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In addition to our two June STEM Summer Enrichment Camps, our 3D Academy has added a third in July. For the July camp (July 30th – August 3rd), we have partnered with Bricks4kidz to provide a creative, hands-on, immersive STEM camp experience.
Let’s build a CITY! There are many different types of engineering jobs, and building is one of the most fun! What would a city be without the architects and engineers who come up with the ideas, plans and building skills to make it all come together?
Campers will put their engineering and architecture skills to work as they build city themed models using LEGO® Bricks. The sky’s the limit when campers are challenged to use their own ideas and skills to build a skyscraper taller than their heads! They’ll have a blast using custom-built cars to move the people of the city all around town – brick by brick! What an accomplishment to be able to proudly exclaim “We built this BRICK City!”
Students will learn the fundamentals of 3D Design, 3D Printing, CAD Design and Spatial Environments to create their own custom Lego design and part while learning about the various principles that integrate with Science, Technology, Engineering, and Math. Students will be introduced to the world of 3D Printing, CAD Design, Engineering, and prototyping all while being in an immersive STEM learning environment.
3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.
Register today for a Summer STEM Enrichment Camp. Summer is drawing near—the end of the school year is approaching, kids are counting down to their last day of school before summer break and parents are panicking about how to keep their kids occupied and learning during this time off. Take a deep breath parents, we have you covered.
We have brought back our popular Summer STEM Enrichment Camps this year and are partnering with Kalvio, a local electrical engineering and electrical contracting company. In the month of June we will be offering two different camps that are sure to excite your child’s inquisitive mind.
3D Academy and Kalvio collaborate to create an in-depth and immersive camp experience for your child through the STEM Summer program. Students will learn the fundamentals of 3D Design, 3D Printing, CAD Design and Spatial Environments and be able to build their own Drone while learning about the various principles that integrate with Science, Technology, Engineering, and Math. Students will be introduced to the world of 3D Printing, CAD Design, Engineering, Electronics, and prototyping all while being in an immersive STEM learning environment.
3D Academy and Kalvio collaborate to create an in-depth and immersive camp experience for your child through the STEM Summer program. Students will learn the fundamentals of 3D Design, 3D Printing, CAD Design and Spatial Environments to create their own custom Co2 mini rocket while learning about the various principles that integrate with Science, Technology, Engineering, and Math. Students will be introduced to the world of 3D Printing, CAD Design, Engineering, and prototyping all while being in an immersive STEM learning environment.
We have streamlined the registration process and you can quickly register for these camps over on our website: 3D Academy STEM Enrichment Camps
*For both camps, all campers must bring a peanut free lunch, snack and drink. Visit www.3d-innovations.com/3dacademy or contact Collin Kobayashi at email@example.com or 808.722.8667 for more information.
3D Academy promotes Science, Technology, Engineering, and Math (STEM) education programs that integrate 3D technology into K–12, as well as university classrooms. Using hands-on and project-based learning strategies, we have been effective in providing students with opportunities to excel in the areas of STEM and to integrate industry applications into their learning experiences.
3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.
Technology is transforming the landscape of our lives—in today’s global marketplace there is no substitute for a strong STEM (Science, Technology, Engineering and Math) background as you enter the workforce. “STEM workers tend to earn 26% more than non-STEM workers and yearly growth for STEM workers is projected to be almost double that of non-STEM workers.” (Florida State University) Industry is shifting and to help our students keep up with the demand, a STEM education is imperative.
As a nation, our education industry has recognized that our students are not receiving the best hands-on, STEM-focused, education possible for a myriad of reasons. This means that our students are falling behind in Science, Technology, Engineering and Math subjects, and that they are missing out on other valuable lessons as well. Below are some of the areas in which STEM helps students thrive.
Problem Solving Skills
Hands-on lessons for STEM subjects often revolve around solving real world problems. Students are required to assess a situation and develop a solution. Problem solving skills are immensely beneficial both inside and outside of the classroom. Having the ability to stop, assess, analyze, hypothesize and solve a problem is a skill every individual needs at every age level.
We are all aware of the benefits of “thinking outside the box”, however, this does not always come naturally. Learning to ask questions and develop diverse solutions helps to instill an inquisitive mindset.
Teamwork and Collaboration
Working as part of a team starts from a young age and continues on into the workplace. Learning how to collaborate and work together is a necessity. Teamwork helps students learn about different perspectives, respecting other ideas and coming up with a solution together.
