Massive Selection for Coupler Pattern for Slovak Republic Manufacturers

Massive Selection for
 Coupler Pattern for Slovak Republic Manufacturers

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Product Detail


 

Company Core Philosophy

The company is specialized in casting mould technology design, tooling development, mould   making,gravity casting aluminum alloy products, machining service as a whole, and has 36 seniorr&dengineers. 20 years experience in professional mould making.Strong technical team with certain research and development capabilities.Full machinery focus on quality and after-sales service.

Payment & Delivery

Payment Terms: 30% for deposit, 70% before shipment.

Package Details: usually use the standard 1200*800mm wood pallet, but can customized packaging according to the different products.

Delivery45 days after order confirmation.

jiaotong

Factory Equipment

There are 4 workshops in the company which including tooling workshop, casting workshop , machining workshop ,cleaning workshop and one full-equipped laboratory.

Factory Equipment

Our Certificate

zhengshu

Our Service

liuc

China Foundry Expo

Participate in China Foundry Expo every year.

zhanhui

FAQ

Q:Plant Maturity – Years in service?

A:24 hour

Q:Project Management is existed for new production?

A:Yes,We have

Q:Ownership – Main Share Holders?

A:Private Comp.

Q:Export License and/ or Experience?

A:Yes.

Q:Products Development time?

A:2 Month.

Q:Products Cycle time ?

A:2 Weeks.

 

Product Tags

Every member from our high efficiency sales team values customers' needs and business communication for Massive Selection for Coupler Pattern for Slovak Republic Manufacturers, We welcome new and old customers from all walks of life to contact us for future business relationships and mutual success!


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  • Link to the guide with program instructions:

    http://forums.terraria.org/index.php?threads/hoiktronics-functional-in-game-terraria-computer.7897/

    World download:

    http://www.filedropper.com/dicemanxhmworldv51_2

    Richard Lewis’ computer:

    For those that cannot see the annotations, here’s a brief summary:

    The computer consists of three registers:

    1. 8-bit Memory Register – output via orange numbers bottom right of the player corridor
    2. 8-bit MQ Register – output via yellow numbers top right of the player corridor
    3. 9-bit Accumulator Register – output via yellow numbers above the player corridor

    The registers hold numbers from 0-256 for the 8-bit registers, and 0-512 for the 9-bit register.

    3 levers control the mathematical operations:

    1. The M lever – for multiplication, addition, and subtraction
    2. The C lever – complement for subtraction and division
    3. The Q lever – for determining quotients when dividing

    Two additional levers:

    1. The 0 lever – CLEAR function – sets all registers to 0
    2. The T lever – translates the binary output in the Accumulator Register to a Decimal output using seven-segment 0-999 display

    Multiplication Program:
    Activate CLEAR lever
    Set MQ Register to X
    Set Accumulator Register to 0
    Set Memory Register to Y
    Activate M lever

    Result: Accumulator will show the outcome of X times Y.

    Example in the video:
    At 0:59 I multiply 40 times 4

    Addition Program:
    Activate CLEAR lever
    Set MQ Register to 1
    Set Accumulator Register to X
    Set Memory Register to Y
    Activate M lever

    Result: Accumulator will show the outcome of X plus Y. Since the MQ Register is set to 1, the contents of the Memory Register are only added once to the contents of the Accumulator Register.

    Example in the video:
    At 2:55 I add 100 and 40

    Subtraction Program:
    Activate CLEAR lever
    Set MQ Register to 1
    Set Accumulator Register to X
    Set Memory Register to Y
    Activate C lever
    Activate M lever

    Result: Accumulator will show the outcome of Y minus X. Note that the smaller number in the subtraction should go into the Accumulator Register, and the larger number should go in the Memory Register i.e. Y is greater than X. This machine can handle negative numbers, but that will be the subject of discussion in a later more comprehensive guide.

    Example in the video:
    At 4:35 I calculate 60 minus 20

    Division Program:
    Activate CLEAR lever
    Set MQ Register to 256
    Set Accumulator Register to X
    Set Memory Register to Y
    Activate C lever
    Activate Q lever

    Result: The MQ Register will show the outcome of X divided by Y. To keep it simple make sure that X is a multiple of Y to avoid non-integer values. This machine can handle fractions, but again I will describe how in a later guide. Note that the MQ Register always has to be set to its maximum value when doing division, and it’s the MQ Register, not the Accumulator Register, that will hold the answer to the division problem.

    Example in the video:
    At 5:49 I divide 130 by 13

    Conversion from Binary to Decimal:

    After a calculation is completed and the result is in the Accumulator Register, the binary number stored there can be converted to a decimal value by activating the T lever. The conversion takes about 1 second for every 10 digits converted, so for instance if the Accumulator holds 140 then it will take about 14 seconds to convert that into decimal. The decimal display has to be reset by hand using the three switches, one switch for each digit, next to the display.

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