参数资料
型号: MCP9800A0T-M/OTG
厂商: Microchip Technology
文件页数: 11/42页
文件大小: 0K
描述: IC SENSOR THERMAL 2.7V SOT23-5
标准包装: 1
功能: 温度监控系统(传感器)
传感器类型: 内部
感应温度: -55°C ~ 125°C
精确度: ±2°C(最小值)
拓扑: ADC(三角积分型),寄存器库
输出类型: I²C?/SMBus?
输出警报:
输出风扇:
电源电压: 2.7 V ~ 5.5 V
工作温度: -55°C ~ 125°C
安装类型: 表面贴装
封装/外壳: SC-74A,SOT-753
供应商设备封装: SOT-23-5
包装: 标准包装
配用: MCP9800DM-TS1-ND - DEMO BOARD TEMP SENSOR MCP9800
MCP9800DM-PCTL-ND - BOARD DEMO FOR PICTAIL MCP9800
其它名称: MCP9800A0T-MOTGDKR
MCP9800/1/2/3
4.0
SERIAL COMMUNICATION
4.1.1
DATA TRANSFER
4.1
2-Wire SMBus/Standard Mode
I 2 C? Protocol-Compatible
Interface
Data transfers are initiated by a Start condition (Start),
followed by a 7-bit device address and a read/write bit.
An Acknowledge (ACK) from the slave confirms the
reception of each byte. Each access must be
terminated by a Stop condition (Stop).
The MCP9800/1/2/3 serial clock input (SCL) and the
bidirectional serial data line (SDA) form a 2-wire
bidirectional SMBus/Standard mode I 2 C compatible
communication port (refer to the Digital Input/Output
The following bus protocol has been defined:
Repeated communication is initiated after t B-FREE .
This device does not support sequential register read/
write. Each register needs to be addressed using the
Register Pointer.
This device supports the Receive Protocol. The
register can be specified using the pointer for the initial
read. Each repeated read or receive begins with a Start
TABLE 4-1:
Term
MCP9800 SERIAL BUS
PROTOCOL DESCRIPTIONS
Description
condition and address byte. The MCP9800/1/2/3
retains the previously selected register. Therefore, it
outputs data from the previously-specified register
(repeated pointer specification is not necessary).
Master The device that controls the serial bus,
typically a microcontroller.
Slave The device addressed by the master,
such as the MCP9800/1/2/3.
Transmitter Device sending data to the bus.
4.1.2 MASTER/SLAVE
The bus is controlled by a master device (typically a
microcontroller) that controls the bus access and
generates the Start and Stop conditions. The
MCP9800/1/2/3 is a slave device and does not control
Receiver
Start
Stop
Device receiving data from the bus.
A unique signal from master to initiate
serial interface with a slave.
A unique signal from the master to
other devices in the bus. Both master and slave
devices can operate as either transmitter or receiver.
However, the master device determines which mode is
activated.
terminate serial interface from a slave.
4.1.3
START/STOP CONDITION
Read/Write A read or write to the MCP9800/1/2/3
registers.
ACK A receiver Acknowledges (ACK) the
reception of each byte by polling the
bus.
A high-to-low transition of the SDA line (while SCL is
high) is the Start condition. All data transfers must be
preceded by a Start condition from the master. If a Start
condition is generated during data transfer, the
MCP9800/1/2/3 resets and accepts the new Start
NAK
Busy
Not Busy
Data Valid
A receiver Not-Acknowledges (NAK) or
releases the bus to show End-of-Data
(EOD).
Communication is not possible
because the bus is in use.
The bus is in the Idle state, both SDA
and SCL remain high.
SDA must remain stable before SCL
becomes high in order for a data bit to
be considered valid. During normal
data transfers, SDA only changes state
while SCL is low.
condition.
A low-to-high transition of the SDA line (while SCL is
high) signifies a Stop condition. If a Stop condition is
introduced during data transmission, the MCP9800/1/
2/3 releases the bus. All data transfers are ended by a
Stop condition from the master.
4.1.4 ADDRESS BYTE
Following the Start condition, the host must transmit an
8-bit address byte to the MCP9800/1/2/3. The address
for the MCP9800 Temperature Sensor is
‘ 1001,A2,A1,A0 ’ in binary, where the A2, A1 and A0
bits are set externally by connecting the corresponding
pins to V DD ‘ 1 ’ or GND ‘ 0 ’. The 7-bit address
transmitted in the serial bit stream must match the
selected address for the MCP9800/1/2/3 to respond
with an ACK. Bit 8 in the address byte is a read/write
bit. Setting this bit to ‘ 1 ’ commands a read operation,
while ‘ 0 ’ commands a write operation (see Figure 4-1 ).
? 2010 Microchip Technology Inc.
DS21909D-page 11
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