Benefits of Prototyping for Electronics Engineering Design for Improving New PCB Hardware


Today’s post explores the benefits of prototyping for electronics engineering design to improve new PcB hardware. In every hardware electronic development, the prototyping phase always comes early in the process because it really is that important. It doesn’t really matter if you’re planning to develop a complete device or just the PCB; you have to build a physical prototype right after finalizing the concept. The first form of physical prototype is typically known as Proof of Concept (PoC). The main purpose of a PoC, as the name suggests, is to prove that the design can indeed provide solutions to problems in the way you expect it to do.

Because this is an early prototype, you’re allowed to build it using off-the-shelf parts and components. Development kits like Raspberry Pi or Arduino are more than capable of getting you through this phase. PoC prototypes, in most cases, are not meant for mass production because the cost is too high and the design is just too ugly to attract buyers. From this point on, the prototype undergoes an iterative process to improve its appearance and functionality. Easier said than done, of course.

All the work that such a project entails can easily overwhelm anybody, unless they get the right help from the right electronics design professionals, and that’s where Cad Crowd comes in. It’s a specialized freelancing platform with thousands of hardware development experts from around the world. Whether you need electrical/electronics engineers or industrial designers, Cad Crowd has the specialists to connect you for any hardware development project.

RELATED: Electronic Enclosure Design Tips: A Complete Guide from Freelance Engineers and Design Services Firms

Why Prototype at all?

On the surface, prototyping may appear to be a simple task of creating a product sample. Dig deeper, and you’ll be glad to discover the myriad of benefits it offers for improving the PCB design.

Schematics do sometimes lie

You’ve missed dinner and worked overtime to get every line on the PCB schematic as close to perfection as possible. It eventually looks great just after midnight, and you immediately go to bed knowing that you’ve actually finished something. Specialized CAD software allows you to build a complete “virtual” PCB without even touching a single component or solder. It all happens on a computer screen, and the schematic itself does look pretty realistic. That’s why it’s commonly referred to simply as “virtual prototyping.”

The problem with virtual prototyping is that you never really know if the schematic will work as intended in the real world. What appears to be a flawless schematic from an expert schematic designer on the screen can turn into a troubleshooting nightmare once you build a physical version. Nobody expects the worst, but you should still consider that possibility. And to be frank, many things can go wrong even when the schematics look perfect. What if you’re using an incorrect pin on the USB connector? What about a mirrored footprint, incorrect voltage draw, or logic level shifter issue? 

Virtual prototyping is great and all, but nothing beats having a physical PCB and testing it yourself. If nothing goes wrong, think of it as having a clear verification that the design is correct. And if things do go wrong, at least the board and the components aren’t so expensive that you lose sleep over them. Grab a multimeter and have a good hunt. The idea is to catch and fix the mistakes early on when it’s still cheap to make them. Don’t worry about botched repairs and jump connections using soldered wires and hot glue. Aesthetics is the least of your concerns at this point. You can afford some more boards and components. The important thing is you know where the mistakes are and how to do better next time.

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Datasheets can be misleading, too

We’re not saying the specification sheets from the manufacturers are wrong. It’s just that when the electronic components are already installed on the board, with all their connections and interactions, the numbers can be smaller or larger than what you see on the datasheets. Manufacturers and PCB design companies test their chips and sensors in a controlled facility, an ideal environment with minimum interference. Some portions of your project may take place in a lab-like room, but the final product (the finished device) is meant to be used in the real world, where very few things are close to ideal. Interferences come from every corner, and voltage fluctuations happen more often than you think.

Physical prototyping is where you put the specification sheet to the test. You’ll find out whether the microcontroller can stand its ground despite interruptions, or whether the amplifier gets along with the switching regulators. Many electronic components can go haywire under heavy load. The buck converter gets hotter than the numbers suggest, the capacitor delivers only half of what it needs to give, or the supposedly compatible chips develop weird timing issues if you look at it funny.

Testing a physical prototype helps reveal at least a majority of these unexpected problems. Because you’re still in the prototyping stage, no one will complain if you experiment with different parts and revise the list of components. You probably need half a dozen prototypes until you get every single detail right, but it’s still the best way to produce an accurate Bill of Materials later on.

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Let’s not be overengineering

You’ve heard people say how old devices are better because they were overengineered to last a lifetime. It’s always a bit annoying, as the statement basically implies that modern products can never be as good because nobody cares enough to put in any real effort. How often have you come across someone pointing out “they don’t make ‘em like they used to,” as if no ancient gadget ever broke even once? No one is against overengineering. But everyone knows it’s not a very efficient way to develop electronics, especially since design engineering services are all about efficiency. People overengineered things in the past, maybe not because they wanted to, but because they lacked the right tools to do things efficiently.

Nowadays, you have CAD software, PCB simulation tools, and 3D printers, among others, to keep the work as efficient as possible. The tendency to overengineer is still very much alive today, whether you realize it or not. When designing a new PCB, it’s only common to want to use higher-priced components. You think that a $5 resistor (instead of the $0.1 alternative) will boost your confidence and somehow lower the chances of failures. There’s probably some truth to that, although it doesn’t mean that the cheaper resistor won’t work. Physical prototyping is where you’ll figure out whether the more affordable components do their jobs just as well as the more expensive counterparts.

