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Variable Pressure Detector
ECET 270
Andy Schnobrich
Overview
 This project utilizes a variable
capacitor as a pressure switch. The
analog portion of the circuit is used to
detect how much the switch is
depressed. The digital portion of the
circuit is used to Display the time that
the switch is depressed and to display
the current pressure level.
The Wien-Bridge Oscillator
+15V
15V
741
2
3
7
4
6
500
4.7k
RB
10k
R2
12.1k
R1
12.1k
C2
.0022FC1
.0022F
RA
VOUT
The Peak Detector and Voltage Comparator
Circuit
+15V
15V
741
2
3
7
4
6
Vin
(13.90°)V
@5.86kHz
D1
1N914
C1
.47F
R1
10k
IDC
+15V
15V
741
2
3
7
4
6
R1
150k
R2
150k R3
680
VLED
VCC
ILED
V3
V1
The RC Wheatstone Bridge and The
Instrumentation Amplifier
+15V
15V
741
2
3
7
4
6
C1
70pF
R1
56k
R2
100k
C2
60.5pF
FROM THE WEIN BRIDGE
OSCILLATOR
VOUT2VOUT1
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6
R2
12.1k
R1
10k
VOUT1
VOUT2
Vy
Vx
VOUT1
VOUT2
VOUT
R2
12.1k
R2
12.1k
R2
12.1k
R2
12.1k
R2
12.1k
The Second Order Active Band Pass Filter
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6
R1
12.1k
RA
12k 33k
C1
0.0033F
C2
0.0033F
R2
12.1k
R3
12.1k
TATION
ER
VOUT
330
RB
0
2
4
6
8
10
12
14
16
18
250 2250 4250 6250 8250 10250
Vout_pp(V)
frequency (Hz)
Frequency Response
The Active Rectifier Circuit
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6D1
1N914
D2
1N914
R2
12.1k
R1
12.1k
R3
12.1k
R5
12k
+15V
15V
741
2
3
7
4
6
VOUT
VIN
R4
10k
The Active Peak Detector and Voltage
Comparator Circuits
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6
+15V
15V
741
2
3
7
4
6
R3
100k
R2
100k
R1
100k
R6
680
R5
680
R4
680
LED3
RED
LED2
YELLOW
LED1
GREEN
VOUT1
VREF1
3.9V
15mA
VREF2
6.3V
VREF3
10.2V
VOUT2
VOUT3
VOUT4
15V
15V
15V
15mA
15mA
The Transistor Drivers, and
Passive Low Pass Filters
R3
100k?
R2
100k?
R1
100k?
VREF1
VREF2
VREF3
VOUT2
15V
15V
15V
R5
680
2N3903
RC2
1k
5V
C2
22F
VOUT5
VOUT1
R4
680
2N3903
RC1
1k
5V
C1
22F
VOUT4
VOUT3
R6
680
2N3903
RC3
1k
5V
C3
22F
VOUT6
FROM ACTIVE
PEAK DETECTOR
RB2
22k
RB1
22k
RB3
1k
Normal
1st Level
2nd Level
3rd Level
0V
0V
0V
0V
FROM ACTIVE
PEAK DETECTOR
VOUT1
VOUT2
VOUT3
-13V
-13V
-13V
+13V
+13V
+13V
0VVOUT6
0VVOUT5
0VVOUT4
+5V
+5V
+5V
The Monostable Multivibrator,
and 555 Square Wave Oscilator Circuits
VOUT4
Q4: 2N3904
5V
SN74121
2
3
4
5
6
7
14
13
12
11
10
9
8
1
5V
NC NC
NC
NC
NC
NC
OUTPUT
RB4
6.8k
RC4
1k
Cext
0.1F
RT
150k
VOUT7
1
3
2
4 8
7
6
5
RB
1M
RA
100k
C1
0.068FC2
0.01FOUTPUT
+5V
LM555
The Counter, Decoder, and Display Circuits
74190
FROM 555 TIMER
FROM 1/3 PRESSURE
TRANSISTOR SWITCH
FROM MONOSTABLE
MULTIVIBRATOR
74190
74190
7446
a
b
c
d
e
f
d
R1
220
R7
220
.
.
.
.
7446
a
b
c
d
e
f
d
R8
220
R14
220
.
.
.
.
7446
a
b
c
d
e
f
d
R16
220
R22
220
.
.
.
.
R15
220
RCO
RCO
CLK
CLK
1/10's place
1's place
10's place
The Pressure Display Circuit
7
1
2
6
7446
8
16
vcc
13
12
11
10
9
15
14
a
b
c
d
e
f
g
R's
220
.
