đđŽđĄ đđĩđŽđŋđ´đ˛đŋđ đļđģ đĻđŧđđđĩ đđŧđŋđ˛đŽ: đđŧđēđŊđŽđ°đ, đđŗđŗđļđ°đļđ˛đģđ, đŽđģđą đđŧđđ-đđŗđŗđ˛đ°đđļđđ˛ đĻđŧđšđđđļđŧđģđ
The South Korea GaN Charger market is expected to grow from USD 41.39 million in 2023 to USD 132.13 million by 2030, with a CAGR of 16.8%. GaN chargers, using Gallium Nitride (GaN) semiconductor technology, are 40% smaller than traditional silicon-based chargers. This size reduction enables faster charging, lower heat generation, and better efficiency. GaN chargers are also portable and cost-effective, as they eliminate the need for large heat sinks or cooling systems.
The South Korea GaN Charger market is expected to grow from USD 41.39 million in 2023 to USD 132.13 million by 2030, with a CAGR of 16.8%. GaN chargers, using Gallium Nitride (GaN) semiconductor technology, are 40% smaller than traditional silicon-based chargers. This size reduction enables faster charging, lower heat generation, and better efficiency. GaN chargers are also portable and cost-effective, as they eliminate the need for large heat sinks or cooling systems.
đđŽđĄ đđĩđŽđŋđ´đ˛đŋđ đļđģ đĻđŧđđđĩ đđŧđŋđ˛đŽ: đđŧđēđŊđŽđ°đ, đđŗđŗđļđ°đļđ˛đģđ, đŽđģđą đđŧđđ-đđŗđŗđ˛đ°đđļđđ˛ đĻđŧđšđđđļđŧđģđ
The South Korea GaN Charger market is expected to grow from USD 41.39 million in 2023 to USD 132.13 million by 2030, with a CAGR of 16.8%. GaN chargers, using Gallium Nitride (GaN) semiconductor technology, are 40% smaller than traditional silicon-based chargers. This size reduction enables faster charging, lower heat generation, and better efficiency. GaN chargers are also portable and cost-effective, as they eliminate the need for large heat sinks or cooling systems.
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