Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part10_Part2.pdf

PDF 2 MB Posted

Attached to
Multiple Award Construction Contract (MACC) Italy Federal contract opportunity
Solicitation number
FA568219RA001
Issued by
Department of the Air Force United States Air Forces in Europe - Air Forces Africa

About this file

This is a draft request for proposal for an indefinite delivery indefinite quantity multiple award construction contract for design-build construction services in Italy. The scope of work includes projects across multiple trades at Aviano Air Base, Italy, such as grading, utilities, buildings, electrical systems, HVAC, refrigeration, fire suppression, fuel systems, lighting, generators, communications, and hazardous material abatement. The base period of performance is one year with four optional years. The minimum guaranteed amount is $2,500 Euro and the maximum combined value is $96 million USD. The minimum task order is $2,500 and maximum is $7 million. Interested parties are requested to submit comments on the draft attachments by April 19. The final RFP will be issued through FBO.gov.

Attachment 11 ASHE 18-1025 Drawings (Seed Project) Part 10 Part 2

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Other files for this federal contract opportunity

Other files attached to Multiple Award Construction Contract (MACC) Italy, newest first.
File Type Posted
38BOQ0~1.PDF PDF
H2UST0~1.PDF PDF
Attachment_5_Past_Performance_Questionnaire_(PPQ)_REV_03.doc DOC document
MACC_Questions_and_Answers_10162019.pdf PDF
Attachment_1_Section_L_REV_01.pdf PDF
Solicitation_Amendment_FA568219RA0010001_SF_30.pdf PDF
ATTACH~4.DOC DOC document
ANNEX_E_-_ELECTRICAL_Part16.pdf PDF
ANNEX_E_-_ELECTRICAL_Part11.pdf PDF
ANNEX_E_-_ELECTRICAL_Part15.pdf PDF
ANNEX_S_-_STRUCTURAL_Part3.pdf PDF
ANNEX_F_-_FIRE_PROTECTION.pdf PDF
ANNEX_S_-_STRUCTURAL_Part6.pdf PDF
Attachment_10_ASHE_18-1025_TS_(Seed_Project)__Part1.pdf PDF
Attachment_10_ASHE_18-1025_TS_(Seed_project)_Part6_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part5.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part15_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part13_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part15_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part1_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part2_Part2.pdf PDF
Attachment_10_ASHE_18-1025_TS__(Seed_project)_Part5.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part13_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part6.pdf PDF
Attachment_10_ASHE_18-1025_TS_(Seed_project)_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part9_Part3.pdf PDF
Attachment_10_ASHE_18-1025_TS_(Seed_project)_Part6_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part13_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part14.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part18.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part10_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part12.pdf PDF
Attachment_14_ASHE_18-1025_PSC_Safety_Plan_(Seed_project).pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part1_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part16_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part8.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part4.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part2_Part1.pdf PDF
Attachment_10_ASHE_18-1025_TS__Part6_Part5_Part1.pdf PDF
Attachment_2_Section_M.pdf PDF
Attachment_8_Client_Authorization_Letter.pdf PDF
Attachment_9_Questions_and_Answers.pdf PDF
Attachment_4_Past_Performance_Information_(PPI).pdf PDF
Attachment_7_Experience_Information_Sheet.pdf PDF
FINAL_Questions_and_Answers_MACC__June_28__2019.pdf PDF
Questions_and_Answers_draft_RFP_FA568219RA0001_May_02_2019.pdf PDF
(draft)_Attachment_10_Questions_and_Answers.pdf PDF
(draft)_Attachment_7_Experience_Information_Sheet.pdf PDF
(draft)_Attachment_8_Consent_Letter.pdf PDF
(draft)_Attachment_5_Past_Performnce_Questionnaire_(PPQ).pdf PDF
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SCHEMA CONTROLLI - IMPIANTO ACQUA CALDA SANITARIA

SCHEMATIC CONTROL DIAGRAM - DOMESTIC HOT WATER SYSTEM

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Engineering Tools Srl

Via del Makò n. 33

33084 Cordenons (PN)

TEL.: +39 0434 536333

FAX: +39 0434 542813

E-mail: info@engtools.eu

PEC: info@pec.engtools.eu

NEW WORK KEYNOTES

NOTE CHIAVE NUOVI LAVORI

MI709

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NOT TO SCALE

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EX-1

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FROM HYDRONIC HOT WATER SYSTEM

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TO HYDRONIC HOT WATER SYSTEM

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ALL'IMPIANTO IDRONICO ACQUA CALDA

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DALL'IMPIANTO IDRONICO ACQUA CALDA

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TO PLUMBING SYSTEM

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ALL'IMPIANTO IDRICO SANITARIO

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FROM PLUMBING SYSTEM

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DALL'IMPIANTO IDRICO SANITARIO

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ANALOG INPUTS

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POINT LIST

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DIGITAL INPUTS

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DIGITAL OUTPUTS

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HWS TEMPERATURE

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OUTSIDE TEMPERATURE

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HEATING WATER RETURN

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ENTRATE ANALOGICHE

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ENTRATE DIGITALI

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USCITE ANALOGICHE

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USCITE DIGITALI

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/ ELENCO DEI PUNTI

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GUASTO CALDAIA

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TEMPERATURA MANDATA ACQUA RISCALDAMENTO

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TEMPERATURA ESTERNA

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TEMPERATURA RITORNO ACQUA RISCALDAMENTO

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POSIZIONE VALVOLA 3 VIE

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BOILER SET POINT - HEATING WATER

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PUNTO DI SETTAGGIO CALDAIA ACQUA RISCALD.

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PUMP HWP-2 STATUS

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STATO POMPA HWP-2

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BOILER CONTROL PANEL

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PANNELLO DI CONTROLLO CALDAIA

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HWS SYSTEM FLOW AND POWER TRANSMITTER

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TRASMETTITORE PORTATA E POTENZA SISTEMA ACQUA RISCALDAMENTO

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POSIZIONE VALVOLA A 2 VIE

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POSIZIONE VALVOLA 2 VIE

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DOMESTIC WATER TEMPERATURE FROM PHEX

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TEMPERATURA ACQUA DOMESTICA DA PHEX

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SUPPLY DOMESTIC HOT WATER TEMPERATURE

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TEMPERATURA MANDATA ACQUA CALDA DOMESTICA

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ELECTRONIC WATER BLENDER WITH THERMAL DISINFECTION

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MISCELATORE ELETTRONICO CON DISINFEZIONE TERMICA

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WATER TO THE SOFTNER

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ACQUA ALL'ADDOLCITORE

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WATER TO THE BUILDING

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ACQUA ALL'EDIFICIO

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WATER METER INPUT

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IMPULSO DA CONTALITRI ACQUA

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CONNECTION DDC

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CONNESSIONE AL DDC

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HWR DHWG TEMPERATURE

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TEMPERATURA RITORNO RISCALDAMENTO DHWG

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NATURAL GAS TO THE BOILER

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GAS ALLA CALDAIA

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NATURAL GAS FROM BASE

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GAS DALLA RETE DELLA BASE

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NATURAL GAS METER INPUT

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IMPULSO DA MISURATORE GAS NATURALE

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SEE DWG MI702

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VEDERE DWH MI702

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DESCRIPTION

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DATE

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APPR

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SYM

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SIZE: A1

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SHEET OF

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SEAL

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DATE:

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DRAWING NAME:

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PROJECT NUMBER: ASHE 18-1025

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REVIEWER:

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DESIGNER:

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DRAFTMAN:

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SUBMITTAL

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AVIANO AIR BASE

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AVIANO, ITALY

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FAC.939, AREA F, AVIANO AB, ITALY

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RENOVATE/EXPAND FAC.939 FOR EOD

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FABBR.939, AREA F, AVIANO AB, ITALIA

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RISTRUTTURAZIONE ED AMPLIAMENTO FABBR.939 PER EOD

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FEBRUARY 2018

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A/E INFO

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1. SURFACE MOUNTED TRANSMITTER PANEL - TYPICAL SURFACE MOUNTED TRANSMITTER PANEL - TYPICAL PANNELLO DI TRASMISSIONE MONTATO A PARETE TIPICO 2. INSTALL SENSORS FURNISHED BY FLOW METER TRANSMITTER INSTALL SENSORS FURNISHED BY FLOW METER TRANSMITTER MANUFACTURER INSTALLARE I SENSORI FORNITI DAL FABBRICANTE DEL TRASMETTITORE 3. DIFFERENTIAL PRESSURE SENSOR FURNISHED BY PUMP DIFFERENTIAL PRESSURE SENSOR FURNISHED BY PUMP MANUFACTURER SENSORE DI PRESSIONE DIFFERENZIALE A BORDO FORNITO DAL PRODUTTORE DELLA POMPA

