参数资料
型号: MAX6693UP9A+
厂商: Maxim Integrated
文件页数: 13/19页
文件大小: 168K
描述: IC TEMP MONITOR 7CH 20-TSSOP
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 74
功能: 温度监控系统(传感器)
传感器类型: 内部和外部
感应温度: -40°C ~ 125°C,外部传感器
精确度: ±3°C 本地(最大),±4°C 远程(最大)
拓扑: ADC,缓冲器,多路复用器,寄存器库
输出类型: SMBus?
输出警报:
输出风扇:
电源电压: 3 V ~ 3.6 V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 20-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 20-TSSOP
包装: 管件
7-Channel Precision Temperature Monitor
with Beta Compensation
______________________________________________________________________________________   13
tion exists, but the ALERT output reasserts at the end of
the next conversion. The bits indicating the fault for the
OVERT interrupt output clear only on reading the status 2
register even if the fault conditions still exist. Reading the
status 2 register does not clear the OVERT interrupt out-
put. To eliminate the fault condition, either the measured
temperature must drop below the temperature threshold
minus the hysteresis value (4癈), or the trip temperature
must be set at least 4癈 above the current temperature.
Applications Information
Remote-Diode Selection
The MAX6693 directly measures the die temperature of
CPUs and other ICs that have on-chip temperature-
sensing diodes (see the Typical Application Circuit) or
it can measure the temperature of a discrete diode-
connected transistor.
Effect of Ideality Factor
The accuracy of the remote temperature measure-
ments depends on the ideality factor (n) of the remote
diode (actually a transistor). The MAX6693 is opti-
mized for n = 1.006 (channel 1) and n = 1.008 (chan-
nels 26). A thermal diode on the substrate of an IC is
normally a pnp with the base and emitter brought out to
the collector (diode connection) grounded. DXP_ must
be connected to the anode (emitter) and DXN_ must be
connected to the cathode (base) of this pnp. If a sense
transistor with an ideality factor other than 1.006 or
1.008 is used, the output data is different from the data
obtained with the optimum ideality factor. Fortunately,
the difference is predictable. Assume a remote-diode
sensor designed for a nominal ideality factor n
NOMINAL
is used to measure the temperature of a diode with a
different ideality factor n
1
. The measured temperature
T
M
can be corrected using:
BIT
NAME
POR
STATE
FUNCTION
7 (MSB)
STOP
0
Standby-Mode Control Bit. If STOP is set to logic 1, the MAX6693 stops
converting and enters standby mode.
6
POR
0
Reset Bit. Set to logic 1 to put the device into its power-on state. This bit is self-
clearing.
5
TIMEOUT
0
Timeout Enable Bit. Set to logic 0 to enable SMBus timeout.
4
RESERVED
0
Reserved. Must set to 0.
3
Resistance
cancellation
1
Resistance Cancellation Bit. When set to logic 1, the MAX6693 cancels series
resistance in the channel 1 thermal diode.
2
Beta compensation
1
Beta Compensation Bit. When set to logic 1, the MAX6693 compensates for low
beta in the channel 1 thermal sensing transistor.
1
Reserved
0

0
Reserved
0

Table 4. Configuration 1 Register
Table 5. Configuration 2 Register
BIT
NAME
POR
STATE
FUNCTION
7 (MSB)
Reserved
0

6
Mask Local ALERT
0
Local Alert Mask. Set to logic 1 to mask local channel ALERT.
5
Mask ALERT 6
0
Channel 6 Alert Mask. Set to logic 1 to mask channel 6 ALERT.
4
Mask ALERT 5
0
Channel 5 Alert Mask. Set to logic 1 to mask channel 5 ALERT.
3
Mask ALERT 4
0
Channel 4 Alert Mask. Set to logic 1 to mask channel 4 ALERT.
2
Mask ALERT 3
0
Channel 3 Alert Mask. Set to logic 1 to mask channel 3 ALERT.
1
Mask ALERT 2
0
Channel 2 Alert Mask. Set to logic 1 to mask channel 2 ALERT.
0
Mask ALERT 1
0
Channel 1 Alert Mask. Set to logic 1 to mask channel 1 ALERT.
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