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MCP6V92 Datasheet(PDF) 6 Page - Microchip Technology

Part # MCP6V92
Description  Temperature Measurement
PDF  48 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP6V92 Datasheet(HTML) 6 Page - Microchip Technology

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MCP6V91/1U/2/4
DS20005434B-page 6
 2015-2016 Microchip Technology Inc.
1.3
Timing Diagrams
FIGURE 1-1:
Amplifier Start-Up.
FIGURE 1-2:
Offset Correction Settling
Time.
FIGURE 1-3:
Output Overdrive Recovery.
1.4
Test Circuits
The circuits used for most DC and AC tests are shown
in Figures 1-4 and 1-5. Lay the bypass capacitors out
as discussed in Section 4.3.10 “Supply Bypassing
and Filtering”. RN is equal to the parallel combination
of RF and RG to minimize bias current effects.
FIGURE 1-4:
AC and DC Test Circuit for
Most Noninverting Gain Conditions.
FIGURE 1-5:
AC and DC Test Circuit for
Most Inverting Gain Conditions.
The circuit in Figure 1-6 tests the input’s dynamic
behavior (i.e., IMD, tSTR, tSTL and tODR). The
potentiometer balances the resistor network (VOUT
should equal VREF at DC). The op amp’s common-mode
input voltage is VCM =VIN/2. The error at the input
(VERR) appears at VOUT with a noise gain of 10 V/V.
FIGURE 1-6:
Test Circuit for Dynamic
Input Behavior.
VDD
VOUT
1.001(VDD/3)
0.999(VDD/3)
tSTR
0V
2.4V to 5.5V
2.4V
VIN
VOS
VOS +100 µV
VOS –100 µV
tSTL
VIN
VOUT
VDD
VSS
tODR
tODR
VDD/2
VDD
RG
RF
RN
VOUT
VIN
VDD/3
1µF
CL
RL
VL
100 nF
RISO
MCP6V9X
+
-
VDD
RG
RF
RN
VOUT
VDD/3
VIN
1µF
CL
RL
VL
100 nF
RISO
MCP6V9X
+
-
VDD
VOUT
1µF
CL
VL
RISO
11.0 kΩ
249Ω
11.0 kΩ
500Ω
VIN
VREF =VDD/3
0.1%
0.1%
25 turn
100 kΩ
100 kΩ
0.1%
0.1%
RL
0 Ω
30 pF
open
100 nF
1%
MCP6V9X



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