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Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
It's nt just about buying inverters, but u need to know d nature of your LOAD as well as its WATTAGE and understand how dis works. 1. Resistive load: This is a load dat does nt require extra power before running. Just ON and run on a consistent power consumption. e.g. bulbs, laptops, fans, tv, decoder, etc. Example: a 25w energy bulb will still require 25 watts to start off and also run continuously. 2. Reactive load: This is a type of load dat requires twice or thrice its actual power to start off then later stabilizes on a consistent consumption, all other things being equal. e.g. Air conditioner, refrigerator, etc. Example: Air conditioner unit of 1500w will require abt 3000-4500 watts to start off before stabilzing to a consistent consumption of its actual 1500w. 3. Peak or Surge wattage: Max. wattage a load/appliance wl require to start off before settling down to requiring a smaller amount of power for operation (continuous wattage). E.g. a 1500w Air conditioner may have a surge power of 3000w or more to start off. 4. Continuous wattage: This is d wattage required under normal use, i.e. steady wattage running on d inverter at a time as long as it has loads on it and it is on. E.g. If a 25w energy bulb is d only load running consistently for 5hrs on an inverter, then d continuous power consumption is 25w x 5hrs = 125 watts. In summary, whether running restitive or reactive loads, d peak and d continuous power consumption levels drawn by d loads (appliances) should, in total, be lesser than d inverter capabilities. |
It's nt just about buying inverters, but u need to know d nature of your LOAD as well as its WATTAGE and understand how dis works. 1. Resistive load: This is a load dat does nt require extra power before running. Just ON and run on a consistent power consumption. e.g. bulbs, laptops, fans, tv, decoder, etc. Example: a 25w energy bulb will still require 25 watts to start off and also run continuously. 2. Reactive load: This is a type of load dat requires twice or thrice its actual power to start off then later stabilizes on a consistent consumption, all other things being equal. e.g. Air conditioner, refrigerator, etc. Example: Air conditioner unit of 1500w will require abt 3000-4500 watts to start off before stabilzing to a consistent consumption of its actual 1500w. 3. Peak or Surge wattage: Max. wattage a load/appliance wl require to start off before settling down to requiring a smaller amount of power for operation (continuous wattage). E.g. a 1500w Air conditioner may have a surge power of 3000w or more to start off. 4. Continuous wattage: This is d wattage required under normal use, i.e. steady wattage running on d inverter at a time as long as it has loads on it and it is on. E.g. If a 25w energy bulb is d only load running consistently for 5hrs on an inverter, then d continuous power consumption is 25w x 5hrs = 125 watts. In summary, whether running restitive or reactive loads, d peak and d continuous power consumption levels drawn by d loads (appliances) should, in total, be lesser than d inverter capabilities. |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
It's nt just about buying inverters, but u need to know d nature of your LOAD as well as its WATTAGE and understand how dis works. 1. Resistive load: This is a load dat does nt require extra power before running. Just ON and run on a consistent power consumption. e.g. bulbs, laptops, fans, tv, decoder, etc. Example: a 25w energy bulb will still require 25 watts to start off and also run continuously. 2. Reactive load: This is a type of load dat requires twice or thrice its actual power to start off then later stabilizes on a consistent consumption, all other things being equal. e.g. Air conditioner, refrigerator, etc. Example: Air conditioner unit of 1500w will require abt 3000-4500 watts to start off before stabilzing to a consistent consumption of its actual 1500w. 3. Peak or Surge wattage: Max. wattage a load/appliance wl require to start off before settling down to requiring a smaller amount of power for operation (continuous wattage). E.g. a 1500w Air conditioner may have a surge power of 3000w or more to start off. 4. Continuous wattage: This is d wattage required under normal use, i.e. steady wattage running on d inverter at a time as long as it has loads on it and it is on. E.g. If a 25w energy bulb is d only load running consistently for 5hrs on an inverter, then d continuous power consumption is 25w x 5hrs = 125 watts. In summary, whether running restitive or reactive loads, d peak and d continuous power consumption levels drawn by d loads (appliances) should, in total, be lesser than d inverter capabilities. |
It's nt just about buying inverters, but u need to know d nature of your LOAD as well as its WATTAGE and understand how dis works. 1. Resistive load: This is a load dat does nt require extra power before running. Just ON and run on a consistent power consumption. e.g. bulbs, laptops, fans, tv, decoder, etc. Example: a 25w energy bulb will still require 25 watts to start off and also run continuously. 2. Reactive load: This is a type of load dat requires twice or thrice its actual power to start off then later stabilizes on a consistent consumption, all other things being equal. e.g. Air conditioner, refrigerator, etc. Example: Air conditioner unit of 1500w will require abt 3000-4500 watts to start off before stabilzing to a consistent consumption of its actual 1500w. 3. Peak or Surge wattage: Max. wattage a load/appliance wl require to start off before settling down to requiring a smaller amount of power for operation (continuous wattage). E.g. a 1500w Air conditioner may have a surge power of 3000w or more to start off. 4. Continuous wattage: This is d wattage required under normal use, i.e. steady wattage running on d inverter at a time as long as it has loads on it and it is on. E.g. If a 25w energy bulb is d only load running consistently for 5hrs on an inverter, then d continuous power consumption is 25w x 5hrs = 125 watts. In summary, whether running restitive or reactive loads, d peak and d continuous power consumption levels drawn by d loads (appliances) should, in total, be lesser than d inverter capabilities. |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Follow d tech. trend. Don't be left behind!!! |
Happy new week. |
Happy new week. |
Happy new week. |
Happy new week. |
Happy new week. |
Happy new week. |
Happy new week. |
Happy new week. |
1 2 3 4 5 6 7 8 ... 55 56 57 58 59 60 61 62 63 (of 128 pages)