--- 产品详情 ---
Sample rate (Max) (MSPS) | 20 |
Resolution (Bits) | 12 |
Number of input channels | 1 |
Interface type | Parallel CMOS, TTL |
Analog input BW (MHz) | 100 |
Features | Low Power |
Rating | Catalog |
Input range (Vp-p) | 4 |
Power consumption (Typ) (mW) | 178 |
Architecture | Pipeline |
SNR (dB) | 70 |
ENOB (Bits) | 11.3 |
SFDR (dB) | 86 |
Operating temperature range (C) | -40 to 85 |
Input buffer | No |
- Internal sample-and-hold
- Outputs 2.35V to 5V compatible
- Pin compatible with ADC12010, ADC12040, ADC12L063 and ADC12L066
- TTL/CMOS compatible input/outputs
- Power down mode
- On-chip reference buffer
Key Specifications
- Resolution 12 Bits
- Conversion Rate 20 MSPS (min)
- DNL ±0.35 LSB (typ)
- ENOB (fIN = 10.1 MHz) 11.3 bits (typ)
- Supply Voltage +5 / ±5 V / %
- Power Consumption, 20 MHz 185 mW (typ)
All trademarks are the property of their respective owners.
The ADC12020 is a monolithic CMOS analog-to-digital converter capable of converting analog input signals into 12-bit digital words at 20 Megasamples per second (MSPS), minimum. This converter uses a differential, pipeline architecture with digital error correction and an on-chip sample-and-hold circuit to minimize die size and power consumption while providing excellent dynamic performance. Operating on a single 5V power supply, this device consumes just 185 mW at 20 MSPS, including the reference current. The Power Down feature reduces power consumption to 40 mW.
The differential inputs provide a full scale input swing equal to 2VREF with the possibility of a single-ended input. Full use of the differential input is recommended for optimum performance. For ease of use, the buffered, high impedance, single-ended reference input is converted on-chip to a differential reference for use by the processing circuitry. Output data format is 12-bit offset binary.
This device is available in the 32-lead LQFP package and will operate over the industrial temperature range of ?40°C to +85°C.
为你推荐
-
TI数字多路复用器和编码器SN54HC1512022-12-23 15:12
-
TI数字多路复用器和编码器SN54LS1532022-12-23 15:12
-
TI数字多路复用器和编码器CD54HC1472022-12-23 15:12
-
TI数字多路复用器和编码器CY74FCT2257T2022-12-23 15:12
-
TI数字多路复用器和编码器SN74LVC257A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74LVC157A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS258A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS257A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS157A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74AHCT1582022-12-23 15:12
-
如何利用运算放大器设计振荡电路?2023-08-09 08:08
-
【PCB设计必备】31条布线技巧2023-08-03 08:09
-
电动汽车直流快充方案设计【含参考设计】2023-08-03 08:08
-
Buck电路的原理及器件选型指南2023-07-31 22:28
-
100W USB PD 3.0电源2023-07-31 22:27
-
千万不要忽略PCB设计中线宽线距的重要性2023-07-31 22:27
-
基于STM32的300W无刷直流电机驱动方案2023-07-06 10:02
-
上新啦!开发板仅需9.9元!2023-06-21 17:43
-
参考设计 | 2KW AC/DC数字电源方案2023-06-21 17:43
-
千万不能小瞧的PCB半孔板2023-06-21 17:34