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13.3 A SAW-less reconfigurable multimode transmitter with a voltage-mode harmonic-reject mixer in 14nm FinFET CMOS

机译:13.3一个无声表面波的可重配置多模发射器,在14nm FinFET CMOS中具有电压模式谐波抑制混频器

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Multimode cellular RFICs need high dynamic range in order to simultaneously satisfy the high linearity requirements of LTE and the low-noise performance of 2G. Traditionally, SAW filters are employed to relax the noise-linearity trade-off at the cost of higher BOM. In a highly competitive market, mobile devices need to support >35 LTE bands, a number which is expected to rise further in the future, providing a strong motivation for SAW-less transmitter (TX) design. An LTE TX operating in the single resource-block (RB) mode is susceptible to spurious out-of-band (OOB) emission due to the high power spectral density concentrated in narrow bandwidths at frequency offsets as large as 4.5MHz (LTE10) or 9MHz (LTE20) from the carrier [1]. The most challenging condition is for B13 where the 3rd-order counter intermodulation (CIM3) product falls in an adjacent public-safety band. With 23dBm at the antenna, a B13-TX must ensure OOB emission less than −57dBm/6.25kHz in the public safety band.
机译:多模蜂窝RFIC需要高动态范围,以便同时满足LTE的高线性需求和2G的低噪声性能。传统上,锯过滤器用于以更高的BOM成本放宽噪声线性折衷。在一个竞争激烈的市场中,移动设备需要支持> 35 LTE频段,该数字预计将来进一步上升,为锯的发射器(TX)设计提供了强大的动机。在单个资源块(RB)模式下操作的LTE TX易受虚假带外(OOB)发射,由于高功率谱密度集中在频率偏移中的窄带宽,如4.5MHz(LTE10)或来自载体的9MHz(LTE20)[1]。最具挑战性的条件是B13,其中3阶计数器互调(CIM3)产品落入相邻的公共安全带中。在天线上的23dBm,B13-TX必须在公共安全带中确保OOB排放小于-57dBm / 6.25khz。

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