参数资料
型号: ADM1026JST
厂商: ON Semiconductor
文件页数: 15/55页
文件大小: 0K
描述: IC CNTRL SYS REF/EEPROM 48LQFP
产品变化通告: MFG CHG Notification ADI to ON Semi
Product Obsolescence 30/Sept/2009
标准包装: 250
功能: 硬件监控器
传感器类型: 内部和外部
感应温度: 0°C ~ 100°C
精确度: ±3°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 ~ 5.5 V
工作温度: 0°C ~ 100°C
安装类型: 表面贴装
封装/外壳: 48-LQFP
供应商设备封装: 48-LQFP(7x7)
包装: 管件
ADM1026
ADM1026 Read Operations
The ADM1026 uses the SMBus read protocols described
here.
Receive Byte
In this operation, the master device receives a single byte
from a slave device as follows:
1. The master device asserts a start condition on the
SDA.
2. The master sends the 7-bit slave address followed
by the read bit (high).
3. The addressed slave device asserts an ACK on the
SDA.
4. The master receives a data byte.
ADM1026 always returns 32 data bytes (20h), the
maximum allowed by the SMBus 1.1 specification.
10. The master asserts an ACK on the SDA.
11. The master receives 32 data bytes.
12. The master asserts an ACK on the SDA after each
data byte.
13. The ADM1026 issues a PEC byte to the master.
The master should check the PEC byte and issue
another block read if the PEC byte is incorrect.
14. A NACK is generated after the PEC byte to signal
the end of the read.
15. The master asserts a stop condition on the SDA to
end the transaction.
5. The master asserts a NO ACK on the SDA.
6. The master asserts a stop condition on the SDA to
end the transaction.
S
SLAVE
ADDRESS
COMMAND
W A A1h BLOCK A
READ
S
SLAVE
ADDRESS
R
In the ADM1026, the receive byte protocol is used to read
a single byte of data from a RAM or EEPROM location
whose address has previously been set by a send byte or
A
BYTE
COUNT
A DATA 1 A
DATA
32
A
PEC
A
P
write byte/word operation. Figure 24 shows this. When
reading from EEPROM, Bit 0 of EEPROM Register 3 must
Figure 25. Block Read from EEPROM or RAM
be set.
1
S
2
SLAVE
ADDRESS
3 4
R A DATA
5 6
A P
When block reading from EEPROM, Bit 0 of EEPROM
Register 3 must be set.
Note that although the ADM1026 supports Packet Error
Figure 24. Single-Byte Read from EEPROM or RAM
Checking (PEC), its use is optional. The PEC byte is
calculated using CRC-8. The Frame Check Sequence (FCS)
Block Read
In this operation, the master device reads a block of data
conforms to CRC-8 by the polynomial:
C(x) + x 8 ) x 2 ) x ) 1
(eq. 1)
from a slave device. The start address for a block read must
have been set previously. In the case of the ADM1026 this
is done by a send byte operation to set a RAM address, or by
a write byte/word operation to set an EEPROM address. The
block read operation consists of a send byte operation that
sends a block read command to the slave, immediately
followed by a repeated start and a read operation that reads
out multiple data bytes as follows:
1. The master device asserts a start condition on the
SDA.
2. The master sends the 7-bit slave address followed
by the write bit (low).
3. The addressed slave device asserts an ACK on the
SDA.
4. The master sends a command code that tells the
slave device to expect a block read. The
ADM1026 command code for a block read is A 1h
(10100001).
5. The slave asserts an ACK on the SDA.
6. The master asserts a repeat start condition on the
SDA.
7. The master sends the 7-bit slave address followed
by the read bit (high).
8. The slave asserts an ACK on the SDA.
9. The ADM1026 sends a byte count data byte that
tells the master how many data bytes to expect. The
Consult the SMBus 1.1 Specification for more information.
Measurement Inputs
The ADM1026 has 17 external analog measurement pins
that can be configured to perform various functions. It also
measures two supply voltages, 3.3 V MAIN and 3.3 V
STBY, and the internal chip temperature.
Pins 25 and 26 are dedicated to remote temperature
measurement, while Pins 27 and 28 can be configured as
analog inputs with a range of 0 V to 2.5 V, or as inputs for
a second remote temperature sensor.
Pins 29 to 33 are dedicated to measuring V BAT , +5.0 V,
? 12 V, +12 V supplies, and the processor core voltage V CCP.
The remaining analog inputs, Pins 34 to 41, are
general-purpose analog inputs with a range of 0 V to 2.5 V
(Pins 34 and 35) or 0 V to 3.0 V (Pins 36 to 41).
A-to-D Converter (ADC)
These inputs are multiplexed into the on-chip, successive
approximation, analog-to-digital converter. The ADC has a
resolution of 8 bits. The basic input range is 0 V to 2.5 V,
which is the input range of A IN6 to A IN9 , but five of the
inputs have built-in attenuators to allow measurement of
V BAT , +5.0 V, - 12 V, +12 V, and the processor core voltage
V CCP , without any external components. To allow the
tolerance of these supply voltages, the ADC produces an
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