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SCHEMATIC CONTROL DIAGRAM - DHW SYSTEM

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SCHEMA CONTROLLI - ACQUA CALDA SANITARIA

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33084 Cordenons (PN)

TEL.: +39 0434 536333

FAX: +39 0434 542813

E-mail: info@engtools.eu

PEC: info@pec.engtools.eu

MI710

AutoCAD SHX Text DOMESTIC HOT WATER SEQUENCE OF CONTROL A. DOMESTIC HOT WATER SYSTEM: DOMESTIC HOT WATER SYSTEM: 1. DESCRIPTION: SYSTEM CONSISTS OF INDIPENDENT HOT WATER HEAT DESCRIPTION: SYSTEM CONSISTS OF INDIPENDENT HOT WATER HEAT SYSTEM CONSISTS OF INDIPENDENT HOT WATER HEAT SYSTEM CONSISTS OF INDIPENDENT HOT WATER HEAT CONSISTS OF INDIPENDENT HOT WATER HEAT CONSISTS OF INDIPENDENT HOT WATER HEAT OF INDIPENDENT HOT WATER HEAT OF INDIPENDENT HOT WATER HEAT INDIPENDENT HOT WATER HEAT INDIPENDENT HOT WATER HEAT HOT WATER HEAT HOT WATER HEAT WATER HEAT WATER HEAT HEAT HEAT EXCHANGER, WATER HEATERS, CONTROL VALVES, BOILER HOT WATER WATER HEATERS, CONTROL VALVES, BOILER HOT WATER WATER HEATERS, CONTROL VALVES, BOILER HOT WATER HEATERS, CONTROL VALVES, BOILER HOT WATER HEATERS, CONTROL VALVES, BOILER HOT WATER CONTROL VALVES, BOILER HOT WATER CONTROL VALVES, BOILER HOT WATER VALVES, BOILER HOT WATER VALVES, BOILER HOT WATER BOILER HOT WATER BOILER HOT WATER HOT WATER HOT WATER WATER WATER PUMPS, CIRCULATING PUMPS, AND ELECTRONIC MIXING VALVE. CIRCULATING CIRCULATING PUMPS, AND ELECTRONIC MIXING VALVE. CIRCULATING CIRCULATING PUMPS, AND ELECTRONIC MIXING VALVE. CIRCULATING PUMPS, AND ELECTRONIC MIXING VALVE. CIRCULATING PUMPS, AND ELECTRONIC MIXING VALVE. CIRCULATING AND ELECTRONIC MIXING VALVE. CIRCULATING AND ELECTRONIC MIXING VALVE. CIRCULATING ELECTRONIC MIXING VALVE. CIRCULATING ELECTRONIC MIXING VALVE. CIRCULATING MIXING VALVE. CIRCULATING MIXING VALVE. CIRCULATING VALVE. CIRCULATING VALVE. CIRCULATING CIRCULATING CIRCULATING PUMPS ARE CONSTANT VOLUME WITH A MAGNETIC MOTOR STARTER. ARE CONSTANT VOLUME WITH A MAGNETIC MOTOR STARTER. ARE CONSTANT VOLUME WITH A MAGNETIC MOTOR STARTER. CONSTANT VOLUME WITH A MAGNETIC MOTOR STARTER. CONSTANT VOLUME WITH A MAGNETIC MOTOR STARTER. VOLUME WITH A MAGNETIC MOTOR STARTER. VOLUME WITH A MAGNETIC MOTOR STARTER. WITH A MAGNETIC MOTOR STARTER. WITH A MAGNETIC MOTOR STARTER. A MAGNETIC MOTOR STARTER. A MAGNETIC MOTOR STARTER. MAGNETIC MOTOR STARTER. MAGNETIC MOTOR STARTER. MOTOR STARTER. MOTOR STARTER. STARTER. STARTER. PRIMARY CONTROL OF ELECTRONIC MIXING VALVE IS MAINTAINED BY A CONTROL OF ELECTRONIC MIXING VALVE IS MAINTAINED BY A CONTROL OF ELECTRONIC MIXING VALVE IS MAINTAINED BY A OF ELECTRONIC MIXING VALVE IS MAINTAINED BY A OF ELECTRONIC MIXING VALVE IS MAINTAINED BY A ELECTRONIC MIXING VALVE IS MAINTAINED BY A ELECTRONIC MIXING VALVE IS MAINTAINED BY A MIXING VALVE IS MAINTAINED BY A MIXING VALVE IS MAINTAINED BY A VALVE IS MAINTAINED BY A VALVE IS MAINTAINED BY A IS MAINTAINED BY A IS MAINTAINED BY A MAINTAINED BY A MAINTAINED BY A BY A BY A A A MICROPROCESSOR BASED CONTROL SYSTEM FACTORY MOUNTED TO BASED CONTROL SYSTEM FACTORY MOUNTED TO BASED CONTROL SYSTEM FACTORY MOUNTED TO CONTROL SYSTEM FACTORY MOUNTED TO CONTROL SYSTEM FACTORY MOUNTED TO SYSTEM FACTORY MOUNTED TO SYSTEM FACTORY MOUNTED TO FACTORY MOUNTED TO FACTORY MOUNTED TO MOUNTED TO MOUNTED TO TO TO ELECTRONIC MIXING VALVE. THE SYSTEM STARTUP SHALL BE ACCOMPLISHED MIXING VALVE. THE SYSTEM STARTUP SHALL BE ACCOMPLISHED MIXING VALVE. THE SYSTEM STARTUP SHALL BE ACCOMPLISHED VALVE. THE SYSTEM STARTUP SHALL BE ACCOMPLISHED VALVE. THE SYSTEM STARTUP SHALL BE ACCOMPLISHED THE SYSTEM STARTUP SHALL BE ACCOMPLISHED THE SYSTEM STARTUP SHALL BE ACCOMPLISHED SYSTEM STARTUP SHALL BE ACCOMPLISHED SYSTEM STARTUP SHALL BE ACCOMPLISHED STARTUP SHALL BE ACCOMPLISHED STARTUP SHALL BE ACCOMPLISHED SHALL BE ACCOMPLISHED SHALL BE ACCOMPLISHED BE ACCOMPLISHED BE ACCOMPLISHED ACCOMPLISHED ACCOMPLISHED THROUGH A MANUAL COMMAND OR AS SCHEDULED AT THE DDC A MANUAL COMMAND OR AS SCHEDULED AT THE DDC A MANUAL COMMAND OR AS SCHEDULED AT THE DDC MANUAL COMMAND OR AS SCHEDULED AT THE DDC MANUAL COMMAND OR AS SCHEDULED AT THE DDC COMMAND OR AS SCHEDULED AT THE DDC COMMAND OR AS SCHEDULED AT THE DDC OR AS SCHEDULED AT THE DDC OR AS SCHEDULED AT THE DDC AS SCHEDULED AT THE DDC AS SCHEDULED AT THE DDC SCHEDULED AT THE DDC SCHEDULED AT THE DDC AT THE DDC AT THE DDC THE DDC THE DDC DDC DDC OPERATOR'S WORKSTATION. 2. PROVIDE PRIMARY/STANDBY (LEAD/LAG) ALGORITHM FOR THE PUMPS AND PROVIDE PRIMARY/STANDBY (LEAD/LAG) ALGORITHM FOR THE PUMPS AND PRIMARY/STANDBY (LEAD/LAG) ALGORITHM FOR THE PUMPS AND PRIMARY/STANDBY (LEAD/LAG) ALGORITHM FOR THE PUMPS AND (LEAD/LAG) ALGORITHM FOR THE PUMPS AND (LEAD/LAG) ALGORITHM FOR THE PUMPS AND ALGORITHM FOR THE PUMPS AND ALGORITHM FOR THE PUMPS AND FOR THE PUMPS AND FOR THE PUMPS AND THE PUMPS AND THE PUMPS AND PUMPS AND PUMPS AND AND AND ADDITIONAL INTERLOCKS. 3. HEAT EXCHANGER CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT HEAT EXCHANGER CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT EXCHANGER CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT EXCHANGER CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT CONTROL (PHEX): THE SYSTEM IS INDIPENDENT AND NOT (PHEX): THE SYSTEM IS INDIPENDENT AND NOT (PHEX): THE SYSTEM IS INDIPENDENT AND NOT THE SYSTEM IS INDIPENDENT AND NOT THE SYSTEM IS INDIPENDENT AND NOT SYSTEM IS INDIPENDENT AND NOT SYSTEM IS INDIPENDENT AND NOT IS INDIPENDENT AND NOT IS INDIPENDENT AND NOT INDIPENDENT AND NOT INDIPENDENT AND NOT AND NOT AND NOT NOT NOT CONTROLLED BY DDC. THE DDC WILL READ ONLY THE HOT WATER DELIVERY TEMPERATURE. THE MANUFACTURER PANEL CONTROL SHALL START THE THE MANUFACTURER PANEL CONTROL SHALL START THE THE MANUFACTURER PANEL CONTROL SHALL START THE MANUFACTURER PANEL CONTROL SHALL START THE MANUFACTURER PANEL CONTROL SHALL START THE PANEL CONTROL SHALL START THE PANEL CONTROL SHALL START THE CONTROL SHALL START THE CONTROL SHALL START THE SHALL START THE SHALL START THE START THE START THE THE THE PUMP THAT TAKE HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL THAT TAKE HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL THAT TAKE HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL TAKE HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL TAKE HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL HOT WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL WATER FROM HWG-1 TANK. THE DDC SYSTEM WILL FROM HWG-1 TANK. THE DDC SYSTEM WILL FROM HWG-1 TANK. THE DDC SYSTEM WILL HWG-1 TANK. THE DDC SYSTEM WILL HWG-1 TANK. THE DDC SYSTEM WILL TANK. THE DDC SYSTEM WILL TANK. THE DDC SYSTEM WILL THE DDC SYSTEM WILL THE DDC SYSTEM WILL DDC SYSTEM WILL DDC SYSTEM WILL SYSTEM WILL SYSTEM WILL WILL WILL MANTAIN THE SETPOINT TEMPERATURE (45°C) FO THE TANK FROM 6AM THE SETPOINT TEMPERATURE (45°C) FO THE TANK FROM 6AM THE SETPOINT TEMPERATURE (45°C) FO THE TANK FROM 6AM SETPOINT TEMPERATURE (45°C) FO THE TANK FROM 6AM SETPOINT TEMPERATURE (45°C) FO THE TANK FROM 6AM TEMPERATURE (45°C) FO THE TANK FROM 6AM TEMPERATURE (45°C) FO THE TANK FROM 6AM (45°C) FO THE TANK FROM 6AM (45°C) FO THE TANK FROM 6AM FO THE TANK FROM 6AM FO THE TANK FROM 6AM THE TANK FROM 6AM THE TANK FROM 6AM TANK FROM 6AM TANK FROM 6AM FROM 6AM FROM 6AM 6AM 6AM (ADJUSTABLE) UNTIL 8PM (ADJUSTABLE). 4. WATER HEATER CONTROL: THE DDC SELECTS THE HOT WATER PUMP WATER HEATER CONTROL: THE DDC SELECTS THE HOT WATER PUMP HEATER CONTROL: THE DDC SELECTS THE HOT WATER PUMP HEATER CONTROL: THE DDC SELECTS THE HOT WATER PUMP CONTROL: THE DDC SELECTS THE HOT WATER PUMP CONTROL: THE DDC SELECTS THE HOT WATER PUMP THE DDC SELECTS THE HOT WATER PUMP THE DDC SELECTS THE HOT WATER PUMP DDC SELECTS THE HOT WATER PUMP DDC SELECTS THE HOT WATER PUMP SELECTS THE HOT WATER PUMP SELECTS THE HOT WATER PUMP THE HOT WATER PUMP THE HOT WATER PUMP HOT WATER PUMP HOT WATER PUMP WATER PUMP WATER PUMP PUMP PUMP (HWP-1 OR HWP-2) AND ISSUES A START COMMAND TO THAT PUMP. OR HWP-2) AND ISSUES A START COMMAND TO THAT PUMP. OR HWP-2) AND ISSUES A START COMMAND TO THAT PUMP. HWP-2) AND ISSUES A START COMMAND TO THAT PUMP. HWP-2) AND ISSUES A START COMMAND TO THAT PUMP. AND ISSUES A START COMMAND TO THAT PUMP. AND ISSUES A START COMMAND TO THAT PUMP. ISSUES A START COMMAND TO THAT PUMP. ISSUES A START COMMAND TO THAT PUMP. A START COMMAND TO THAT PUMP. A START COMMAND TO THAT PUMP. START COMMAND TO THAT PUMP. START COMMAND TO THAT PUMP. COMMAND TO THAT PUMP. COMMAND TO THAT PUMP. TO THAT PUMP. TO THAT PUMP. THAT PUMP. THAT PUMP. PUMP. PUMP. FLOW THROUGH THE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE THROUGH THE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE THROUGH THE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE THE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE THE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE PUMPS IS PROVEN BY DIFFERENTIAL PRESSURE IS PROVEN BY DIFFERENTIAL PRESSURE IS PROVEN BY DIFFERENTIAL PRESSURE PROVEN BY DIFFERENTIAL PRESSURE PROVEN BY DIFFERENTIAL PRESSURE BY DIFFERENTIAL PRESSURE BY DIFFERENTIAL PRESSURE DIFFERENTIAL PRESSURE DIFFERENTIAL PRESSURE PRESSURE PRESSURE SENSOR ACROSS THE PUMP SUCTION AND DISCHARGE. ONCE FLOW IS ACROSS THE PUMP SUCTION AND DISCHARGE. ONCE FLOW IS ACROSS THE PUMP SUCTION AND DISCHARGE. ONCE FLOW IS THE PUMP SUCTION AND DISCHARGE. ONCE FLOW IS THE PUMP SUCTION AND DISCHARGE. ONCE FLOW IS PUMP SUCTION AND DISCHARGE. ONCE FLOW IS PUMP SUCTION AND DISCHARGE. ONCE FLOW IS SUCTION AND DISCHARGE. ONCE FLOW IS SUCTION AND DISCHARGE. ONCE FLOW IS AND DISCHARGE. ONCE FLOW IS AND DISCHARGE. ONCE FLOW IS DISCHARGE. ONCE FLOW IS DISCHARGE. ONCE FLOW IS ONCE FLOW IS ONCE FLOW IS ONCE FLOW IS FLOW IS FLOW IS IS IS PROVEN THE DDC SELECTS 3-WAY CONTROL VALVE MODULATES TO THE DDC SELECTS 3-WAY CONTROL VALVE MODULATES TO THE DDC SELECTS 3-WAY CONTROL VALVE MODULATES TO DDC SELECTS 3-WAY CONTROL VALVE MODULATES TO DDC SELECTS 3-WAY CONTROL VALVE MODULATES TO SELECTS 3-WAY CONTROL VALVE MODULATES TO SELECTS 3-WAY CONTROL VALVE MODULATES TO 3-WAY CONTROL VALVE MODULATES TO 3-WAY CONTROL VALVE MODULATES TO CONTROL VALVE MODULATES TO CONTROL VALVE MODULATES TO VALVE MODULATES TO VALVE MODULATES TO MODULATES TO MODULATES TO TO TO MAINTAIN 60° DEGREES C WATER TEMPERATURE SETPOINT AT BASE OF THE 60° DEGREES C WATER TEMPERATURE SETPOINT AT BASE OF THE 60° DEGREES C WATER TEMPERATURE SETPOINT AT BASE OF THE DEGREES C WATER TEMPERATURE SETPOINT AT BASE OF THE DEGREES C WATER TEMPERATURE SETPOINT AT BASE OF THE C WATER TEMPERATURE SETPOINT AT BASE OF THE C WATER TEMPERATURE SETPOINT AT BASE OF THE WATER TEMPERATURE SETPOINT AT BASE OF THE WATER TEMPERATURE SETPOINT AT BASE OF THE TEMPERATURE SETPOINT AT BASE OF THE TEMPERATURE SETPOINT AT BASE OF THE SETPOINT AT BASE OF THE SETPOINT AT BASE OF THE AT BASE OF THE AT BASE OF THE BASE OF THE BASE OF THE OF THE OF THE THE THE DHWG TANK. THE DDC START COMMAND TO RECIRCULATING PUMPS TANK. THE DDC START COMMAND TO RECIRCULATING PUMPS TANK. THE DDC START COMMAND TO RECIRCULATING PUMPS THE DDC START COMMAND TO RECIRCULATING PUMPS THE DDC START COMMAND TO RECIRCULATING PUMPS DDC START COMMAND TO RECIRCULATING PUMPS DDC START COMMAND TO RECIRCULATING PUMPS START COMMAND TO RECIRCULATING PUMPS START COMMAND TO RECIRCULATING PUMPS COMMAND TO RECIRCULATING PUMPS COMMAND TO RECIRCULATING PUMPS TO RECIRCULATING PUMPS TO RECIRCULATING PUMPS RECIRCULATING PUMPS RECIRCULATING PUMPS PUMPS PUMPS (DWRP-1 OR DWRP-2) THE DDC SYSTEM SHALL ACTIVATE THE OR DWRP-2) THE DDC SYSTEM SHALL ACTIVATE THE OR DWRP-2) THE DDC SYSTEM SHALL ACTIVATE THE DWRP-2) THE DDC SYSTEM SHALL ACTIVATE THE DWRP-2) THE DDC SYSTEM SHALL ACTIVATE THE THE DDC SYSTEM SHALL ACTIVATE THE THE DDC SYSTEM SHALL ACTIVATE THE DDC SYSTEM SHALL ACTIVATE THE DDC SYSTEM SHALL ACTIVATE THE SYSTEM SHALL ACTIVATE THE SYSTEM SHALL ACTIVATE THE SHALL ACTIVATE THE SHALL ACTIVATE THE ACTIVATE THE ACTIVATE THE THE THE RECIRCULATING PUMP FOLLOWING THE TIME SCHEDULE COORDINATE WITH PUMP FOLLOWING THE TIME SCHEDULE COORDINATE WITH PUMP FOLLOWING THE TIME SCHEDULE COORDINATE WITH FOLLOWING THE TIME SCHEDULE COORDINATE WITH FOLLOWING THE TIME SCHEDULE COORDINATE WITH THE TIME SCHEDULE COORDINATE WITH THE TIME SCHEDULE COORDINATE WITH TIME SCHEDULE COORDINATE WITH TIME SCHEDULE COORDINATE WITH SCHEDULE COORDINATE WITH SCHEDULE COORDINATE WITH COORDINATE WITH COORDINATE WITH WITH WITH THE CLIENT (ADJUSTABLE). ALL PUMPS WILL BE PROVIDED WITH HAND OFF CLIENT (ADJUSTABLE). ALL PUMPS WILL BE PROVIDED WITH HAND OFF CLIENT (ADJUSTABLE). ALL PUMPS WILL BE PROVIDED WITH HAND OFF (ADJUSTABLE). ALL PUMPS WILL BE PROVIDED WITH HAND OFF (ADJUSTABLE). ALL PUMPS WILL BE PROVIDED WITH HAND OFF ALL PUMPS WILL BE PROVIDED WITH HAND OFF ALL PUMPS WILL BE PROVIDED WITH HAND OFF PUMPS WILL BE PROVIDED WITH HAND OFF PUMPS WILL BE PROVIDED WITH HAND OFF WILL BE PROVIDED WITH HAND OFF WILL BE PROVIDED WITH HAND OFF BE PROVIDED WITH HAND OFF BE PROVIDED WITH HAND OFF PROVIDED WITH HAND OFF PROVIDED WITH HAND OFF WITH HAND OFF WITH HAND OFF HAND OFF HAND OFF OFF OFF AUTO (H-O-A) SWITCH. 