ANNEX_E_-_ELECTRICAL_Part13.pdf

PDF 854 KB 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 draft request for proposal and pre-solicitation notice seeks comments on draft attachments for an indefinite delivery indefinite quantity multiple award construction contract for design-build construction services in Italy. The scope of work includes design, repair, alteration, renovation, maintenance, and minor construction projects across multiple trades primarily at Aviano Air Base, Italy involving grading, water and sewer lines, painting, roofing, building renovation, new construction, electrical substation construction, structural construction, HVAC systems, refrigeration, fire suppression, fuel pipelines and storage, power and services, asbestos and lead abatement. The base period of performance is one year with four optional one-year extensions. The minimum task order value is $2,500 and maximum is $7,000,000 with an aggregate ceiling of $96,000,000 for all contracts. Comments on the draft attachments are due by April 19, 2019. The anticipated solicitation issuance date is May 2019 with performance primarily in Aviano, Italy.

ANNEX E- ELECTRICAL PART 13

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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
Attachment_5_Past_Performance_Questionnaire_(PPQ)_REV_03.doc DOC document
H2UST0~1.PDF PDF
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)_Part1_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part2_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part13_Part1.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part15_Part2.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part13_Part2.pdf PDF
Attachment_10_ASHE_18-1025_TS__(Seed_project)_Part5.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)_Part10_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)_Part2_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part15_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part11.pdf PDF
Attachment_10_ASHE_18-1025_TS(Seed_project)_Part6_Part8.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part3.pdf PDF
Attachment_10_ASHE_18-1025_TS_(Seed_project)_Part6_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part16_Part3.pdf PDF
Attachment_11_ASHE_18-1025_Drawings_(Seed_project)_Part2_Part4.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_6_Experience_Overview_Sheet.pdf PDF
Attachment_5_Past_Performance_Questionnaire_(PPQ).pdf PDF
Attachment_1_Section_L.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_2_Section_M_20_March.pdf PDF
(draft)_Attachment_11_Construction_Cost_Estimate_Breakdown.xls XLS spreadsheet
(draft)_Attachment_4_Past_Performance_Information_(PPI).pdf PDF
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Text version

PROJECT: ASHE 18-1025

RENOVATE/EXPAND FAC. 939

DESIGN PHASE: 60% Page 8 of 122

BACK-UP PROTECTION

User Initialling/

Description Downstream

Circuit-breaker User

Initialling/ Description

Upstream Circuit-breaker

Back-up [kA]

Switchboard: [B939-MDP] B939-MDP

QF-M Q1 NSX250B

B939

SUPPLY

BREAKER

Q1 NSX400N 36

QF-PFC Q1.1.1 iC60N QF-M Q1 NSX250B 20

DESIGN PHASE: 60% Page 9 of 122

TRIP-UNIT SETTINGS

Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

Switchboard: [Sub#27-MDP] Sub#27-MDP

B939 SUPPLY

BREAKER

NSX400 N MicroL2.3 250 225 x0,9 2,25

2,25 x10

Q1 4 - - -

Switchboard: [B939-MDP] B939-MDP

QF-M NSX250 B MicroL2.2 250 202,5 x0,9 1,01

1,01 x5

Q1 4 2 - -

QF-PFC iC60 N C 40 40 - 0,4 0,4 -

Q1.1.1 3 - - - Embedded AC

QF-FIRE C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.2 1+N - - - Embedded AC 0,03 inst.

QF-TRX C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.3 1+N - - - Embedded AC 0,03 inst.

QF-MDP2 NG125 a C 80 80 - 0,8 0,8 -

Q1.1.4 4 - - - Embedded AC

QF-BR iC60 H C 25 25 - 0,25 0,25 -

Q1.1.5 4 - - -

QF-AHU1 iC60 H C 25 25 - 0,25 0,25 -

Q1.1.6 4 - - -

QF-AHU2 iC60 H C 25 25 - 0,25 0,25 -

Q1.1.7 4 - - -

QF-HP1 NG125 a C 80 80 - 0,8 0,8 -

Q1.1.8 4 - - -

QF-HP2 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.9 1+N - - - Embedded AC 0,03 inst.

QF-HP3 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.10 1+N - - - Embedded AC 0,03 inst.

QF-GATE C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.11 1+N - - - Embedded AC 0,03 inst.

QF-GATE C40N Vigi C 16 16 - 0,16 0,16 -

DESIGN PHASE: 60% Page 10 of 122

Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

Q1.1.12 1+N - - - Embedded AC 0,03 inst.

QF1 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.13 1+N - - - Embedded AC 0,03 inst.

QF2 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.14 1+N - - - Embedded AC 0,03 inst.

