Indonesia 16-Panel Solar Roof Mounting Project

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Indonesia Roof Project Reference

Indonesia 16-Panel Solar Roof Mounting Project

A 16-panel rooftop PV mounting project using a 2 × 8 module layout, four continuous rail lines and adjustable L-foot attachment spacing. The engineering plan documents an 8.4 m rail run across the array.

Indonesia 16-panel rooftop solar mounting project with a 2 × 8 PV module array
Indonesia · 16 Panels 2 × 8 array with four rail lines, an 8.4 m rail run and approximately 1,000 mm adjustable L-foot spacing.
Project Snapshot

2 × 8 Rooftop Mounting Configuration

The engineering plan documents 16 modules arranged in two rows of eight. Four horizontal rail lines support the array, with repeated L-foot attachment points below the rails.

IndonesiaProject country
16PV panels
2 × 8Module layout
8,076 mmArray width shown
8,400 mmRail run: 2 × 4,200 mm
Project-reference note: The current source confirms the Indonesia project identity and the 2 × 8 roof-mounting geometry. It does not state individual module wattage or total kW capacity, so those values are not estimated.
Roof Overview

Four Continuous Rail Lines Across the Array

Wide view of the complete 2 × 8 rooftop PV array and surrounding roof context in Indonesia

Wide project view showing the complete 2 × 8 solar array and roof context.

Documented geometry

  • Modules: 16
  • Layout: 2 × 8
  • Rail lines: 4
  • Rail run: 8,400 mm
  • Array width: 8,076 mm
  • L-foot spacing: ~1,000 mm adjustable
Structural Concept

L-Foot, Rail and Clamp Roof-Mounting Architecture

The drawing identifies adjustable L-foot spacing, indicating a mechanically attached, rail-based roof mounting concept.

Roof / Structural Support L Foot Mounting Rail Mid / End Clamp PV Module Frame

Adjustable L-foot attachment

The plan marks the L-foot distance at approximately 1,000 mm and notes that it is adjustable. Final positions should coordinate with the actual supporting roof structure.

Adjustable L-foot roof attachment detail for the solar mounting rail system

Rail and clamp interface

Four rail lines create the continuous support and alignment interface for the two rows of framed PV modules.

Solar mounting rail and clamp interface securing the framed PV module
Installation Detail

Roof Interface and On-Site Assembly

Roof interface and on-site assembly detail for the solar panel mounting system

Roof interface and on-site assembly detail showing how the mounting system is installed and aligned.

Inputs to confirm for a similar project

  • Roof: actual roofing material and profile
  • Substructure: purlin / rafter position
  • Module: dimensions and clamp zones
  • Rails: span and splice arrangement
  • Loads: project wind / snow basis
  • Waterproofing: attachment sealing detail
Project Takeaways

What This Indonesia Project Shows

A

Array Geometry Drives Rail Planning

The 2 × 8 layout leads directly to four continuous rail support lines. A module or layout revision should trigger a rail-plan review.

B

Attachment Spacing Is Adjustable

The nominal 1,000 mm L-foot spacing is not a decorative module dimension; the drawing explicitly allows adjustment to coordinate the supports with the roof structure.

C

The Whole Load Path Matters

Module clamps, rails, L feet, roof fasteners and the supporting roof structure need to be verified together for the actual project.

Common Questions

About This Indonesia 16-Panel Roof Project

How many modules are shown?

The drawing is labeled “Array 2×8,” corresponding to 16 PV modules.

How long are the rail runs?

The drawing shows “Rail 2×4200=8400,” so each continuous rail run is 8.4 m long.

What L-foot spacing is shown?

The drawing marks approximately 1,000 mm and notes that the spacing is adjustable.

What is the project capacity?

The supplied drawing does not state the wattage of each module, so the total project capacity is not inferred on this page.

Need a Solar Roof Mounting Configuration?

Send the module datasheet, roof profile, structural support spacing, layout, wind and snow requirements, and available roof drawings or photos. We can use them to match the attachment, rail and clamp configuration.

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