Location: MICHIGAN
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Apache-Seneca Wood Pole Replacement Project
As part of ITC Michigan’s efforts to modernize aging electric transmission infrastructure and improve service reliability, we replaced 76 wood transmission poles with modern steel monopoles along the Apache – Seneca 120,000 volt (120 kV) transmission line running from Apache Substation in Troy to the Seneca Substation in Rochester Hills. The 4.5-mile project began in…
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Amber – Donaldson Creek Transmission Line Rebuild
Portions of the electric transmission grid in Michigan, including the Amber – Donaldson Creek 138,000 volt (138kV) transmission line, were built more than 50 years ago and have experienced minimal investment since that time. As a result, this line has become increasingly unreliable and costly to maintain as growing demand for electricity and outdated infrastructure…
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Barnum Creek-Batavia Rebuild Project
ITC Holdings Corp., through its Michigan Electric Transmission Company, LLC (METC) subsidiary, is upgrading electricity transmission infrastructure in Michigan. METC is rebuilding approximately 23 miles of its Barnum Creek – Batavia 138 kV transmission line, replacing the existing structures with new monopoles designed for higher-rated conductor (wire). Construction began in Q4 2020 and be completed…
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Bard Road – Warren Rebuild Project
ITC Michigan, through its Michigan Electric Transmission Company, LLC (METC) subsidiary, is upgrading electricity transmission infrastructure in Gladwin and Midland Counties. METC will rebuild approximately 20 miles of its Bard Road – Warren 138,000 volt (138 kV) transmission line, replacing the existing structures with new, double-circuit monopoles designed for higher-rated conductor (wire). Pre-construction vegetation work…
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Four Mile – Wealthy Rebuild
ITC Michigan, through its Michigan Electric Transmission Company, LLC (METC) subsidiary, is upgrading electricity transmission infrastructure in Michigan. ITC is rebuilding approximately eight miles of the Four Mile – Wealthy 138,000 volt (138 kV) transmission line, replacing the existing structures with new single-circuit monopoles designed for higher-rated conductor (wire) and optical ground wire (OPGW). OPGW…
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