If your plan involves creating no more than a couple of dozen devices, sure, it’s fine to use the premium parts. However, for a product to be mass-produced (5,000 units or more), even a small price difference for a single component can amount to hundreds of thousands of dollars. Assuming the cheaper resistor works just fine, there’s no need to overengineer the board and for the new product design company to spend extra money on the more expensive option. You can only confirm this with a physical prototype. If a specialized, costly “military-grade” resistor doesn’t actually make your device run noticeably better, then the standard, cheaper option should be the one you pick.

RELATED: Electronics Enclosures Design: 8 Powerful Tips for Companies and Firms Hiring Freelancers

In some cases, you can also avoid overengineering by removing excess, for example, reducing the number of capacitors, so long as it doesn’t affect performance. It’s an iterative process to reduce production cost per unit as much as possible while maintaining the board’s functions and features. Every good PCB designer needs a reasonable degree of obsession over this matter. They want to create the best design with the fewest resources, aiming to build an efficient, utterly functional design that makes good financial sense.

Do you need an enclosure?

To keep things simple, let’s assume you do. Say you’re designing a PCB hardware to build an electronic device. Like many other electronics in the market, it’s certainly not a PCB with exposed parts. The board is fitted into an enclosure to protect all working components from the elements, including occasional water splashes, drops, and general rough handling by users. More importantly, the enclosure is usually an insulator, preventing hands and fingers from coming into contact with live electrical parts. This is where electronic enclosure design services come in.

But it’s also about aesthetics. One of the main reasons big companies spend millions of dollars on their design departments is to ensure that the next products will appeal to buyers. Think about it: if you remove the back cover of two calculators from two different brands, they probably appear pretty much the same. Well, they won’t be identical, but quite similar. From the outside, however, those devices should be easily distinguishable, whether from the size and color of the buttons or the form factor. Curb appeal plays a factor in every buying decision. You want to make the enclosure as attractive as possible to draw people’s attention.

That being said, strictly from engineering viewpoints, ensuring a good fit is the priority. An enclosure doesn’t have to be fancy, but it almost definitely needs to be perfectly compatible with the PCB inside. Being “compatible” means that all the screws going through the PCB to secure it to the enclosure don’t disrupt functionality in any way, the holes line up with the hardware interfaces, and everything feels snug with zero rattling. Although the enclosure designer can, of course, design the enclosure almost entirely in CAE, the only way to be 100% sure it will fit the PCB is to physically prototype it.

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Given that nowadays you can even build a highly complex plastic enclosure with a 3D printer, not much can get in the way of fabrication. In the event the printed enclosure doesn’t fit perfectly, it won’t take more than a piece of sandpaper and a file to make corrections. Perhaps a capacitor is blocking the lid mechanism, the power switch feels too stiff because the hole is misaligned, the screen slot is too wide, or the ventilation is too small to dissipate heat quickly. Remember, you’re still in an early prototyping phase at this point, so having some rough edges here and there isn’t a big deal. You can’t tinker with the digital file, print it again, and repeat until you discover zero issues. 

Hot spots are not cool

When an item gets too hot, you usually pour cold water to bring the temperature down quickly. The problem with electronics and basically all things with a working PCB in them, is that they don’t like heat and hate getting drenched even more. Heat has never been on speaking terms with electronics since forever. High temperature always lurks around the corner, but electronics always try to keep it as far away as possible. Sometimes, actually more often than you think, the electronics have to succumb, accept their fate, throttle, fail, and in the worst-case scenario, literally melt.

Not every square millimeter or component on a PCB generates the same amount of heat. Physical prototype design engineering services allow you to easily identify any hot spots by putting the board under a thermal camera. This, of course, necessitates the board to fully function in the first place. Switch it on, and begin testing every single feature you have. At some point, you have to run the board at full load to see which parts generate the most heat. Just a reminder, hot spots are nothing unusual in electronic devices. If you see all your devices at home through a thermal camera, you’d be surprised to witness the presence of glowing red entities everywhere.

PCB design services

Heat is normal as long as the temperature remains within the device’s safe limit. For instance, a laptop’s CPU can operate happily at 90 °C during intensive tasks like 3D rendering or heavy multitasking. The good thing is that advanced devices, such as computer processors and motherboards, include safety measures to maintain a healthy operating state. Think of it as a “kill switch” of some sort. It will reduce the workload, so it won’t break itself. It’s going to run a little slow, but at least it stays cool.

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Your PCB may not have a similar kill switch, but knowing where the hot spots are can at least give a clue about how to minimize the issue. Perhaps you can use a passive heat sink, a thermal pad, larger ventilation holes in the enclosure, or, in extreme cases, redesign the entire board. From a PCB designer’s perspective, a complete redesign seems daunting, though not unlikely, especially when the hot spots are all over the place, and the temperatures are so high that using the device is uncomfortable. For instance, the PCB is intended for a handheld device such as a smartphone or a satnav. Imagine having to hold a device that’s constantly burning at 50° Celsius. Gloves might help, but do you know how unpleasant it is to operate a small device with them?

