參數(shù)資料
型號(hào): ADT7485AARMZ-R
廠商: ON Semiconductor
文件頁(yè)數(shù): 8/12頁(yè)
文件大?。?/td> 353K
描述: IC TEMP/VOLT DGL SENS SST 10MSOP
產(chǎn)品變化通告: MFG CHG Notification ADI to ON Semi
標(biāo)準(zhǔn)包裝: 3,000
功能: 溫度監(jiān)控系統(tǒng)(傳感器)
傳感器類型: 內(nèi)部和外部
感應(yīng)溫度: -40°C ~ 125°C,外部傳感器
精確度: ±1.75°C(最小值)
拓?fù)洌?/td> ADC,多路復(fù)用器,寄存器庫(kù)
輸出類型: Simple Serial Transport?(SST)
輸出警報(bào): 無(wú)
輸出風(fēng)扇: 無(wú)
電源電壓: 3 V ~ 3.6 V
工作溫度: -40°C ~ 125°C
安裝類型: 表面貼裝
封裝/外殼: 10-TFSOP,10-MSOP(0.118",3.00mm 寬)
供應(yīng)商設(shè)備封裝: 10-MSOP
包裝: 帶卷 (TR)
ADT7485A
http://onsemi.com
8
Table 7. 16-BYTE DIB DETAILS
Byte
Name
Value
Description
0
Device
Capabilities
0xc0
Fixed Address
Device
1
Version/Revision
0x10
Meets Version 1 of
SST Specification
2, 3
Vendor ID
00x11d4
Contains Company
ID Number in Little
Endian Format
4, 5
Device ID
0x7485
Contains Device ID
Number in Little
Endian Format
6
Device Interface
0x01
SST Device
7
Function
Interface
0x00
Reserved
8
Reserved
0x00
Reserved
9
Reserved
0x00
Reserved
10
Reserved
0x00
Reserved
11
Reserved
0x00
Reserved
12
Reserved
0x00
Reserved
13
Reserved
0x00
Reserved
14
Revision ID
0x05
Contains Revision ID
15
Client Device
Address
0x48 to
0x4a
Dependent on the
State of Address
Pin
Ping()
The Ping() command verifies if a device is responding at
a particular address. The ADT7485A shows a valid non-zero
FCS in response to the Ping() command when correctly
addressed.
Table 8. PING() COMMAND
Target Address
Write Length
Read Length
FCS
(Not Necessary)
0x00
0x00
ResetDevice()
This command resets the register map and conversion
controller. The reset command can be global or directed at
the client address of the ADT7485A.
Table 9. RESETDEVICE() COMMAND
Target Address
Write
Length
Read
Length
Reset
Command
FCS
Device Address
0x01
0x00
0xf6
GetIntTemp()
The ADT7485A shows the local temperature of the device
in response to the GetIntTemp() command. The data has a
little endian, 16-bit, twos complement format.
GetExtTemp()
Prompted by the GetExtTemp() command, the ADT7485A
shows the temperature of the remote diode in little endian,
16-bit, twos complement format. The ADT7485A shows
0x8000 in response to this command if the external diode is
an open or short circuit.
GetAllTemps()
The ADT7485A shows the local and remote temperatures
in a 4-byte block of data (internal temperature first, followed
by external temperature) in response to a GetAllTemps()
command.
SetExtOffset()
This command sets the offset that the ADT7485A will use
to correct errors in the external diode. The offset is set in little
endian, 16-bit, twos complement format. The maximum
offset is ?28癈 with +0.25癈 resolution.
GetExtOffset()
This command causes the ADT7485A to show the offset
that it is using to correct errors in the external diode. The
offset value is returned in little endian format, that is, LSB
before MSB.
ADT7485A Response to Unsupported Commands
A full list of command codes supported by the
ADT7485A is given in Table 6. The offset registers
(Command Code 0xe0) are the only registers that the user
can write to. The other defined registers are read only.
Writing to Register Addresses 0x02, 0x09, and 0x15 to 0xdf
shows a valid FSC, but no action is taken by the ADT7485A.
The ADT7485A shows an invalid FSC if the user attempts
to write to the device between Command Codes 0xe2 to
0xee. These registers are reserved for the manufacturers use
only, and no data can be written to the device via these
addresses.
Voltage Measurement
The ADT7485A has four external voltage measurement
channels. It can also measure its own supply voltage, V
CC
.
Pins 5 and 8 measure the supplies of the 12 V, 5.0 V,
processor core voltage (V
CCP
), and 2.5 V pins, respectively.
The V
CC
 supply voltage measurement is carried out through
the V
CC
 pin (Pin 1). The 2.5 V pin can be used to monitor a
chip-set supply voltage in a computer system.
Analog-to-Digital Converter
All analog inputs are multiplexed into the on-chip,
successive   approximation,   analog-to-digital   converter
(ADC). This has a resolution of 10 bits. The basic input
range is 0 V to 2.25 V, but the inputs have built-in
attenuators to allow measurement of 2.5 V, 3.3 V, 5.0 V,
12 V, and the processor core voltage (V
CCP
) without any
external components.
To allow for the tolerance of these supply voltages, the
ADC produces a specific output for each nominal input
voltage and therefore has adequate headroom to cope with
overvoltage. The full-scale voltage that can be recorded for
each channel is shown in Table 10.
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