5. ELECTRONIC MIXING VALVE (EMV): THE FACTORY PACKAGED CONTROLLER ELECTRONIC MIXING VALVE (EMV): THE FACTORY PACKAGED CONTROLLER MIXING VALVE (EMV): THE FACTORY PACKAGED CONTROLLER MIXING VALVE (EMV): THE FACTORY PACKAGED CONTROLLER VALVE (EMV): THE FACTORY PACKAGED CONTROLLER VALVE (EMV): THE FACTORY PACKAGED CONTROLLER (EMV): THE FACTORY PACKAGED CONTROLLER (EMV): THE FACTORY PACKAGED CONTROLLER THE FACTORY PACKAGED CONTROLLER THE FACTORY PACKAGED CONTROLLER FACTORY PACKAGED CONTROLLER FACTORY PACKAGED CONTROLLER PACKAGED CONTROLLER PACKAGED CONTROLLER CONTROLLER CONTROLLER SHALL MAINTAIN 49 DEGREES C MIXED FLOW TEMPERATURE SETPOINT MAINTAIN 49 DEGREES C MIXED FLOW TEMPERATURE SETPOINT MAINTAIN 49 DEGREES C MIXED FLOW TEMPERATURE SETPOINT 49 DEGREES C MIXED FLOW TEMPERATURE SETPOINT 49 DEGREES C MIXED FLOW TEMPERATURE SETPOINT DEGREES C MIXED FLOW TEMPERATURE SETPOINT DEGREES C MIXED FLOW TEMPERATURE SETPOINT C MIXED FLOW TEMPERATURE SETPOINT C MIXED FLOW TEMPERATURE SETPOINT MIXED FLOW TEMPERATURE SETPOINT MIXED FLOW TEMPERATURE SETPOINT FLOW TEMPERATURE SETPOINT FLOW TEMPERATURE SETPOINT TEMPERATURE SETPOINT TEMPERATURE SETPOINT SETPOINT SETPOINT (DOMESTIC HOT WATER SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE HOT WATER SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE HOT WATER SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE WATER SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE WATER SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE SUPPLY TEMPERATURE). PROVIDE BACNET INTERFACE TEMPERATURE). PROVIDE BACNET INTERFACE TEMPERATURE). PROVIDE BACNET INTERFACE PROVIDE BACNET INTERFACE PROVIDE BACNET INTERFACE BACNET INTERFACE BACNET INTERFACE INTERFACE INTERFACE FOR COMMUNICATION BETWEEN UNIT MOUNTED CONTROL PANEL AND DDC COMMUNICATION BETWEEN UNIT MOUNTED CONTROL PANEL AND DDC COMMUNICATION BETWEEN UNIT MOUNTED CONTROL PANEL AND DDC BETWEEN UNIT MOUNTED CONTROL PANEL AND DDC BETWEEN UNIT MOUNTED CONTROL PANEL AND DDC UNIT MOUNTED CONTROL PANEL AND DDC UNIT MOUNTED CONTROL PANEL AND DDC MOUNTED CONTROL PANEL AND DDC MOUNTED CONTROL PANEL AND DDC CONTROL PANEL AND DDC CONTROL PANEL AND DDC PANEL AND DDC PANEL AND DDC AND DDC AND DDC DDC DDC SYSTEM. a. SOFTWARE POINTS: DDC SHALL MONITOR THE FOLLOWING EMV SOFTWARE POINTS: DDC SHALL MONITOR THE FOLLOWING EMV SOFTWARE POINTS: DDC SHALL MONITOR THE FOLLOWING EMV POINTS: DDC SHALL MONITOR THE FOLLOWING EMV POINTS: DDC SHALL MONITOR THE FOLLOWING EMV DDC SHALL MONITOR THE FOLLOWING EMV DDC SHALL MONITOR THE FOLLOWING EMV SHALL MONITOR THE FOLLOWING EMV SHALL MONITOR THE FOLLOWING EMV MONITOR THE FOLLOWING EMV MONITOR THE FOLLOWING EMV THE FOLLOWING EMV THE FOLLOWING EMV FOLLOWING EMV FOLLOWING EMV EMV EMV ANALOG VALUES AND DIGITAL VALUES: TEMPERATURE MIXED WATER OUTLET AND DIGITAL VALUES: TEMPERATURE MIXED WATER OUTLET DIGITAL VALUES: TEMPERATURE MIXED WATER OUTLET DIGITAL VALUES: TEMPERATURE MIXED WATER OUTLET VALUES: TEMPERATURE MIXED WATER OUTLET VALUES: TEMPERATURE MIXED WATER OUTLET TEMPERATURE MIXED WATER OUTLET TEMPERATURE MIXED WATER OUTLET MIXED WATER OUTLET MIXED WATER OUTLET WATER OUTLET WATER OUTLET OUTLET OUTLET TEMPERATURE MIX WATER OUTLET HIGH TEMPERATURE ALARM - 3 WATER OUTLET HIGH TEMPERATURE ALARM - 3 OUTLET HIGH TEMPERATURE ALARM - 3 OUTLET HIGH TEMPERATURE ALARM - 3 HIGH TEMPERATURE ALARM - 3 HIGH TEMPERATURE ALARM - 3 TEMPERATURE ALARM - 3 TEMPERATURE ALARM - 3 ALARM - 3 ALARM - 3 - 3 - 3 3 3 DEGREES C ABOVE SETPOINT MIX WATER OUTLET LOW TEMPERATURE WATER OUTLET LOW TEMPERATURE OUTLET LOW TEMPERATURE OUTLET LOW TEMPERATURE LOW TEMPERATURE LOW TEMPERATURE TEMPERATURE TEMPERATURE ALARM - 3 DEGREES C BELOW SETPOINT MIXING VALVE SELF-DIAGNOSTIC MIXING VALVE SELF-DIAGNOSTIC VALVE SELF-DIAGNOSTIC VALVE SELF-DIAGNOSTIC SELF-DIAGNOSTIC SELF-DIAGNOSTIC FAULT ALARM. THERMAL DISINFECTION ON/OFF 6. PUMP CONTROL: WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES PUMP CONTROL: WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES CONTROL: WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES CONTROL: WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES WHEN THE HAND OFF AUTO (H-O-A) SWITCH INITIATES THE HAND OFF AUTO (H-O-A) SWITCH INITIATES THE HAND OFF AUTO (H-O-A) SWITCH INITIATES HAND OFF AUTO (H-O-A) SWITCH INITIATES HAND OFF AUTO (H-O-A) SWITCH INITIATES OFF AUTO (H-O-A) SWITCH INITIATES OFF AUTO (H-O-A) SWITCH INITIATES AUTO (H-O-A) SWITCH INITIATES AUTO (H-O-A) SWITCH INITIATES (H-O-A) SWITCH INITIATES (H-O-A) SWITCH INITIATES SWITCH INITIATES SWITCH INITIATES INITIATES INITIATES A START SIGNAL THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A START SIGNAL THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A START SIGNAL THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A SIGNAL THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A SIGNAL THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A THROUGH THE "HAND" POSITION, OR THE DDC INITIATES A THE "HAND" POSITION, OR THE DDC INITIATES A THE "HAND" POSITION, OR THE DDC INITIATES A "HAND" POSITION, OR THE DDC INITIATES A "HAND" POSITION, OR THE DDC INITIATES A POSITION, OR THE DDC INITIATES A POSITION, OR THE DDC INITIATES A OR THE DDC INITIATES A OR THE DDC INITIATES A THE DDC INITIATES A THE DDC INITIATES A DDC INITIATES A DDC INITIATES A INITIATES A INITIATES A A A START SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP WITH THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP WITH THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP THE H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP H-O-A IN THE "AUTO" POSITION, THE “LEAD” PUMP IN THE "AUTO" POSITION, THE “LEAD” PUMP IN THE "AUTO" POSITION, THE “LEAD” PUMP THE "AUTO" POSITION, THE “LEAD” PUMP THE "AUTO" POSITION, THE “LEAD” PUMP "AUTO" POSITION, THE “LEAD” PUMP "AUTO" POSITION, THE “LEAD” PUMP