Electricity is money

We won’t try to make the case for how cheap electricity can be if not for data centers, tariffs, inflation, and all that. We’re just going to admit: yes, electricity is getting more expensive. But why bring this up at all? PCB and electronics do consume electricity. You might argue that some PCBs need no electricity, such as those in computers and tablets in a car, and you’d be very wrong. They do consume electricity, produced by the fuel. Also, every modern car has a battery, and just about everything in it is an electronic device with a circuit board. Even the cars themselves are literally called electric vehicles.

Because electronic devices require electricity to operate, the PCB must manage power consumption. It regulates the input, stops recharging when the battery reaches full capacity, delivers the power to the components, and puts some functions to sleep as soon as it’s safe to do so. If the PCB is for a device with a battery, power consumption (how efficient it is) can be the feature that makes or breaks the product. Say the PCB assembly designer’s new device is a smartwatch with basic features like an always-on display, Bluetooth connectivity to a smartphone, and a vibration alarm.

This new shiny device is supposed to last five days (120 hours) on a single charge. But when a user finds out it dies after just 12 hours, that person becomes an angry customer with the power of all of Facebook and Twitter to tell everyone to stay away from your product. Virtual simulation offers a workaround for monitoring power consumption without a physical prototype. As good as simulations are, they’re not exactly the best option when you need to predict “current leakages” coming from chips or resistors that decide to just go stubborn and refuse to sleep, which they’re supposed to, as soon as they stop doing anything. To detect and see this in real time, you can connect a physical prototype to a power profiler.

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This way, you’ll be able to identify instances of phantom drain or precisely how many milliamps the board is using in different scenarios. Perhaps the unnecessary drain comes from the Bluetooth radio staying on longer than it needs to, Wi-Fi keeping search for new networks after establishing a connection, GPS running in the background, etc. High temperatures also affect battery life. And voltage drop is an annoyance each time the battery almost runs out of juice. In many cases involving power draw, the underlying problem may be the firmware rather than the hardware, which is important to remember with electronics design services. Tweaking the code and better heat management can help optimize battery life. All this data is also useful to create an accurate battery indicator for end users. 

Firmware trial

In an ideal PCB development process, the hardware is ready just about the same time as the firmware is. But because “ideal” almost never happens, the firmware developers often have to wait until the engineers send the board for a test run. It only makes sense to develop at least the early versions of drivers using a prototype. Instead of sitting around and endlessly browsing GitHub while waiting for the perfect board, testing the firmware on a prototype would be a better use of time. An ugly PCB prototype with janky solder joints and jumpers is more than good enough to get firmware development started.

Guaranteed, it won’t be a pleasant experience writing code for hardware that you know is still going through multiple changes in the near future. The idea here is to cover the basics first, such as power management, sensor communication, and the user interface. Developers will find bugs and issues in so many places, and that’s exactly the point. Perhaps the way the PCB is wired makes it impossible to implement energy-saving sleep mode, or certain components don’t support high-speed communication. And in every product development, discovering problems on a prototype is much less worrying than bumping into issues on the final version.

Parallel development isn’t always easy, and sometimes downright impossible without effective project management. There needs to be an intermediary (DevOps or the like) to bridge communication between hardware and firmware teams. When done properly, however, it’s a huge time-saver. Every physical prototype iteration must be tested for firmware. For every step forward in the hardware department, the firmware refinement keeps pace closely behind. As the hardware reaches the final stage, the software should be around 90% complete.

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Get the investors ready to spend

Remember about prototyping being an iterative process? As development nears the end of that process, the hardware should be functional. A functional prototype is almost like a production version, except that it has not been perfected for mass production. That being said, there won’t be any major differences between the two versions, especially if the development follows DFM (Design for Manufacturing) services. A functional prototype is the version to showcase when you’re presenting the product to investors. Will this improve the hardware?

Not in the strictest sense of the word. But you’ll get accurate feedback from all those stakeholders. Feedback, you can then analyze and implement to get the design more in line with their expectations. Because stakeholders aren’t usually professional engineers, much of the feedback will most likely concern practical matters such as aesthetics, ease of use, water resistance, durability, and so forth. Although you’ve probably already thought about all that during the development process, all kinds of feedback are always welcome.

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FCC test practice run

Just about everything with a PCB inside needs to pass the FCC test before you can send it to market. FCC wants to ensure the device doesn’t emit excessive RF noise that could interfere with other communication devices. The whole procedure is expensive and potentially takes forever. Any prototype designer in their right mind will not send a product for certification testing unless they’re 100% certain it won’t fail. You can improve your chances of getting certified by first sending the device, either bare electronics or with its enclosure, to an independent lab for a preliminary test. It still costs money, but at least you don’t have to wait months for the result.

Assuming the test discovers problems, fix them and send it for a second test. Consider the prototype a practice run to prepare you for the official certification procedure. The FCC test mostly concerns the electrical components, but the certification applies to the product as a whole. In other words, you need to get the finished device (PCB and enclosure, along with accessories such as a charging adapter if you plan to include it in the box) certified. A lot of people on the internet like to talk about the importance of DFM services when developing a product, but equally crucial is to build the device with certification in mind.

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It’s good to have the design made for mass production, and even better when it’s also built to pass the FCC test. Thankfully, you can do both simultaneously. The general recommendation is to apply for the certification as late as possible, maybe while setting up the manufacturing. Only certify the product when you’re sure there won’t be any further design changes. 

