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DS1822_V01 PDF预览

DS1822_V01

更新时间: 2022-05-14 22:20:11
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美信 - MAXIM /
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21页 252K
描述
Econo 1-Wire Digital Thermometer

DS1822_V01 数据手册

 浏览型号DS1822_V01的Datasheet PDF文件第1页浏览型号DS1822_V01的Datasheet PDF文件第2页浏览型号DS1822_V01的Datasheet PDF文件第3页浏览型号DS1822_V01的Datasheet PDF文件第5页浏览型号DS1822_V01的Datasheet PDF文件第6页浏览型号DS1822_V01的Datasheet PDF文件第7页 
DS1822  
OPERATION—MEASURING TEMPERATURE  
The core functionality of the DS1822 is its direct-to-digital temperature sensor. The resolution of the  
temperature sensor is user-configurable to 9, 10, 11, or 12 bits, corresponding to increments of 0.5°C,  
0.25°C, 0.125°C, and 0.0625°C, respectively. The default resolution at power-up is 12 bit. The DS1822  
powers-up in a low-power idle state; to initiate a temperature measurement and A-to-D conversion, the  
master must issue a Convert T [44h] command. Following the conversion, the resulting thermal data is  
stored in the 2-byte temperature register in the scratchpad memory and the DS1822 returns to its idle  
state. If the DS1822 is powered by an external supply, the master can issue “read-time slots” (see the 1-  
WIRE BUS SYSTEM section) after the Convert T command and the DS1822 will respond by  
transmitting 0 while the temperature conversion is in progress and 1 when the conversion is done. If the  
DS1822 is powered with parasite power, this notification technique cannot be used since the bus must be  
pulled high by a strong pullup during the entire temperature conversion. The bus requirements for parasite  
power are explained in detail in the POWERING THE DS1822 section of this data sheet.  
The DS1822 output temperature data is calibrated in degrees centigrade; for Fahrenheit applications, a  
lookup table or conversion routine must be used. The temperature data is stored as a 16-bit sign-extended  
two’s complement number in the temperature register (see Figure 2). The sign bits (S) indicate if the  
temperature is positive or negative: for positive numbers S = 0 and for negative numbers S = 1. If the  
DS1822 is configured for 12-bit resolution, all bits in the temperature register will contain valid data. For  
11-bit resolution, bit 0 is undefined. For 10-bit resolution, bits 1 and 0 are undefined, and for 9-bit  
resolution bits 2, 1 and 0 are undefined. Table 2 gives examples of digital output data and the  
corresponding temperature reading for 12-bit resolution conversions.  
TEMPERATURE REGISTER FORMAT Figure 2  
bit 7  
bit 6  
bit 5  
bit 4  
bit 3  
bit 2  
bit 1  
bit 0  
23  
22  
21  
20  
2-1  
2-2  
2-3  
2-4  
LS Byte  
MS Byte  
bit 15  
bit 14  
bit 13  
bit 12  
bit 11  
bit 10  
26  
bit 9  
25  
bit 8  
24  
S
S
S
S
S
TEMPERATURE/DATA RELATIONSHIP Table 2  
TEMPERATURE DIGITAL OUTPUT DIGITAL OUTPUT  
(Binary)  
(Hex)  
07D0h  
0550h  
0191h  
00A2h  
0008h  
0000h  
FFF8h  
FF5Eh  
FE6Fh  
FC90h  
+125°C  
+85°C*  
0000 0111 1101 0000  
0000 0101 0101 0000  
0000 0001 1001 0001  
0000 0000 1010 0010  
0000 0000 0000 1000  
0000 0000 0000 0000  
1111 1111 1111 1000  
1111 1111 0101 1110  
1111 1110 0110 1111  
1111 1100 1001 0000  
+25.0625°C  
+10.125°C  
+0.5°C  
0°C  
-0.5°C  
-10.125°C  
-25.0625°C  
-55°C  
*The power on reset value of the temperature register is +85°C  
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