參數(shù)資料
型號(hào): ADM1030ARQ
廠商: ANALOG DEVICES INC
元件分類: 溫度/濕度傳感器
英文描述: Intelligent Temperature Monitor and PWM Fan Controller
中文描述: DIGITAL TEMP SENSOR-SERIAL, 8BIT(s), 1Cel, RECTANGULAR, SURFACE MOUNT
封裝: MO-137AB, QSOP-16
文件頁數(shù): 21/28頁
文件大?。?/td> 278K
代理商: ADM1030ARQ
REV. 0
ADM1030
–21–
CH3 50.0mV
CH2 5.00mV
CH4 50.0mV
M 4.00ms A CH1 –2.00mV
CH1
1
4
T
T
Tek PreVu
: 250mV
@: –258mV
Figure 20. Fan Speed Sensing Waveform at TACH/AIN Pin
FAN SPEED MEASUREMENT
The fan counter does not count the fan tach output pulses
directly, because the fan speed may be less than 1000 RPM
and it would take several seconds to accumulate a reasonably
large and accurate count. Instead, the period of the fan revolu-
tion is measured by gating an on-chip 11.25 kHz oscillator into
the input of an 8-bit counter. The fan speed measuring circuit is
initialized on the rising edge of a PWM high output if fan speed
measurement is enabled (Bit 2 of Configuration Register 2 =
1). It then starts counting on the rising edge of the second tach
pulse and counts for two fan tach periods, until the rising edge of
the fourth tach pulse, or until the counter overranges if the fan
tach period is too long. The measurement cycle will repeat until
monitoring is disabled. The fan speed measurement is stored in
the Fan Speed Reading register at address 0x08.
The fan speed count is given by:
Count
= (
f
×
60)/
R
×
N
where:
f
=
11.25 kHz
R
=
Fan Speed in RPM.
N
=
Speed Range (Either 1, 2, 4, or 8)
The frequency of the oscillator can be adjusted to suit the expected
running speed of the fan by varying N, the Speed Range. The
oscillator frequency is set by Bits 7 and 6 of Fan Characteristics
Register 1 (20h) as shown in Table XI. Figure 21 shows how the
fan measurements relate to the PWM_OUT pulse trains.
Table XI. Oscillator Frequencies
Oscillator
Frequency (kHz)
Bit 7
Bit 6
N
0
0
1
1
0
1
0
1
1
2
4
8
11.25
5.625
2.812
1.406
CLOCK
CONFIG 2
REG. BIT 2
FAN
INPUT
FAN
MEASUREMENT
PERIOD
START OF
MONITORING
CYCLE
Figure 21. Fan Speed Measurement
In situations where different output drive circuits are used for
fan drive, it may be desirable to invert the PWM drive signal.
Setting Bit 3 of Configuration Register 1 (0x00) to 1, inverts the
PWM_OUT signal. This makes the PWM_OUT pin high for
100% duty cycle. Bit 3 of Configuration Register 1 should gen-
erally be set to 1, when using an n-MOS device to drive the fan.
If using a p-MOS device, Bit 3 of Configuration Register 1
should be cleared to 0.
FAN FAULTS
The
FAN_FAULT
output (Pin 8) is an active-low, open-drain
output used to signal fan failure to the system processor. Writing a
Logic 1 to Bit 4 of Configuration Register 1 (0x00) enables the
FAN_FAULT
output pin. The
FAN_FAULT
output is enabled
by default. The
FAN_FAULT
output asserts low only when
five consecutive interrupts are generated by the ADM1030 device
due to the fan running underspeed, or if the fan is completely
stalled. Note that the Fan Tach High Limit must be exceeded
by at least one before a
FAN_FAULT
can be generated. For
example, if we are only interested in getting a
FAN_FAULT
if
the fan stalls, then the fan speed value will be 0xFF for a failed
fan. Therefore, we should make the Fan Tach High Limit =
0xFE to allow
FAN_FAULT
to be asserted after five consecu-
tive fan tach failures.
Figure 22 shows the relationship between
INT
,
FAN_FAULT
,
and the PWM drive channel. The PWM_OUT channel is driv-
ing a fan at some PWM duty cycle, say 50%, and the fan’s tach
signal (or fan current for a 2-wire fan) is being monitored at the
TACH/AIN pin. Tach pulses are being generated by the fan,
during the high time of the PWM duty cycle train. The tach is
pulled high during the off time of the PWM train because the
fan is connected high-side to the n-MOS device.
Suppose the fan has already failed its fan speed measurement
twice previously. Looking at Figure 22, PWM_OUT is brought
high for two seconds, to restart the fan if it has stalled. Some-
time later a third tach failure occurs. This is evident by the tach
signal being low during the high time of the PWM pulse, causing
the Fan Speed Reading register to reach its maximum count of
255. Since the tach limit has been exceeded, an interrupt is
generated on the
INT
pin. The Fan Fault bit (Bit 1) of Inter-
rupt Status Register 1 (Register 0x02) will also be asserted.
Once the processor has acknowledged the
INT
by reading the
status register, the
INT
is cleared. PWM_OUT is then brought
high for another 2 seconds to restart the fan. Subsequent fan
failures cause
INT
to be reasserted and the PWM_OUT signal
is brought high for 2 seconds (fan spin-up default) each time to
restart the fan. Once the fifth tach failure occurs, the failure is
deemed to be catastrophic, and the
FAN_FAULT
pin is asserted
low. PWM_OUT is brought high to attempt to restart the fan.
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