Closing thoughts

Hardware development is difficult. It takes real engineering expertise to build a custom PCB from scratch and design a brand-new enclosure. One good programmer can probably create entirely new software, but hardware development is a different beast. Not only do you need electrical and electronic engineering skills, but also firmware know-how. Realistically, a hardware development team includes at least one of the following: an electronics engineer, an industrial designer, or a firmware programmer. Much of what they do, as mentioned earlier, is to build multiple iterations of a physical prototype based on the PoC.

How Cad Crowd can assist

At the end of the development process, you expect the prototype designer to deliver a fully functional PCB (preferably with an enclosure) ready for mass production. Finding the right professionals for some highly specific task doesn’t have to be a struggle. Cad Crowd, with more than 15 years of experience in the industry, can take you to the center of a massive engineering and design hub, where you can collaborate with some of the most qualified hardware development experts. Contact us for a quote today!

author avatar

MacKenzie Brown is the founder and CEO of Cad Crowd. With over 18 years of experience in launching and scaling platforms specializing in CAD services, product design, manufacturing, hardware, and software development, MacKenzie is a recognized authority in the engineering industry. Under his leadership, Cad Crowd serves esteemed clients like NASA, JPL, the U.S. Navy, and Fortune 500 companies, empowering innovators with access to high-quality design and engineering talent.

Connect with me: LinkedInXCad Crowd

Top 38 Platforms to Hire Electronic Enclosure Design Freelancers and Electronics Engineers


It is not a matter of sifting through hundreds of CVs of experienced electronic enclosure design freelancers and electronics designers. It is a matter of where. Your favourite platform can halve your time, eliminate the irrelevant, and put you face-to-face with the people who actually know what your project’s all about. Cad Crowd is where you begin, from talent pool to help with making technical ideas into working designs. And in case that’s not said explicitly enough, we sorted through 38 sites so that you can get the cream ready for your next project.

Cadcrowd logo

1. Cad Crowd

Cad Crowd is where you get the top electronic enclosure design freelancers and electronics engineers. It delivers the company’s pre-screened CAD design professionals, PCB design professionals, prototype designers, and case designers. Cad Crowd is among the freelance platforms in overall management of engineering and design, and therefore, it is easy to locate technical professionals. Businesses can post an ad, run a contest, or employ directly. Intellectual property rights and safe project management software are available on the platform. Regardless of the kind of top-level enclosure design modeling or overall product design assistance you need, Cad Crowd assures quality delivery by the world’s top professionals. 

Website: Cadcrowd.com

Gofreelancecom

2. GoFreelance

GoFreelance is a simple gateway providing matching freelance experts with employers for work assignments across different industries, from electronics to engineering. It is a job posting service by which firms can hire selected candidates on a project or part-time basis. It is less internet-based compared to those websites available, but more than you would employ in looking for generic technical freelancers. Since so many are passing through, there is a relatively good chance that you will be able to cover all your leads pretty well, with the expectation of getting that one that can help in fulfilling your project needs. Although GoFreelance brings you to a majority of individuals, it is for small projects and small work, but not massive engineering projects. 

Website: Gofreelance.com

RELATED: Electronic Enclosure Design Tips: A Complete Guide from Freelance Engineers and Design Services Firms

twine logo

3. Twine.net

Twine.net is well-known for freelance 3D designers but has expanded to technical disciplines like electronics and engineering. You can list and accept bids from freelancers worldwide. Twine is never electronics or designing enclosures, but if you can shove people who are not necessarily going to be using the same skill set, then it is still out there. The platform is fun to work with, and the talent pool of seasoned veterans and up-and-coming star freelancers is there. Firms willing to outsource hiring specialized expertise on contractual terms need to wade through the CVs of job applicants carefully, but Twine can readily serve as an intermediary while recruiting engineering freelancers. 

Website: Twine.net

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4. Naukri

Naukri is India’s leading job portal and largest recruitment website, catering to professionals and organizations across industry sectors. It is an open-bid job board and a smaller job board site, and thus it would be optimal for businesses that are able to employ full-time or long-term electronics engineers. There are set advert sizes, employers are able to sort by experience, and they are able to reach out to a mass of talent made up of technical design engineering professionals and engineers. It is not a freelance design enclosure, but Naukri will be useful to companies working with in-house staff regardless. 

Website: Naukri.com

Integra Sources

 5. Integra Sources

Integra Sources isn’t an engineering firm or a freelancer site, but also a design firm of custom electronics and software. They hire professional technical electronics engineers to work on projects from case design up to embedded system manufacturing. Through the services of Inegra Sources, one gets enhanced experience, efficient project management, and assured delivery compared to freelance personnel. The business can be utilized by firms with end-to-end engineering solutions as opposed to ad-hoc freelance solutions. The clients can leverage expert advisory services, success track, and proven process. It is appropriate for businesses that would like a company to have work done on their behalf rather than freelancing specialists.

