Showing posts with label 3D rendering. Show all posts
Showing posts with label 3D rendering. Show all posts

Krypton

krypton_01

Krypton is designed for 3-8 years old kids. The goal is to design the next generation group interactive play experience for kids.

This toy design project was sponsored by Mattel, CA

Observation

krypton_observation

To understand children’s play patterns and both explicit and implicit needs, observation was conducted primarily with pre-school kids at the age from 3 to 5. Kids take pleasure in group playing, role playing, continuous achievement of playing and they are sensitive to forms and colors. Girls and boys have different group play patterns- Girls like cooperating, while boys enjoy expressing individual competence. Kids would like to show off the toys. Whatever toys they get, they will invent their own ways to play.

Product in the Market

krypton_productresearch

We collected examples and designed this position map. Traditional physical toys cover both individual play and group play. Most digital toys are for individual play except some high end video game consoles. We believe that there is a sweet spot for low end digital group play.

Concept Development

krypton_concepts

Borrowing the idea from video games, we developed the new definition of “remote”, which can be the bridge between kids and toys. The “remote” can be a toy or part of the toy and can be controlled by one or many kids. We developed 4 concepts from the idea of “remote” categorized in the number of remote and object. Our concern was how to encourage group play and provide new interactive feedbacks.

Snitch

krypton_snitch

“Snitch” is a passing-ball game concept which requires children to pass the ball to the kids with random sequence. The ball will tell kids who the next is through the changing colors of the ball and the gloves.

We also thought about setting different difficulty levels for kids, for example, inncreasing the color changing frequency. Kids can record their score on the ball, which is , how many times they have passed the ball, and try to break the record.

Behavioral Prototype

krypton_testing

To give initial idea and context of this product to children, we developed the behavioral prototype by using projector to simulate the color change. The test was conducted with five children at the age from 3 to 5, in both genders selected by preschool teachers. They understood the concept and enjoyed playing with the ball. They were very sensitive and excited to the light from a projector. We set up a strict rule for the game. However, to our surprise, we found that our rule was too complicated to them and it was hard for them to catch the ball to continue the game.

Krypton Design

krypton_sketch

The Bracelet

The bracelet is like a watch. When you connect it you turn the light and RF transmitter on. There is a light insigde the bracelt. The tube transmits the light to the whole bracelet.

The Ball

We change the form of the ball to star-shaped ball to provide a striking appearance. Pipes transmit light from the core of the ball to the tips. One of the spikes can be detached for you to load batteries. The core is covered by hard plastic shell. The spikes are made of soft rubber which protects the chip and RF sensor inside.

Lighting Prototype

krypton_lighting

We made a prototype to simulate the lighting effect of Krypton, We placed a bulb inside the white foam- constructed prototype then we found that a pipe-shaped florescent light conductor transmits the light well. When the ball rotates, the traces of the lights are amazing. We were lucky that we came to very good effect at last and impressed friends. When people see someone playing this on the playground or in the park, they will be attracted and join, and consider buying one, too.

Rule of the Game

krypton_rule 

Before the game starts, all the kids in the game put on bracelets with different colors. There is an RF sensor in the ball. Different rings send different RF signals.

Once the kids start the game, all kids touch the ball to let it sense what colors are there in this round of the game. When the game starts, the ball changes the color. Kids should throw the ball to the person who wears the same color of the bracelet which matches the ball.

During the game, the ball can sense whether kids get the ball or not. If it can’t sense any color near it in 5 seconds, it assumes the kids fail to pass the ball and it shuts down. The game is over. Kids have to press the button to restart the game.

Kids can set higher level of difficulty for the game, for example, higher color changing frequency. We simplified the rule to make it fit kids from 3 to 8 years old.

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KryptonLauraDonnieReportUpdatedRS_Page_16

This concept was manufactured by Hasbro and reached the market- Cosmic Catch

Tony Hawk Ride

tonyhawk_01 

Tony Hawk Ride© is a video game peripheral designed for the next generation of skateboard gaming. The goal was to bring real skateboard experience to living rooms. The player can stand on the actual board to control the character, by tilting left and right and doing many other simulated skateboard movements.

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Product Council finished the industrial design of the skateboard. The graphic and color was done by fuseProject.

The official website of Tony Hawk Ride©
http://www.thride.com

Project Background

tonyhawk_start

This project started with an engineering prototype model. It was well-built. However, being lack of design capability, the game publisher Activision and developer Robomodo came to us for industrial design help for the skateboard.

Body Design

tonyhawk_crosssections

tonyhawk_crosssection2

The cross section is crucial to this skateboard design. It determines the overall control experience for gamers. We designed several cross sections and made the models for prototype testing. We also invited the client to stand on them and tried the controlling of the board. The final design was picked based on the best control and the look of the skateboard.

Skin Design

tonyhawk_skin

We had a discussion among game developer, manufacturer and Microsoft (for Xbox version of the Tony Hawk Ride) about the skin design.  Just like the very successful game peripheral- Guitar Hero, Activision wanted to add swappable skins to this skateboard. We thought the skin should be assembled with screws to make it look more like a real skateboard. The manufacturer also thought screws could help with engineering to make the body really strong to support the weight from the user. However, Microsoft had a different opinion. According to Xbox peripheral design guide, using screws to change product skin is not user-centered and not allowed. After the discussion, the client gave up the idea of swappable skin, but designed a standard graphic for the skateboard.

