Tuesday, 6 September 2016

Android Developer Story: Hutch improves player engagement with A/B testing on Google Play | Android Developers Blog





The device is being designed by team, the skill set can
cover a wide range of different fields such as product design, systemintegration and board design.

Friday, 26 August 2016

Official Google Blog: Search is a Jack of all trades



Whizz Systems is one of the companies that are actively working on IoT design and
development. Established in 1989 as an engineering Manufacturing and Development
services provider, Whizz Systems has gone on to become a pioneer in the
engineering industry and is responsible for creating the world’s first solar
powered beacon.

Tuesday, 19 January 2016

Types Of Contract Electronic Manufacturing Services EMS Providers



The process of designing products in the form of machines, devices or any other form of product that will eventually find their way to the market to be used by the end consumers is known as product development of industrial design process. Contract electronic manufacturing services EMS are provided by companies that have the capability to test, manufacture, distribute, and repair and assembly for electronic devices, machines and products in general. These contract electronic manufacturing services EMS which is essentially electrical/circuit design and manufacturing and rf/wireless design services providers are much sought after due to one significant reason which is that these contract EMS provides can be contracted at any given point during the manufacturing or designing process of a product. Some of these electronic manufacturing services providers need only the basic designs from a client or customer from which they can create an entire device and can usually source electronic and electrical components from other distributors, assemble them and they put the finished product through rigorous testing. A large firm such as Apple Inc. does not need to source all of its components from other providers for they have enough in-house capabilities to create the parts they need to assemble to create a device. 

On the other hand, an EMS provider that holds significant expertise in electrical/circuit design and manufacturing may be contracted to perform specific tasks such as creating and implementing the rf/wireless design of a device. Engineering manufacturing services providers differ according to their own expertise meaning that while one EMS provider might be capable of creating and entire device from scratch with in-house manufactured components and very little outsourced material, another EMS provider might hold the expertise of simply assembling the device and many require the customer to provide the initial design, the necessary component and in some cases even a fully assembled and useable sample of the product. These types of EMS providers are usually contracted to meet the needs of mass production.

Posted by Whizz Systems

Wednesday, 6 January 2016

How it is Made Efficient FPGA Verification Significance

FPGA is the abbreviation used for Field Programmable Gate Array which is essentially an integrated circuit specifically designed in such a way that it can be easily configured or programmed by a user be they a customer or a designer after it has been manufactured, hence why they are named as ‘field programmable’. The configuration of an FPGA is dependent on the hardware description language or HDL used. In the early times of FPGA design, circuit diagrams are used to identify its configuration but since then as technology has evolved, this has become very rare but not obsolete. As technology has come a long way, FPGAs have become faster, and much more efficient in size and power and are now capable of a number of tasks such as field update and multi-functionality devices to name a few. Today’s advanced FPGAs are much more complex than their predecessors which are evident in the fact that unlike the older models, latest FPGA design verification has become a complex and in-depth process.

FPGA design verification in its earlier form revolved around entering a schematic design that was gate-level, downloading on a test board of a device and then substantiate the entire system through test data. As the design technologies for FPGAs evolved, new and more advanced methods came into existence such as hardware description languages (HDL) that combined with the conversion from simple gates to register transfer level (RTL) code allowed precise simulations to be used in the verification of the design before it was finalized. IC fabrications along with ASIC fabrications are the rigorous process that are not only time consuming but also quite costly. FPGS design verification, on the other hand, is far more feasible post-synthesis for they can easily be updated with advanced and newer design codes a number of times before the can be finalized. The ability of an FPGA to instantly enable prototyping designs is indispensable for instant verifications. It must be kept in mind however that, FPGA designs can plague by bugs that can either be introduced by human error which is easy to detect or systematic issues which can be avoided by the high-end potency and reliability of the toolchain. FPGA advancements are also responsible for creating a new and more vigorous form of Equivalence Checking (EC) which has become and almost necessary part of effectively removing systematic bugs from designs. EC has a number of pros such as the confirmation that no bugs or errors will be present in the final design and has a direct implication on the quality and reliability including the efficiency of the final design.

The evolution and advancements in FPGA designs have also brought significant improvements in the implementations verification methods and have pushed EC to become an important and necessary part of theFPGA design and development process.

Posted by Whizz Systems

Tuesday, 29 December 2015

Designing an Intelligent Hybrid IoT Enabled Devices

The internet of things is a concept fast turning into a reality that is its most basic form can be explained as every device and object on the planet earth being connected with each other through the internet. More appropriately it can be summed up as being a network of things that are electronic in nature being they software or hardware that allows the exchange of data between them. As the world is ushering headlong into an era where internet of things (IoT) will be a common reality, it has already made many people around to give a thought of how to design their products that will be IoT enabled which will essentially be Hybrid products.

