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首页> 外文期刊>IEICE Transactions on Electronics >A Small-Chip-Area Transceiver IC for Bluetooth Featuring a Digital Channel-Selection Filter
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A Small-Chip-Area Transceiver IC for Bluetooth Featuring a Digital Channel-Selection Filter

机译:用于蓝牙的小芯片面积收发器IC,具有数字通道选择滤波器

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摘要

We have proposed a new low-IF transceiver architecture to simultaneously achieve both a small chip area and good minimum input sensitivity. The distinctive point of the receiver architecture is that we replace the complicated high-order analog filter for channel selection with the combination of a simple low-order analog filter and a sharp digital bandpass filter. We also proposed a high-speed convergence AGC (automatic gain controller) and a demodulation block to realize the proposed digital architecture. For the transceiver, we further reduce the chip area by applying a new form of direct modulation for the VCO. Since conventional VCO direct modulation tends to suffer from variation of the modulation index with frequency, we have developed a new compensation technique that minimizes this variation, and designed the low-phase noise VCO with a new biasing method to achieve large PSRR (power-supply rejection ratio) for oscillation frequency. The test chip was fabricated in 0.35-μm BiC-MOS. The chip size was 3 x 3 mm~2; this very small area was realized by the advantages of the proposed transceiver architecture. The transceiver also achieved good minimum input sensitivity of -85 dBm and showed interference performance that satisfied the requirements of the Bluetooth standard.
机译:我们提出了一种新的低中频收发器架构,以同时实现较小的芯片面积和良好的最小输入灵敏度。接收器架构的独特之处在于,我们将简单的低阶模拟滤波器和清晰的数字带通滤波器结合起来,取代了用于通道选择的复杂的高阶模拟滤波器。我们还提出了一种高速收敛AGC(自动增益控制器)和一个解调模块,以实现所提出的数字架构。对于收发器,我们通过对VCO应用新形式的直接调制来进一步减少芯片面积。由于传统的VCO直接调制往往会受到调制指数随频率变化的影响,因此我们开发了一种新的补偿技术来最大程度地减小这种变化,并通过一种新的偏置方法设计了低相位噪声VCO,以实现较大的PSRR(电源)抑制率)。测试芯片是在0.35-μmBiC-MOS中制造的。芯片尺寸为3×3mm〜2;提议的收发器架构的优点实现了这个很小的区域。该收发器还实现了-85 dBm的良好最小输入灵敏度,并表现出满足蓝牙标准要求的干扰性能。

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