POSITION, THE “LEAD” PUMP POSITION, THE “LEAD” PUMP THE “LEAD” PUMP THE “LEAD” PUMP “LEAD” PUMP LEAD” PUMP PUMP SHALL START AND RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH START AND RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH START AND RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH AND RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH AND RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH RUN CONTINUOUSLY. WHEN THE H-O-A SWITCH CONTINUOUSLY. WHEN THE H-O-A SWITCH CONTINUOUSLY. WHEN THE H-O-A SWITCH WHEN THE H-O-A SWITCH WHEN THE H-O-A SWITCH THE H-O-A SWITCH THE H-O-A SWITCH H-O-A SWITCH H-O-A SWITCH SWITCH SWITCH INITIATES A STOP SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC A STOP SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC A STOP SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC STOP SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC STOP SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC SIGNAL THROUGH THE "OFF" POSITION, OR THE DDC THROUGH THE "OFF" POSITION, OR THE DDC THROUGH THE "OFF" POSITION, OR THE DDC THE "OFF" POSITION, OR THE DDC THE "OFF" POSITION, OR THE DDC "OFF" POSITION, OR THE DDC "OFF" POSITION, OR THE DDC POSITION, OR THE DDC POSITION, OR THE DDC OR THE DDC OR THE DDC THE DDC THE DDC DDC DDC INITIATES A STOP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE A STOP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE A STOP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE STOP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE STOP SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE SIGNAL WITH THE H-O-A IN THE "AUTO" POSITION, THE WITH THE H-O-A IN THE "AUTO" POSITION, THE WITH THE H-O-A IN THE "AUTO" POSITION, THE THE H-O-A IN THE "AUTO" POSITION, THE THE H-O-A IN THE "AUTO" POSITION, THE H-O-A IN THE "AUTO" POSITION, THE H-O-A IN THE "AUTO" POSITION, THE IN THE "AUTO" POSITION, THE IN THE "AUTO" POSITION, THE THE "AUTO" POSITION, THE THE "AUTO" POSITION, THE "AUTO" POSITION, THE "AUTO" POSITION, THE POSITION, THE POSITION, THE THE THE LEAD” PUMP SHALL STOP. PUMP SHALL STOP. a. PUMPS ARE CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND PUMPS ARE CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND ARE CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND ARE CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND CONSTANT OR VARIABLE FLOW. THE PUMPS HWP-1 AND OR VARIABLE FLOW. THE PUMPS HWP-1 AND OR VARIABLE FLOW. THE PUMPS HWP-1 AND VARIABLE FLOW. THE PUMPS HWP-1 AND VARIABLE FLOW. THE PUMPS HWP-1 AND FLOW. THE PUMPS HWP-1 AND FLOW. THE PUMPS HWP-1 AND THE PUMPS HWP-1 AND THE PUMPS HWP-1 AND PUMPS HWP-1 AND PUMPS HWP-1 AND HWP-1 AND HWP-1 AND AND AND HWP-2 SHALL BE VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY SHALL BE VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY SHALL BE VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY BE VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY BE VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY VARIABLE FLOW TYPE AND WILL WORKS WITH STEADY FLOW TYPE AND WILL WORKS WITH STEADY FLOW TYPE AND WILL WORKS WITH STEADY TYPE AND WILL WORKS WITH STEADY TYPE AND WILL WORKS WITH STEADY AND WILL WORKS WITH STEADY AND WILL WORKS WITH STEADY WILL WORKS WITH STEADY WILL WORKS WITH STEADY WORKS WITH STEADY WORKS WITH STEADY WITH STEADY WITH STEADY STEADY STEADY DIFFERENTIAL PRESSURE. THE SENSOR SHALL INCLUDED BY PUMP PRESSURE. THE SENSOR SHALL INCLUDED BY PUMP PRESSURE. THE SENSOR SHALL INCLUDED BY PUMP THE SENSOR SHALL INCLUDED BY PUMP THE SENSOR SHALL INCLUDED BY PUMP SENSOR SHALL INCLUDED BY PUMP SENSOR SHALL INCLUDED BY PUMP SHALL INCLUDED BY PUMP SHALL INCLUDED BY PUMP INCLUDED BY PUMP INCLUDED BY PUMP BY PUMP BY PUMP PUMP PUMP MANUFACTURER. THE PUMPS DWRP-1 AND DWRP-2 SHALL BE THE PUMPS DWRP-1 AND DWRP-2 SHALL BE THE PUMPS DWRP-1 AND DWRP-2 SHALL BE PUMPS DWRP-1 AND DWRP-2 SHALL BE PUMPS DWRP-1 AND DWRP-2 SHALL BE DWRP-1 AND DWRP-2 SHALL BE DWRP-1 AND DWRP-2 SHALL BE AND DWRP-2 SHALL BE AND DWRP-2 SHALL BE DWRP-2 SHALL BE DWRP-2 SHALL BE SHALL BE SHALL BE BE BE CONSTANT TYPE b. IF THE “LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO IF THE “LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO THE “LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO THE “LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO “LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO LEAD” PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO PUMP FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO FAILS, IT SHALL BE MARKED AS FAILED (ALARM TO IT SHALL BE MARKED AS FAILED (ALARM TO IT SHALL BE MARKED AS FAILED (ALARM TO SHALL BE MARKED AS FAILED (ALARM TO SHALL BE MARKED AS FAILED (ALARM TO BE MARKED AS FAILED (ALARM TO BE MARKED AS FAILED (ALARM TO MARKED AS FAILED (ALARM TO MARKED AS FAILED (ALARM TO AS FAILED (ALARM TO AS FAILED (ALARM TO FAILED (ALARM TO FAILED (ALARM TO (ALARM TO (ALARM TO TO TO THE DDC SYSTEM WORKSTATION COMPUTER) AND THE PUMP IN THE DDC SYSTEM WORKSTATION COMPUTER) AND THE PUMP IN THE DDC SYSTEM WORKSTATION COMPUTER) AND THE PUMP IN THE SYSTEM WORKSTATION COMPUTER) AND THE PUMP IN THE SYSTEM WORKSTATION COMPUTER) AND THE PUMP IN THE WORKSTATION COMPUTER) AND THE PUMP IN THE WORKSTATION COMPUTER) AND THE PUMP IN THE COMPUTER) AND THE PUMP IN THE COMPUTER) AND THE PUMP IN THE AND THE PUMP IN THE AND THE PUMP IN THE THE PUMP IN THE THE PUMP IN THE PUMP IN THE PUMP IN THE IN THE IN THE THE THE LAG” POSITION SHALL START AND ASSUME THE OPERATING POSITION IN POSITION SHALL START AND ASSUME THE OPERATING POSITION IN SHALL START AND ASSUME THE OPERATING POSITION IN SHALL START AND ASSUME THE OPERATING POSITION IN START AND ASSUME THE OPERATING POSITION IN START AND ASSUME THE OPERATING POSITION IN AND ASSUME THE OPERATING POSITION IN AND ASSUME THE OPERATING POSITION IN ASSUME THE OPERATING POSITION IN ASSUME THE OPERATING POSITION IN THE OPERATING POSITION IN THE OPERATING POSITION IN OPERATING POSITION IN OPERATING POSITION IN POSITION IN POSITION IN IN IN THE ROTATION. c. PROOF OF FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE PROOF OF FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE OF FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE OF FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE