Technical Update on Perp TP Structure
We've updated our fee-sharing structure to include creators.
We're constantly making improvements to strengthen alignment across Perpspad, where creators, holders, and tokens all have a stake in the platform and share in the value it generates.
The goal is simple: build a system where everyone contributing to the ecosystem has a reason to grow it.
We're narrowing our focus around three core products:
- robotics library for discovering and building with open robots, parts, models, datasets and software.
- simulation and training platform for developing and testing robotic systems.
- private AI inference stack built around frontier models.
There's still a lot to build before this becomes the platform we envision.
For now, we're focused on making each layer deeper, more useful and eventually ready for serious enterprise robotics workloads.
Robot Restaurant Lab: Designing a Fully Autonomous Food Service Platform
A real-world restaurant and social space bringing food automation, specialized robotics, and general-purpose robots together to develop, test, and improve the systems required for increasingly autonomous restaurant operations.
https://t.co/tTrYGP1CWD
We're going to see a lot more opensource robots being built over the next few years.
Not just research prototypes but robots people can actually build, modify, simulate, train and eventually buy.
We're already seeing the beginning of this shift, with projects publishing CAD, simulation models, software and even complete hardware kits.
As the cost of hardware continues to fall, more independent builders, researchers and small teams will be able to create their own robots.
The interesting part won't just be the number of robots being built. It will be everything built around them parts, models, datasets, simulation environments, training tools and software.
This is something I've been thinking about for a long time. I think we just might have the right strategy now.
Looking for VCs that want hospitality robot exposure...
Learn more:
https://t.co/impT7zuxwh
For years, robots have been able to do incredible things in controlled environments.
But put them into the real world, and everything breaks.
Physical intelligence is working on the solution… ⬇️
We just published a new post on https://t.co/3DimcrQU7a about https://t.co/xdnIbVtEPz on Kickstarter!
Learn more:
https://t.co/cAkfy1f2Qo
Kickstarter:
https://t.co/7GcV4SgcyX
solana:FCHoGT2WULVh2Pcn1934xtqv1UYEGtNGJxgGENZ9pump:
FCHoGT2WULVh2Pcn1934xtqv1UYEGtNGJxgGENZ9pump
We made an entire music video using 100% AI
The song was created in Suno, then we built the video around it scene by scene.
ChatGPT was used to develop the concept, plan the scenes, work through visual ideas, write the prompts, and generate many of the images. Nano Banana was used for the character images, which gave us a consistent starting point as the same characters appeared across different scenes.
From there, we used Kling to animate the images and generate the video clips. Each shot was created individually, then selected and edited together around the song.
One of the more interesting parts of the process was figuring out how to maintain a coherent video when every shot is being generated separately. Characters, clothing, locations, camera angles, lighting, movement, and the overall visual style all have to carry from one generation to the next.
It took a lot of generations and plenty of rejected clips, but eventually all of those individual pieces started to feel like they belonged to the same music video.
Tools used:
ChatGPT — concept, scene planning, prompts + image generation
Nano Banana — character images
Kling — video generation
Suno — song
We will be building https://t.co/VQoBR0qFYv live in the studio all night!
Come by and see how robots are created in FreeCAD
Kickstarter:
https://t.co/wEYpwbpcTe
solana:FCHoGT2WULVh2Pcn1934xtqv1UYEGtNGJxgGENZ9pump on Pump
FCHoGT2WULVh2Pcn1934xtqv1UYEGtNGJxgGENZ9pump
https://t.co/DwV2vXuYIw
Reflex Robotics Is Bringing Humanoid Robots Into Real-World Work
Reflex Robotics is deploying general-purpose humanoid robots into logistics and industrial environments, using real-world work and human supervision to help its systems become increasingly capable.
Learn more: https://t.co/gP38CrTJ5B
We are exploring the development of a Robot Restaurant Lab, a fully robotic restaurant designed as a real-world environment for training, testing, and improving physical AI systems.
The goal is to build the training data and operational knowledge needed to make restaurant robotics practical and eventually deploy these systems across the industry.
Learn more:
https://t.co/2xPdsifGAX
Robots need more than lab demos. They need experience in the real world.
We’re launching a new project focused on creating real-world environments where robotics and physical AI companies can deploy robots, perform practical tasks, and collect valuable training data.
We’re looking for companies building robots and physical AI systems, as well as businesses interested in exploring what these technologies could do in their operations.
Hotels, factories, machine shops, warehouses, construction sites, restaurants, and other workplaces can all become valuable environments for the next generation of robotics.
If you’re building robots or run a business interested in participating in real-world deployments, we’d like to connect.
More info:
https://t.co/2xPdsifGAX
New motors fresh from China 🇨🇳
https://t.co/xRatCLG85E is getting a new production friendly design
Follow along to see a robot built from the wheels up!