.
.
.
R's
220
a
b
c
d
e
f
20
10
7
8
9
19
18
17
16
vcc
.
.
.
.
PLD
FULL
2/3
1/3
FROM TRANSISTOR
DRIVERS
MSB LSB

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Variable Pressure Detector

  • 1. Variable Pressure Detector ECET 270 Andy Schnobrich
  • 2. Overview  This project utilizes a variable capacitor as a pressure switch. The analog portion of the circuit is used to detect how much the switch is depressed. The digital portion of the circuit is used to Display the time that the switch is depressed and to display the current pressure level.
  • 4. The Peak Detector and Voltage Comparator Circuit +15V 15V 741 2 3 7 4 6 Vin (13.90°)V @5.86kHz D1 1N914 C1 .47F R1 10k IDC +15V 15V 741 2 3 7 4 6 R1 150k R2 150k R3 680 VLED VCC ILED V3 V1
  • 5. The RC Wheatstone Bridge and The Instrumentation Amplifier +15V 15V 741 2 3 7 4 6 C1 70pF R1 56k R2 100k C2 60.5pF FROM THE WEIN BRIDGE OSCILLATOR VOUT2VOUT1 +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6 R2 12.1k R1 10k VOUT1 VOUT2 Vy Vx VOUT1 VOUT2 VOUT R2 12.1k R2 12.1k R2 12.1k R2 12.1k R2 12.1k
  • 6. The Second Order Active Band Pass Filter +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6 R1 12.1k RA 12k 33k C1 0.0033F C2 0.0033F R2 12.1k R3 12.1k TATION ER VOUT 330 RB 0 2 4 6 8 10 12 14 16 18 250 2250 4250 6250 8250 10250 Vout_pp(V) frequency (Hz) Frequency Response
  • 7. The Active Rectifier Circuit +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6D1 1N914 D2 1N914 R2 12.1k R1 12.1k R3 12.1k R5 12k +15V 15V 741 2 3 7 4 6 VOUT VIN R4 10k
  • 8. The Active Peak Detector and Voltage Comparator Circuits +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6 +15V 15V 741 2 3 7 4 6 R3 100k R2 100k R1 100k R6 680 R5 680 R4 680 LED3 RED LED2 YELLOW LED1 GREEN VOUT1 VREF1 3.9V 15mA VREF2 6.3V VREF3 10.2V VOUT2 VOUT3 VOUT4 15V 15V 15V 15mA 15mA
  • 9. The Transistor Drivers, and Passive Low Pass Filters R3 100k? R2 100k? R1 100k? VREF1 VREF2 VREF3 VOUT2 15V 15V 15V R5 680 2N3903 RC2 1k 5V C2 22F VOUT5 VOUT1 R4 680 2N3903 RC1 1k 5V C1 22F VOUT4 VOUT3 R6 680 2N3903 RC3 1k 5V C3 22F VOUT6 FROM ACTIVE PEAK DETECTOR RB2 22k RB1 22k RB3 1k Normal 1st Level 2nd Level 3rd Level 0V 0V 0V 0V FROM ACTIVE PEAK DETECTOR VOUT1 VOUT2 VOUT3 -13V -13V -13V +13V +13V +13V 0VVOUT6 0VVOUT5 0VVOUT4 +5V +5V +5V
  • 10. The Monostable Multivibrator, and 555 Square Wave Oscilator Circuits VOUT4 Q4: 2N3904 5V SN74121 2 3 4 5 6 7 14 13 12 11 10 9 8 1 5V NC NC NC NC NC NC OUTPUT RB4 6.8k RC4 1k Cext 0.1F RT 150k VOUT7 1 3 2 4 8 7 6 5 RB 1M RA 100k C1 0.068FC2 0.01FOUTPUT +5V LM555
  • 11. The Counter, Decoder, and Display Circuits 74190 FROM 555 TIMER FROM 1/3 PRESSURE TRANSISTOR SWITCH FROM MONOSTABLE MULTIVIBRATOR 74190 74190 7446 a b c d e f d R1 220 R7 220 . . . . 7446 a b c d e f d R8 220 R14 220 . . . . 7446 a b c d e f d R16 220 R22 220 . . . . R15 220 RCO RCO CLK CLK 1/10's place 1's place 10's place
  • 12. The Pressure Display Circuit 7 1 2 6 7446 8 16 vcc 13 12 11 10 9 15 14 a b c d e f g R's 220 . . . . R's 220 a b c d e f 20 10 7 8 9 19 18 17 16 vcc . . . . PLD FULL 2/3 1/3 FROM TRANSISTOR DRIVERS MSB LSB