FLOW SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE SHALL BE INDICATED BY A DIFFERENTIAL PRESSURE BE INDICATED BY A DIFFERENTIAL PRESSURE BE INDICATED BY A DIFFERENTIAL PRESSURE INDICATED BY A DIFFERENTIAL PRESSURE INDICATED BY A DIFFERENTIAL PRESSURE BY A DIFFERENTIAL PRESSURE BY A DIFFERENTIAL PRESSURE A DIFFERENTIAL PRESSURE A DIFFERENTIAL PRESSURE DIFFERENTIAL PRESSURE DIFFERENTIAL PRESSURE PRESSURE PRESSURE SENSOR ACROSS THE PUMP SUCTION AND DISCHARGE. IF THE LEAD ACROSS THE PUMP SUCTION AND DISCHARGE. IF THE LEAD ACROSS THE PUMP SUCTION AND DISCHARGE. IF THE LEAD THE PUMP SUCTION AND DISCHARGE. IF THE LEAD THE PUMP SUCTION AND DISCHARGE. IF THE LEAD PUMP SUCTION AND DISCHARGE. IF THE LEAD PUMP SUCTION AND DISCHARGE. IF THE LEAD SUCTION AND DISCHARGE. IF THE LEAD SUCTION AND DISCHARGE. IF THE LEAD AND DISCHARGE. IF THE LEAD AND DISCHARGE. IF THE LEAD DISCHARGE. IF THE LEAD DISCHARGE. IF THE LEAD IF THE LEAD IF THE LEAD IF THE LEAD THE LEAD THE LEAD LEAD LEAD PUMP FAILS TO START, IT SHALL BE MARKED AS FAILED, THE START FAILS TO START, IT SHALL BE MARKED AS FAILED, THE START FAILS TO START, IT SHALL BE MARKED AS FAILED, THE START TO START, IT SHALL BE MARKED AS FAILED, THE START TO START, IT SHALL BE MARKED AS FAILED, THE START START, IT SHALL BE MARKED AS FAILED, THE START START, IT SHALL BE MARKED AS FAILED, THE START IT SHALL BE MARKED AS FAILED, THE START IT SHALL BE MARKED AS FAILED, THE START SHALL BE MARKED AS FAILED, THE START SHALL BE MARKED AS FAILED, THE START BE MARKED AS FAILED, THE START BE MARKED AS FAILED, THE START MARKED AS FAILED, THE START MARKED AS FAILED, THE START AS FAILED, THE START AS FAILED, THE START FAILED, THE START FAILED, THE START THE START THE START START START COMMAND CANCELED, AND LAG PUMP SHALL BE ISSUED A START CANCELED, AND LAG PUMP SHALL BE ISSUED A START CANCELED, AND LAG PUMP SHALL BE ISSUED A START AND LAG PUMP SHALL BE ISSUED A START AND LAG PUMP SHALL BE ISSUED A START LAG PUMP SHALL BE ISSUED A START LAG PUMP SHALL BE ISSUED A START PUMP SHALL BE ISSUED A START PUMP SHALL BE ISSUED A START SHALL BE ISSUED A START SHALL BE ISSUED A START BE ISSUED A START BE ISSUED A START ISSUED A START ISSUED A START A START A START START START COMMAND. d. AUTOMATIC LEAD/LAG SELECTION IS BASED UPON A MAXIMUM OF ONE AUTOMATIC LEAD/LAG SELECTION IS BASED UPON A MAXIMUM OF ONE LEAD/LAG SELECTION IS BASED UPON A MAXIMUM OF ONE LEAD/LAG SELECTION IS BASED UPON A MAXIMUM OF ONE SELECTION IS BASED UPON A MAXIMUM OF ONE SELECTION IS BASED UPON A MAXIMUM OF ONE IS BASED UPON A MAXIMUM OF ONE IS BASED UPON A MAXIMUM OF ONE BASED UPON A MAXIMUM OF ONE BASED UPON A MAXIMUM OF ONE UPON A MAXIMUM OF ONE UPON A MAXIMUM OF ONE A MAXIMUM OF ONE A MAXIMUM OF ONE MAXIMUM OF ONE MAXIMUM OF ONE OF ONE OF ONE ONE ONE CALENDAR WEEK RUN TIME FOR EACH PUMP. LEAD/LAG SELECTION WEEK RUN TIME FOR EACH PUMP. LEAD/LAG SELECTION WEEK RUN TIME FOR EACH PUMP. LEAD/LAG SELECTION RUN TIME FOR EACH PUMP. LEAD/LAG SELECTION RUN TIME FOR EACH PUMP. LEAD/LAG SELECTION TIME FOR EACH PUMP. LEAD/LAG SELECTION TIME FOR EACH PUMP. LEAD/LAG SELECTION FOR EACH PUMP. LEAD/LAG SELECTION FOR EACH PUMP. LEAD/LAG SELECTION EACH PUMP. LEAD/LAG SELECTION EACH PUMP. LEAD/LAG SELECTION PUMP. LEAD/LAG SELECTION PUMP. LEAD/LAG SELECTION LEAD/LAG SELECTION LEAD/LAG SELECTION LEAD/LAG SELECTION SELECTION SELECTION MAY ALSO BE MADE MANUALLY AT THE DDC WORKSTATION COMPUTER. e. THE DDC SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW THE DDC SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW DDC SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW DDC SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW SHALL MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW MONITOR SYSTEM FLOW THROUGH THE PIPING FLOW SYSTEM FLOW THROUGH THE PIPING FLOW SYSTEM FLOW THROUGH THE PIPING FLOW FLOW THROUGH THE PIPING FLOW FLOW THROUGH THE PIPING FLOW THROUGH THE PIPING FLOW THROUGH THE PIPING FLOW THE PIPING FLOW THE PIPING FLOW PIPING FLOW PIPING FLOW FLOW FLOW METER. CALCULATE LOADS AT FLOW METER FM-3 BY MEASURING THE CALCULATE LOADS AT FLOW METER FM-3 BY MEASURING THE CALCULATE LOADS AT FLOW METER FM-3 BY MEASURING THE CALCULATE LOADS AT FLOW METER FM-3 BY MEASURING THE LOADS AT FLOW METER FM-3 BY MEASURING THE LOADS AT FLOW METER FM-3 BY MEASURING THE AT FLOW METER FM-3 BY MEASURING THE AT FLOW METER FM-3 BY MEASURING THE FLOW METER FM-3 BY MEASURING THE FLOW METER FM-3 BY MEASURING THE METER FM-3 BY MEASURING THE METER FM-3 BY MEASURING THE FM-3 BY MEASURING THE FM-3 BY MEASURING THE BY MEASURING THE BY MEASURING THE MEASURING THE MEASURING THE THE THE HWR FLOW (IN L/S) AND THE SUPPLY AND WATER RETURN FLOW (IN L/S) AND THE SUPPLY AND WATER RETURN FLOW (IN L/S) AND THE SUPPLY AND WATER RETURN (IN L/S) AND THE SUPPLY AND WATER RETURN (IN L/S) AND THE SUPPLY AND WATER RETURN L/S) AND THE SUPPLY AND WATER RETURN L/S) AND THE SUPPLY AND WATER RETURN AND THE SUPPLY AND WATER RETURN AND THE SUPPLY AND WATER RETURN THE SUPPLY AND WATER RETURN THE SUPPLY AND WATER RETURN SUPPLY AND WATER RETURN SUPPLY AND WATER RETURN AND WATER RETURN AND WATER RETURN WATER RETURN WATER RETURN RETURN RETURN TEMPERATURES LOCAL TO THE FLOW METER. THE SYSTEM INFORMATION LOCAL TO THE FLOW METER. THE SYSTEM INFORMATION LOCAL TO THE FLOW METER. THE SYSTEM INFORMATION TO THE FLOW METER. THE SYSTEM INFORMATION TO THE FLOW METER. THE SYSTEM INFORMATION THE FLOW METER. THE SYSTEM INFORMATION THE FLOW METER. THE SYSTEM INFORMATION FLOW METER. THE SYSTEM INFORMATION FLOW METER. THE SYSTEM INFORMATION METER. THE SYSTEM INFORMATION METER. THE SYSTEM INFORMATION THE SYSTEM INFORMATION THE SYSTEM INFORMATION THE SYSTEM INFORMATION SYSTEM INFORMATION SYSTEM INFORMATION INFORMATION INFORMATION (kW) SHALL BE AVAILABLE AT THE DDC SYSTEM WORKSTATION SHALL BE AVAILABLE AT THE DDC SYSTEM WORKSTATION SHALL BE AVAILABLE AT THE DDC SYSTEM WORKSTATION BE AVAILABLE AT THE DDC SYSTEM WORKSTATION BE AVAILABLE AT THE DDC SYSTEM WORKSTATION AVAILABLE AT THE DDC SYSTEM WORKSTATION AVAILABLE AT THE DDC SYSTEM WORKSTATION AT THE DDC SYSTEM WORKSTATION AT THE DDC SYSTEM WORKSTATION THE DDC SYSTEM WORKSTATION THE DDC SYSTEM WORKSTATION DDC SYSTEM WORKSTATION DDC SYSTEM WORKSTATION SYSTEM WORKSTATION SYSTEM WORKSTATION WORKSTATION WORKSTATION COMPUTER.

