Solar Panel Installation

No two roofs are the same. The pitch, the shade from the tree next door, the direction the house faces and what the family actually uses through the year all change what belongs up there. These are solar arrays we designed and installed across New Jersey, and each one names the panels, the inverter and the size of the system along with the town it is in. Real jobs on real houses, photographed where we had the chance.

319 completed solar projects across 139 New Jersey towns, including 73 with a review written by the customer.

20-panel 6.1 kW solar array in Little Silver, NJ

Solar Panel Installation in Little Silver, NJ | 20 LG Panels and 6.1 kW

Nina from Little Silver, NJ has been a Green Sun Energy Services client since October of 2015. Twenty LG 305-watt panels went on the roof that December – 6.1 kW in all, estimated at 6,587 kWh in the first year – on a QuickMount rail-free system. A twenty-panel array is a modest one, and rail-free hardware is what keeps a modest array from looking like equipment: the panels sit close to the roof plane with no rails showing at the edges.

28-panel 8.4 kW solar array in Hazlet, NJ

Solar Panel Installation in Hazlet, NJ | 28 All-Black LG Panels and 8.4 kW

Gina from Hazlet, NJ has been a Green Sun Energy Services client since March of 2016. Twenty-eight LG 300-watt panels went on the roof that May – 8.4 kW in all, estimated at 10,352 kWh in the first year – on a QuickMount rail-free system. All-black modules on a low-profile mount, and six weeks from booking to a working array.

34-panel 14.62 kW solar array in Middletown, NJ

Solar Panel Installation in Middletown, NJ | 34 Jinko 430-Watt Panels and 14.62 kW

Gerald from Middletown, NJ has been a Green Sun Energy Services client since August of 2025. Thirty-four Jinko 430-watt panels went on the roof that November – 14.62 kW in all, estimated at 15,327 kWh in the first year – on a Unirac rail system. Rails rather than rail-free hardware: on a large, uninterrupted roof plane the rail run is what holds thirty-four panels in straight, even lines, which matters as much for how the array looks from the ground as for how it is fixed down.

62-panel 14.57 kW solar array in Freehold, NJ

Solar Panel Installation in Freehold, NJ | 62 Canadian Solar Panels and 14.57 kW From 2012

Dominick from Freehold, NJ has been a Green Sun Energy Services client since March of 2012. Sixty-two Canadian Solar 235-watt panels went on the roof that September – 14.57 kW in all, estimated at 16,589 kWh in the first year – on a Zep Solar mounting system. Zep was the rail-less hardware of its day: its clamps engage a groove molded into the panel frame, so panels lock to one another and to the roof anchors with no rails running between them. On an array of sixty-two, that is a great deal of hardware never installed.

29-panel 9.57 kW solar array in Union Beach, NJ

Solar Panel Installation in Union Beach, NJ | 29 Panasonic Panels and 9.57 kW

John from Union Beach, NJ has been a Green Sun Energy Services client since March of 2018. Twenty-nine Panasonic 330-watt panels went on the roof that May – 9.57 kW in all, estimated at 13,013 kWh in the first year – on an Ecolibrium rail-free mounting system. Those are Panasonic HIT panels, the high-efficiency line, and the estimate reflects it: 13,013 kWh from 9.57 kW works out at roughly 1,360 kWh for every kilowatt installed. On a roof with a fixed amount of usable space, that ratio is the whole argument for attending to panel efficiency rather than only to

36-panel 10.44 kW solar array in Belford, NJ

Solar Panel Installation in Belford, NJ | 36 All-Black Hanwha Panels and 10.44 kW

Glenn and Michele from Belford, NJ have been Green Sun Energy Services clients since August of 2017. Thirty-six Hanwha Q.PEAK panels went on the roof that October – 10.44 kW in all, estimated at 11,496 kWh in the first year – on an Ecolibrium rail-free mounting system. These are the all-black version of the panel, black frame and black backsheet, which reads as one dark rectangle from the street rather than a grid of silver lines. On an array of thirty-six panels covering most of a roof slope, that is the difference between a solar installation you notice and one