Internet of things IoT design that offers by the internet of things IoT Design company will no longer be focused on the physically tangible. Any product that will be designed to be connected will have to ensure the acquiring and sharing of the data streams, which basically means that how they will get the data they need to work on and produce information that will be processed by other devices for them to work, be thoroughly efficient and be tangible enough to be easily upgradable. Internet of things IoT design process will require the designers to implement also the old hard and fast tenets of product design such as building an IoT enabled device to be useful, simple yet elegant, innovative and marketable.

Internet of things IoT application is a big as of yet unanswered question even though many though it has already begun to take root. In theory, if the internet of things IoT application does indeed become a reality on a world wide scale it will definitely make the world a more efficient yet a more internet dependent place. A recent example of the application of IoT enabled device is the Mimo monitor that provides real-time information about an infant’s symptom. A greater and more common example is the mobile phone. With all the sensors actively connected to the internet, a person can now monitor their every move, location and even workout throughout the day and instantly share this information with others.

Posted by Whizz Systems

Wednesday, 16 December 2015

Thank the People behind the Machine Engineering Service Providers

Mankind has come a long way since the start of the 21st century. In the bygone years before the technical boom enveloped the entire world and introduce devices and machinery to perform everyday tasks, things such as easy communication and even electrical shaving were considered were considered myths and ridiculed. But as it is evident from the history of mankind, humans have always struggled to bring the impossible into the realm of possibility and in today’s world, such things that were considered ridiculous or even impossible have now become part of our everyday lives in the form of electronic devices and machinery and in many aspects, human life has become significantly dependent on some of these inventions.

However these inventions simply do not come into being in the same state they are found in the market, rather the ideas, concept and designs of this device are looked over and extensively deliberated over by experts who are usually companies that provide engineering design services.

Engineering design services are essential to anyone who has come up with new ideas about brand new devices that in theory are supposed to perform a wide range of tasks and have many useful applications. It is important to understand that in today’s rapidly evolving world any new device that is electronics in nature should be designed to perform a number of tasks to make it viable for the market, and though the people who come up with the concept have the various applications of their device in mind, it is up to the experts at any electronic product design, development and manufacturing company to flesh out the idea and remove its oddities and focus on the device’s strengths.

Electronic manufacturing service provider companies such as are designed to be fully equipped and capable of meeting the challenges of any device design no matter how complex or abstract they may be and keeping the demands of the customers offer viable, precise and marketable solutions for the creation and manufacturing of the product. 

The services provided in this field vary from company to company but the most well established and reliable companies such as the one mentioned above provide invaluable EMS services that range from development of the fabrications materials and software where they are required, designing the basic assembly of the device, testing the components, material management and production and in most cases after sales services. The production of electronics design engineering all the components in electronics devices are commonly handled by in-house departments of the same company and even if they are not at some smaller firms, testing and prototyping are essentially handled by the manufacturer in order to ensure that the most flawless product in created.

One of the better-known companies as mentioned in USA that offers consistent high quality and absolute reliability of its services and products that ensure the perfect Printed circuit board PCB design, Manufacturing and Assembly and high productions values implemented in their products and projects alike.



Posted by Whizz Systems

Thursday, 3 December 2015

Machines that Save Humans Semiconductors and Medicine

Semiconductor equipment manufacturing has become a multi-billion dollar company and has integrated itself as an important part of the world’s economy and many experts consider the driving force behind the transition from the old economy to the new one have been these small electronic components. There are many companies in the world today that are continuously helping in the evolution of this so important component. Semiconductors are small electronic electricity conducting component that are found in almost every electronic device present to humans today. In this technological advance and sustained world, information sharing and communication across great distances have become everyday simple routines. With the advent of the computer and resulting technologies likecomputer, telecom and networking product design and development, human life has become more optimized. All of these useful machines present today owe all their success and functions to semiconductors materials. This material as it is obvious is actually brought into optimized existence by semiconductor equipment manufacturing. The semiconducting material is put through a fabrication process and is made up of materials such as silicon which is used for the wafer, the same wafer on which chips are made the same chips that are found in almost all of the electronic machines today.

Semiconductors have become the backbone of the modern machine and are used in the simplest to the most complex machines such as medical equipment. These companies are responsible for creating some of the most important machines that are humanly possible and required and it is their self-appointed enormous duty to keep evolving their ideas and devices to better them for humanity. Hospital devices such as infusion pumps and IV polls are designed by experts who have a firm grasp on the understating of the engineering fields and work efficiently according to the needs of the times about what devices are required to be updated or come up with entirely new concepts and machines that can be used to save lives. Working as a designer and manufacturer of medical machines is a big responsibility since the margin for error is next to none.