QF3 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.15 1+N - - - Embedded AC 0,03 inst.

QF4 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.16 1+N - - - Embedded AC 0,03 inst.

QF5 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.17 1+N - - - Embedded AC 0,03 inst.

QF6 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.18 1+N - - - Embedded AC 0,03 inst.

QF7 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.19 1+N - - - Embedded AC 0,03 inst.

QF8 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.20 1+N - - - Embedded AC 0,03 inst.

QF9 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.21 1+N - - - Embedded AC 0,03 inst.

QF10 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.22 1+N - - - Embedded AC 0,03 inst.

QF11 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.23 1+N - - - Embedded AC 0,03 inst.

QF12 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.24 1+N - - - Embedded AC 0,03 inst.

QF13 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.25 1+N - - - Embedded AC 0,03 inst.

QF14 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.26 1+N - - - Embedded AC 0,03 inst.

QF15 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.27 1+N - - - Embedded AC 0,03 inst.

QF16 C40N Vigi C 16 16 - 0,16 0,16 -

DESIGN PHASE: 60% Page 11 of 122 breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

Q1.1.28 1+N - - - Embedded AC 0,03 inst.

QF17 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.29 1+N - - - Embedded AC 0,03 inst.

QF18 C40N Vigi C 16 16 - 0,16 0,16 -

Q1.1.30 1+N - - - Embedded AC 0,03 inst.

QF19 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.31 1+N - - - Embedded AC 0,03 inst.

QF20 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.32 1+N - - - Embedded AC 0,03 inst.

QF21 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.33 1+N - - - Embedded AC 0,03 inst.

QF22 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.34 1+N - - - Embedded AC 0,03 inst.

QF23 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.35 1+N - - - Embedded AC 0,03 inst.

QF24 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.36 1+N - - - Embedded AC 0,03 inst.

QF25 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.37 1+N - - - Embedded AC 0,03 inst.

QF26 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.38 1+N - - - Embedded AC 0,03 inst.

QF27 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.39 1+N - - - Embedded AC 0,03 inst.

QF28 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.40 1+N - - - Embedded AC 0,03 inst.

QF29 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.41 1+N - - - Embedded AC 0,03 inst.

QF30 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.42 1+N - - - Embedded AC 0,03 inst.

QF31 C40N Vigi C 10 10 - 0,1 0,1 -

Q1.1.43 1+N - - - Embedded AC 0,03 inst.

DESIGN PHASE: 60% Page 12 of 122 breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

Switchboard: [B939-MDP-2] B939-MDP-2

MDP2-MAIN iC60 N C 63 63 - 0,63 0,63 -

Q1 4 - - -

QF.KC1 C40a Vigi C 25 25 - 0,25 0,25 -

Q2.1.1 1+N - - - Embedded AC 0,03 inst.

QF.KC2 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.2 1+N - - - Embedded AC 0,03 inst.

QF.LAU C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.3 1+N - - - Embedded AC 0,03 inst.

QF1 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.4 1+N - - - Embedded AC 0,03 inst.

QF2 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.5 1+N - - - Embedded AC 0,03 inst.

QF3 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.6 1+N - - - Embedded AC 0,03 inst.

QF4 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.7 1+N - - - Embedded AC 0,03 inst.

QF5 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.8 1+N - - - Embedded AC 0,03 inst.

QF6 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.9 1+N - - - Embedded AC 0,03 inst.

QF7 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.10 1+N - - - Embedded AC 0,03 inst.

QF8 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.11 1+N - - - Embedded AC 0,03 inst.

QF9 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.12 1+N - - - Embedded AC 0,03 inst.

QF10 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.13 1+N - - - Embedded AC 0,03 inst.

QF11 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.14 1+N - - - Embedded AC 0,03 inst.

QF12 C40a Vigi C 10 10 - 0,1 0,1 -

DESIGN PHASE: 60% Page 13 of 122 breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

Q2.1.15 1+N - - - Embedded AC 0,03 inst.

QF13 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.16 1+N - - - Embedded AC 0,03 inst.

QF14 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.17 1+N - - - Embedded AC 0,03 inst.

QF15 C40a Vigi C 10 10 - 0,1 0,1 -

Q2.1.18 1+N - - - Embedded AC 0,03 inst.

QF16 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.19 1+N - - - Embedded AC 0,03 inst.

QF17 C40a Vigi C 16 16 - 0,16 0,16 -

Q2.1.20 1+N - - - Embedded AC 0,03 inst.