Scientific linear methodology requires organization—there is a set manner in which to approach a problem. All STEM subject areas require a step 1, step 2, step 3 and so on; you can’t solve a math equation by skipping steps. Students learn the importance of being organized and why it is important to their everyday lives as well.
STEM education can be taught through lectures; however, it has been proven time and again that hands-on learning is the best method for teaching and instilling these concepts. Giving students an opportunity to use technology, use their hands, ask questions and see concepts in action sparks excitement in them as well as a desire to learn more.
STEM Enrichment Camps
This summer our 3D Academy is offering two STEM Enrichment Camps, “3D Design and Drone Building” and “3D Printed Rocket Building”. Students will learn the fundamentals of 3D Design, 3D Printing, CAD Design and Spatial Environments and be able to build their own Drone/custom Co2 mini rocket while learning about the various principles that integrate with Science, Technology, Engineering, and Math. Students will be introduced to the world of 3D Printing, CAD Design, Engineering, Electronics, and prototyping all while being in an immersive STEM learning environment. Learn more about both camps and easily register, over on our website: 3D Academy STEM Enrichment Camps.
3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.
3D printing, also commonly referred to as additive manufacturing, is a technology that has grown exponentially over the last five to ten years. It has been a favorite tool of makers and product design professionals alike. 3D printing technology allows designers to quickly, easily and efficiently design and produce a product prototype for review. While prototyping is where 3D printing is most popular and widely used, the technology is beginning to mature and find it’s way into manufacturing for end-use parts as well.
“When it was invented, 3D printing was referred to as rapid prototyping, a method for automating and reducing the labor required to create a prototype model for design validation. Since then, it has found use in a number of other applications, but the technology is still widely implemented to create visual models and functional prototypes.”
A visual model of your product lets you get a better idea of how the product will look and feel. With the rapid expansion of 3D printing materials and colors available, you have more options than ever when it comes to product design materials. Most hardware entrepreneurs start with a visual model and then move forward with a functional prototype for design validation and testing.
A functional prototype allows you to test the form, fit and functionality of your product. Testing and validating your product design with a functional prototype is highly recommended so that any potential errors can be fixed before heading into manufacturing.
The benefits of a functional prototype extend beyond your design. With a functional prototype you can also gather critical market feedback, rally financial support from venture capitalists and your community as well as file for a patent.
A major misstep that can derail your hardware startup is to skip the development of a functional prototype.
As a design moves from the concept phase to the production phase, a manufacturer might implement 3D printing for the fabrication of custom tools that aid in the production process. “This can include anything from guides for precise drilling, dies for forming or cutting raw material into a specific shape and measurement tools, like gauges, to jigs and fixtures that hold a part in place while other operations are performed.”
3D printing is a flexible tool that can be used either directly or indirectly in the creation of tooling for manufacturing. In the case of indirectly, a tool may be made by coating a 3D-printed component in rubber, which is then used to cast the tool itself.
Currently, due to the speed, quality and cost of 3D printing, “the technology is best suited for the production of specialty parts in smaller batches, rather than mass-manufactured goods. However, there is an industry shift towards expanding 3D printing technology to take a more prominent role in mass manufacturing”.
“3D printing brings some important qualities to the world of manufacturing that make it ideal for certain jobs. For instance, parts can have complex geometries impossible with traditional manufacturing processes. It is also possible to 3D print goods on demand, allowing for easy creation of custom parts.”
Because of these intrinsic benefits, businesses that need to create specialty or custom parts in shorter runs will often turn to 3D printing to manufacture their products. The benefit is that they don’t have to invest in costly tooling to mass produce goods that will only see a limited release.
Have additional questions about 3D printing or how the technology can benefit your business? Send us an email at firstname.lastname@example.org
We are going to start off with the good news, building a hardware startup outside of a major hub (i.e. Silicon Valley, Boston, L.A.) is possible. In fact, in today’s connected world, these major tech hubs are becoming less and less appealing for entrepreneurs just setting out with their startup. It’s no secret that the cost of living in major tech hubs is astronomical and upfront costs to get your business going also come at a premium. So if you are an entrepreneur looking to launch a product and start a business, but have no desire to pick-up and move, below are a few ideas on how you can successfully launch your hardware startup from your home city.
When you find yourself in the center of a major technology hub it is easy to get distracted from your original goal if you are inclined to listen to all of the “experts” out there. This advice coming in can easily veer your startup off course and make your head spin.
