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MAX31850/MAX31851冷端补偿、1-Wire®热电偶至数字 转换器对K、J、N、T、S、R或E型热电偶信号进行冷端补 偿并将其转换成数字量。转换器的温度分辨率为0.25°C, 最高温度读数为+1768°C,最低温度读数为-270°C;热电 偶温度精度为8 LSB (°C),温度范围为-200°C至+700°C。 器件通过1-Wire总线与主机微控制器通信,只需要一根数 据线(及地)。器件可直接由数据线供电“( 寄生供电”),省去 了外部电源。
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MAX31850/MAX31851
冷端补偿、1-Wire
热电偶至数字转换器
概述
MAX31850/MAX31851冷端补偿、1
-
Wire
®
热电偶至数字
转换器对K、J、N、T、S、R或E型热电偶信号进行冷端补
偿并将其转换成数字量。转换器的温度分辨率为0.25
°
C ,
最高温度读数为+1768
°
C,最低温度读数为
-
270
°
C;热电
偶温度精度为8 LSB (
°
C),温度范围为
-
200
°
C至+700
°
C。
器件通过1
-
Wire总线与主机微控制器通信,只需要一根数
据线(及地)。器件可直接由数据线供电(“寄生供电”),省去
了外部电源。
每个器件具有唯一的64位串号,允许多个器件在同一
1
-
Wire总线上工作。因此,很容易利用一个微控制器(主机)
控制分布在较大区域的多个热电偶。
四个位置地址输入,简化了器件与特定位置的映射。
特性
S 冷端补偿
S 14位、0.25°C温度分辨率
S 提供多种热电偶类型:MAX31850支持K、J、N、T和E
型;MAX31851支持S和R型热电偶(见表1)
S 1-Wire接口(只读);可由接口供电(寄生供电模式)
S 检测热电偶对GND或V
DD
短路
S 检测热电偶开路
应用
工业
电器设备
HVAC
医疗
方框图
定购信息在数据资料的最后给出。
1-Wire是Maxim Integrated Products, Inc.的注册商标。
19-6725; Rev 1; 10/13
备有评估板
本文是英文数据资料的译文,文中可能存在翻译上的不准确或错误。如需进一步确认,请在您的设计中参考英文资料。
有关价格、供货及订购信息,请联络Maxim亚洲销售中心:10800 852 1249 (北中国区),10800 152 1249 (南中国区),
或访问Maxim的中文网站:china.maximintegrated.com。
相关型号以及配合该器件使用的推荐产品,请参见:china.maximintegrated.com/MAX31850.related
。
MAX31850
MAX31851
64-BIT ROM
AND
1-Wire PORT
ADC
PARASITE-
POWER
CIRCUIT
C
PP
DQ
V
DD
GND
MEMORY
CONTROL LOGIC
COLD-JUCTION
COMPENSATION
FAULT
DETECTION
REFERENCE
VOLTAGE
POWER-
SUPPLY
SENSE
ADDRESS PIN INPUT
AD0 AD1 AD2 AD3
SCRATCHPAD
S5
S1
S3
T+
T-
S2
S4
MAX31850/MAX31851
冷端补偿、1-Wire
热电偶至数字转换器
2
Maxim Integrated
Supply Voltage Range (V
DD
to GND) .................. -0.3V to +4.0V
All Other Pins
............................................ -0.3V to (V
DD
+ 0.3V)
Continuous Power Dissipation (T
A
= +70NC)
TDFN (derate 16.70mW/NC above +70NC)
........... 1333.30mW
ESD Protection (All Pins, Human Body Model)
...................±2kV
Operating Temperature Range
........................ -40NC to +125NC
Junction Temperature
.....................................................+150NC
Storage Temperature Range
.......................... -65NC to +150NC
Lead Temperature (soldering, 10s)
................................+300NC
Soldering Temperature (reflow)
.....................................+260NC
TDFN
Junction-to-Ambient Thermal Resistance (B
JA
) ..........60NC/W
Junction-to-Case Thermal Resistance (B
JC
) ...............30NC/W
ABSOLUTE MAXIMUM RATINGS
Note 1: Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer
board. For detailed information on package thermal considerations, refer to china.maximintegrated.com/thermal-tutorial.