QF.UPS-IN C40 N C 40 40 - 0,4 0,4 -

Q2.1.21 3+N - - - Embedded AC

QF-UPS1 C40 N C 20 20 - 0,2 0,2 -

Q2.2.1 3+N - - -

QF-UPS2 C40 a C 10 10 - 0,1 0,1 -

Q2.2.2 1+N - - -

QF-UPS3 C40 a C 10 10 - 0,1 0,1 -

Q2.2.3 1+N - - -

QF-UPS4 C40 a C 10 10 - 0,1 0,1 -

Q2.2.4 1+N - - -

QF-UPS5 C40 a C 10 10 - 0,1 0,1 -

Q2.2.5 1+N - - -

Switchboard: [B939-MDP-UPS] B939-MDP-UPS

QF.UPS1 C40 a C 16 16 - 0,16 0,16 -

Q3.1.1 1+N - - -

QF.UPS2 C40 a C 16 16 - 0,16 0,16 -

Q3.1.2 1+N - - -

QF.UPS3 C40 a C 16 16 - 0,16 0,16 -

Q3.1.3 1+N - - -

QF.UPS4 C40 a C 16 16 - 0,16 0,16 -

Q3.1.4 1+N - - -

DESIGN PHASE: 60% Page 14 of 122 breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF.UPS5 C40 a C 10 10 - 0,1 0,1 -

Q3.1.5 1+N - - -

QF.UPS6 C40 a C 10 10 - 0,1 0,1 -

Q3.1.6 1+N - - -

DESIGN PHASE: 60% Page 15 of 122

CALCULATIONS AND VERIFICATIONS

DISTRIBUTION BOARD: [SUB#27-MDP] SUB#27-MDP

LINE: B939 SUPPLY BREAKER

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

101,16 156,78 153,33 152,85 156,78 0,95 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other circuits

K

L1 3F+N+PE uni 1 31 30 -side by

Conductors cross-section [mm2] phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x150 1x 95 1x 95 0,12 0,09 3,33 5,65 0,01 0,01 4

Ib

[A] Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

[kA]

156,78 355 36 35,22 28,01 28,01

Designation

FG7R/Cu

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

B939 SUPPLY

BREAKER

NSX400 N 4 MicroL2.3 250 225 - 2,25 2,25

Q1 4 - - -

PROTECTIONS VERIFICATIONS

Overload Maximum short-circuit Minimum short-circuit Indirect contact

SI - - -

DESIGN PHASE: 60% Page 16 of 122

DISTRIBUTION BOARD: [SUB#27-MDP] SUB#27-MDP

LINE: B939 SUPPLY CABLE

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

101,16 156,78 153,33 152,85 156,78 0,95

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L0.1.1 3F+N+PE uni 61 61 30 1,08 0,8 by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x150 1x 95 1x 95 7,32 5,66 10,65 11,31 0,72 0,73 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

156,78 288,26 35,22 14,86 5,77 5,77

PROTECTIONS VERIFICATIONS

SI SI SI SI

DESIGN PHASE: 60% Page 17 of 122

DISTRIBUTION BOARD: [B939-MDP] B939-MDP

LINE: QF-M

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

101,16 156,78 153,33 152,85 156,78 0,95 1

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-M NSX250 B 4 MicroL2.2 250 202,5 8 1,01 1,01

Q1 4 2 - -

DESIGN PHASE: 60% Page 18 of 122

LINE: QF-PFC

GENERAL FEATURES OF THE LINE

Q [kvar] Ib [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity

15,74 32,49 0 0 0 0,95

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.1 3F+PE uni 5 31 30 -by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 16 1x 16 5,63 0,56 16,27 11,87 0,09 0,83 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

32,49 88 14,86 11,46 4,06

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-PFC iC60 N 3 C 40 40 - 0,4 0,4

Q1.1.1 3 - - - Embedded AC

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 19 of 122

LINE: QF-FIRE

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

0,8 3,86 3,86 0 0 0,9 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.2 F+N+PE uni 35 31 30 -by

10 1 phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 2,5 1x 2,5 1x 2,5 252,0 5,46 262,65 16,77 0,95 1,68 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

3,86 13,95 7,95 0,43 0,27 0,27

FG16R16-0,6/1 kV - Cca-s3,d1,a3/Cu

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-FIRE C40N Vigi 1+N C 10 10 - 0,1 0,1

Q1.1.2 1+N - - - Embedded AC 0,03 inst.

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 20 of 122

LINE: QF-TRX

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

0,4 1,93 1,93 0 0 0,9 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.3 F+N+PE uni 35 31 30 -by

10 1 phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 2,5 1x 2,5 1x 2,5 252,0 5,46 262,65 16,77 0,47 1,2 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

1,93 13,95 7,95 0,43 0,27 0,27

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-TRX C40N Vigi 1+N C 10 10 - 0,1 0,1

Q1.1.3 1+N - - - Embedded AC 0,03 inst.