AutoCAD SHX Text SEQUENZA DI CONTROLLO SISTEMA ACQUA CALDA SANITARIA A. SISTEMA ACQUA CALDA SANITARIA: SISTEMA ACQUA CALDA SANITARIA: 1. DESCRIZIONE: IL SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE DESCRIZIONE: IL SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE IL SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE IL SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE SISTEMA CONSISTE IN UNO SCAMBIATORE A PIASTRE CONSISTE IN UNO SCAMBIATORE A PIASTRE CONSISTE IN UNO SCAMBIATORE A PIASTRE IN UNO SCAMBIATORE A PIASTRE IN UNO SCAMBIATORE A PIASTRE UNO SCAMBIATORE A PIASTRE UNO SCAMBIATORE A PIASTRE SCAMBIATORE A PIASTRE SCAMBIATORE A PIASTRE A PIASTRE A PIASTRE PIASTRE PIASTRE ACQUA CALDA/ACQUA CALDA, SCALDA ACQUA SANITARIA, VALVOLE DI CALDA/ACQUA CALDA, SCALDA ACQUA SANITARIA, VALVOLE DI CALDA/ACQUA CALDA, SCALDA ACQUA SANITARIA, VALVOLE DI CALDA, SCALDA ACQUA SANITARIA, VALVOLE DI CALDA, SCALDA ACQUA SANITARIA, VALVOLE DI SCALDA ACQUA SANITARIA, VALVOLE DI SCALDA ACQUA SANITARIA, VALVOLE DI ACQUA SANITARIA, VALVOLE DI ACQUA SANITARIA, VALVOLE DI SANITARIA, VALVOLE DI SANITARIA, VALVOLE DI VALVOLE DI VALVOLE DI DI DI CONTROLLO, POMPE ACQUA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA POMPE ACQUA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA POMPE ACQUA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA ACQUA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA ACQUA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA CALDA, POMPE DI CIRCOLAZIONE E VALVOLA POMPE DI CIRCOLAZIONE E VALVOLA POMPE DI CIRCOLAZIONE E VALVOLA DI CIRCOLAZIONE E VALVOLA DI CIRCOLAZIONE E VALVOLA CIRCOLAZIONE E VALVOLA CIRCOLAZIONE E VALVOLA E VALVOLA E VALVOLA VALVOLA VALVOLA ELETTRONICA DI MISCELAZIONE. LE POMPE SONO A PORTATA COSTANTE DI MISCELAZIONE. LE POMPE SONO A PORTATA COSTANTE DI MISCELAZIONE. LE POMPE SONO A PORTATA COSTANTE MISCELAZIONE. LE POMPE SONO A PORTATA COSTANTE MISCELAZIONE. LE POMPE SONO A PORTATA COSTANTE LE POMPE SONO A PORTATA COSTANTE LE POMPE SONO A PORTATA COSTANTE POMPE SONO A PORTATA COSTANTE POMPE SONO A PORTATA COSTANTE SONO A PORTATA COSTANTE SONO A PORTATA COSTANTE A PORTATA COSTANTE A PORTATA COSTANTE PORTATA COSTANTE PORTATA COSTANTE COSTANTE COSTANTE CON MOTORE MAGNETICO. IL CONTROLLO PRIMARIO DELLA VALVOLA DI MOTORE MAGNETICO. IL CONTROLLO PRIMARIO DELLA VALVOLA DI MOTORE MAGNETICO. IL CONTROLLO PRIMARIO DELLA VALVOLA DI MAGNETICO. IL CONTROLLO PRIMARIO DELLA VALVOLA DI MAGNETICO. IL CONTROLLO PRIMARIO DELLA VALVOLA DI IL CONTROLLO PRIMARIO DELLA VALVOLA DI IL CONTROLLO PRIMARIO DELLA VALVOLA DI CONTROLLO PRIMARIO DELLA VALVOLA DI CONTROLLO PRIMARIO DELLA VALVOLA DI PRIMARIO DELLA VALVOLA DI PRIMARIO DELLA VALVOLA DI DELLA VALVOLA DI DELLA VALVOLA DI VALVOLA DI VALVOLA DI DI DI MISCELAZIONE ELETTRONICA E' GARANTITO DA UN SISTEMA DI CONTROLLO ELETTRONICA E' GARANTITO DA UN SISTEMA DI CONTROLLO ELETTRONICA E' GARANTITO DA UN SISTEMA DI CONTROLLO E' GARANTITO DA UN SISTEMA DI CONTROLLO E' GARANTITO DA UN SISTEMA DI CONTROLLO GARANTITO DA UN SISTEMA DI CONTROLLO GARANTITO DA UN SISTEMA DI CONTROLLO DA UN SISTEMA DI CONTROLLO DA UN SISTEMA DI CONTROLLO UN SISTEMA DI CONTROLLO UN SISTEMA DI CONTROLLO SISTEMA DI CONTROLLO SISTEMA DI CONTROLLO DI CONTROLLO DI CONTROLLO CONTROLLO CONTROLLO A MICROPROCESSORE INSTALLATO DI FABBRICA SULLA VALVOLA MICROPROCESSORE INSTALLATO DI FABBRICA SULLA VALVOLA MICROPROCESSORE INSTALLATO DI FABBRICA SULLA VALVOLA INSTALLATO DI FABBRICA SULLA VALVOLA INSTALLATO DI FABBRICA SULLA VALVOLA DI FABBRICA SULLA VALVOLA DI FABBRICA SULLA VALVOLA FABBRICA SULLA VALVOLA FABBRICA SULLA VALVOLA SULLA VALVOLA SULLA VALVOLA VALVOLA VALVOLA ELETTRONICA DI MISCELAZIONE. L'AVVIAMENTO DEL SISTEMA SARA' DI MISCELAZIONE. L'AVVIAMENTO DEL SISTEMA SARA' DI MISCELAZIONE. L'AVVIAMENTO DEL SISTEMA SARA' MISCELAZIONE. L'AVVIAMENTO DEL SISTEMA SARA' MISCELAZIONE. L'AVVIAMENTO DEL SISTEMA SARA' L'AVVIAMENTO DEL SISTEMA SARA' L'AVVIAMENTO DEL SISTEMA SARA' DEL SISTEMA SARA' DEL SISTEMA SARA' SISTEMA SARA' SISTEMA SARA' SARA' SARA' EFFETTUATO TRAMITE COMANDO MANUALE O PROGRAMMATO DALLA DALLA TRAMITE COMANDO MANUALE O PROGRAMMATO DALLA DALLA TRAMITE COMANDO MANUALE O PROGRAMMATO DALLA DALLA COMANDO MANUALE O PROGRAMMATO DALLA DALLA COMANDO MANUALE O PROGRAMMATO DALLA DALLA MANUALE O PROGRAMMATO DALLA DALLA MANUALE O PROGRAMMATO DALLA DALLA O PROGRAMMATO DALLA DALLA O PROGRAMMATO DALLA DALLA PROGRAMMATO DALLA DALLA PROGRAMMATO DALLA DALLA DALLA DALLA DALLA DALLA DALLA DALLA POSTAZIONE DEGLI OPERATORI DDC. 2. FORNIRE UN ALGORITMO PER LE POMPE PRIMARIA/STANDBY FORNIRE UN ALGORITMO PER LE POMPE PRIMARIA/STANDBY UN ALGORITMO PER LE POMPE PRIMARIA/STANDBY UN ALGORITMO PER LE POMPE PRIMARIA/STANDBY ALGORITMO PER LE POMPE PRIMARIA/STANDBY ALGORITMO PER LE POMPE PRIMARIA/STANDBY PER LE POMPE PRIMARIA/STANDBY PER LE POMPE PRIMARIA/STANDBY LE POMPE PRIMARIA/STANDBY LE POMPE PRIMARIA/STANDBY POMPE PRIMARIA/STANDBY POMPE PRIMARIA/STANDBY PRIMARIA/STANDBY PRIMARIA/STANDBY (PRINCIPALE/IN ATTESA) E INTERBLOCCHI AGGIUNTIVI.. 