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MPXM2102AS Scheda tecnica(PDF) 3 Page - Freescale Semiconductor, Inc

Il numero della parte MPXM2102AS
Spiegazioni elettronici  Altimeter and Barometer System
PDF  10 Pages
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Produttore elettronici  FREESCALE [Freescale Semiconductor, Inc]
Homepage  http://www.freescale.com
Logo FREESCALE - Freescale Semiconductor, Inc

MPXM2102AS Scheda tecnica(HTML) 3 Page - Freescale Semiconductor, Inc

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AN1979
Sensors
3
Freescale Semiconductor
Figure 3. Amplification Scheme
The range of the A/D converter is 0 to 255 counts. However,
the A/D values that the system can achieve are dependent on
the maximum and minimum system output values:
Count = (VOUT – VRL) / (VRH – VRL) x 255(4)
where VXdcr = Transducer Output Voltage
VRH = Maximum A/D voltage
VLH = Minimum A/D voltage
Count (64 kPa) = (0.03 – 0.0) / (5.0 – 0.0) x 255 = 2
Count (105 kPa) = (4.85 – 0.0) / (5.0 – 0.0) x 255 = 247
Total # counts = 247 – 2 = 245 counts.
The resolution of the system is determined by the
barometric pressure represented by each A/D count. As
calculated above, the system has a span of 247 counts to
represent a pressure from 64 kPa to 105 kPa. Therefore, the
resolution is:
Resolution = (System Pressure Range) /
Total # counts (5)
= (105 kPa — 64 kPa)/245 counts
= 0.17 kPa per A/D count
Microprocessor
To provide the signal processing for pressure values, a
microprocessor is needed. The MCU chosen for this
application is the MC68HC908QT4. This MCU is perfect
for appliance applications due to its low cost, small eight-pin
package, and other on-chip resources. The MC68HC908QT4
provide: a four-channel, eight-bit A/D, a 16-bit timer, a
trimmable internal timer, and in-system FLASH programming.
The central processing unit is based on the high
performance M68HC08 CPU core and it can address 64
Kbytes of memory space. The MC68HC908QT4 provides
4096 bytes of user FLASH and 128 bytes of random access
memory (RAM) for ease of software development and
maintenance. There are five bi-directional input/output lines
and one input line that are shared with other pin features.
The MCU is available in eight-pin as well as 16-pin
packages in both PDIP and SOIC. For this application, the
eight-pin PDIP was selected. The eight-pin PDIP was chosen
for a small package, eventually to be designed into
applications as the eight-pin SOIC. If added circuitry for
programming the microcontroller is added, a cyclone could be
used to program an SOIC on the PCB. If your design requires
software updates, consult the MC68HC908QT4 handbook for
adding this option.
IMPROVEMENTS
The resolution of this design is limited by the eight-bit A/D
converter on the microcontroller. Theoretically, the accuracy
achieved by this device should produce an output when
altitude change differs by about 41.54 feet (∆Z). This occurs at
approximately 1000 feet below sea level. Due to the
logarithmic relationship between pressure and elevation, the
accuracy of the results decreases as the device is elevated. At
12,000 feet above sea level, the device should recognize a
change of about 65.53 feet (∆Z) as shown in Table 3. A 10-bit,
12-bit or even a 16-bit A/D converter could be implemented in
order to increase the resolution of this reference design.
R8
10 Ω
R6
4.42 K
+
6
7
5
VA
V4 sensor
1
2
3
4
MPXM2102A
R7
10 Ω
R5
4.42 K
+
2
1
3
VB
V2 sensor
VCC
+
R11
1 K
R9
1 K
R12
412 K
R10
412 K
13
12
4
14
11
C5
0.1 µf
VCC
VC
9
10
8
+



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