Website: Integrasources.com

RELATED: What to Consider in Developing the Enclosure Design of Your Company’s Electronic Products

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6. Freelancermap

Freelancermap is a technology-enabled IT project marketplace and therefore the best place to look for freelance electronics design engineers. It also has an international pool of talents ranging from product design skills to PCB and embedded system design skills. Even freelancers can post the job themselves and receive applicants. It also boasts open profiles with experience, rate, and skill to screen through. Even though technologically capable experts are not particularly invested in constructing enclosures, technologically capable experts seem to be flooding in. Freelancermap is ideal for companies that need engineers accustomed to freelancing and IT certified. 

Website: Freelancermap.com

Freelancer International

7. Freelancer.international

Freelancer.international uses the directory system in a bid to find experts around the globe in such specialized areas as electronics and engineering. The freelancers’ CV are made accessible to the clients where they can check the described proficiency, and talk to them directly about a possible job. Unlike bidding websites, it is done through direct one-on-one communication that can actually be a business time-saver since they already have an idea of what type of talent they require in advance. Not too specialized in enclosed construction, electrical engineers just so happen to be a part of its members. This website would be perfect for clients who are fed up with having to sift through lists of qualified leads rather than deals. To the point and ought to be perfected as much as practicing power and project feasibility. 

Website: Freelancer.international

ElevateX Solutions

8. ElevateX

ElevateX is a platform that matches businesses with pre-screened freelance masters, and most of them are technology and engineering masters. It is all about giving business companies an opportunity to fill skills gaps in the future through exposure to seasoned experts. It is the quality and compatibility that the site offers that offer smoother access to opening markets. ElevateX is design-focused for enclosures, not technical, but it is a satisfactory niche to search for electronics engineers with the right skill sets. Clients are graced with a filtered choice to aid in project risk delivery mitigation. ElevateX is best for companies that need experienced engineering design freelancers to be involved in order to undertake middle-order to high-degree technical work.

Website: Elevatex.solutions

Electrohire

9. ElectroHire

ElectroHire is a niche platform focusing on electronics engineering and is best placed to carry out enclosure design work. It is ideal for companies that require circuit design specialists, PCB layout design specialists, embedded system developers, and case modelers. Capabilities refine it from any other freelancing website because the customers not only save time but also don’t spend time searching for the best candidate. ElectroHire is for businesses that most prioritize technical correctness and expertise in their business niche. It is the second-best way to use engineers to design tailored electronics projects. 

Website: Electrohire.com

RELATED: Electronics Enclosures Design: 8 Powerful Tips for Companies and Firms Hiring Freelancers

Freelance Electronics

10. Freelance Electronics SRL

Freelance Electronics SRL is distinct from any other freelance website. It is not a business run by freelancers, but an employee-owned company offering electronics engineering services. Companies such as these can hire Freelance Electronics SRL to conduct product design, electronics design, and enclosure work. It gives the customer the experience of experts without bidding. It will be appropriate for a company that would rather have professional labor structured than hire freelance employees to work. It does offer generic know-how, but without the necessary adaptability for actually small one-time tasks. It would be handy in serving gargantuan regular tech requirements. 

Website: Freelance-electronics.com

CADlane

11. CADLane

CADLane is an online business that brokers companies with. CAD experts, from experienced professionals in enclosure design and drafting electronics. It allows clients to post work and receive bids from global freelance experts. CAD background on CADLane makes it an improved choice for enclosure modeling than standard freelance websites. The website is user-friendly, and experience, portfolios, and rates appear on profile pages. Since it is not electronics itself but its talent pool in the form of CAD experts that makes it qualified to be hired for working in such high-end design firms, it is most appropriately suited for technology-driven projects with high design content and no detailed engineering activity. 

Website: Cadlane.com

insolvo logo

12. Insolvo

Insolvo is a website-based freelance site whose customers can list work in quite broad categories, e.g., electronics and engineering. Its platform is simple and gives clients immediate feedback from freelancers once they have posted an ad for bidding. Insolvo has a few other tools, but has access to enclosure design experts who may be limited on specialty websites. The platform is low-cost and thus appropriate for small- and medium-sized projects. Firms that require hiring electronics engineers have to read between the lines and portfolios in selecting the best CAD engineering freelancer. Insolvo is best suited for complete freelance needs compared to technical specialist services. 

Website: Insolvo.com

altium 2 logo

13. Altium

Altium is a highly rated PCB designing software and electronic design automation software. Altium also has a professional community on which one can engage a professional electronics engineer and PCB designer. It is unique compared to other freelance platforms in the sense that this is a pool of highly skilled professionals with an exclusive focus on electronic projects only. It is a goldmine for those businesses that need the best minds, for board work and enclosures, as such. Clients. They become associated with masterminds of high-end equipment utilized in business. Not a traditional freelance website per se, Altium puts customers directly in touch with master engineering minds. 

Website: Altium.com

RELATED: Design Strategies for Radar Enclosures with Electronics Enclosure Design Companies

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14. Tasker

Tasker is an on-demand, real-time freelancing platform to accomplish various kinds of work. You can hire a freelancer and post an advertisement too in working industries ranging from labor work to professional work. Even though it includes technical training classes, technically, it is not technical or enclosure design work. Those that require skilled manpower will have their time to look for alternatives. Tasker will be most appropriate for minor or smaller-than-monolithic engineering projects. It will be of greatest worth to rush-hire the ones that are needed to be hired immediately, but is least likely to create electronics at a higher level or enclosures. 

