The growth of communication users, especially data packets, is increasing while telecommunication network facilities is not yet maximized to accommodate more and more users, especially suburban and rural areas whose population spread is uneven. So that there is a solution with the implementation of LTE900 to increase the coverage and capacity of 4G LTE network. In this final task before the implementation of LTE900, the author retrieves the data before the implementation of LTE900 through U2000 software, then performs a speed test at the site location BKS422MM1_CLEDUGBKSIST as the data before. Based on the data of LTE900 implementation results, coverage has increased. Rsrp value increased from -85dBm to -83dBm at a distance of 0.5Km, and -105dBm to -95dBm at a distance of 1.5 Km. This is influenced by the frequency used in the LTE900 implementation and the tilting design performed. Capacity absorption after LTE900 implementation affected throughput values which increased from 6.03Mbps to 28.1Mbps at 0.5Km and 3.03Mbps to 10.3Mbps at 1.5Km for sector 1, from 6.83Mbps to 31Mbps at 0.5Km and 4.83Mbps to 11.89Mbps at 1.5Km for sector 2, from 6.43Mbps to 30.04Mbps at 0.5Km and 4.23Mbps to 11.61Mbps at 1.5Km for sector 3. Therefore, in this final task it is stated that lte900 implementation runs successfully with increasing throughput and max user can be controlled.