Assembling


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Computer Assembling Unit - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Computer is simply a tool for people to use; it is a machine that can solve any problem by accepting data, performing certain operations on that data and presenting result of those operations. Modern age is a computer age. The development of the computer in last couple of years particularly its national and international connectivity has increased its importance not only for professionals or researchers but also for all including housewives. Many of the multinationals are also in Indian Market.However, demand is expected to grow very rapidly and to reach to 25 lakhs numbers by 2004-2005. It is believed that the use of computer as communication will increase the demand for computers and revolutionise the world.??
Plant capacity: 1000 Nos./AnnumPlant & machinery: Rs. 4 Lakhs
Working capital: Rs. 90 LakhsT.C.I: Rs. 112 Lakhs
Return: 37.68%Break even: 39.12%
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Computer Assembling Unit - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Computer is simply a tool for people to use; it is a machine that can solve any problem by accepting data, performing certain operations on that data and presenting result of those operations. Modern age is a computer age. The development of the computer in last couple of years particularly its national and international connectivity has increased its importance not only for professionals or researchers but also for all including housewives. Every year 2 to 3 lakhs computers are being produced in India. Many of the multinationals are also in Indian Market.However, demand is expected to grow very rapidly and to reach to 25 lakhs numbers by 2004-2005. It is believed that the use of computer as communication will increase the demand for computers and revolutionise the world.??
Plant capacity: 1000 Nos./AnnumPlant & machinery: Rs. 4 Lakhs
Working capital: Rs. 90 LakhsT.C.I: Rs. 112 Lakhs
Return: 37.68%Break even: 39.12%
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SOLAR PHOTOVOLTAIC (PV) MODULES ASSEMBLING PLANT (10 MW) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Plant Layout

Photovoltaic (PV) is the field of technology and research related to the application of solar cells for energy by converting sun energy (sunlight, including sun ultra violet radiation) directly into electricity. Due to the growing demand for clean sources of energy, the manufacture of solar cells and photovoltaic arrays has expanded dramatically in recent years. Photovoltaic production has been doubling every 2 years, increasing by an average of 48 percent each year since 2002, making it the worlds fastest-growing energy technology. At the end of 2008, the cumulative global PV installations reached 15,200 megawatts. Roughly 90% of this generating capacity consists of grid-tied electrical systems. Such installations may be ground-mounted (and sometimes integrated with farming and grazing) or built into the roof or walls of a building, known as Building Integrated Photovoltaics or BIPV for short Solar energy is energy transmitted from the sun. But they differ in the ways they capture and use solar energy to produce heat or electricity. Solar electric power systems transform sunlight into electricity. Every minute the sun baths the earth in as much energy as the world consumes in an entire year. An alternative technology consists of concentration solar power (CSP), where the suns energy is at first concentrated by reflective devices such as troughs or mirror panels and then the resulting concentrated heat energy is transferred to a heat-transfer medium, which is used to power a conventional turbine and produce electricity. At present the small size of the plants and the pure solar design for most of them required the existence of public economic support through investment subsidies and a special tariff for the electricity produced.
Plant capacity: 1 No./AnnumPlant & machinery: 1241 Lakhs
Working capital: -T.C.I: Cost of Project : 1778 Lakhs
Return: 60.00%Break even: 60.00%
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LED Light Assembling - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

