A high linearity amplifier designed for 5G applications, supporting higher order modulation methods to meet 5G communication requirements. Higher integration of low-noise amplifiers and filters simplifies the design and debugging of RF front-end circuits, provides more carrier aggregation functions, and reduces the circuit footprint. Transmitter and receiver system, can build a complete RF front-end circuit. SRS can realize a variety of flexible antenna configuration scheme.
Group | Part | Function | Package |
5G Phase 5NmmMB PA | OM9902-11 | 3G/LTE/NR, HB/MB/LB, 4HB/5MB/5LB | LGA 4.0×6.8×0.75mm |
5G Phase 5NmmMB PA | OM9902-25 | 3G/LTE/NR, HB/MB/LB, 4HB/5MB/5LB | LGA 4.0×6.8×0.75mm |
5G Phase 5NmmMB PA | OM9902-26 | 3G/LTE/NR, HB/MB/LB, 4HB/5MB/5LB | LGA 4.0×6.8×0.70mm |
5G Phase 5NmmMB PA | OM9902-15 | 3G/LTE/NR, HB, 4HB | LGA 4.0×6.8×0.75mm |
5G Phase 5NmmMB PA | OM9902-15W | 3G/LTE/NR, HB, 4HB | LGA 4.0×6.8×0.75mm |
5G Phase 5NmmMB PA | OM9902-15L | 3G/LTE/NR, HB, 4HB | LGA 4.0×6.8×0.65mm |
5G Phase 5NmmMB PA | OM9902-31 | 3G/LTE/NR,HB/MB/LB, 4HB/5MB/5LB | LGA 4.0×6.8×0.75mm |
5G L-PAMiF Module | OM9577-11 | 5G L-PAMiF N77/78 1T1R | LGA 5.0×3.0×0.70mm |
5G L-PAMiF Module | OM9576-20 | 5G L-PAMiF N77/78 1T2R | LGA 5.0×3.0×0.75mm |
5G L-PAMiF Module | OM9576-21 | 5G L-PAMiF N77/78 1T2R | LGA 5.0×3.0×0.75mm |
5G L-PAMiF Module | OM9576-22 | 5G L-PAMiF N77/78 1T2R | LGA 5.0×3.0×0.75mm |
5G L-PAMiF Module | OM9576-31 | 5G L-PAMiF N77/78 1T2R | LGA 5.0×3.0×0.70mm |
5G L-FEM | OM1502-11 | 5G L-FEM N77/78 1R | LGA 2.0×1.6×0.75mm |
5G L-FEM | OM1507-20 | 5G L-FEM N77/78 2R | LGA 2.8×2.6×0.71mm |
5G L-FEM | OM1507-21 | 5G L-FEM N77/78 2R | LGA 2.8×2.6×0.65mm |
TX Module | OM8816-62 | QUAD-BAND GSM/GPRS/EDGE Multi-Mode Transmit Module with Fourteen Linear TRx Switch Ports and TDD-LTE | LGA 5.5×5.3×0.74mm |
TX Module | OM8816-51 | QUAD-BAND GSM/GPRS/EDGE Multi-Mode Transmit Module with Fourteen Linear TRx Switch Ports | LGA 5.5×5.3×0.698mm |
TX Module | OM8816-52M | QUAD-BAND GSM/GPRS/EDGE Multi-Mode Transmit Module with Fourteen Linear TRx Switch Ports | LGA 5.5×5.3×0.698mm |
TX Module | OM8820-21 | Tx-Rx Front-End Module for Quad-Band GSM/GPRS/EDGE w/15 Linear TRx Switch Ports–Dual-Band TD-SCDMA, TDD LTE Band 39 | LGA 5.5×5.5×0.72mm |
TX Module | OM8820-31 | Tx-Rx Front-End Module for Quad-Band GSM/GPRS/EDGE w/15 Linear TRx Switch Ports–Dual-Band TD-SCDMA, TDD LTE Band 39 | LGA 5.5×5.5×0.72mm |
TX Module | OM8820-22 | Tx-Rx Front-End Module for Quad-Band GSM/GPRS/EDGE w/15 Linear TRx Switch Ports–Dual-Band TD-SCDMA, TDD LTE Band 39 | LGA 5.5×5.5×0.72mm |
TX Module | OM8828-21 | Tx-Rx Front-End Module for Quad-Band GSM/GPRS/EDGE w/16 Linear TRx Switch Ports–Dual-Band TD-SCDMA, TDD LTE Band 39 | LGA 5.5×5.5×0.72mm |