Solar Panel Installation in Hazlet, NJ

Standby Generator and Solar Panel Installation in Hazlet, NJ | 16 kW in March, 25 Panels in April

Alice and Frank from Hazlet, NJ have been Green Sun Energy Services clients since February of 2018. Two jobs booked together and installed five weeks apart. A 16 kW standby generator: Commissioned in March of 2018, on natural gas, behind a 200-amp transfer switch covering the whole service. The load survey put the house at 1,877 square feet. 8.375 kW of solar: Twenty-five LG 335N1C-A5 panels followed in April, on Ecolibrium mounting with a SolarEdge inverter. The design estimate is 11,049 kWh in the first year. 344 feet of critter guard: Three hundred and forty-four feet is a long run

32-panel 9.6 kW solar array in Tinton Falls, NJ

9.6 kW Solar in Tinton Falls, NJ | 32 LG Panels Across Two Roof Planes

Ryan from Tinton Falls, NJ has been a Green Sun Energy Services client since March of 2015. Thirty-two LG 300-watt panels went up that June and the array was interconnected in July, 9.6 kW estimated at 10,379 kWh in the first year. It is split across two roof planes, 7.2 kW on the larger and 2.4 kW on the smaller, on QuickMount rails. That split is the case microinverters suit: each panel converts on its own, so the two orientations can peak at different times of day without either holding the other back.

35-panel 11.73 kW solar array in Little Egg Harbor, NJ

35 Panels and 11.72 kW in Little Egg Harbor

Jacqueline and Daniel from Little Egg Harbor, NJ have been Green Sun Energy Services clients since September of 2017. The array was completed on 27 October: 35 panels making 11.72 kW, each with its own microinverter, and an estimated 15,071 kilowatt hours in the first year. Atlantic City Electric interconnected it in December. Nine years on, this is among the older arrays on the site and still producing – which is the answer to the question people actually ask about solar, and one only time can give. The existing roof was sound enough to take the array as it stood.

37-panel 9.07 kW solar array in Farmingdale, NJ

Standby Generator Installation and Solar Panel Installation in Farmingdale, NJ | In 2012 and a Generator in 2013

Lon in Farmingdale has been a Green Sun Energy Services client since July of 2012. The array came first and the standby generator followed the next summer. 37 panels in November 2012: Thirty-seven Canadian Solar 245-watt panels, 9.07 kW in total, on Zep Solar mounting with an Enphase M215 microinverter behind each one and a GE production meter. Estimated first-year production is 10,136 kWh and the utility is JCP&L. It was commissioned on 25 November 2012. The panel rating is worth pausing on. Thirty-seven panels to reach nine kilowatts is what 2012 looked like; a 245-watt module was a perfectly

28-panel 9.38 kW solar array in Little Egg Harbor, NJ

Solar Panel Installation in Little Egg Harbor, NJ | 28 Panels and 9.38 kW

Mary from Little Egg Harbor, NJ has been a Green Sun Energy Services client since April of 2019. The array was completed on 31 May: 28 panels making 9.38 kW into a SolarEdge HD Wave inverter with optimizers, 90 feet of critter guard around the perimeter, and an estimated 12,000 kilowatt hours in the first year. Atlantic City Electric interconnected it in August. A structural design was carried out as part of the permit process, which is worth doing properly on a barrier-island street: a roof taking an array of this size in a coastal wind zone has to be

24-panel 5.64 kW solar array in Middletown, NJ

Solar Panel Installation in Middletown, NJ | 24 Panels Producing Since 2011

Michael from Middletown, NJ has been a Green Sun Energy Services client since July of 2011, which makes this the oldest relationship on the site. The array was completed that August: 24 panels making 5.64 kW, each with its own Enphase M215 microinverter, and an estimated 4,880 kilowatt hours in the first year. JCP&L interconnected it in December. Fifteen years is long enough to stop arguing about whether the design works and simply look at what happened: with a microinverter under every panel, nothing that has befallen any one panel in fifteen years has taken the rest of the array

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