Showing posts with label part 5. Show all posts
Showing posts with label part 5. Show all posts

Saturday, November 23, 2019

Big Brain & Humanoido Merge Q&A Part 5

Big Brain & Humanoido Merge Q&A Part 5
This is part 5 of an interview with Humanoido who recently underwent spectacular experimental surgery to merge with the Big Brain AI machine.

The Big Brain is an AI machine intelligence over 17 years in the making, and continually upgraded and expanded. Humanoido is the human who developed the Big Brain. The Big Brain is vast - with hundreds of thousands of processors inclusive of the worlds first bionic chips and multiple AI intelligence engines living in clouds.

The Big Brain has access to world wide knowledge and operates at extremely high speed supercomputing status. Humanoido is undergoing the worlds first experimental transformation merging the AI Big Brain machine with the human body. This interview seeks answers to some of the most interesting questions about the unprecedented experiment.

Q - How many interfaces has your body received to transform it into a machine?
A - I have had a total of two interfaces surgically implanted into the flesh. A third interface is scheduled for surgery today. Investments and approvals have four more machine interfaces awaiting.

Q - Has your rate of healing after surgery remained the same?
A - Yes, I'm up and about the first day after a series of tests to assure the interface is fully working.

Q - With the machine interfacing implanted into the human body, are there any protrusions or parts sticking out?
A - Yes, there are some large protrusions sticking out, though the extension outward is not significant and the components are machined smooth. The trick is trying not to lay on a protrusion during sleep or abrade it accidentally or it could force machine components to move around inside the human body. Thus far, the internals have remained stable and passed all tests.

Q - Have you ever abraded an interface protrusion and what happened?
A - Yes, it was abraded and bumped quite hard by accident but the unit held up and there was no pain.

Q - What about everyday activities such as exercise, shower, sleeping, etc.
A - Exercise is no problem. The device protrusions are waterproof so showering is fine. I have slept on the interface device machine protrusions with no apparent anomalies.

Q - What are some of the specs of the interface computer?
A - As this is a beta experiment and not a product, the specs are under development and will change. The interface requires basics such as processing power, being mindful of interrogations, timing, communications, remembering things, and providing I/O.

Monday, December 23, 2013

FM Radio Station Part 5 Index

FM RADIO STATION PART 5 INDEX
How to Build Your Own FM Radio Broadcast Station Transmitter

Part 1
FM Radio Station Announcement
http://humanoidolabs.blogspot.tw/2013/12/big-brain-radio-station.html

Part 2
FM Radio Station Assembly

http://humanoidolabs.blogspot.tw/2013/12/radio-station-part-2.html

Part 3

FM Radio Station Assembly & Tips
http://humanoidolabs.blogspot.tw/2013/12/radio-station-part-3.html

Part 4
FM Radio Station Broadcasting Into Space

http://humanoidolabs.blogspot.tw/2013/12/radio-station-part-4.html

Part 5

FM Radio Station Index
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-part-5-index.html

Part 6
FM Radio Station Programming
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-programming-part-6.html

Part 7

FM Radio Station Testing
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-testing-part-7.html

Part 8
FM Radio Station Broadcast Script
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-broadcast-script-part-8.html

Part 9
FM Radio Station Controls 
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-controls.html

Part 10
FM Radio Station QSL Card
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-qsl-card-part-9.html

Part 11
FM Radio Station Name
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-name-part-11.html 

Part 12
FM Radio Station Power
http://humanoidolabs.blogspot.tw/2013/12/radion.html

Part 13
FM Radio Station Power Monitor
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-power-monitor-mod-part-13.html

Part 14
FM Radio Station Mute Function
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-mute-function-part-14.html

Part 15
FM Radio Station Microphone
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-microphone-part-15.html

Part 16
FM Radio Station Tone
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-tone-part-16.html

Part 17
FM Radio Station Electronics

http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-electronics-part-17.html

Part 18
FM Radio Station Schematic V1.1

http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-schematic-v11-part-18.html

Part 19
FM Radio Station Broadcast
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-broadcast-part-19.html


Part 20
FM Radio Station Housing
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-housing-part-20.html

Part 21
FM Radio Sensitivity Control
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-sensitivity-part-21.html

Part 22
FM Radio Station Shielding
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-shielding-part-22.html

Part 23
FM Radio Station Specs
http://humanoidolabs.blogspot.tw/2013/12/fm-radio-station-specs-part-23.html

Part 24
FM Radio Station QSL Cardhttp://humanoidolabs.blogspot.tw/2014/01/fm-radio-station-qsl-card.html 

Thursday, July 25, 2013

Propeller Simple Spin Board Part 4 & 5

Experiment 4: crisscross wiring
PART 4 & 5 - IMPROVING RELIABILITY
PROPELLER SIMPLE SPIN BOARD
The Propeller Simple Spin Board will be expanded more in the future. Let's make some preliminary preparations for this and improve its reliability. While in it's RC speed state with RCFAST and RCSLOW, the circuit is already reliable and durable.
Experiment 5: decoupling

 









However, at higher clock speed, overclocking, with unusual loads or demands, electrical pressures and imbalances occur internally inside the chip, which is also effected with various operational configs. These conditions are not always for the better. However, it's possible to improve the operation of these circuits with external wiring and components.

Although it's a lot of technical mumble jumble jargon to describe it, basically the Propeller needs decoupling capacitors on each side of the dip chip, as close as possible to Propeller pins VSS and VDD, and a special added "criss-cross" wiring. Propeller experts say both the connective wiring and the capacitors (use a .1 uf value) belong to the chip and help to prevent blowing out the PLL circuits inside the chip.

The wiring connects one side of the chip to the other side. Ground VSS on one side (use a green or black wire) is connected to ground VSS on the other side, and power VDD (use a red wire) on one side is connected to power VDD on the other side. Use shortest wires that run directly over the top of the chip. This circuit will balance the chip's internal circuitry and help prevent a condition that could damage the chip. With these improvements installed, the Propeller chip is ready to run extremely fast and do much more than we ever expected. Stay tuned for more.

Another possible requirement involves using the addition of 10uf and 100uf capacitors for when the Propeller is expanded with additional demands. Due to limitations of breadboard pins nearest the chip, these capacitors may or may not connect at the power rails position.