A light emitting diode (LED) is a device which converts electrical energy in to light. LEDs are preferred light sources for short distance (local area) optical fiber network because they are inexpensive, robust and have long life (the long life of an LED is primarily due to its being a cold device, i.e. its operating temperature being much lower than that of, say, an incandescent lamp), can be modulated (i.e. switched on and off) at high speeds. A light-emitting diode (LED) is a two-lead semiconductor light source. It is a p–n junction diode, which emits light when activated. When a suitable voltage is applied to the leads, electrons are able to recombine with electron holes within the device, releasing energy in the form of photons. This effect is called electroluminescence, and the color of the light (corresponding to the energy of the photon) is determined by the energy band gap of the semiconductor. LEDs primarily offer advances in efficiency, controllability, and life span. The key strength of LED lighting is reduced power consumption. LED’s are available with at the most Lumen efficiency of 110 Lm/Watt compared to 65-80 Lm/Watt of CFL and FTL, 45 Lm/Watt of Mercury vapour and 75 Lm/Watt of metal halide or 94 Lm/Watt of Sodium Vapour. LED tube light could replace for traditional fluorescent tubes in the following places like hotels, hospitals, factories/offices, commercial complexes conference/ meeting rooms, schools/colleges/universities, residential/institution buildings. Thus, due to demand it is a good project for entrepreneurs to invest. Cost Estimation Capacity • LED Bulbs (2.5, 5, 7 & 9 Watt Size): 400 Nos/Day • LED Tubes (20 Watt Size): 40 Nos/Day Plant & Machinery : Rs 8 Lakhs Cost of Project: Rs 24 Lakhs Rate of Return: 26.30 % Break Even Point: 82%
Plant capacity: LED Bulbs (2.5, 5, 7 & 9 Watt Size):400 Nos/Day •LED Tubes (20 Watt Size):40 Nos/DayPlant & machinery: Rs 8 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 65 Lakhs
Return: 27.00%Break even: 63.00%
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LED Light Assembling - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

A light emitting diode (LED) is a device which converts electrical energy in to light. LEDs are preferred light sources for short distance (local area) optical fiber network because they are inexpensive, robust and have long life (the long life of an LED is primarily due to its being a cold device, i.e. its operating temperature being much lower than that of, say, an incandescent lamp), can be modulated (i.e. switched on and off) at high speeds. A light-emitting diode (LED) is a two-lead semiconductor light source. It is a p–n junction diode, which emits light when activated. When a suitable voltage is applied to the leads, electrons are able to recombine with electron holes within the device, releasing energy in the form of photons. This effect is called electroluminescence, and the color of the light (corresponding to the energy of the photon) is determined by the energy band gap of the semiconductor. LEDs primarily offer advances in efficiency, controllability, and life span. The key strength of LED lighting is reduced power consumption. LED’s are available with at the most Lumen efficiency of 110 Lm/Watt compared to 65-80 Lm/Watt of CFL and FTL, 45 Lm/Watt of Mercury vapour and 75 Lm/Watt of metal halide or 94 Lm/Watt of Sodium Vapour. LED tube light could replace for traditional fluorescent tubes in the following places like hotels, hospitals, factories/offices, commercial complexes conference/ meeting rooms, schools/colleges/universities, residential/institution buildings. Thus, due to demand it is a good project for entrepreneurs to invest.
Plant capacity: LED Bulbs (2.5, 5, 7 & 9 Watt Size):400 Nos/Day •LED Tubes (20 Watt Size):40 Nos/DayPlant & machinery: Rs 8 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 65 Lakhs
Return: 27.00%Break even: 63.00%
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Solar Panel Assembling & Solar Power Inverter On Grid, Off Grid with Solar Pump Controller