Website: Taskerplatform.com

EngineerBabu logo

15. EngineerBabu

EngineerBabu is a tech-oriented business-to-hire freelance developer, designer, and engineer. While more IT- and software development-focused, it is still electronics engineering specialist-requiring. Provides business and startup technical consulting on-demand access. Engineer- and tech-oriented, it is a specialist and not a general freelancer site, and clients will need to be anonymous when looking for enclosure design experts. Elastic labor is handled by EngineerBabu and constitutes the perfect fit. More suitable where freelance engineers with varied technical capabilities are needed. 

Website: Engineerbabu.com

Allaboutcircuits

16. AllAboutCircuits

AllAboutCircuits is one of the live web forum sites for professionals in electronics, providing tutorials, business news, and facts. In addition to being an info site, the site also features a job board where electronics firms can list job ads for electronics engineers and specialists. Not a general freelance site for everyone, but the specialty group is niche-based, i.e., not that hard to get qualified leads. These companies need the services of an enclosure designer and can leverage their own talent pool. Working for them may not be as crucial as freelance websites. AllAboutCircuits will best fit companies needing experienced engineers for high-tech, complex, or long-term projects. 

Website: Allaboutcircuits.com

gigster logo

17. Gigster

Gigster is an outsourcing platform that is a project completion platform wherein one attempts to match technology projects with pools of pre-screened talent. It provides pools of experts who have the ability to complete projects in artificial intelligence, programming, and software developers. Gigster is electronics-based in orientation, but provides engineers who can provide enclosure-based services if there are any completed product development projects. Quality is provided by the website but perhaps not by small companies. Gigster is suited for companies seeking completed projects with some kind of administration and thus best for high-cost, high-tech, large projects, and not completely freelance. 

Website: Gigster.com

RELATED: Cost to Design a New Electronic Product, Develop PCB Hardware & Prototype Rates at Firms

Fivesquid

18. Fivesquid

Fivesquad is a British freelance website where professionals can offer fixed prices for their services. Although primarily utilized by web services providers and decorators, they are actually utilized by tech-nature freelancers in the electronics design business. But professional enclosure design people are worse than professional engineer websites. Fivesquid is fine for low-priced work and very tiny budgets, but would never be the best page for more complex electronics projects. Companies have to sift through profiles and services offered completely before they opt to buy services. It is okay with customers ordering low-cost fixes over engineering services. 

Website: Fivesquid.uk

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19. ZipTask

ZipTask is an internet medium through which business firms are able to recruit freelance employees temporarily. It is time-based and therefore best suited for the completion of small technical jobs. Although it provides a customized list of services, the platform itself is generic electronics and enclosure engineering. Companies need to spend time arranging the electronic enclosures design freelancers for professional staff. The ZipTask method is suitable for small orders with single technical coordination. It is sufficient for common outsourcing orders, but pointless in orders with intricate electronics engineering or accurate enclosure design. 

Website: Ziptask.in

TaskRabbit logo

20. TaskRabbit

TaskRabbit is best known for offering customers access to local community freelance workers to handle daily tasks such as assembly, delivery, and handyman work. It does offer some specialized technical skills, just not electronics engineers or enclosure design specialists. No, here, where companies would utilize professional-grade engineering staff. TaskRabbit works best for middle hands-on positions, but is not perfectly suited for highly technical positions that require more experience. Businesses that require electronics design or enclosure must offer higher-experience jobs. TaskRabbit is incredibly convenient for beginner in-home positions but not perfectly suited for businesses requiring engineering design experts or enclosure design professionals. 

Website: Taskrabbit.com

FlexJobs logo

21. FlexJobs

FlexJobs is a web-based job listing website for flexible work postings committed to a complete range of different industries. It is widely known to be most worthy of its strict filtering of work posted to allow clients to filter out spam and low-quality work postings. It does not include electronics or enclosure design, but includes engineering types of work employment. Employers are still able to recruit good professionals through it, but with greater effort compared to specialist websites. FlexJobs is better suited for part-time or long-term work agreements, and not short-term freelance short-contracts. It is suited to the requirements of companies that would like to have continuous recruitment procedures but lack technical enclosure design job advertisements. 

Website: Flexjobs.com

RELATED: What are the Costs for New Hardware Product Design, PCB Prototyping Rates, and Services Pricing?

AngelList logo

22. AngelList

AngelList is a popular means for startups to identify investors, partners, and even employees by startups. It can also hire engineers, developers, and other startup entrepreneurs for new positions. It does have electronic engineers that they can employ and contract them there, but AngelList is a right startup application in the employees’ hiring process and not contract employment of freelancers. It will be easier to use in building longer-term technical staff, but harder to use in contract employment freelancers to perform enclosure design tasks. AngelList will best fit companies seeking early-stage work talent. A single one-off short-term enclosure design will utilize more specialized freelancer websites; it will, however. 