Medical device design and manufacturing companies are required to solve complex and perplexing problems relating to the evolution of machines in medicine. These companies work in numerous disciplines of engineering ranging from mechanical, electrical, electronics and even software development that are used in devices such as ECG machines that keep track of the heart condition. During the design process of such equipment, these companies often are provided direct input from qualified doctors and follow a similar process of design that begins from conception to the fleshing out of the idea then on to testing that include field testing and prototyping until they are finally made ready for the market for resale.

Posted by Whizz Systems

Electronic Design Company Bringing Visions to Life

The world is full of intelligent people that come up with great ideas for new devices and inventions that can have great uses and wide-spread applications in multiple fields. As it is known that at the base of any new technology is electrical, electronic and mechanical engineering. As conception for a new device is conceived, it is simply not feasible or smart to right out the door starts building the device on just basic planning and hunches. Whenever a new technology is started on the path to becoming a physical product, it goes through some fleshed out process that include designs and manufacturing. When working on new devices a common practice known as electronic design process come into effect where the conception, design and brief analysis of the applications of the device are decided. The design process includes drawings and in-depth analysis of the feasibility and workability of the project at hand. There are a number of firms in the world that provides this specific service regarding different fields meaning a firm providing electronic services will be called an electronic design company

One of the core aspects of any electronic device are the PCBs and it is highly wise to acquire the services of an electronic design company that also are familiar with the process and acts as printed circuit board manufacturers. Printed circuit board PCB design, Manufacturing, and Assembly is one of the essential parts of any electronic design process and are the ones responsible for providing complex embedded hardware designs for the optimal performance of any device. An embedded software and firmware Design and development is a usually a complete computer system that has the sole purpose of performing a single task is the overall device and the embedded system design must be done professionally and is very important since it has to be fixated with other electrical and mechanical part of a device in order for it to work correctly.

Posted by Whizz Systems

Thursday, 12 November 2015

Radio Frequency and Wireless Design Importance

RF stands for Radio Frequency and is a well implemented and used subset of engineering that composes of devices that are designed to operate on radio frequency (RF). This technology is implemented in any device that is capable of a sending or receiving radio waves such as mobile phones, and Wi-Fi networks. One of the aspects that is most important and adds significant success towards the popularity of the rf/wireless circuit design is its overall power consumption and compact designs. As devices especially mobile phones have gotten slimmer and smaller as technology has progressed, to prolong the time between battery recharge and the overall use, companies have started to use power conscious ICs for radio frequency, baseband and DSP.

RF and wireless features have become an important and highly sought after aspect of any device in today’s age of connectivity and with the dawn of the Internet of Things and its inevitable mass scale implementation just around the corner has made the requirement of devices being wirelessly connected all the more important. There are some aspects that must be taken into consideration however when developing rf/wireless circuits. First of all the designer should have a good understanding of the requirements and the overall design of the device in which the wireless circuit is to be implemented. Bulky and large circuits had become obsolete even before they became popular since they were never feasible in devices. For example, mobile phones in the past usually were very large and bulky with limited functions and actually had large antennas as part of their designs as opposed to today’s slimmer phones that have larger screen sizes, tons of functions, high connectivity options, and smaller sized radio circuits. A good practice to have useable and high-quality wireless circuits for a device is to have help from professionals who are experts in taking trough designs and bring them up to optimum efficiency.


Rf/wireless circuit designs are useless if they are not cost efficient. No matter how good the initial design and application of a circuit, it is just not bound for success if it is expensive to manufacture as the single circuit is composed of many smaller components. During the planning stages, a balance between the feasibility and the cost required should be worked out and as progress is made, the economic value of developing the circuit should be kept as low as possible. There are many companies in the world that specialize in radio frequency and wireless circuit design processes and are usually experts in different fields such as installations, designing, and maintenance. Technology is evolving at a rapid rate and as mentioned, the new phenomenon that is the Internet of Things will make Rf and Wireless technology essential towards not only mobile devices but towards every electronic device.



Posted by Whizz Systems

Wednesday, 4 November 2015

What Turned the World into a Village through Telecommunication



Telecommunication can be described as the exchange of information between two or more than two entities through technological means. Telecommunication uses channels to send out information as electrical signals either over physical or digital mediums. Physical mediums can be signal cables and digital medium can be electromagnetic waves. Telecom devices usually have a transmitter and a receiver and the most common example of modern telecom devices are the mobile phones that are connected to a vast net of a telecommunications network that is used to share information between people and device.A network is usually a telecommunications network which allows computers and other devices that are connected to it share data between them and those on other networks through data connections.

