Contemporary-control-systems Sedona Manual do Utilizador

Consulte online ou descarregue Manual do Utilizador para Hardware Contemporary-control-systems Sedona. Contemporary Control Systems Sedona User Manual Manual do Utilizador

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AN-SEDONA01-BA1
NOTE
a p p l i c a t i o n
Using Sedona 1.2 Components
C
O
N
TR LSO
®
CONTEMPORARY
Using Sedona 1.2 Components from Tridium’s Kits
Introduction
This application note assists in the understanding of the Sedona components provided in Tridium’s Sedona-1.2.28
release. Some of the Sedona components were changed or added since the previous release. New with the 1.2
release is that the Sedona components, previously concentrated in one Control kit, are now organized in smaller
kits under a functional name. Components discussed in this document can be found in the following kits:
basicSchedule
datetimeSTD
func
hvac
logic
math
pricomp
timing
types
The intent of this document is to explain the potential use of those components supplied by Tridium in their Sedona
1.2 release. All are included in Contemporary Controls’ BASremote and BAScontrol product families. They have
not been modied for use in these products. Contemporary Controls has product specic Sedona kits that address
the uniqueness of the IO structure in the BASremote and BAScontrol products. These kits are not mentioned in
this document. It is Contemporary Controls’ policy to provide all Sedona kits to the Sedona Framework community
without charge or license. This includes kits obtained from Tridium, kits with modied Tridium components, kits
developed solely by Contemporary Controls to improve the control options available to systems integrators, and
kits specic to Contemporary Controls’ hardware. Any feedback is welcomed.
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Resumo do Conteúdo

Página 1 - Introduction

AN-SEDONA01-BA1NOTEa p p l i c a t i o nUsing Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYUsing Sedona 1.2 Components from Tridium’s KitsIntroductionTh

Página 2 - Conguring Constants

AN-SEDONA01-BA1 Page 10Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYBoolean, Float or Integer Selecon

Página 3 - Using Write Components

AN-SEDONA01-BA1 Page 11Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYBoolean, Float or Integer Selecon (connued)

Página 4

AN-SEDONA01-BA1 Page 12Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYDe-MulplexingFloat Addion

Página 5

AN-SEDONA01-BA1 Page 13Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYFloat SubtraconFloat Mulplicaon

Página 6

AN-SEDONA01-BA1 Page 14Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYFloat DivisionFinding Minimums and Maximums

Página 7

AN-SEDONA01-BA1 Page 15Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYRounding O FloatsAveraging Successive Readings

Página 8

AN-SEDONA01-BA1 Page 16Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYOn-Delays and O-DelaysUsing the Timer

Página 9

AN-SEDONA01-BA1 Page 17Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYUsing One-Shots — Mono-Stable MulvibratorsCreang Ramps —

Página 10 - CONTEMPORARY

AN-SEDONA01-BA1 Page 18Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYComparing Two FloatsA Simple Clock — the TickToc

Página 11

AN-SEDONA01-BA1 Page 19Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYIntroducing CountersOperang on Real-World Signals — Hyster

Página 12 - Float Addion

AN-SEDONA01-BA1 Page 2Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYVariable TypesAlthough there are several variable types used

Página 13 - Float Mulplicaon

AN-SEDONA01-BA1 Page 20Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYHandling Non-Linear Signals

Página 14 - Finding Minimums and Maximums

AN-SEDONA01-BA1 Page 21Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYSimple Set-Reset Flip Flop — Bi-Stable MulvibratorThe Loop

Página 15 - Averaging Successive Readings

AN-SEDONA01-BA1 Page 22Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYLinear Sequencer — Bar-Graph Representaon of a Float

Página 16 - Using the Timer

AN-SEDONA01-BA1 Page 23Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYReheat Sequencer — Four Staged Outputs from a Float Input

Página 17

AN-SEDONA01-BA1 Page 24Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYReset — Scaling a Float Input between Two LimitsTstat — Bas

Página 18 - A Simple Clock — the TickToc

AN-SEDONA01-BA1 Page 25Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYReal-Time Clock and Scheduling

Página 19 - Introducing Counters

AN-SEDONA01-BA1 Page 26Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYPriority Arrays

Página 20 - Handling Non-Linear Signals

AN-SEDONA01-BA1 — November 2013 Page 27Application Note — Using Sedona 1.2 ComponentsUnited StatesContemporary Control Systems, Inc. 2431 Curtiss Stre

Página 21

AN-SEDONA01-BA1 Page 3Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYUsing Write ComponentsConverng Between Component Types

Página 22

AN-SEDONA01-BA1 Page 4Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYFloat-to-Boolean and Boolean-to-Float Conversion

Página 23

AN-SEDONA01-BA1 Page 5Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYNegang a Boolean Variable — Inverng Your Logic

Página 24

AN-SEDONA01-BA1 Page 6Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYBoolean Product — “ANDing” Boolean Variables

Página 25

AN-SEDONA01-BA1 Page 7Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYBoolean Sum — “Oring” Boolean Variables

Página 26 - Priority Arrays

AN-SEDONA01-BA1 Page 8Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYExclusive OR — A OR B but Not BothCascading Logic Blocks and

Página 27

AN-SEDONA01-BA1 Page 9Application Note — Using Sedona 1.2 ComponentsCONTR LSO®CONTEMPORARYCascading Logic Blocks and Unused Inputs (connued)

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