參數(shù)資料
型號(hào): MAX31723MUA+
廠(chǎng)商: Maxim Integrated
文件頁(yè)數(shù): 10/15頁(yè)
文件大?。?/td> 761K
描述: IC THERMOMETER/STAT SPI-3W 8UMAX
產(chǎn)品培訓(xùn)模塊: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
標(biāo)準(zhǔn)包裝: 50
功能: 溫度計(jì),恒溫計(jì)
傳感器類(lèi)型: 內(nèi)部
感應(yīng)溫度: -55°C ~ 125°C
精確度: ±2°C(最小值)
拓?fù)洌?/td> 比較器,寄存器庫(kù)
輸出類(lèi)型: 3 線(xiàn)/SPI? 串行
輸出警報(bào):
輸出風(fēng)扇: 無(wú)
電源電壓: 1.7 V ~ 3.7 V
工作溫度: -55°C ~ 125°C
安裝類(lèi)型: 表面貼裝
封裝/外殼: 8-TSSOP,8-MSOP(0.118",3.00mm 寬)
供應(yīng)商設(shè)備封裝: 8-uMAX
包裝: 托盤(pán)
其它名稱(chēng): 90-31723+U00
Digital Thermometers and Thermostats
with SPI/3-Wire Interface
10
In either mode, once TOUT has been deactivated, it is
only reactivated when the measured temperature falls
below the T
LOW
  value. Thus, this interrupt/clear pro-
cess is cyclical between T
HIGH
 and T
LOW
 events (i.e,
T
HIGH
, clear, T
LOW
, clear, T
HIGH
, clear, T
LOW
, clear,
etc.). Figure 6 illustrates the thermostat interrupt mode
operation.
  Programming
The area of interest in programming the devices is the
configuration/status register. All programming is done
through the SPI or 3-wire communication interface by
selecting the appropriate address of the desired register
location. Table 2 illustrates the addresses for the device
registers.
Configuration/Status Register Programming
The configuration/status register is accessed in the
devices with the 00h address for reads and the 80h
address for writes. Data is read from or written to the
configuration/status register MSB first for SPI communi-
cation and LSB first for 3-wire communication. Table 3
illustrates the format of the register, describes the effect
each bit has on device functionality, and provides the
bits factory state.
Table 4 defines the resolution of the digital thermometer,
based on the settings of the R1 and R0 bits. There is a
direct trade-off between resolution and conversion time,
Table 2. Register Address Structure
Table 3. Configuration/Status Register Bit Descriptions
READ
ADDRESS
(HEX)
WRITE
ADDRESS
(HEX)
ACTIVE REGISTER
00
80
Configuration/Status
01
No access
Temperature LSB
02
No access
Temperature MSB
03
83
T
HIGH
 LSB
04
84
T
HIGH
 MSB
05
85
T
LOW
 LSB
06
86
T
LOW
 MSB
BIT 7
BIT 6
BIT 5
BIT 4
BIT 3
BIT 2
BIT 1
BIT 0
0
MEMW
NVB
1SHOT
TM
R1
R0
SD
BIT 7
This bit is always a value of 0.
BIT 6
MEMW: Memory write bit. Power-up state = 0. The user has read/write access to the MEMW bit, which is
stored in the voltage memory.
0 = A write of the configuration/status register is stored in RAM memory.
1 = A write of the configuration/status register is stored in EEPROM.
Note: The status of this bit is ignored if a EEPROM write occurs to the other nonvolatile registers, T
HIGH
 and
T
LOW
. The nonvolatile bits of the configuration/status register are written if a EEPROM write cycle occurs to the
T
HIGH
 and T
LOW
 registers.
BIT 5
NVB: Nonvolatile memory busy flag. Power-up state = 0 and is stored in volatile memory.
0 = Indicates that the nonvolatile memory is not busy.
1 = Indicates there is a write to a EEPROM memory cell in progress.
BIT 4
1SHOT: One-shot temperature conversion bit. Power-up state = 0 and is stored in volatile memory.
0 = Disables 1SHOT mode.
1 = If the SD bit is 1 (continuous temperature conversions are not taking place), a 1 written to the 1SHOT bit
causes the devices to perform one temperature conversion and store the results in the temperature register
at addresses 01h (LSB) and 02h (MSB). The bit clears itself to 0 upon completion of the temperature conver-
sion. The user has read/write access to the 1SHOT bit, although writes to this bit are ignored if the SD bit is a 0
(continuous conversion mode).
BIT 3
TM: Thermostat operating mode. Factory power-up state = 0. The user has read/write access to the TM bit,
which is stored in nonvolatile memory.
0 = The thermostat output is in comparator mode.
1 = The thermostat output is in interrupt mode.
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