Instead, diligently focus on your product idea and developing it for your target market. If you have a useful product, customers aren’t going to care where your business is located. Being in a lesser well-known area will also help you keep a global market in mind—you won’t be in a bubble where people share your same interests, skills etc. If you are in the middle of a tech hub you may not realize that people in, say, Tampa or Portland aren’t as tech-savvy as your neighbors. Being an outsider forces you to keep the needs of every potential market in mind.
Chances are that if you are in a large enough city, there are other businesses out there supporting the startup community. You don’t necessarily need to find an industry specific support network, but instead a network that has the skillset your startup requires. Here in Hawaii, we provide product development support to hardware startups in a wide-range of industries.
Cities all over the nation, and really the world, are starting to realize that creating a friendly startup ecosystem is good for business. Startup support might come from government programs, local universities, or corporate sponsorships—there is going to be support available, your job is to seek it out.
Through local relationships and organizations, you may gain access to anything from low-interest loans to access to venture capital that’s limited to local businesses, and opportunities to speak at local business events.
The benefit of launching your startup where you live is that you know people and have years-long relationships built with them already. You have an established community. Even if you’re not in a tech hub, you’re bound to be surrounded by business owners of some sort.
Maybe you know a local manufacturer that can help explain the manufacturing process to you and make introductions for you with their contacts. Perhaps you are neighbors with a local baker that excels at social media, and he/she is willing to give you a crash course on what you need to know to get started.
The good thing about living in a connected world is that expert advice and help is just a Google search away. Connect with other entrepreneurs and CEOs that you admire online—via blogs, their websites, weekly digest emails. You don’t necessarily have to have a two-way conversation with them to glean useful information that you can put into practice.
Building a startup from the ground up is hard work—it takes total commitment, sheer determination and a great deal of research. To help you on the last aspect, we have gathered a few of our most popular blog posts related to starting, managing and running a hardware startup for your reference.
For first time entrepreneurs, the product development journey may seem challenging and fraught with obstacles. With so much information available it can be confusing as to what needs to be done first and who you can turn to. In this post we discuss the first five steps of product development to help you dig in and get to work.
Yes, hardware startups fail and no, that doesn’t mean that yours will. By making yourself aware of the common reasons hardware startups fail, you are preparing yourself, your team and your startup to avoid these roadblocks. The adage may say that “hardware is hard”, but that doesn’t mean it’s impossible—we would even dare say that launching a hardware product has never been easier than it is today.
Newcomers to an industry have fresh ideas, new perspectives and innovative ideas. These newcomers are not weighed down by industry norms and the mentality of “it’s always been done this way”. These fresh faces often see opportunities that industry veterans miss.
One thing we have learned over the years is that, no matter the industry, first-time entrepreneurs have some of the same questions and concerns when they first get started. In this post we discuss three frequently asked questions related to product development.
First-time entrepreneurs, and even seasoned entrepreneurs, have questions when it comes to protecting their intellectual property (IP) and moving forward with manufacturing. No two products are alike; therefore, a custom-tailored strategy is necessary when it comes to navigating these two areas of product development.
It doesn’t matter what industry you are going into or if you are a first-time entrepreneur or serial entrepreneur, you are bound to encounter one or more of these challenges along the way. By understanding what lays ahead as you start your product development journey, you will be better equipped to successfully navigate it.
Hardware startups have many moving parts and are exponentially harder to launch than a typical software startup. Between product prototyping, testing, material selection, manufacturing and quality control (just to name a few), many days it seems like there just isn’t enough time to get it all figured out. There is a lot of time and energy that goes into launching a product before it hits store shelves.
These articles will help you get started and answer many of your preliminary questions as you begin your startup journey. You can also find additional information related to starting a business over on our blog. As always, if you have a specific question and want to chat with an expert, we are happy to help! Send us an e-mail at email@example.com, we look forward to talking with you.
Failure is hard and certainly no one goes into building a startup thinking that they are going to fail—however, it happens. While failing is in no way enjoyable, that doesn’t mean that it does not have its benefits—in terms of learning what not to do. We can all learn from failure, we can even learn from other startup’s failures. Below are four areas where hardware startups have faltered. Making yourself aware of the challenges associated with each of these areas, you are more likely to make educated decisions that (hopefully) allow you to avoid failure altogether.
Entrepreneurs are designers at heart—they want to design a product, methodology or experience for their target market. They have a brilliant idea and want to introduce it into the marketplace. Design failure can arise rather quickly if the startup founder is not willing to modify their original design idea to meet the needs of customers or manufacturing.
If your customers are asking for your product to function a certain way, feel a particular way or look a specific way, you are going to want to modify your design. At the end of the day, you want people to both purchase and enjoy your product.