Telecom and networking product design and development are a service that is offered by many companies that provide engineering services and it is one of the most sought after and important services required to an organization or individuals. There are many challenges associated with telecom products developments and some of the most important things that need to be kept in perspective during development are functional performance, availability and reliability of the telecom product. These products include the likes of Broadband Infrastructure Products, IP Networks, Cable Modems and Set-Top Boxes, DSL Modems and Routers, FO Switches, GSM, GPRS and 3G/4G Wireless Protocols, WLAN and Bluetooth. As technology is movie forward a new type of communications network is slowly but surely taking hold in the world of electronic devices. This new technology is Internet of Things which will allow billions of devices to be always connected. This has given arise to the need for developing devices that have some form of telecommunications and networking infrastructure present within them which will allow them to be connected consistently to a network and work more efficiently. 

Telecom and networking product design and development have similar procedures to other electronic devices. When designing a telecom product it is best to capture the core requirements of what the device has to accomplish when put to work in a telecommunications network. A product that is required to perform telecommunications services while being connected to a network like a router must be capable and reliable and be free of needless complexities that may hinder it to reach its full potential and become a problem for the user. To avoid such problems, proper planning and in-depth refining of the requirements to be fulfilled by the product should be done before the idea has been finalized. The hardware and software used should be as per the requirements. Networking devices require thorough testing for they are needed to establish and maintain constant and clean connections between two devices through a network.
Posted by Whizz Systems

What Embedded Software Really Is For Electronic Designs And Production



Embedded software is a specially programmed to perform specific tasks and is installed on chips or firmware’s which are found in embedded devices. Embedded software could perform a single basic or complex task, but as technology has evolved today, embedded devices programmed with embedded firmware can perform many complex tasks today. Contrary to popular and uneducated belief, embedded software and firmware development is different from software development. For one thing, unlike a software developer who programming an application, any team or individual working on embedded software and firmware development is required to have in-depth knowledge of hardware it is being developed for embedded software’s are made specifically for devices that are supposed to perform a single or set of task. Embedded software development unlike IT software is not dependent on how many lines of code there are, meaning a complex task might actually have only 20 lines of code as opposed to hundreds of lines for a regular software. One thing that significantly differentiates the two fields is the fact that where software developers work on PC for PC, embedded software developers work on PC for PCB and write all their coded software’s and firmware’s for these BOARDS and micro-controllers.

Electronic product design, development and manufacturing Company has the three steps through which every device no matter how small or how big, how basic or how complex passes through on its way to becoming a useable and marketable product. First the basic concept of a new device is conceived in which it is decided what the purpose and uses will be; this step also includes early concept sketches about the shape and size of the device. Once that is finalized, the next step is development. In the development stages, the concept on paper is converted into a physical device which is thoroughly tested by prototyping and made sure that it performs accordingly to its desired function. After it has passed inspections and testing, the device is deemed appropriate for manufacturing and mass production and finds its way to the consumer.


Posted by Whizz Systems

Monday, 19 October 2015

How it is Made Efficient FPGA Verification Significance



FPGA is the abbreviation used for Field Programmable Gate Array which is essentially an integrated circuit specifically designed in such a way that it can be easily configured or programmed by a user be they a customer or a designer after it has been manufactured, hence why they are named as ‘field programmable’. The configuration of an FPGA is dependent on the hardware description language or HDL used. In the early times of FPGA design, circuit diagrams used to identify its configuration but since then as technology has evolved, this has become very rare but not obsolete. As technology has come a long way, FPGAs have become faster, and much more efficient in size and power and are now capable of a number of tasks such as field update and multi-functionality devices to name a few. Today’s advanced FPGAs are much more complex than their predecessors which are evident in the fact that unlike the older models, latest FPGA design verification has become a complex and in-depth process.

FPGA design verification in its earlier form revolved around entering a schematic design that was gate-level, downloading on a test board of a device and then substantiate the entire system through test data. As the design technologies for FPGAs evolved, new and more advanced methods came into existence such as hardware description languages (HDL) that combined with the conversion from simple gates to register transfer level (RTL) code allowed precise simulations to be used in the verification of the design before it was finalized. IC fabrications along with ASIC fabrications are a rigorous process that are not only time-consuming but also quite costly. FPGS design verification, on the other hand, is far more feasible post-synthesis for they can easily be updated with advanced and newer design codes a number of times before the can be finalized. The ability of an FPGA to instantly enable prototyping designs is indispensable for instant verifications. It must be kept in mind however that, FPGA designs can plague by bugs that can either be introduced by human error which is easy to detect or systematic issues which can be avoided by the high-end potency and reliability of the toolchain. FPGA advancements are also responsible for creating a new and more vigorous form of Equivalence Checking (EC) which has become and almost necessary part of effectively removing systematic bugs from designs. EC has a number of pros such as the confirmation that no bugs or errors will be present in the final design and has a direct implication on the quality and reliability including the efficiency of the final design.

The evolution and advancements in FPGA designs have also brought significant improvements in the implementations verification methods and have pushed EC to become an important and necessary part of the FPGA design and development process.

Posted by Whizz Systems