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PIC16F688-I/P 参数 Datasheet PDF下载

PIC16F688-I/P图片预览
型号: PIC16F688-I/P
PDF下载: 下载PDF文件 查看货源
内容描述: 14引脚基于闪存的8位CMOS微控制器采用纳瓦技术 [14-Pin Flash-Based, 8-Bit CMOS Microcontrollers with nanoWatt Technology]
分类和应用: 闪存微控制器和处理器外围集成电路光电二极管时钟
文件页数/大小: 174 页 / 2918 K
品牌: MICROCHIP [ MICROCHIP ]
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PIC16F688  
TABLE 14-10: PIC16F688 A/D CONVERTER CHARACTERISTICS:  
Standard Operating Conditions (unless otherwise stated)  
Operating Temperature-40°C TA +125°C  
Param  
No.  
Sym  
NR  
Characteristic  
Min  
Typ†  
Max  
Units  
Conditions  
A01  
Resolution  
10 bits  
bit  
A02  
EABS Total Absolute  
±1  
LSb VREF = 5.0V  
Error*(1)  
A03  
A04  
EIL  
Integral Error  
±1  
±1  
LSb VREF = 5.0V  
EDL  
Differential Error  
LSb No missing codes to 10 bits  
VREF = 5.0V  
A05  
A06  
A07  
A10  
EFS  
Full-scale Range  
2.2*  
5.5*  
±1  
V
EOFF Offset Error  
LSb VREF = 5.0V  
LSb VREF = 5.0V  
EGN  
Gain Error  
guaranteed(2)  
±1  
Monotonicity  
V
VSS VAIN VREF+  
A20  
A20A  
VREF Reference Voltage  
2.2  
2.5  
VDD + 0.3  
Absolute minimum to ensure 10-bit  
accuracy  
A25  
A30  
VAIN Analog Input  
Voltage  
VSS  
VREF  
10  
V
ZAIN Recommended  
Impedance of  
Analog Voltage  
Source  
kΩ  
A50  
IREF  
VREF Input  
Current*(3)  
10  
1000  
10  
µA During VAIN acquisition. Based on  
differential of VHOLD to VAIN.  
µA During A/D conversion cycle.  
*
These parameters are characterized but not tested.  
Data in ‘Typ’ column is at 5.0V, 25°C unless otherwise stated. These parameters are for design guidance  
only and are not tested.  
Note 1: Total Absolute Error includes integral, differential, offset and gain errors.  
2: The A/D conversion result never decreases with an increase in the input voltage and has no missing codes.  
3: VREF current is from external VREF or VDD pin, whichever is selected as reference input.  
4: When A/D is off, it will not consume any current other than leakage current. The power-down current  
_specification includes any such leakage from the A/D module.  
2004 Microchip Technology Inc.  
Preliminary  
DS41203B-page 153