When you are working towards commercialization of a product, the goal is to be efficient, minimize costs and get your product onto store shelves quickly—DFM (Design for Manufacturability) works to do just this. With DFM you work out any potential issues before manufacturing planning which saves both time and resources. If you fail to design your product with manufacturing in mind, you are making your startup extremely vulnerable to hefty manufacturing costs and even the potential that it is not able to be manufactured at all.
Plenty of hardware startup founders refuse to let anyone see their product until it’s time to launch. Many are afraid that someone will steal their idea, that potential customers won’t like it until it’s perfect, or they want to get a big head start against the competition. Whatever the reason, failure to get feedback is often fatal for a startup.
Feedback is critical during product development. You aren’t going to know if you are on the right track without feedback from your target market. You are going to want people in your target market to test your product (not just family and friends). It is helpful to get feedback that is both honest and actionable. By creating an inexpensive prototype, and gathering feedback from it, you will be in a much better position as you build your product. This feedback loop is important until the final design is ready.
It doesn’t help your startup if you have a beautiful product that works flawlessly if the market for it just isn’t there. For example, if you are positioning an electronic gadget for the 65+ year old crowd you are going to have a hard sell if they are not well versed in the latest technology trends, or if you are targeting the 18-25 year old crowd with a gadget that is overly cumbersome you are going to face an uphill battle. The solution to this is to find out what appeals to the target market you are aiming to capture and design/modify your product to grab and hold their attention.
This list would not be complete without the mention of funding. Funding is the primary stumbling block for a majority of startups. Developing, manufacturing and launching a product takes time and money. Whether you are turning to crowdfunding or looking for investors, you are bound to face a hurdle or two.
If your goal is to raise capital from investors, be prepared for rejection (a number of times) before you succeed. The process almost always takes longer than you think it will, so start early in your quest to find an investor.
If crowdfunding is your plan, be sure that you show up with a nearly flawless campaign. Your video, content and prototype need to be ready to go. Your goal is to show potential investors that you have a plan laid out, it is well researched and that you are ready.
Starting a hardware company comes with a unique set of challenges. If you can navigate these four common roadblocks, you will be in a much better position for a successful product launch.
As a product development firm, we often work with first-time entrepreneurs—people who have a fantastic idea for a product, but need guidance on developing their idea and beginning their startup journey. We help entrepreneurs navigate the wild world of hardware startups.
Our team shares their in-depth knowledge on what it takes to get a project going, what a development plan looks like and what the path of product development entails. By assisting entrepreneurs through their product development journey, we aim to set them up for a successful product launch.
One thing we have learned over the years is that, no matter the industry, first-time entrepreneurs have some of the same questions and concerns when they first get started. Below we discuss three frequently asked questions.
It only takes a few things to get started. You may think that the littlest details may not make a difference as you start developing an idea, however, every detail matters. Provide as much detail about your product requirements as possible. A good development company will be able to ask you the right questions throughout the development process, to help you narrow down the requirements and focus on the functionality. You don’t need to know all of the technical details about the product, just how it needs to function.
As the adage goes, hardware is hard. However, it is not impossible. It can sometimes be a long and difficult process to develop your hardware project, but aligning yourself with a great development partner will help to make things easier.
Short answer: It depends. In most cases the answer is yes—you own all of the rights to the design and intellectual property (IP).
In other cases, clients have elected to share equity in their company with product development companies in lieu of paying for development costs, in which case the design and other IP becomes shared property.
Depending on the type of product, the initial prototype may be a proof-of-concept prototype. This is created to prove out your concept or idea. Some view the proof-of-concept prototype as a feasibility study versus the traditional functional prototype. The prototypes created will serve as a one-off design of your product for you to review, test, and make adjustments before the final production design is created. Be prepared that it may take several iterations to get to the final production ready design, but is an essential part of the development process and should not be skipped.
With a multitude of technologies available to build prototypes, 3D Printing/Additive Manufacturing will be the front runner in prototyping your design. It is cost effective and provides a quick turnaround, which is why it is also commonly referred to as ‘rapid prototyping’. The design will be prototyped in order to test the form, fit, and function and to make sure that the manufacturing process is attainable.
In a subsequent blog post, we will dive into intellectual property and manufacturing, discussing the top questions entrepreneurs have about these subject areas as well. Starting your product development journey with the right information at hand can make all the difference.
