Leading Silicon Mining Company in Syria

We specialize in high-purity silicon mining for electronic chips and solar cells, with a commitment to sustainable practices and international standards.

A close-up view of a green circuit board featuring a prominent black microchip with metallic pins. The microchip has white alphanumeric markings on its surface, and the surrounding area displays various circuit patterns and solder points.
A close-up view of a green circuit board featuring a prominent black microchip with metallic pins. The microchip has white alphanumeric markings on its surface, and the surrounding area displays various circuit patterns and solder points.

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Location Overview

Our mining operations are based in Syria, where we extract high-purity silicon for electronic chips and solar cells.

Syria

Syria, Mining District, Homs

Hours

9 AM - 5 PM

Office Damascus

Gallery

A close-up view of a black microchip or circuit board featuring intricate patterns and textures, with several gold connectors visible on one side.
A close-up view of a black microchip or circuit board featuring intricate patterns and textures, with several gold connectors visible on one side.
A close-up view of a computer processor chip lying on a surface, showing its intricate gold-colored pins and patterns. The focus is on the detailed grid-like design, with slight blurring at the edges.
A close-up view of a computer processor chip lying on a surface, showing its intricate gold-colored pins and patterns. The focus is on the detailed grid-like design, with slight blurring at the edges.
A close-up view of a grid of metallic pins protruding from a black surface, likely part of a computer processor. The pins are uniformly arranged and appear to be gold-plated, reflecting light in a bright contrast against the dark background.
A close-up view of a grid of metallic pins protruding from a black surface, likely part of a computer processor. The pins are uniformly arranged and appear to be gold-plated, reflecting light in a bright contrast against the dark background.
An array of long, parallel rows of solar panels is arranged on a barren, sandy landscape. The panels are aligned neatly, with sunlight reflecting off some of them, creating a shimmering effect. Sparse patches of green are visible between the rows, highlighting the arid environment.
An array of long, parallel rows of solar panels is arranged on a barren, sandy landscape. The panels are aligned neatly, with sunlight reflecting off some of them, creating a shimmering effect. Sparse patches of green are visible between the rows, highlighting the arid environment.
Two small integrated circuits are placed on a textured, dark surface. One of the chips has visible pins along its edges and a blank square in the center, while the other has markings and logos printed on it.
Two small integrated circuits are placed on a textured, dark surface. One of the chips has visible pins along its edges and a blank square in the center, while the other has markings and logos printed on it.
The close-up image features a circuit board with various electronic components, including microchips, capacitors, and resistors. The intricate layout of metallic pathways connects these elements, creating a complex network. The focus on the central chip is prominent, surrounded by a detailed arrangement of smaller components and circular hob-like structures.
The close-up image features a circuit board with various electronic components, including microchips, capacitors, and resistors. The intricate layout of metallic pathways connects these elements, creating a complex network. The focus on the central chip is prominent, surrounded by a detailed arrangement of smaller components and circular hob-like structures.

Explore our mining operations and high-purity silicon production.