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VOIP Dedicated Server (Voice over Internet Protocol Server)

Server Location Processor RAM Storage Bandwidth Price Server Detail
Amsterdam Intel Atom C2350 1.7 GHz 2c/2t 4 GB DDR3 1× 1 TB (HDD SATA) 1 Gbps Unmetered Fair Usage Bandwidth $24.08 Configure Server
Paris Intel Atom C2350 1.7 GHz 2c/2t 4 GB DDR3 1× 128 GB (SSD SATA) 1 Gbps Unmetered Fair Usage Bandwidth $29.64 Configure Server
Los Angeles Intel Xeon E3-1230 v2 3.3 GHz 4c/8t 16 GB DDR3 1× 256 GB (SSD SATA) 1 Gbps Unmetered Fair Usage Bandwidth $39.01 Configure Server
VIA Nano U2250 1.6Ghz 2 GB 1x 160 GB Unlimited $44.10 Configure Server
Hong Kong AMD EPYC 7402 (1 Virtual Core) 2.8 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $44.20 Configure Server
Dallas AMD EPYC 7402 (1 Virtual Core) 2.8 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $44.85 Configure Server
Montreal Intel Xeon E3-1245 v2 3.4 GHz 4c/8t 32 GB DDR3 3× 2 TB (HDD SATA) 100 Mbps Unmetered Fair Usage Bandwidth $45.27 Configure Server
Sao Paulo AMD EPYC 7443P (1 Virtual Core) 2.8 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $47.45 Configure Server
Tokyo AMD EPYC 7443P (1 Virtual Core) 2.8 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $48.10 Configure Server
Bursa AMD EPYC 7443P (1 Virtual Core) 2.8 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $51.35 Configure Server
Helsinki Intel Xeon Gold 6240L (1 Virtual Core) 2.6 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $60.25 Configure Server
Oslo AMD EPYC 7702P (1 Virtual Core) 2 GHz 1c/1t 4 GB DDR4 1× 75 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $64.89 Configure Server
Lisbon Intel Celeron N3150 1 GHz 4c/4t 4 GB DDR3 1× 240 GB (SSD SATA) 1 Gbps Unmetered Fair Usage Bandwidth $68.11 Configure Server
London AMD EPYC 7401P (2 Virtual Cores) 2 GHz 2c/2t 8 GB DDR4 1× 125 GB (SSD NVMe) 1 Gbps Unmetered Fair Usage Bandwidth $74.15 Configure Server
Frankfurt Intel Xeon D-1520 2.2 GHz 4 cores 32 GB DDR4 2× 2 TB (HDD SATA) 1 Gbps Unmetered Fair Usage $75.93 Configure Server
Dusseldorf Intel Atom S1260 2 GHz 2 cores 8 GB DDR3 1× 500 GB (HDD SATA) 1 Gbps Unmetered Fair Usage $80.77 Configure Server
New York City Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $87.29 Configure Server
Seattle Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $89.68 Configure Server
San Francisco Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $90.88 Configure Server
Phoenix Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $92.07 Configure Server
Miami Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $93.27 Configure Server
St. Petersburg Intel Core 2 Duo E8400 3 GHz 2 cores 6 GB DDR3 2× 500 GB (HDD SATA) 1 Gbps 30 TB $98.70 Configure Server
Washington, D.C. Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $99.25 Configure Server
Valencia Intel Celeron J1900 2 Ghz 4 cores 8 GB DDR3 1× 120 GB (SSD SATA) or 1× 1 TB (HDD SATA) 1 Gbps 65 TB Fair Usage $101.46 Configure Server
Chicago Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 16 GB DDR3 2× 1 TB (HDD SATA) 1 Gbps 10 TB 1 Gbps Guaranteed Bandwidth $101.64 Configure Server
Vilnius Intel Celeron G1840T 2.5 GHz 2c/2t 8 GB DDR3 2× 1 TB (HDD SATA) 100 Mbps Unmetered Fair Usage Bandwidth $102.90 Configure Server
Toronto Intel Xeon E3-1230 v3 3.3 GHz 4c/8t 8 GB DDR3 1× 1 TB (HDD SATA) 1 Gbps 2 TB Bandwidth $118.12 Configure Server
Zlin Intel Dual Core Atom 1.60GHz 4 GB 1x 1500 GB Unlimited $123.07 Configure Server

In this 21st Century, everything is connected to the Internet. No matter what may be the requirement of a particular person he/she can get or fulfill their needs through the Internet. In this digitalized era, one must think of the possibility of Voice Over the Internet. The Internet has a unique way of transferring data. If a video is supposed to be shared, it will travel in different packets and as those packets reach their destination, they all assemble again.

As we know calling over the Internet has been so common these days. The usage of Skype and WhatsApp has increased and is increasing day by day. So here arises the question of how is this possible and how voice transfer over the Internet takes place.

Briefing

This is all possible with the help of VoIP in the USA dedicated server, which is also known as Voice Over Internet Protocol popularly known as Internet Telephoning. The voice transfer over the Internet is not the same as the data transfer taking place between two devices. In the Dedicated server of VoIP, the voice messages are split into packets by using Digital Signal Processors such as from the United Kingdom Server. It needs to follow some protocols to reduce the disturbance, time interference, and delay of voice transfer. Voice communication always exists in analogue connection and for the process of VoIP to work it should be digitalized. After its digitalization, it is transformed into IP packets. As these packets travel from one connection to another it completes the process of Data Transfer. Hence, we can say that it uses Packet switching and no dedicated path.

Calling over the Internet comes with various options. Suppose you are calling from one computer to another computer, which is connected to the internet and the other way is the call-taking place from an internet-enabled device to another landline connection. In both ways, the Dedicated Server from VoIP works differently.

