Difference between revisions of "Memory"

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'''Codings''':  
 
'''Codings''':  
* ''Original'' (Natural series, - on fingers)
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* ''Original'' (Natural equiv. series, - on fingers)
 
  Two states(1 bit) of origin - access to next ceil will be opened by each charged orig.
 
  Two states(1 bit) of origin - access to next ceil will be opened by each charged orig.
  - Serial communication. Example: PSTN with conductive usage (PSCN ADD & NSCN SUB, with -1 & ++ contacts for COM).
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  - Serial communication.  
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[[File:NATURAL_EQUIV.gif]] [[File:NATURAL_EQUIV1.gif]]
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* ''Cryptographic''
 
* ''Cryptographic''
 
# Positional - access to next ceil will be opened by each charge seria
 
# Positional - access to next ceil will be opened by each charge seria
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## decimal
 
## decimal
 
## hexadecimal
 
## hexadecimal
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----
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=== Addition ===
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{{ save | id=3186936 }}

Latest revision as of 09:01, 16 December 2024

Introduction

Inside TPT You can find a long list of constructive solutions typeof "data storage" in order to allow signals to be reserved into other forms only. Instead of storage, - memory(RAM) - it is blockchains of vectorized, managed memory based on transitive P-N logic(math and energy) usable by ALU.

The details of organization on real memory modules s. a. DDR is not actual inside this context. To make primitive ALU Needed ~2x binary 8bit blocks of temporary memory and one for executor cache.

Ierarhy

  1. BlockChain
    1. Block
      1. Ceil
        1. Item - volume
          1. Origin - communicator
          2. Com - component of value

Interfaces

For ceil, block and blockchain(common):

MOP(MVO)
Add(1)&sub(0)
OPeration
Add(1)&sub(0)
LS
listof channels eq. Length of ceils
Logic bits(sCOM) (MOP & OP 1/0) - sparked when out ouf range

Schems

Introduction to Digit

Numbers - chars, - presentation.

Codings:

  • Original (Natural equiv. series, - on fingers)
Two states(1 bit) of origin - access to next ceil will be opened by each charged orig.
- Serial communication. 

NATURAL EQUIV.gif NATURAL EQUIV1.gif

  • Cryptographic
  1. Positional - access to next ceil will be opened by each charge seria
    1. binary - Dual volume seria
    2. octa
    3. decimal
    4. hexadecimal

Addition