TX Module | OM8831-51 | Tx-Rx Front-End Module for Quad-Band GSM/GPRS/EDGE/16 Linear TRx Switch Ports | LGA 5.5×5.5×0.686mm |
5G PAMiD | OM9385-11 | Integrated LMHB PAMiD Integrated Band 1, 3, 5 ,8, 34, 39, 40 and 41(38) Filters for Transmit and Receive | LGA 6.5×8.6×0.80mm |
5G PAMiD | OM9385-21 | Integrated LMHB PAMiD Integrated Band 1, 3, 5 ,8, 34, 39, 40 and 41(38) Filters for Transmit and Receive | LGA 6.5×8.6×0.80mm |
5G PAMiD | OM9386-11 | Integrated LMHB PAMiD Integrated Band 1, 3, 5 ,8, 34, 39, 40 and 41(38) Filters for Transmit and Receive | LGA 6.5×8.6×0.80mm |
5G LNA BANK | OM1602-11 | LNA bank for multi-band applications 3x LNA | LGA 2.9×2.9×0.75mm |
5G LNA BANK | OM1603-20 | LNA bank for multi-band applications 5x LNA | LGA 2.9×2.9×0.75mm |
5G LNA BANK | OM1605-11 | LNA bank for multi-band applications 7x LNA | BGA 2.8×2.8×0.62mm |
Band Switch | HS8727 | SPDT Switch, GPIO | DFN 1.1×0.7×0.38mm |
Band Switch | HS8741-21 | SP4T Switch, GPIO | LGA 1.1×1.1×0.54mm |
Band Switch | HS8718-31 | SP8T Switch, GPIO | QFN 2.0×2.0×0.55mm |
Band Switch | OM8719C-06 | SP6T Switch, MIPI | LGA 2.0×2.0×0.75mm |
Band Switch | OM8719C-08 | SP8T Switch, MIPI | LGA 2.0×2.0×0.75mm |
Band Switch | OM8719C-10 | SP10T Switch, MIPI | LGA 2.4×2.4×0.58mm |
Band Switch | OM8719C-12 | SP12T Switch, MIPI | LGA 2.5×2.5×0.75mm |
Band Switch | OM8710C-66 | DP12T Switch, MIPI | LGA 2.4×2.0×0.58mm |
Tuner Switch | HS8775C-16 | 0.1~6.0 GHz SP4T, GPIO, 60V | LGA-10, 1.1×1.5×0.40mm |
Tuner Switch | HS8765U-15 | 0.1~6.0 GHz SP4T, MIPI, 45V | LGA-10, 1.1×1.5×0.40mm |
Tuner Switch | OM8775C-25 | 0.1~5 GHz SP4T, 45V, GPIO | LGA 1.1×1.5×0.40mm |
Tuner Switch | OM8776C-18 | 0.1~2.7 GHz SP4T, 80V, GPIO | LGA 1.5×1.5×0.40mm |
Tuner Switch | OM8775Q-15 | 0.1~6 GHz 4*SPST, 45V, MIPI | LGA 1.1×1.5×0.40mm |
Tuner Switch | OM8775S-15 | 0.1~6 GHz 4*SPST, 45V, MIPI | LGA 1.1×1.5×0.40mm |
Tuner Switch | OM8766Q-18 | 0.1~6 GHz 4*SPST, 80V, MIPI | LGA 1.5×1.5×0.40mm |
Tuner Switch | OM8775Q-18 | 0.1~6 GHz 4*SPST, 80V, MIPI | LGA 1.1×1.5×0.40mm |
Satellite Communication | OM8102-11 | Satellite Communication power amplifier | LGA 4.0×5.0×0.80mm |
Satellite Communication | OM8106-11 | Satellite Communication power amplifier | LGA 5.0×5.0×0.78mm |
Product Advantages:
1) Two sets of integrated and discrete solutions to meet different needs.
2) Compatible with separate 2G PA, compatible with 2G decommissioning area requirements.
3) The integrated solution has a very small RF front-end circuit area.
4) The integrated solution provides rich carrier aggregation combinations.
5) Integrated solution greatly reduces matching debugging.
6) Discrete solution provides high flexibility to adapt to different regional network standards and requirements.
7) Wide variety of SRS switches, low insertion loss, high isolation.