Residential College | false |
Status | 已發表Published |
0.45-V 5.4-nW switched-capacitor bandgap reference with intermittent operation and improved supply immunity | |
Luo, Z.; Lu, Y.; Martins, R. P. | |
2018-10-01 | |
Source Publication | Electronics Letters |
ISSN | 0013-5194 |
Pages | 1154-1156 |
Abstract | Switched-capacitor networks have been used as bandgap references (BGRs) to replace the area-consuming resistors in ultra-low power applications, incorporated with voltage doubler (2X) charge pumps to operate at low supply voltages. However, the open-loop charge pumps are sensitive to supply and load variations. Therefore, in this work, constant bias currents are added to the cross-coupled 2X charge pumps to reduce the supply sensitivity, and also to reduce the output ripples without using large capacitors. To further reduce the power consumption, a low-leakage sample and hold (S&H) circuit is used for an intermittent operation, the active/idle duty ratio of the BGR core is 1/15. Designed in standard 65 nm CMOS, the proposed BGR reaches a temperature coefficient of 64 ppm/°C consuming only 5.4 nW with a minimum supply of 0.45 V (simulated). |
Keyword | Charge Pump Circuits Cmos Integrated Circuits Low-power Electronics Reference Circuits Sample And Hold Circuits Switched Capacitor Networks Voltage Multipliers |
URL | View the original |
Language | 英語English |
The Source to Article | PB_Publication |
Document Type | Journal article |
Collection | University of Macau |
Corresponding Author | Lu, Y. |
Recommended Citation GB/T 7714 | Luo, Z.,Lu, Y.,Martins, R. P.. 0.45-V 5.4-nW switched-capacitor bandgap reference with intermittent operation and improved supply immunity[J]. Electronics Letters, 2018, 1154-1156. |
APA | Luo, Z.., Lu, Y.., & Martins, R. P. (2018). 0.45-V 5.4-nW switched-capacitor bandgap reference with intermittent operation and improved supply immunity. Electronics Letters, 1154-1156. |
MLA | Luo, Z.,et al."0.45-V 5.4-nW switched-capacitor bandgap reference with intermittent operation and improved supply immunity".Electronics Letters (2018):1154-1156. |
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