参数资料
型号: ADT7481ARMZ-1RL
厂商: ON Semiconductor
文件页数: 15/20页
文件大小: 237K
描述: IC SENSOR TEMP 2CH ALARM 10MSOP
产品变化通告: MFG CHG Notification ADI to ON Semi
标准包装: 3,000
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 ~ 120°C,外部传感器
精确度: ±2.5°C(最小值)
拓扑: ADC,比较器,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 ~ 120°C
安装类型: 表面贴装
封装/外壳: 10-TFSOP,10-MSOP(0.118",3.00mm 宽)
供应商设备封装: 10-MSOP
包装: 带卷 (TR)
其它名称: ADT7481ARMZ-1REEL
ADT7481ARMZ-1REEL-ND
ADT7481
http://onsemi.com
15
When reading data from a register there are two possible
scenarios:
1. If the address pointer register value of the
ADT7481 is unknown or not the desired value, it
is necessary to set it to the correct value before
data can be read from the desired data register.
This is done by performing a write to the
ADT7481 as before, but only the data byte
containing the register read address is sent, as data
is not to be written to the register. This is shown in
Figure 16.
A read operation is then performed consisting of
the serial bus address, R/W
 bit set to 1, followed
by the data byte read from the data register (shown
in Figure 17).
2. If the address pointer register is already at the
desired address, data can be read from the
corresponding data register without first writing to
the address pointer register, and the bus transaction
shown in Figure 16 can be omitted.
NOTES:It is possible to read a data byte from a data register without
first writing to the address pointer register. However, if the
address pointer register is already at the correct value, it is
not possible to write data to a register without writing to the
address pointer register. This is because the first data byte
of a write is always written to the address pointer register.
Remember that some of the ADT7481 registers have
different addresses for read and write operations. The write
address of a register must be written to the address pointer
if data is to be written to that register, but it may not be
possible to read data from that address. The read address
of a register must be written to the address pointer before
data can be read from that register.
ALERT
 Output
Pin 8 can be configured as an ALERT
 output. The ALERT
output goes low whenever an out-of-limit measurement is
detected, or if the remote temperature sensor is open circuit.
It is an open-drain output and requires a pullup. Several
ALERT
 outputs can be wire-ORed together, so that the
common line will go low if one or more of the ALERT
outputs goes low.
The ALERT
 output can be used as an interrupt signal to a
processor, or it may be used as an SMBALERT
. Slave
devices on the SMBus cannot normally signal to the bus
master that they want to talk, but the SMBALERT
 function
allows them to do so.
One or more ALERT
  outputs can be connected to a
common SMBALERT
 line connected to the master. When
the SMBALERT
 line is pulled low by one of the devices, the
following procedure occurs as illustrated in Figure 18.
Figure 18. Use of SMBALERT
ALERT RESPONSE
ADDRESS
MASTER SENDS
ARA AND READ
COMMAND
DEVICE SENDS
ITS ADDRESS
RD
START
ACK
DEVICE
ADDRESS
NO
ACK
STOP
MASTER RECEIVES SMBALERT
1. SMBALERT
 is pulled low.
2. Master initiates a read operation and sends the
alert response address (ARA = 0001 100). This is
a general call address that must not be used as a
specific device address.
3. The device with a low ALERT
 output responds to
the alert response address, and the master reads the
address from the responding device. An LSB of 1
is added because the device address is comprised
of seven bits. The address of the device is now
known and it can be interrogated in the usual way.
4. If more than one device has a low ALERT
 output,
the one with the lowest device address will have
priority, in accordance with normal SMBus
arbitration.
5. Once the ADT7481 has responded to the alert
response address, it will reset its ALERT
 output,
provided that the error condition that caused the
ALERT
 no longer exists. If the SMBALERT
 line
remains low, the master sends the ARA again, and
so on until all devices with low ALERT
 outputs
respond.
Masking the ALERT
 Output
The ALERT
 output can be masked for local, Remote 1,
Remote 2 or all three channels. This is done by setting the
appropriate mask bits in either the Configuration 1 register
(read address = 0x03, write address = 0x09) or in the
consecutive ALERT
 register (address = 0x22)
To mask ALERT
s due to local temperature, set Bit 5 of the
consecutive ALERT
 register to 1. Default = 0.
To mask ALERT
s due to Remote 1 temperature, set Bit 1 of
the Configuration 1 register to 1. Default = 0.
To mask ALERT
s due to Remote 2 temperature, set Bit 0 of
the Configuration 1 register to 1. Default = 0.
To mask ALERT
s due to any channel, set Bit 7 of the
Configuration 1 register to 1. Default = 0.
Low Power Standby Mode
The ADT7481 can be put into low power standby mode
by setting Bit 6 (Mon/STBY bit) of the Configuration 1
register (Read Address 0x03, Write Address 0x09) to 1.
The ADT7481 operates normally when Bit 6 is 0. When
Bit 6 is 1, the ADC is inhibited, and any conversion in
progress is terminated without writing the result to the
corresponding value register.
The SMBus is still enabled in low power standby mode.
Power consumption in this standby mode is reduced to a
typical of 5 mA if there is no SMBus activity, or up to 30 mA
if there are clock and data signals on the bus.
When the device is in standby mode, it is still possible to
initiate a one-shot conversion of both channels by writing to
the one-shot register (Address 0x0F), after which the device
will return to standby. It does not matter what is written to
the one-shot register, all data written to it is ignored. It is also
possible to write new values to the limit register while in
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