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 21 of 122

LINE: QF-MDP2

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

23,04 43,47 35,94 31,88 43,47 0,9

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.4 3F+N+PE uni 25 61 30 1,08 0,8 by

2 1 phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 35 1x 35 1x 16 12,86 2,53 23,5 13,83 0,29 1,02 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

43,47 85,07 14,86 8,46 2,89 2,23

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-MDP2 NG125 a 4 C 80 80 - 0,8 0,8

Q1.1.4 4 - - - Embedded AC

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 22 of 122

LINE: QF-BR

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

2,5 4,02 4,02 4,02 4,02 0,9

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.5 3F+N+PE uni 15 31 30 0,8 by

5 1 phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 6 1x 6 1x 6 45,0 2,03 55,65 13,33 0,08 0,82 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

4,02 27,36 14,86 4,03 1,28 1,28

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-BR iC60 H 4 C 25 25 - 0,25 0,25

Q1.1.5 4 - - -

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 23 of 122

LINE: QF-AHU1

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

5 8,05 8,05 8,05 8,05 0,9

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.6 3F+N+PE uni 25 31 30 -by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 6 1x 6 1x 6 75,0 3,38 85,65 14,68 0,29 1,02 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

8,05 27,36 14,86 2,65 0,84 0,84

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-AHU1 iC60 H 4 C 25 25 - 0,25 0,25

Q1.1.6 4 - - -

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 24 of 122

LINE: QF-AHU2

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

4 6,44 6,44 6,44 6,44 0,89

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.7 3F+N+PE uni 25 61 30 1,08 0,8 by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 6 1x 6 1x 6 75,0 3,38 85,65 14,68 0,23 0,97 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

6,44 26,51 14,86 2,65 0,84 0,84

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-AHU2 iC60 H 4 C 25 25 - 0,25 0,25

Q1.1.7 4 - - -

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 25 of 122

LINE: QF-HP1

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

42 67,35 67,35 67,35 67,35 0,9 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.8 3F+N+PE uni 30 31 30 -by

1 1 phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 25 1x 25 1x 16 21,6 3,18 32,25 14,49 0,74 1,47 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

67,35 93,6 14,86 6,53 2,15 1,83

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-HP1 NG125 a 4 C 80 80 - 0,8 0,8

Q1.1.8 4 - - -

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 26 of 122

LINE: QF-HP2

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

1,8 8,69 0 8,69 0 0,9 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.9 F+N+PE uni 10 31 30 -by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 1,5 1x 1,5 1x 1,5 120,0 1,68 130,65 12,99 1,01 1,74 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

8,69 23 7,95 0,85 0,55 0,55

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-HP2 C40N Vigi 1+N C 16 16 - 0,16 0,16

Q1.1.9 1+N - - - Embedded AC 0,03 inst.

PROTECTIONS VERIFICATIONS

DESIGN PHASE: 60% Page 27 of 122

LINE: QF-HP3

GENERAL FEATURES OF THE LINE

P [kW] Ib [A]/Inm [A] IR [A] IS [A] IT [A] cos b Kutilization Kdiversity.

0,15 0,72 0 0 0,72 0,9 1

CABLE

Initialling Ph/N/PE

Distribution

Cable type

Lenght

[m]

Inst.

method

Temp.

[°C] Nr.

supp.

Resis.ty [°K m/W]

Installation depht [m]

Prox.

circuit

Other

L1.1.10 F+N+PE uni 10 31 30 -by phase neutral PE

Rcable

[m] Xcable

[m] Rtot

[m] Xtot

[m] Vcable

Vtot

Vmax

(limit)

1x 1,5 1x 1,5 1x 1,5 120,0 1,68 130,65 12,99 0,08 0,81 4

Iz

[A] Icc max (start of line)

[kA] Icc max (end of line)

[kA] Icc min (end of line)

[kA] Icc (ground fault)

0,72 23 7,95 0,85 0,55 0,55

CIRCUIT-BREAKER

User Circuit-breaker

Poles Tripping characteristics In [A] Ir [A] Tr [s] Im [kA] Isd [kA]

Initialling/

Description Tsd [s] Ii [kA]

Ig

[xIn - A] Tg [s]

Residual current device

Class In [A] Tn

[ms]

QF-HP3 C40N Vigi 1+N C 16 16 - 0,16 0,16

Q1.1.10 1+N - - - Embedded AC 0,03 inst.

PROTECTIONS VERIFICATIONS

File details come from the government source that posted it. Updated .