← 返回 JSSC 论文列表JSSC 2006第7期RF & Wireless90nmPipeline ADC
55-mW 200-MSPS 10-bit Pipeline ADCs for Wireless Receivers
提出一种用于无线接收器的低功耗10位200-MSPS流水线ADC,采用新型放大器共享技术。
10-bit, 200-MSPS, 55 mW, 1.2-V supply, DNL 0.66 LSB, INL 1.00 LSB, SFDR 66.5 dB, SNDR 54.4 dB, ENOB 8.7
ADC低功耗无线接收器流水线放大器共享
▸创新点1:放大器共享技术(方法创新) - 提出一种新型放大器共享架构,通过时间复用技术在多级流水线ADC中共享关键运算放大器,显著降低整体功耗(55 mW@200 MSPS),同时保持10-bit精度(DNL 0.66 LSB/INL 1.00 LSB)。
▸创新点2:动态偏置优化技术(电路创新) - 在共享放大器电路中采用自适应偏置控制策略,根据采样速率动态调整偏置电流,在200 MSPS工作时实现54.4 dB SNDR(8.7 ENOB)的高能效比。
▸创新点3:无线接收器专用ADC架构(系统创新) - 针对无线接收器信号特性优化MDAC结构和时钟分配网络,在1.2V低电压下实现66.5 dB SFDR,有效抑制高频谐波干扰。
▸创新点4:90nm CMOS工艺适配技术(工艺创新) - 通过金属层堆叠(7-metal)和寄生电容补偿设计,在先进工艺节点实现1.8mm×1.4mm的小面积布局,解决深亚微米工艺的匹配性问题。
Abstract
A new power reduction technique for analog-to-dig-
ital converters (ADCs) is proposed in this paper. The power
reduction technique is a kind of amplifier sharing technique and
it is suitable for ADCs in a wireless receiver. A test chip, which
contains two ADCs, is fabricated in 90-nm 1-poly 7-metal CMOS
technology. The 10-bit ADC dissipates 55 mW from 1.2-V supply,
when the ADC operates at 200 mega-samples per second (MSPS).
The 10-bit, 200-MSPS ADCs achieve maximum differential non-
linearity (D