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional opera-
tion of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
PACKAGE THERMAL CHARACTERISTICS (Note 1)
DC ELECTRICAL CHARACTERISTICS
(T
A
= -40NC to +125NC, unless otherwise noted.) (Note 2)
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
Supply Voltage V
DD
Local power (Note 3, 4) 3.0 3.3 3.7 V
Pullup Supply Voltage
(Notes 3, 4)
V
PU
Parasite power (Note 3) 3.0 3.7
V
Local power (Note 3) 3.0 V
DD
Input Logic-Low V
IL
(Notes 4, 6) -0.3 +0.8 V
Input Logic-High (Note 4) V
IH
Local power 2.2
lower
of 3.7V
or
(V
DD
+
0.3V)
V
Parasite power 3.0
lower
of 3.7V
or
(V
DD
+
0.3V)
Output Sink Current I
L
V
I/O
= 0.4V (Note 4) 4.0 mA
Standby Supply Current I
DDS
(Notes 7, 8) 280 1000 nA
Active Supply Current I
DD
V
DD
= 3.7V (Note 9) 900 1750
FA
DQ Input Current I
DQ
(Note 10) 5
FA
Power-Supply Rejection -0.3
°C/V
Input Leakage Current (AD0–AD3 Pins) (Note 3) -1 +1
FA
Thermocouple Input Bias Current I
BTC
T
A
= -40°C to +125°C, 100mV across
the thermocouple inputs (Note 3)
-100 +100 nA
MAX31850/MAX31851
冷端补偿、1-Wire
热电偶至数字转换器
3
Maxim Integrated
THERMAL CHARACTERISTICS
(3.0V P V
DD
P 3.6V, T
A
= -40NC to +125NC, unless otherwise noted.) (Note 2)
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
MAX31850K Thermocouple
Temperature Gain and Offset
Error (41.276FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -100NC to +100NC,
T
A
= 0NC to +70NC (Note 12)
-1 +1
NC
T
THERMOCOUPLE
= -200NC to +700NC,
T
A
= -20NC to +85NC (Note 12)
-2 +2
T
THERMOCOUPLE
= +700NC to +1372NC,
T
A
= -20NC to +85NC (Note 12)
-4 +4
T
THERMOCOUPLE
= -270NC to +1372NC,
T
A
= -40NC to +125NC (Note 12)
-6 +6
MAX31850J Thermocouple
Temperature Gain and Offset
Error (57.953FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -100NC to +100NC,
T
A
= 0NC to +70NC (Note 12)
-1 +1
NC
T
THERMOCOUPLE
= -210NC to +750NC,
T
A
= -20NC to +85NC (Note 12)
-2 +2
T
THERMOCOUPLE
= -210NC to +1200NC,
T
A
= -40NC to +125NC (Note 12)
-4 +4
MAX31850N Thermocouple
Temperature Gain and Offset
Error (36.256FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -100NC to +100NC,
T
A
= 0NC to +70NC (Note 12)
-1 +1
NC
T
THERMOCOUPLE
= -200NC to +700NC,
T
A
= -20NC to +85NC (Note 12)
-2 +2
T
THERMOCOUPLE
= +700NC to +1300NC,
T
A
= -20NC to +85NC (Note 12)
-4 +4
T
THERMOCOUPLE
= -270NC to +1300NC,
T
A
= -40NC to +125NC (Note 12)
-6 +6
MAX31850T Thermocouple
Temperature Gain and Offset
Error (52.18FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -100NC to +100NC,
T
A
= 0NC to +70NC (Note 12)
-1 +1
NC
T
THERMOCOUPLE
= -270NC to +400NC,
T
A
= -20NC to +85NC (Note 12)
-2 +2
T
THERMOCOUPLE
= -270NC to +400NC,
T
A
= -40NC to +125NC (Note 12)
-4 +4
MAX31850E Thermocouple
Temperature Gain and Offset
Error (76.373FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -120NC to +100NC,
T
A
= -20NC to +85NC (Note 12)
-1 +1
NC
T
THERMOCOUPLE
= -200NC to +700NC,
T
A
= -20NC to +85NC (Note 12)
-2 +2
T
THERMOCOUPLE
= +700NC to +1000NC,
T
A
= -20NC to +85NC (Note 12)
-4 +4
T
THERMOCOUPLE
= -270NC to +1000NC,
T
A
= -40NC to +125NC (Note 12)
-5 +5
MAX31850/MAX31851
冷端补偿、1-Wire
热电偶至数字转换器
4
Maxim Integrated
MAX31850/MAX31851
Cold-Junction Compensated, 1-Wire
Thermocouple-to-Digital Converters
4Maxim Integrated
THERMAL CHARACTERISTICS (continued)
(3.0V P V
DD
P 3.6V, T
A
= -40NC to +125NC, unless otherwise noted.) (Note 2)
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
MAX31851R Thermocouple
Temperature Gain and Offset
Error (10.506FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -50NC to +100NC,
T
A
= 0NC to +70NC (Note 12)
-2 +2
NC
T
THERMOCOUPLE
= -50NC to +700NC,
T
A
= -20NC to +85NC (Note 12)
-3 +3
T
THERMOCOUPLE
= +700NC to +1768NC,
T
A
= -20NC to +85NC (Note 12)
-5 +5
T
THERMOCOUPLE
= -50NC to +1768NC,
T
A
= -40NC to +125NC (Note 12)
-7 +7
MAX31851S Thermocouple
Temperature Gain and Offset
Error (9.587FV/NC nominal
sensitivity) (Note 11)
T
THERMOCOUPLE
= -50NC to +150NC,
T
A
= 0NC to +70NC (Note 12)
-2 +2
NC
T
THERMOCOUPLE
= -50NC to +700NC,
T
A
= -20NC to +85NC (Note 12)
-3 +3
T
THERMOCOUPLE
= +700NC to +1768NC,
T
A
= -20NC to +85NC (Note 12)
-5 +5
T
THERMOCOUPLE
= -50NC to +1768NC,
T
A
= -40NC to +125NC (Note 12)
-7 +7
Thermocouple Temperature Data
Resolution
0.25 NC
Thermocouple Temperature Data
Long-Term Drift
Hot junction temperature = +400NC ±0.24 NC
Internal Cold-Junction
Temperature Error
T
A
= -40NC to +100NC (Note 13) -2 +2 NC
Cold-Junction Temperature Data
Resolution
T
A
= -40NC to +125NC 0.0625 NC
Temperature Conversion Time
(Thermocouple, Cold Junction,
Fault Detection)
t
CONV
(Note 14) 72 100 ms
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