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ADT7462ACPZ-R7 Datasheet(PDF) 33 Page - ON Semiconductor

Part # ADT7462ACPZ-R7
Description  Flexible Temperature, Voltage Monitor, and System Fan Controller
PDF  81 Pages
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

ADT7462ACPZ-R7 Datasheet(HTML) 33 Page - ON Semiconductor

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33
Figure 51. Automatic Fan Control Block Diagram
MUX
THERMAL CALIBRATION
0%
TMIN
TRANGE
THERMAL CALIBRATION
100%
0%
TMIN
TRANGE
THERMAL CALIBRATION
100%
0%
TMIN
TRANGE
REMOTE 1
TEMP
LOCAL
TEMP
REMOTE 2
TEMP
TACHOMETER 1
MEASUREMENT
PWM
CONFIG
PWM
MIN
PWM1
RAMP
CONTROL
(ACOUSTIC
ENHANCEMENT)
PWM
GENERATOR
TACHOMETER 2
MEASUREMENT
PWM
CONFIG
PWM
MIN
PWM2
RAMP
CONTROL
(ACOUSTIC
ENHANCEMENT)
PWM
GENERATOR
TACHOMETER 3
AND 4
MEASUREMENT
PWM
CONFIG
PWM
MIN
PWM3
RAMP
CONTROL
(ACOUSTIC
ENHANCEMENT)
PWM
GENERATOR
100%
TACH1
TACH2
TACH3
Step 1—Configuring the MUX
First, the user needs to decide how many temperature
channels are being measured and how many fans need to be
controlled and monitored. When these decisions have been
made, the fans can be assigned to particular temperature
channels. Not only can fans be assigned to individual
channels, but the behavior of the fans is also configurable.
For example, fans can be run under automatic fan control;
they can be run manually (under software control) or they
can be run at the fastest speed calculated by multiple
temperature channels. The MUX is the bridge between
temperature measurement channels and the three PWM
outputs.
Bits [7:5] (BHVR) of Register 0x21, Register 0x22,
Register 0x23, and Register 0x24 (PWM configuration
registers) control the behavior of the fans connected to the
PWM1, PWM2, PWM3, and PWM4 outputs. The values
selected for these bits determine how the MUX connects a
temperature measurement channel to a PWM output (see
Figure 52).
Automatic Fan Control MUX Options
Bits [7:5] (BHVR), of Register 0x21, Register 0x22,
Register 0x23, and Register 0x24, control the behavior of the
corresponding PWM outputs (see Table 57 and Table 58).
The fastest speed calculated options pertain to controlling
one PWM output based on multiple temperature channels.
The thermal characteristics of the three temperature zones
can be set to drive a single fan. An example is the fan turning
on when the Remote 1 temperature exceeds 60
°C or when
the local temperature exceeds 45
°C.
Step 2—TMIN Settings for Thermal Calibration
Channels
TMIN is the temperature at which the fans start to turn on
under automatic fan control. The speed at which the fan runs
at TMIN is programmed later. The TMIN values chosen are
temperature channel−specific; for example, 25
°C for
ambient channel, 30
°C for VRM temperature, and 40°C for
processor temperature.
TMIN is an 8−bit value, either twos complement or Offset
64, that can be programmed in 1
°C increments. There is a
TMIN register associated with each temperature measurement
channel: local, Remote 1, Remote 2, and Remote 3. When the
TMIN value is exceeded, the fan turns on and runs at the
minimum PWM duty cycle. The fan turns off after the
temperature has dropped below TMIN − THYST.



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