Website: Angellist.com

Pic-control

23. Pic-Control

Pic-Control is a Singapore professional engineering solutions company with product development services, electronics design, and embedded systems solutions. Pic-Control is not another freelancer site to be used in conjunction with other freelancer sites, but a business company with end-to-end solutions. Companies requiring the enclosures to be made from scratch can hire the services of its engineers who provide work from scratch to a fully developed prototype. Process orientation provides quality and reliability sufficient for firms ready to utilize experienced masters rather than stand-alone freelancer experts. Pic-Control is a hardware integrator and developer. It is less price-sensitive than freelancer sites, but sufficient for professional high-complexity engineering work.

Website: Pic-control.com

SimplyHired logo

24. SimplyHired

SimplyHired is a job search engine that provides contract, full-time, and freelance job listings on the entire web. It is not engineering-targeted, but in the general sense, electronics engineers are spidered and can be found with targeted searches. Companies can post an advertisement and receive a large sample of likely employees. Because it is an open system with numerous posts, rigorous filtering is used in searching so that they can acquire competent enclosure design professionals. Since it is a platform that retains companies only on a commitment to attempt Slack hiring strategies, SimplyHired is not a great tool to reach quality freelancers, but it reaches an enormous number of individuals. 

Website: Simplyhired.com

DesignCrowd logo

25. DesignCrowd

DesignCrowd is an online design market where firms can outsource work or run competitions for freelance design. More ideal for web graphic designers, branding, and graphics rather than electronics and engineering. Although. Extremely high level of creative work. But certainly not for technical electronics design and enclosures design. Firms looking for engineers won’t be well served. DesignCrowd would be for businesses that require logos, packaging, or advertising content but not product design. If the engineering design of electronics or enclosures is a requirement, some websites must be attempted first. DesignCrowd is for creative work and not project development. 

Website: Designcrowd.com

RELATED: Complete Cost Estimates for An Electronic Product – Design Services Rates and Pricing for Your Company

peopleperhour logo

26. PeoplePerHour

PeoplePerHour is a worldwide pool of freelance experts from which the company can hire remote specialists in all but extremely selective niches like design and engineering. It is in tune with going hand-in-hand with hourly compensation and project work with economic convenience. There are electronics specialists and CAD drafting specialists, but the site is more suitable for a generalist. Companies that need enclosures to be made will need to scan portfolios and profiles to determine the required experience. Good payment facilities, grading facilities, and messaging facilities make it easy to work on PeoplePerHour. Medium-sized projects are ideal, but specialist sites are fine for high-end electronics projects. 

Website: Peopleperhour.com

Arc.dev

27. Arc.dev

Arc.dev aligns technology and business professionals with professional developers. It uses software and engineering concepts with capable hands to unlock full-time job opportunities as well as freelancing opportunities. While, like any other electronics engineers, there are a few possessing relevant certificates. Sorting keeps clients from receiving services from inexperienced hands, thereby mitigating project-creation risks. Arc.dev is suitable for companies requiring skilled technical engineering freelancers. It is not suitable for the normal enclosure design task. It is best suited for big companies requiring more than product engineering and design technical expertise. 

Website: Arc.dev

Guru logo

28. Guru

Guru is a very ancient freelancing site with broad industry variations like electronics and engineering. It provides customers with the services of publishing a project, browsing through freelancers’ portfolios, and negotiating fees in secrecy. The site possesses an elastic payment arrangement on a milestone, hourly, or fixed-price. Enclosure design experts would be more difficult to obtain than specialty sites, although electronics engineers exist at Guru. Overbaggage of talent pool on the site is a double-edged sword as exclusivity must be the minimum. Companies that need room and liberty to sort through candidates are best served on Guru. 

Website: Guru.com

LinkedIn logo

29. LinkedIn

LinkedIn is the world’s biggest professional networking site and claims to have a clean site for professional hiring of any quality. There’s a job posting, there’s one-to-one interaction with electronics engineers, assured, experience-based, and skill-based search profiling. Not a contract website, yet LinkedIn has professionals offering contract and project work-based services. Best to utilize on LinkedIn for job application purposes because of the freedom when it comes to actual verbal communication with leads and complete background information. Companies seeking long-term or senior workers can utilize it. Best to utilize when applying for hiring, but a good source to utilize when in search of professional product engineering staff

Website: Linkedin.com

RELATED: Guide to New Electronics Prototyping for Hardware Startups & Design Companies

indeedcom logo

30. Indeed

Indeed is among the most viewed career search sites utilized by companies while searching for work professionals with specialization in their field of business. It allows companies to post work and discover professionals who are prepared to work full-time or on contract. Electronics engineers can be discovered on Indeed, but not freelancers, and enclosure specialists will be less available. The platform is ideal for companies when they need to hire in-house engineers or build technical teams. Indeed, there is no worse or faster way to do fast, small freelancer jobs than specialist platforms. 

Website: Indeed.com

Workana logo

31. Workana

Workana is a website of product design freelancers who previously were distributed in a traditional way across Latin America, but now anywhere in the world. They provide any kind of service from engineering to technical departments. The customers provide projects, which are picked by freelancers as proposals, upon which they perform profiles, portfolios, and reputations to make decisions. Workana is technology-unfocused, but they may have space to grow into technology-specialized engineers. Employers would need to weed through more of them to choose an enclosure design freelancer, but the service is affordable and prompt. Workana can work on small to medium-sized projects, but not engineering specifications. 

