BPD1000S3 1000KVA 380V Diesel Generator
SKU: BPD1000S3
- Maximum 1100kVA Standby, 380V, 1500RPM
- 1400 litre tank : 9 Hours runtime @ 75% load
- Built-in AVR delivers non fluctuating power
- 24V Electric Starter
- 6 Cylinders Powerful Diesel Engine
- Three Phase Output
- 1000kVA Prime Silent Diesel Generator
Prime power (PRP) 1000 kVA Standby power (LTP) 1100 kVA Power factor 0.8 φ Frequency 50 Hz Voltage 380 V Engine brand SDEC Engine model 6WTAA35.1-G31 Engine Type 6 Cylinders Prime Power (kW) 882/1500 Standby Power (kW) 970/1500 Air intake type Turbocharged & Intercooler Cooling mode Water cooling Governor mode Electronic Bore x Stroke(mm) 186 x 215 mm Compression ratio 15:1 Rated speed (RPM) 1500 Displacement(L) 35.1 Starter Motor 24v Description Diesel Generator Controller Brand Datakom Controller Model D300-MK2 Remote Monitoring Wifi, Ethernet, GSM* Remote Control Wifi, Ethernet, GSM* Structure Type Silent Noise Level (dBA @ 7m) 78 AVR Constant voltage AVR Excitation Mode Self Excitation Fuel Type Diesel Recommended Oil L-ECD grade or 15W40 ISO9001 Certified Yes CE Certified Yes Alternator Brand DPK Alternator Model DPC404F Rated Current (A) 1671 Amps Per Phase Pole Number 4 Phase Number Three Phase Length 5700 mm Width 2200 mm Height 2520 mm Weight 10530 kgs Tank Capacity 1400 l Cons. @ 50% Load 98 l/h Cons. @ 75% Load 145 l/h Cons. @ 100% Load 189 l/h Model ATS-BPD-1600-3 Poles 4 Phases 3-Ph Rated Current 1600A IP Rating IP54 Brand Fengfan Model 6-QW-240min(800)-R Voltage 12V Quantity 2 Capacity 150Ah Dimensions 513*223*251 mm Type Maintenance Free Pre-Delivery Testing
Filled with oil and coolant, tested under full load.YES Pre-Delivery Inspection (PDI)
Full inspection of the generatorYES User Manuals Books supplied & Digital (Online) 24 Hour Telephonic Support YES Type 6 Cylinders Air intake type Turbocharged & Intercooler Cooling mode Water cooling Governor mode Electronic Bore x Stroke(mm) 186 x 215 mm Compression ratio 15:1 Rated speed(rpm) 1500 Displacement(L) 35.1 Starter Motor 24v Rated power(without fan)(kW) 882/1500 Standby power(without fan)(kW) 970/1500 Fuel consumption(g/kWh) 209.4 Oil capacity including filter(L) 100 Fan consumption(kW) 30kW 27°C air consumption(m³/min) 64.9 m3/min Heat rejection of exhaust(kW) 650°C @ 1,500RPM Exhaust gas flow(m³/min) 162.6 m³/min Current (Ie) 1600 A Poles 4 Phases 3-Ph Brand Aisikai Switch Model No SKT1-1600A/4P/M1 Interlock Mechanism(s) Mechanical & Electrical Switch Positions Mains / Open / Standby Operation Modes Auto & Manual Current (Ie) 1600 A Insulation Voltage (Ui) 1000V Impulse Voltage (Uimp) 12KV Switch Copper (Ue) AC440V Conditional Short-circuit Current 50KA Working Voltage AC220V Length 1520 mm Depth 820 mm Height 1000 mm Weight 156 kg 7.12.2 Requirements for alternative sources of supply
- 7.12.2.1 Where any form of alternative supply (emergency supply, UPS etc.), is connected to an electrical installation, a notice to this effect shall be displayed at the main switch of the installation, and where such supply
a) supplies power only to certain circuits in a distribution board, a power-on indicator (visible or audible) shall be provided on each such distribution board as well as a notice indicating that the standby power main switch shall also be switched off in an emergency,
b) only supplies a part of the electrical installation, the notice shall also be displayed on each distribution board in that part of the installation (see 6.6.1.1(d)).
- 7.12.2.2 The means of excitation and commutation shall be appropriate for the intended use of the generating set and the safety and proper functioning of other sources of supply shall not be impaired by the generating plant.
- 7.12.2.3 The prospective short-circuit current and prospective earth fault current shall be assessed for each source of supply or combination of sources, which can operate independently of other sources or combinations. The short-circuit rating of protective devices within the installation and, where appropriate, connected to the main supply, shall not be exceeded for any of the intended methods of operation of the sources.
- 7.12.2.4 Where the alternative supply is intended to provide a supply to an installation that is not connected to the main supply, or to provide a supply as a switched alternative to the main supply, the capacity and operating characteristics of the alternative supply shall be such that danger or damage to equipment does not arise after the connection or disconnection of any intended load as a result of the deviation of the voltage or frequency from the standard range. Means shall be provided to automatically disconnect such parts of the installation, as may be necessary if the capacity of the alternative supply is exceeded.
- 7.12.2.5 Where an alternative supply is provided to an installation or part of an installation as a switched alternative to the main supply, the change-over switching device shall disconnect the main supply before the alternative supply is switched in. The change-over switching device shall be interlocked in such a way that the main supply and the alternative supply cannot be connected to the installation or part of the installation at the same time.
- 7.12.2.6 Except where otherwise permitted in this part of SANS 10142, where a socket-outlet is installed in a circuit on standby power, such circuit shall be protected by an earth leakage protection device with a rated earth leakage tripping current (rated residual current) I∆n not exceeding 30 mA.
- 7.12.2.7 A 230 V generator with a V-O-V earth connection (centre tap on winding which is earthed), shall not be connected to a fixed electrical installation.
- 7.12.2.1 Where any form of alternative supply (emergency supply, UPS etc.), is connected to an electrical installation, a notice to this effect shall be displayed at the main switch of the installation, and where such supply
ALL ratings are approximate and at SEA LEVEL. Engines need to be de-rated for altitude. A rough guide to de-rate performance is 1% for every 100m above sea level. I.e: A 20kVA at sea level is an 18kVA at 1000m above sea level (10% less) etc.
The generator will not be able to take the full load instantaneously. The load should be added to the generator gradually. 50% initially and then stepped up over time once engine is up to temperature.