A solar cell, sometimes called a photovoltaic cell, is a device that converts light energy into electrical energy. Solar panels generate free power from the sun by converting sunlight to electricity with no moving parts, zero emissions, and no maintenance. The solar panel, the first component of a electric solar power system, is a collection of individual silicon cells that generate electricity from sunlight. Multiple solar panels can be wired in parallel to increase current capacity (more power) and wired in series to increase voltage for 24, 48, or even higher voltage systems. India has a huge potential for solar power generation that can lead to a large-scale deployment of solar energy, if harnessed effectively. Indian Government is adopting constructive steps towards implementing large-scale solar power projects and is poised to position itself as one of the world’s major solar producer. Through various incentives schemes, the government is trying to create demand and boost investments in the sector. India's power sector has a total installed capacity of approximately 1,46,753 Megawatt (MW) of which 54% is coal-based, 25% hydro, 8% is renewable’s and the balance is the gas and nuclear-based. Power shortages are estimated at about 11% of total energy and 15% of peak capacity requirements which is likely to increase in the coming years. Around 293 global and domestic companies have committed to generate 266 GW of solar, wind, mini-hydel and biomass-based power in India over the next 5–10 years. The initiative would entail an investment of about US$ 310–350 billion. Thus, due to demand it is a good project for entrepreneurs to invest Few Indian Major Players are as under • Admire Energy Solutions Pvt. Ltd. • Bharat Electronics Ltd. • Bharat Heavy Electricals Ltd. • Central Electronics Ltd. • Clique Developments Ltd. • Epic Energy Ltd. • J S W Green Energy Ltd. • Jaguar International Ltd. • K S K Surya Photovoltaic Venture Ltd. • Minda Nexgen Tech Ltd.
Plant capacity: Poly Crystaline Solar PV Modules (10, 20, 50,100 & 300 Watt): 74,00,000 Nos per annum Solar Inverters (Grid Tie String Inverters 1, 10, 30, 50 & 60 KVA) & (Solar Hydrid Inverters 1, 30, 60, 100 & 120 KVA: 7200 Nos per annum Solar Pump ControllerPlant & machinery: 2162.88 lakhs
Working capital: -T.C.I: Cost of Project: Rs. 21918
Return: 36.00%Break even: 31.00%
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Solar Panel Assembling & Solar Power Inverter on Grid, Off Grid WithSolar Pump Controller - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

A solar cell, sometimes called a photovoltaic cell, is a device that converts light energy into electrical energy.Solar panels generate free power from the sun by converting sunlight to electricity with no moving parts, zero emissions, and no maintenance. Multiple solar panels can be wired in parallel to increase current capacity (more power) and wired in series to increase voltage for 24, 48, or even higher voltage systems. India has a huge potential for solar power generation that can lead to a large-scale deployment of solar energy, if harnessed effectively. Indian Government is adopting constructive steps towards implementing large-scale solar power projects and is poised to position itself as one of the world’s major solar producer. India's power sector has a total installed capacity of approximately 1,46,753 Megawatt (MW) of which 54% is coal-based, 25% hydro, 8% is renewable’s and the balance is the gas and nuclear-based. Power shortages are estimated at about 11% of total energy and 15% of peak capacity requirements which is likely to increase in the coming years. Around 293 global and domestic companies have committed to generate 266 GW of solar, wind, mini-hydel and biomass-based power in India over the next 5–10 years. The initiative would entail an investment of about US$ 310–350 billion.Thus, due to demand it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Admire Energy Solutions Pvt. Ltd. • Bharat Electronics Ltd. • Bharat Heavy Electricals Ltd. • Central Electronics Ltd. • Clique Developments Ltd. • Epic Energy Ltd. • J S W Green Energy Ltd. • Jaguar International Ltd. • K S K Surya Photovoltaic Venture Ltd. • MindaNexgen Tech Ltd.
Plant capacity: Poly Crystaline Solar PV Modules Cap10 Watt: 1,200,000 Nos/Annum Poly Crystaline Solar PV Module Cap. 20 Watt: 600,000 Nos/Annum Poly Crystaline Solar PV Module Cap. 50 Watt:240,000Nos/Annum Poly Crystaline Solar PV Module Cap. 100 Watt: 150,000Nos/AnnumPlant & machinery: Rs 1225 lakhs
Working capital: -T.C.I: Cost of Project: Rs 1674 lakhs
Return: 26.00%Break even: 56.00%
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LED Street Light Assembling