We are happy to help answer any additional product development questions you have, please email us at firstname.lastname@example.org
Product design is about building a product that is simultaneously functional, intuitive and appealing to a range of consumers. No matter the industry, product development is exhilarating—building upon an idea and seeing it come to life is the essence of entrepreneurship.
Before you dive into product development, we have compiled five of our top product design articles for you. These articles touch on everything from preparing for your first product development meeting to building a product that consumers will love for years to come.
Once you have developed your product idea as far as you can on your own, it’s time to meet with a product development firm—but how do you prepare for such a meeting? Here are a few suggestions on how you can prepare for your first meeting with a product development firm and/or product designer.
Often times startups believe that designing their innovative product is the hardest part when launching the business, but the task of gaining a loyal customer base can often times be just as challenging. If you have found yourself in the predicament of having a great product design, but your customer base is lagging, here are four items to reflect on.
In this post we sit down with Rob Saito, Founder of Herbavore, and discuss the product development process and what it takes to successfully design, protect and commercialize a product.
Product development is a fluid process that is not truly complete until there is a manufactured product in your hands. However, the process of taking a great idea and translating that idea into a physical product is not as predictable as you might think. Here we discuss three common product development myths.
When it comes to the development of a product, there is a great deal of time, energy and effort that goes into both the specialty design and product launch. Just like the fact that each product is unique, product development needs to be unique and customized in order to be successful.
Have additional questions about product design? Send them our way, email@example.com
As news of the latest advancement in experimental 3D printing of tissue and organ regeneration gains attention, it would be easy to believe that 3D printing in the medical field only happens in the lab. However, new equipment and devices are being 3D printed now and in real world settings.
After years of feasibility studies, 3D printing for medical equipment and prostheses is becoming reality.
Reports have continually shown that 3D printed devices are both practical and less expensive than traditional options. For example, a University of South Florida study[i] related to prosthesis molds found that “Owing to the similarity of the 3D printed materials and the traditional materials, the 3D printed molds are easily integrated into current processing procedures.” And a UK study[ii] observed that 3D printed sensors added onto a prosthesis could help medical professionals increase comfort levels for the prosthesis wearer. In addition to better comfort, these sensors improved overall patient care.
Alan Louie, research director for IDC’s Health Insights Life Sciences Practice, which helps investors with business decisions, has this to say about 3D printing technology: “There is a lot of investment in 3D printing at the moment because there are some very clear ways that the technology can be used to improve existing processes.”[iii]
Louie sees 3D printers as a way to revolutionize medicine. “There are areas where you can determine that using a 3D-printed replacement for the current methodology can actually save money, improve healing, reduce pain, and improve overall patient care—all positive driving factors that are helping the industry move forward.”
An example of how 3D printing medical tools reduces costs is with this bone drill that required an update to better suit the needs of both the patient and surgeon. The existing drill needed a redesign that would consistently keep its temperature low in order to avoid having to pause the procedure to let the tool cool down. The only solution available prior to the 3D printed upgrade was to pause drilling. However, with the assistance of 3D printing technology, a new drill was made using a biocompatible material “designed with their own integrated cooling ducts”. This new drill could be used for longer periods of time during a surgery. “The tests of the 3D printed bone drill determined that its use had reduced the temperature produced by drilling up to 70%”. This upgraded device has shortened the time required for surgery, saving both time and money.
The design process for medical devices and tools begins with patients, doctors, nurses, and other medical staff. They are at the forefront of the industry and keenly aware of the challenges, limitations and frustrations with existing devices. From their daily observations, efficient product re-designs and new medical device designs can, and will, transform the entire medical support field. These innovative ideas create an opportunity to improve care and support, while reducing costs.
3D printing is quickly reshaping the medical device landscape and creating more efficient tools for the medical community. Rapid prototyping brings to life product ideas that support patient care while keeping innovation at the forefront of design.
[i] Jairo Chimento, M. Jason Highsmith, Nathan Crane, (2011) “3D printed tooling for thermoforming of medical devices”, Rapid Prototyping Journal, Vol. 17 Issue: 5, pp.387-392
[ii] Development and validation of a 3D-printed interfacial stress sensor for prosthetic applications. Laszczak, P. et al. Medical Engineering and Physics, Volume 37, Issue 1, 132 – 137.
About the Guest Author:
Becky Wilson writes about the applications of additive manufacturing and 3D printing, highlighting the heart in the tech. Known as Writing by Becky, she lives in Nova Scotia with her family, including two cat overlords, along with various tech gadgets – maybe adding a 3D food printer someday. You can connect with Becky on Twitter (@WritingByBecky).