Button Design for 3 Systems

tonyhawk_buttons

We suggested a skateboard design with no or only one button to make it look simple and more like a real skateboard. The gamer can control the skateboard through by tilting board and the RF  sensors. If they want to control the game menu it’s easier to use the game remote instead of picking up the board for the buttons. However, Microsoft game peripheral design guide insisted that all devices should include all buttons as the game remote. It was impossible for them do change the rule.

To make the board also good for 3 major systems, we also designed the button layout for Wii and PS3.

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A larger “start” button is placed on the side of the skateboard to allow users to kick on it without picking up the board.

Final Design

tonyhawk_rendering

Product photos:

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Medical Histology Devices

surgipath_01

Histology is the medical process to preserve human tissue before it can be analyzed under a microscope. This design of a series of histology devices started with user observation in the client's own histology lab and 2 hospitals. Through the user observation the we not only educated ourselves about the basic process of histology, but also gathered the information of user experience which later provided the insights for our design. A signature element was introduced to the new product line as the brand visual language.

User Observation in Hospital Labs

surgipath_research

Before this project, we knew nothing about “histology”. We visited the client in their own factory lab and had them explain the process of histology for us. There are several medical products in histology for different tasks and steps:

1. tissue processor- prepare the tissue
2. embedding station- apply heated paraffin to enclose tissue in a small square mold 
3. tissue slicer- cut blocks of paraffin with tissues into thin slices
4. waterbath- use warm water to melt paraffin slices and place thin tissue sample onto glasses
5. autostainer- stain tissue sample so that it can be observed under microscope

After we understood the basic of histology. We also visited several hospital labs, talked with people and watched them operating histology devices. The research result showed us a great opportunity to improve the current product line.

Concept Development

surgipath_concepts

Several concepts were developed and presented to clients. For the autostainer (the product shown above), we designed several different configurations for electronic components. We also considered different positions for the monitors and different ways to open the lid. I had the idea of using a small window to allow quick access without opening the whole lid (top right)- based on our observation, sometimes the user needs to open the lid to access the tissue quickly. A dedicated window can be very helpful.

Luckily, I had the chance to work very closely with our on-site engineer. There were so many problems in every detail, like the screw size, material wall thickness that we needed to pay attention to.

Product Prototype

surgipath_autostainer prototype

A real size foam core prototype was made for the autostainer. It helped us to understand the opening structure and the assembly issue. We also used this prototype to discuss and compare several alternatives for the arm monitor position.

surgipath_waterbath prototype

Another foam prototype was made for the “waterbath” device to visualize the real size of our design.

surgipath_signature model

We introduced a front curve on the product surface as a “signature element” to add to every product in this histology device line. We used 3D printer to print the front panel of the autostainer, to ensure that the feature would be visually noticeable and correct.

Final Design

surgipath_waterbath

The users need to leave their wrists on a sharp sheet metal corner on the waterbath device for hours, so the new waterbath was improved with a new nice front as a comfortable arm rest. We also changed the old “medical instrument green” on the original control panel buttons and the display text to a sophisticated red to let it match the brand identity color.

surgipath_waterbath comparison

From this comparison of our design and the original product, you can see the new design enjoys a brand new look and more comfortable corners. It’s also lower and easier to use.

surgipath_family

The final design of the autostainer, the linear stainer and the waterbath all share the “signature curve” to effectively present the brand identity. This histology device line is a very good project for us to utilize the user observation methods into actual product design. And thanks to the client to allow us control most of the engineering of the devices, the final products are not far from our design.

Dewbop Shower Media

dewbop_01

Dewbop is a series of wall-mountable shower media devices designed for the bathroom environment. Dewbop provides a more specialized shower room music interface and usability built on a person’s needs in a bathroom while showering, bathing and brushing teeth, etc.

dewbop_environmentsketch 

User Research

dewbop_research
Can you find the right button when your eyes are covered with shampoo?

 dewbop_research2
The problem of using a shower media player

We interviewed some shower media device users and tried some products in the market. We found that the shower media interface was difficult to use. There are too many buttons to confuse user, it’s hard to operate a shower media player with soapy hands. When you are washing hair, you cannot operate the music without seeing the buttons. Also, the devices are not stable while standing or hung on the shower head. When pushed, it goes backward and falls.

Dewbop Concept 1

dewbop copy

Dewbop concept 1 introduces a new interaction method for a humid and wet environment. The player body is rotatable. You can tilt the dewbop toward left and right to jump to last song and next song. The LCD screen and speakers are integrated in the body. A strong locking suction cup fixed on the wall is the pivot of rotation. One can operate it with wet and soapy hands, even blindly. The whole body is an input module. With a well organized software interface, all the tasks can be done with the rotatable body and a single, generously proportioned knob. A time button is dedicated for time display only.

Below is a flash demo of Dewbop concept 1.

Dewbop Concept 2 

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Inspired by a user talking about her shower experience under candle lights, the concept 2 is a music CD player with modular blocks. Each block is a button to control music. It emits weak light when you turn the lights off in the shower room

Dewbop Concept 3

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The concept 3 is a shower CD player simulating the interface of a faucet as a music controller. What if the most classic interface- the caucet, controls the flow of music, instead of water?

Dewbop Concept 4

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Concept 4 “Faucet” User Interface

Image converted using ifftoany

Dewbop Concept 4 lets the users control music with its  faucet-like interface, just like concept 3, but with a simple form. It can be placed on the bathtub or wall-mounted.

Garage Storage System

garagestorage_01

A garage storage system designed for users to change color and customize the color with different plastic pieces and configuration with hooks and bins.

Concept Development

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Product Prototype

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A bubble level is included in the product to help people install it on the wall.

 
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