If the call is taking place between two internet-enabled devices is can easily create connections with each other and then they decide on which protocol they will be establishing the connection and then they start to transmit and receive data from one another and the call is normal. However, an old landline is not capable of configuring all these calculations on its own. So here, Gateways are introduced. These gateways connect an internet system to the PSTN (Public Switched Telephone Network) system and this is how internet calls can be made to landline connections.

Sometimes during the transfer of packets, there comes a gap between the data and then suddenly all data is released at an instance. This phenomenon is known as Jitter. The Server of  VoIP is not a considerate option in case of emergency as it is hard to track.

Uses

  • The main use of a VoIP Server of Ankara gateway is to interface the PSTN network to an internet network.
  • A VoIP gateway may be a device, which converts telephony traffic into IP for transmission over a knowledge network.

  • Here the digitalization of data and bandwidth allocation according to the need of data takes place.

CODECS 

Codecs are also an important part of VoIP in Dedicated Server from the USA. It encodes and compresses the data. After the digitalization of voice, CODEC compresses the data to remove unnecessary bits from the audio. Which results in reducing the size of the data. The less the data the less will be IP packets and the utilization of bandwidth comes to a minimum. CODEC has its verities some CODEC can compress more data and some less. Each compression technology is meant for a selected use under specific circumstances. The signalling protocols govern the setup and many other call-related problems. The main aim of the protocol in any signalling system is to manage and control calls like establishing calls, conducting calls, and disconnecting calls as overall management.

H.323

H.323 was the first protocol of Voice over Internet Protocol from the Dedicated Server of the USA. It was designed by ITU-T (International Telecommunication Union for Telecommunication Standard). It is a standard protocol for defining the components, protocols, and procedures. It is a set of protocols, which was designed for multimedia communication services such as real-time audio, video, and data communications over an IP network. It is a heavy protocol, as it has to transfer all kinds of data. H.323 enables five types of information exchange Digitalized Voice, Digitalized Video, Data, Communication Control, and Connection Control. it allows voice or video conversation between two or more participants and one task of this protocol is to create a connection or a session between participants. H.323 is also called a signalling protocol. 

SIP (Session Initiation Protocol)

SIP (Session Initiation Protocol) is another protocol that was designed by IETF (Internet Engineering Task Force). This protocol is also known for initiating a session. It is a protocol to establish, modify, and terminate multimedia sessions like IP telephony. Session Initiation Protocol (SIP) is a signalling protocol that is used to set up, modify, and tear down multimedia applications. It is designed for networked multimedia communication. It allows two endpoints to establish media sessions with each other. SIP is a simple, flexible, and versatile protocol. In comparison to H.323, it is a lighter protocol as it was only designed to transfer calls. Whereas H.323 can transfer all kinds of data. SIP requires less bandwidth and is specially designed for VoIP of Dedicated Server in the United Kingdom. All systems that need multimedia sessions are registered and provide SIP addresses, much like IP addresses. 

RTP (Real-Time Transfer Protocol)

RTP (Real-Time Transfer Protocol) is also an IETF (Internet Engineering Task Force) Standard RFP 3550. Real-Time Transfer protocol is used for delivering voice and video over IP networks in SIP. RTP adds a bit-oriented header containing the Name of the Media Source, Timestamp, Codec Type, and Sequence Number. It provides end-to-end delivery services of real-time audio and video. Here data is transported with the help of user datagram protocol also known as UDP. This protocol includes timestamps for synchronization, sequence numbers for packet loss, and reordering detection. It also includes a payload format, which indicates the encoded format of data.

SCCP (Skinny Client Control Protocol)

Similarly, another protocol named SCCP (Skinny Client Control Protocol) is a proprietary protocol as a result it only works with a particular organization or company. This protocol is not open to everyone. Especially if it is under a dedicated server such as the United Kingdom Dedicated Server then it gets more private.

Benefits and Options

The market even includes different types of VoIP equipment, which exactly look like a landline device, but instead of being connected to LAN, it is connected to the internet. This is also of great help as we see that most of the company's and organizations' landline connections could be a little messy and could increase the charges of telecom services. Instead, a Dedicated Server from the VoIP Data Center helped in getting rid of all kinds of mess, and also the company will have to pay less for their telecom needs as it is all connected to the internet. VoIP servers such as Dedicated Server from Ankara also help by reducing the costs by 40% in local calls and way more than that in international calls.

Why Us:

Now there arises a question of how can we get such services with all the key benefits and which can make our choice easier and fulfil our demands. 

Here at Ultraso, we have 24/7 customer support we are here to solve all your doubts and help you throughout your choice which can make you decide even better. even if somehow you are unsatisfied with our services you can cancel your subscription within 48 hours and you can get your money back. If you are facing a problem in paying then there is also an option of BIcoin which will make your transaction easier and safer.    

We help our business in the wide sector so we are always there to help and solve all your doubts and confusions. Also, we are punctual regarding our services so there might be no problem while you are a part of the Ultraso family. With our easy-to-use and easy-to-handle services, you will be able to get access to a service of your choice within a few clicks. With all these benefits you should consider working with us.

Conclusion

However, as every technology has its advantages and disadvantages, Dedicated Server VoIP whether it may be of Ankara Server also has some drawbacks. Voice transfer over the Internet has many advantages such as it comes at a cheap rate and it can be conducted at any place Also it uses the existing infrastructure of the Internet. However, at the same time, it has its disadvantages such as its installation cost is high and it has low service quality emergency calls cannot be conducted with the help of VoIP.

 

In this way, we can define and conduct all the pros and cons of Voice Over Internet Protocol (VoIP) Dedicated Server.

 

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