3. CONTROLLO DELLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO CONTROLLO DELLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO DELLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO DELLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO SCAMBIATORE DI CALORE (PHEX): IL CONTROLLO DI CALORE (PHEX): IL CONTROLLO DI CALORE (PHEX): IL CONTROLLO CALORE (PHEX): IL CONTROLLO CALORE (PHEX): IL CONTROLLO (PHEX): IL CONTROLLO (PHEX): IL CONTROLLO IL CONTROLLO IL CONTROLLO CONTROLLO CONTROLLO DELLO STESSO AVVIENE PER MEZZO DI CENTRALINA FORNITA DAL STESSO AVVIENE PER MEZZO DI CENTRALINA FORNITA DAL STESSO AVVIENE PER MEZZO DI CENTRALINA FORNITA DAL AVVIENE PER MEZZO DI CENTRALINA FORNITA DAL AVVIENE PER MEZZO DI CENTRALINA FORNITA DAL PER MEZZO DI CENTRALINA FORNITA DAL PER MEZZO DI CENTRALINA FORNITA DAL MEZZO DI CENTRALINA FORNITA DAL MEZZO DI CENTRALINA FORNITA DAL DI CENTRALINA FORNITA DAL DI CENTRALINA FORNITA DAL CENTRALINA FORNITA DAL CENTRALINA FORNITA DAL FORNITA DAL FORNITA DAL DAL DAL PRODUTTORE. ALLA RICHIESTA DI ACQUA IN RISCALDAMENTO IL PANNELLO ALLA RICHIESTA DI ACQUA IN RISCALDAMENTO IL PANNELLO ALLA RICHIESTA DI ACQUA IN RISCALDAMENTO IL PANNELLO RICHIESTA DI ACQUA IN RISCALDAMENTO IL PANNELLO RICHIESTA DI ACQUA IN RISCALDAMENTO IL PANNELLO DI ACQUA IN RISCALDAMENTO IL PANNELLO DI ACQUA IN RISCALDAMENTO IL PANNELLO ACQUA IN RISCALDAMENTO IL PANNELLO ACQUA IN RISCALDAMENTO IL PANNELLO IN RISCALDAMENTO IL PANNELLO IN RISCALDAMENTO IL PANNELLO RISCALDAMENTO IL PANNELLO RISCALDAMENTO IL PANNELLO IL PANNELLO IL PANNELLO PANNELLO PANNELLO DI CONTROLLO ATTIVA LA POMPA CHE PROCEDE AL PRERISCALDO. IL CONTROLLO ATTIVA LA POMPA CHE PROCEDE AL PRERISCALDO. IL CONTROLLO ATTIVA LA POMPA CHE PROCEDE AL PRERISCALDO. IL ATTIVA LA POMPA CHE PROCEDE AL PRERISCALDO. IL ATTIVA LA POMPA CHE PROCEDE AL PRERISCALDO. IL LA POMPA CHE PROCEDE AL PRERISCALDO. IL LA POMPA CHE PROCEDE AL PRERISCALDO. IL POMPA CHE PROCEDE AL PRERISCALDO. IL POMPA CHE PROCEDE AL PRERISCALDO. IL CHE PROCEDE AL PRERISCALDO. IL CHE PROCEDE AL PRERISCALDO. IL PROCEDE AL PRERISCALDO. IL PROCEDE AL PRERISCALDO. IL AL PRERISCALDO. IL AL PRERISCALDO. IL PRERISCALDO. IL PRERISCALDO. IL IL IL DDC MONITORA SOLA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA MONITORA SOLA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA MONITORA SOLA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA SOLA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA SOLA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA LA TEMPERATURA DI USCITA. LA POMPA PRELEVA TEMPERATURA DI USCITA. LA POMPA PRELEVA TEMPERATURA DI USCITA. LA POMPA PRELEVA DI USCITA. LA POMPA PRELEVA DI USCITA. LA POMPA PRELEVA USCITA. LA POMPA PRELEVA USCITA. LA POMPA PRELEVA LA POMPA PRELEVA LA POMPA PRELEVA POMPA PRELEVA POMPA PRELEVA PRELEVA PRELEVA ACQUA CALDA DALL'ACCUMULO HWG-1. IL SISTEMA PROCEDERA' A CALDA DALL'ACCUMULO HWG-1. IL SISTEMA PROCEDERA' A CALDA DALL'ACCUMULO HWG-1. IL SISTEMA PROCEDERA' A DALL'ACCUMULO HWG-1. IL SISTEMA PROCEDERA' A DALL'ACCUMULO HWG-1. IL SISTEMA PROCEDERA' A HWG-1. IL SISTEMA PROCEDERA' A HWG-1. IL SISTEMA PROCEDERA' A IL SISTEMA PROCEDERA' A IL SISTEMA PROCEDERA' A SISTEMA PROCEDERA' A SISTEMA PROCEDERA' A PROCEDERA' A PROCEDERA' A A A MANTENERE IN TEMPERATURA (45°C) IL BOLLITORE DALLE 6.00 IN TEMPERATURA (45°C) IL BOLLITORE DALLE 6.00 IN TEMPERATURA (45°C) IL BOLLITORE DALLE 6.00 TEMPERATURA (45°C) IL BOLLITORE DALLE 6.00 TEMPERATURA (45°C) IL BOLLITORE DALLE 6.00 (45°C) IL BOLLITORE DALLE 6.00 (45°C) IL BOLLITORE DALLE 6.00 IL BOLLITORE DALLE 6.00 IL BOLLITORE DALLE 6.00 BOLLITORE DALLE 6.00 BOLLITORE DALLE 6.00 DALLE 6.00 DALLE 6.00 6.00 6.00 (MODIFICABILE) FINO ALLE ORE 20.00 (MODIFICABILE). 4. CONTROLLO DEL BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA CONTROLLO DEL BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA DEL BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA DEL BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA BOLLITORE DI ACCUMULO: IL DDC SELEZIONA LA POMPA DI ACCUMULO: IL DDC SELEZIONA LA POMPA DI ACCUMULO: IL DDC SELEZIONA LA POMPA ACCUMULO: IL DDC SELEZIONA LA POMPA ACCUMULO: IL DDC SELEZIONA LA POMPA IL DDC SELEZIONA LA POMPA IL DDC SELEZIONA LA POMPA DDC SELEZIONA LA POMPA DDC SELEZIONA LA POMPA SELEZIONA LA POMPA SELEZIONA LA POMPA LA POMPA LA POMPA POMPA POMPA DA ATTIVARE HWP-1 E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL ATTIVARE HWP-1 E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL ATTIVARE HWP-1 E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL HWP-1 E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL HWP-1 E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL E HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL HWP-2 ED ATTIVA IL COMANDO DI PARTENZA. IL ED ATTIVA IL COMANDO DI PARTENZA. IL ED ATTIVA IL COMANDO DI PARTENZA. IL ATTIVA IL COMANDO DI PARTENZA. IL ATTIVA IL COMANDO DI PARTENZA. IL IL COMANDO DI PARTENZA. IL IL COMANDO DI PARTENZA. IL COMANDO DI PARTENZA. IL COMANDO DI PARTENZA. IL DI PARTENZA. IL DI PARTENZA. IL PARTENZA. IL PARTENZA.

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