The key strength of LED lighting is reduced power consumption. LED’s are available with at the most Lumen efficiency of 110 Lum/Watt compared to 65-80 Lum/Watt of CFL and FTL, 45 Lum/Watt of Mercury vapour and 75 Lum/Watt of metal halide or 94 Lum/Watt of Sodium Vapour. The operational life of current white LED lamps is 50,000-80,000 burning hours as compared to 5000-10000 hrs of CFL and FLT, 18000 hrs of T5 lamp, 5000 hrs of Mercury vapour, 8000 hrs of Metal halide and 8000 hrs HPSV lamp.While LEDs have the advantage over fluorescent lamps that they do not contain mercury, they may contain other hazardous metals such as lead and arsenic. Lighting in India consumes 18% of overall power whereas in developed countries it is between 10 and 12%. Of the 18%, GLS consumes 65% of lighting.With the use of CFL lamps, upto 80% power used by GSL lamps can be saved. The market size of organized GLS lamps, in India is about 650 mn units, while that for energy efficient CFLs is 52 mn units, thus making penetration of CFL over 9% of GLS.The market size of Indian LED industry may touch Rs 21,600 crore by 2020 on the back of government's decision to switch to LED for all street lamps and public space lighting, an industry official said.As a whole there is a good scope for new entrepreneur to invest in this business. Few Indian Major Players are as under: • Aver Software Technologies Ltd. • Bajaj Electricals Ltd. • Fiem Industries Ltd. • Goldwyn Ltd. • Havells India Ltd. • I QInfotech Ltd. • M I C Electronics Ltd. • Philips India Ltd. • Sanco Industries Ltd.
Plant capacity: :132,000 Pcs/annumPlant & machinery: Rs 18 lakhs
Working capital: -T.C.I: Cost of Project: Rs 129 lakhs
Return: 28.00%Break even: 73.00%
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E-Rickshaw Assembling

Electric Rickshaw, in short, also called as E-Rickshaw. This kind of transport vehicle are famous in many countries, this is eco-friendly vehicles for carrying passengers across the city without fuel. This is the reason these vehicles have become so popular. This e-rickshaw are popular in many countries and has been in use by many. Hundreds of thousands of electric three-wheelers - popularly called e-rickshaws - have been operating in India for over three years now. Big cities in India are currently struggling with pollution and the government is taking strong measure to overcome this by introducing new rules and regulation for diesel vehicle. Near future e-rickshaws are going to be preferable mode of public transportation and it is going to replace fuel operated rickshaws. As we all know that the demand of e-rickshaw is growing rapidly in India and other cities. Even, people in small cities in India are preferring e-rickshaws for travelling. With growing demand, manufacturing companies are planning to meet demand at any cost. E-rickshaw manufacturing companies are contributing for better weather conditions across the country. Passenger carriers held a larger share in the Indian electric rickshaw market in 2017, accounting for more than 95% revenue. They are expected to continue holding a larger market share in the coming years as well, on account of the large passenger base in the country, coupled with the growing demand for low-cost shared mobility. Indian electric rickshaw market is projected to reach 935.5 thousand units by 2023, the market growth is majorly driven by government incentives and environmental policies, and declining battery prices.
Plant capacity: 1,200 Nos per AnnumPlant & machinery: 29 Lakhs
Working capital: -T.C.I: Cost of Project: 324 Lakhs
Return: 24.00%Break even: 56.00%
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E-Rickshaw Assembling

E-Rickshaws are three wheel battery operated vehicles, which are considered as an upgrade to conventional rickshaws, and economically better than auto rickshaws and other fuel variants, these rickshaws, since are battery powered have zero emission, and is often argued to be much better than other rickshaws as they are considered almost pollution free.Such vehicle is constructed or adapted to carry not more than four passengers, excluding the driver, and not more than forty kilograms luggage in total. The Indian automobile industry is one of the largest growing markets of the world, and contributes highly in the country’s manufacturing facilities. Not only this, the automotive industry in India is further expected to pull up the share of manufacturing in India’s GDP to 25% by 2022 from 15% currently, with production of Electric Vehicles being new talk of the town. Entrepreneurs who invest in this project will be successful.
Plant capacity: E Rickshaw: 4 Nos./DayPlant & machinery: Rs. 28 lakhs
Working capital: -T.C.I: Cost of Project: Rs. 323 lakhs
Return: 24.00%Break even: 56.00%
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