bytes), while OS uses binary units (1KB = 1024 bytes) plus space reserved by the file system for internal service processes.

** Effective Capacity: calculated using a conservative 1.5x compression ratio. Effective capacity varies depending on types of data stored.

*** With 2x PCIe expansion slots, there are several possible add-on configurations: 1x Network Card + 1x JBOD Controller, 2x Network Cards or 2x JBOD Controllers.

HYPER Core 1000T H/AF G4

Technical Specifications

HYPER Core Front View HYPER Core Back View
Use Case Office / Small Environments, ROBO, Data Protection, Long-term archiving, Edge Computing
Compute Options Single Intel® CPU

Xeon® 3rd Gen.
Silver 4310

12 Cores

Base: 2.10 GHz
(Turbo: 3.30 GHz)
Storage Options Hybrid

2x HDDs
8 or 12 TB
All-flash
2x SSDs
3.84 TB
Net Capacity * Hybrid 7.2 to 10.8 TB All-flash 3.45 TB
Effective Capacity ** Hybrid 10.8 to 16.2 TB All-flash 5.17 TB
OS Drives 2x SSDs [240 GB]
Hypervisor Drive 1x NVMe [512 GB]
RAM Options 128 GB DDR4 (96 GB usable by VMs + 32 GB adaptive in-memory data cache)
Up t
256 GB DDR4 (224 GB usable by VMs + 32 GB adaptive in-memory data cache)
Expandability -

Chassis Tower, 4 Bays 3.5”
Connectivity 2x 10 GbE RJ45 (autosense) + 1x 1 GbE RJ45 (IPMI)
Add-on Up to 1x Dual-Port 10 or 25 GbE, SFP+ or BASE-T (RJ45)
Power Single, 668 W (non hot-swap), 100-240 V, 50-60 Hz or
Dual, 5000 W (redundant, hot-swap), 100-240 V, 50-60 Hz
Noise Level Silent (< 30 dB)
Dimensions H: 426 mm, W: 178 mm, D: 531 mm, W: ~20 kg
Cooling 1500 BTU/hour (maximum)
Temp. & Humidity 5°C - 35°C (50°F - 95°F) | 8% - 90% (non-condensing)

* The net capacity gives you a realistic estimate by factoring the capacity reduction caused by vendors reporting disk sizes in decimal units (1KB = 1000 bytes), while OS uses binary units (1KB = 1024 bytes) plus space reserved by the file system for internal service processes.

** Effective Capacity: calculated using a conservative 1.5x compression ratio. Effective capacity varies depending on types of data stored.