File Specifications:1452/1452278-vlt_drivemotor_fcp_106.pdf file (03 Apr 2023)
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Danfoss VLT DriveMotor FCP 106 Control Panel, DC Drives PDF Design Manual (Updated: Monday 3rd of April 2023 05:15:26 AM)
Rating: 4.8 (rated by 31 users)
Compatible devices: VLT MCB 115, VLT HVACDrive, FC 300 Profibus, VLT MSD 510, H1, VLT AutomationDrive EZ FC 321, VLT 6000 HVAC Profibus, VLT AutomationDrive FC 361.
Recommended Documentation:
14, 2.1.4 Control Terminals and Relays 195NA458.12 5 7 1 2 4 3 6 1 Control terminals 2 Relay terminals 3 UDC+, UDC-, Line (L3, L2, L1) 4 PE 5 LCP connector 6 VLT ® PROFIBUS DP MCA 101 7 VLT ® Memory Module MCM 101 Illustration 2.5 Location of Terminals and Relays, MH1 195NA409.12 1 2 3 4 8 5 6 7 1 Control terminals 2 Relay terminals 3 UDC+, UDC-, Line (L3, L2, L1) 4 PE 5 LCP connector 6 VLT ® PROFIBUS DP MCA 101 7 VLT ® Memory Module MCM…
4, 3 System Integration 27 3.1 Introduction 27 3.2 Motor-mounted Drive 27 3.3 Mains Supply Interference/Harmonics 28 3.3.1 General Aspects of Harmonics Emission 28 3.3.2 Harmonics Emission Requirements 29 3.3.3 Harmonics Test Results (Emission) 29 3.4 Drive/Options Selections 30 3.4.1 Remote Mounting Kit 30 3.4.2 Local Operation Pad 31 3.5 Special Conditions 31 3.5.1 Purpose of Derating 31 3.5.2 Derating for Ambient Temperatur…
63, Danfoss VLT DriveMotor FCP 106 S Safety...................................................................................................... 7, 8 Shielded cable................................................................................ 19, 22 Short circuit (motor phase-phase)................................................. 32 Smart logic control........................................................................ 44, 45 Smart logic control programming..............…
54, Enclosure MH3 N5K5 N7K5 H7K5 Overload 1) NO HO NO HO Typical shaft output [kW] 5.5 7.5 Typical shaft output [hp] 7.5 10 Maximum cable cross-section in terminals 2) (mains, motor) [mm 2 /AWG] 4/12 4/12 Output current 40 °C (104 °F) ambient temperature Continuous (3x380–440 V) [A] 12 15.5 Intermittent (3x380–440 V) [A] 13.2 19.2 17.1 23.3 Continuous (3x440–480 V) [A] 11 14 Intermittent (3x440–480 V) [A] …
45, be achieved by applying a VLT ® solution in typical applications. 195NA444.10 100 80 60 40 20 0 0 60 0 60 0 60 % % 1 2 3 1 Discharge damper solution - lower energy savings 2 IGV solution - high installation cost 3 VLT ® solution - maximum energy savings Illustration 4.8 Comparative Energy Consumption for Energy Saving Systems, Input Power (%) vs Volume (%) Discharge dampers reduce power consumption somewhat. Inlet guide vans oer a 40% reduction but ar…
41, Danfoss VLT DriveMotor FCP 106 4 Application Examples 4.1 HVAC Application Examples 4.1.1 Star/Delta Starter or Soft Starter not Required When larger motors are started, it is necessary in many countries to use equipment that limits the start-up current. In more traditional systems, a star/delta starter or soft starter is widely used. Such motor starters are not required if a drive is used. As shown in Illustration 4.1, a drive does not consume more than rated current. Full load % Full-load current & speed 50…
27, 130BB956.12 THDv=0% THDv=5% Leakage current Illustration 2.22 Line Distortion Inuences Leakage Current If the leakage current exceeds 3.5 mA, compliance with EN/IEC61800-5-1 (power drive system product standard) requires special care. Reinforce grounding with the following protective ground connection requirements: • Ground wire (terminal 95) of at least 10 mm 2 cross-section. • 2 separate ground…