Website: Workana.com

ZipRecruiter Logo

32. ZipRecruiter

ZipRecruiter is a job board that involves matching with potential employer. It also boasts syndication and job posting functionality, and employers benefit from access to a large pool of talent. There are electronics engineers at ZipRecruiter, but it does not promote freelance or direct-hire contracts. Companies seeking to hire enclosure design professionals can find the desired professional, but it takes more time than on freelancing websites specifically intended for this purpose. ZipRecruiter would be suitable for companies seeking employees to perform more than or more specialized sites for 3D design freelancers. Enclosure design short-term would be suitable for more engineer sites or specialty sites. 

Website: Ziprecruiter.ie

toptal

33. Toptal

Toptal is said to provide skilled freelancers with finance, design, and software development expertise to clients. It is not suitable for electronic engineering or enclosure design work. It is not electrically biased towards electronics and might not necessarily be smart enough to provide master skill sets that a business company can gain in hardware design or enclosure modeling. Its rates are also too high and not that reasonable for small jobs. While Toptal excels in business and software consulting, companies needing electronics engineers must also consider sites that are technically biased. Some kinds of enclosure design projects will be suitable for other sites.

Website: Toptal.com

RELATED: A Guide to Electronic Product Design for Manufacturing with PCB Design Firms & Engineers

Truelancer logo

34. Truelancer

Truelancer is a website offering online freelancing services in all categories, such as IT, general engineering, and product concept design services. It is not suitable for professional electronics like enclosure design, though. The website is generic and not easy to hire quality electronics engineers. It is easy for small general or design freelancing, but technical specifications will be matched better elsewhere. Truelancer is good for customers who are looking for low-priced services for simple non-tech work, but not sophisticated electronics engineering. Professional websites are employed as a fallback technique to provide design services.

Website: Truelancer.com

fiverr-logo

35. Fiverr

Fiverr is a large freelance platform where professionals offer services in packages with the lowest price tag. It is appropriate for digital and creative services but not for electrical engineering or enclosure design. Electronics services are of low quality and not in demand, and companies therefore struggle to realize repeat business. Fiverr would be appropriate for small and fast jobs, but technical skill and accuracy are necessary if one is to create enclosures. It is therefore not ideal for companies looking for electronics engineers. Companies will be subjected to more filtered human resources by engineering-based websites. 

Website: Fiverr.com

freelancercom

36. Freelancer

Freelancer is among the top global freelance websites and serves almost all industries. Fair scale to provide the appropriate number of experts, but not an optimum fit in the area of enclosure designing or electronics engineering. Its open bidding process on its website will ensure random quality and technical inputs by technical freelancers. Electronics is a technical engineering skill and won’t be simple to provide here. While Freelancer might be adequate for low-level projects or small-level enclosure design, organizations that require top-level enclosure design or quality electrical engineering freelancers will have to seek other avenues to technologically more advanced, engineering-type websites. 

Website: Freelancer.com

kolabtree logo

37. Kolabtree

Kolabtree is a site where there is a room for organizations to place orders for freelance scientists and researchers. While it is simple to work on using it to do research work or a research study, it is the wrong platform to use to create products or hardware. Such organizations would be wasting their time in hiring electronics engineers from Kolabtree since Kolabtree experts have interests in biotechnology, data analysis, and biological science, but not in product design or hardware design. Electronics engineers would be useless or redundant for such companies that induct them through these websites. Research work through Kolabtree is an investment, but not technical designing or engineering. Business organizations related to electronics can try those websites first using engineering talent. Kolabtree is not a place where such work gets outsourced. 

Website: Kolabtree.com

RELATED: Consumer Electronic Product Design Services: All You Need To Know About Costs, Rates, and Prices for Freelancers

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38. Upwork

Upwork is a very well-visited freelance platform with an unfathomable set of professional skills of masters of any form of varied business. There are some electronic engineers on it, but it is not a platform that is recommended upon which to carry out enclosure design work. The trend of the platform as a whole is shifting away from assigning highly specialist professionals to specific locations, and quality is extremely skewed among freelancers. It will not be an hour or two to acquire the experts, and high-end electronics demand experience and urgency that will or will not be found on Upwork. Ideal for fly-by-night freelancing work, time-pressed companies to select some enclosure design services will do best on engineering and tech-savvy service platforms. 

Website: Upwork.com

How Cad Crowd can help

It should not be an act of guessing to find the best engineer or freelancer to do your electronic enclosure project. Since there are very few good websites to select from, the experience that you are seeking is closer than you imagine. Cad Crowd is where you should go because you can negotiate with experienced professionals who are electronics technical specialists and electronics enclosure design specialists. If you are not opposed to allowing your project to remain on the drawing board into the hands of the finish line, then head on over to Cad Crowd and request a free quote today.

author avatar

MacKenzie Brown is the founder and CEO of Cad Crowd. With over 18 years of experience in launching and scaling platforms specializing in CAD services, product design, manufacturing, hardware, and software development, MacKenzie is a recognized authority in the engineering industry. Under his leadership, Cad Crowd serves esteemed clients like NASA, JPL, the U.S. Navy, and Fortune 500 companies, empowering innovators with access to high-quality design and engineering talent.

Connect with me: LinkedInXCad Crowd