OA Operation
22-9
OA
Figure 22−4 shows an example of a three-opamp differential amplifier using
OA0, OA1 and OA2. The control register settings are shown in Table 22−4.
The gain for the amplifier is selected by the OAFBRx bits of OA0 and OA2. The
OAFBRx settings for both OA0 and OA2 must be equal. The gain settings are
shown in Table 22−5. The OAx interconnections are shown in Figure 22−5.
Table 22−4.Three-Opamp Differential Amplifier Control Register Settings
Register
Settings (binary)
OA0CTL0
00 xx xx 0 0
OA0CTL1
xxx 001 0 x
OA1CTL0
00 xx xx 0 0
OA1CTL1
000 111 0 x
OA2CTL0
11 11 xx x x
OA2CTL1
xxx 110 0 x
Table 22−5.Three-Opamp Differential Amplifier Gain Settings
OA0/OA2 OAFBRx
Gain
000
0
001
1/3
010
1
011
1 2/3
100
3
101
4 1/3
110
7
111
15
Figure 22−4. Three-Opamp Differential Amplifier
OA1
+
−
OA2
+
−
1
2
)
1
2
(
R
xR
V
V
Vdiff
−
=
R2
R1
V2
V1
OA0
+
−
R2
R1
Summary of Contents for MSP430x4xx Family
Page 1: ...MSP430x4xx Family 2007 Mixed Signal Products User s Guide SLAU056G ...
Page 2: ......
Page 6: ...vi ...
Page 114: ...3 76 RISC 16 Bit CPU ...
Page 304: ...5 20 FLL Clock Module ...
Page 340: ...7 8 Supply Voltage Supervisor ...
Page 348: ...8 8 16 Bit Hardware Multiplier ...
Page 372: ...9 24 32 Bit Hardware Multiplier ...
Page 400: ...10 28 DMA Controller ...
Page 428: ...13 10 Basic Timer1 ...
Page 466: ...15 24 Timer_A ...
Page 522: ...17 30 USART Peripheral Interface UART Mode ...
Page 544: ...18 22 USART Peripheral Interface SPI Mode ...
Page 672: ...23 12 Comparator_A ...
Page 692: ...24 20 LCD Controller ...
Page 746: ...26 28 ADC12 ...