13, Danfoss VLT DriveMotor FCP 106 2.1.3 Electrical Overview 195NA507.11 L1 L2 L3 PE 3-phase power input +10 V DC 0–10 V DC - 0/4–20 mA 0/4–20 mA 0–10 V DC - 50 (+10 V OUT) 53 (A IN) 54 (A IN) 55 (COM A IN/OUT) 42 0/4–20 mA A OUT/DIG OUT 45 0/4–20 mA A OUT/DIG OUT 12 (+24 V OUT) 18 (DIGI IN) 19 (DIGI IN) 20 (COM D IN) 27 (DIGI IN) 29 (DIGI IN) PROFIBUS MCM 24 V (NPN) 0 V (PNP) 24 V (NPN) 0 V (PNP) 24 V (NPN) 0 V (PNP) 24 V (NPN) 0 V (PNP) Bus ter. RS485 Interface (N RS485) 69 (P…
9, The C-tick regulatory is about conducted and radiated emission. For drives, apply the emission limits specied in EN/IEC 61800-3. A declaration of conformity can be provided on request. 1.5.4 UL Compliance Illustration 1.3 UL Recognized The drive complies with UL 508C thermal memory retention requirements. For more information, refer to chapter 3.5.6 Motor Thermal Protection. 1.5.5 Export Control Regulations D…
62, Extreme running conditions............................................................. 32 F Feedback conversion.......................................................................... 19 Filter Motor cable length.......................................................................... 24 RFI lter................................................................................................ 24 Fuses....…
31, 3.3.2 Harmonics Emission Requirements For equipment connected to the public supply network, compliance with the following standards is required: Standard Equipment type Power size 1) IEC/EN 61000-3-2, class A Professional 3-phase balanced equipment, only up to 1 kW (1.5 hp) total power. 0.55–0.75 kW (0.75–1.0 hp) IEC/EN 61000-3-12, Table 4 Equipment 16–75 A, and professional equipment from 1 kW (1.5 hp) up to 16 A phase current. 1.1–7.5 kW (1.5–10 hp) Table 3.2 Har…
48, Event 1 True (1) Action 1 Select Preset (10) Start command State 0 Stop command Event 4 False (0) Action 4 No Action (1) State 2 State 1 Event 2 On Reference (4) Action 2 Start Timer (29) Event 3 Time Out (30) Action 3 Select Preset ref. (11) 130BA148.12 Illustration 4.13 Set Event and Action 4.4 EC+ Concept for Asynchronous and PM Motors To ensure eective energy savings, system designers take the entire system into account…
46, m 3 /h Distribution Valve regulation Drive control % Hours Power Consump- tion Power Consump- tion A 1 –B 1 [kWh] A 1 –C 1 [kWh] 350 5 438 42.5 18.615 42.5 18.615 300 15 1314 38.5 50.589 29.0 38.106 250 20 1752 35.0 61.320 18.5 32.412 200 20 1752 31.5 55.188 11.5 20.148 150 20 1752 28.0 49.056 6.5 11.388 100 20 1752 23.0 40.296 3.5 6.132 Σ 100 8760 – 275.064 – 26.801 Table 4.2 Pump Performance 4.3 Control Examples 4.3.1 Improved Control Using a drive to control…
59, Enclosure size Power 1) [kW] 3x380–480 V Fuse Recommended UL Maximum UL Recommend- ed non-UL Maximum non-UL Type RK5, RK1, J, T, CC RK5 RK1 J T CC gG gG MH1 0.55 (0.75) 6 6 6 6 6 6 10 10 0.75 (1.0) 6 6 6 6 6 6 10 10 1.1 (1.5) 6 10 10 10 10 10 10 10 1.5 (2.0) 6 10 10 10 10 10 10 10 MH2 2.2 (3.0) 6 20 20 20 20 20 16 20 3.0 (4.0) 15 25 25 25 25 25 16 25 4.0 (5.0) 15 30 30 30 30 30 16 32 MH3 5.5 (7.5) 20 30 30 30 30 30 25 32 7.5 (10…
26, • EN 61000-4-5 (IEC 61000-4-5): Surge transients: Simulation of transients brought about, for example, by lightning that strikes near instal- lations. • EN 61000-4-6 (IEC 61000-4-6): RF common mode: Simulation of the eect from radio-transmission equipment joined by connection cables. Basic standard Burst IEC 61000-4-4 Surge IEC 61000-4-5 ESD IEC 61000-4-2 Radiated electro- magnetic eld IEC 61000-4-3 RF common mode voltage IEC…
34, 3.5.2 Derating for Ambient Temperature and Switching Frequency Refer to chapter 6.9 Derating According to Ambient Temperature and Switching Frequency in this manual. 3.5.3 Automatic Adaptations to Ensure Performance The drive constantly checks for critical levels of: • Internal temperature • Load current • High voltage on the DC link • Low motor speeds As a response to a critical level, the drive can adjust the switching frequency and/or change the switching patt…
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