MCP6V06T-E/SN Microchip Technology, MCP6V06T-E/SN Datasheet - Page 30

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MCP6V06T-E/SN

Manufacturer Part Number
MCP6V06T-E/SN
Description
Single, Auto-Zero Op Amp, E Temp 8 SOIC 3.90mm (.150") T/R
Manufacturer
Microchip Technology
Datasheet

Specifications of MCP6V06T-E/SN

Amplifier Type
Chopper (Zero-Drift)
Number Of Circuits
1
Output Type
Rail-to-Rail
Slew Rate
0.5 V/µs
Gain Bandwidth Product
1.3MHz
Current - Input Bias
6pA
Voltage - Input Offset
3µV
Current - Supply
300µA
Current - Output / Channel
22mA
Voltage - Supply, Single/dual (±)
1.8 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Number Of Channels
1
Voltage Gain Db
158 dB
Common Mode Rejection Ratio (min)
120 dB
Input Offset Voltage
0.003 mV
Operating Supply Voltage
3 V, 5 V
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
-3db Bandwidth
-
Lead Free Status / Rohs Status
 Details
Other names
MCP6V06T-E/SNTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP6V06T-E/SN
Manufacturer:
MICROCHIP
Quantity:
12 000
MCP6V06/7/8
4.4.3
Figure 4-18
and temperature sensor used in a thermocouple
application. The type K thermocouple senses the
temperature at the hot junction (T
voltage at V
gain is is set so that V
the output of a temperature sensor, which produces a
voltage proportional to the temperature (in °C) at the
cold junction (T
that V
EQUATION 4-5:
FIGURE 4-18:
Simplified Circuit.
Figure 4-19
this circuit. The dashed red arrow indicates a thermally
conductive connection between the thermocouple and
the MCP9700A; it needs to be very short and have low
thermal resistance.
FIGURE 4-19:
DS22093B-page 30
(hot junction
R
at T
V
V
V
V
TH
≈ (10 mV/°C) (T
MCP9700A
1
2
3
4
(cold junction
MCP1541
Type K
≈ T
= (1.00V)
= T
= 250V
HJ
4
= Thevenin Equivalent Resistance (e.g., 10 kΩ)
40 µV/°C
Type K
Thermocouple
V
V
is 0.50V when T
)
HJ
CJ
DD
DD
(40 µV/°C)
at T
(10 mV/°C) + (0.50V)
1
THERMOCOUPLE SENSOR
shows a more complete implementation of
shows a simplified diagram of an amplifier
1
V
proportional to T
+ (V
CJ
1
R
CJ
TH
)
4.100(R
(R
(R
), and with a 0.50V offset. V
2
HJ
= Thevenin Equivalent Resistance
TH
TH
– V
(R
4
)/250
)/250
– T
V
V
V
TH
/T
Thermocouple Sensor;
Thermocouple Sensor.
3
2
1
3
HJ
(R
(R
)
)
HJ
CJ
TH
TH
TH
– T
) + (0.50V)
is 10 mV/°C. V
)
(R
(R
)/250
)/250
0.5696(R
HJ
CJ
(R
TH
TH
C
C
(in °C). The amplifier’s
is 0°C.
TH
)
)
HJ
MCP6V06
)
), and produces a
(R
(R
TH
C
C
TH
TH
3 kΩ
)
3
MCP6V06
)
)
represents
2
is set so
V
V
4
4
The MCP9700A senses the temperature at its physical
location. It needs to be at the same temperature as the
cold junction (T
The MCP1541 produces a 4.10V output, assuming
V
4.100(R
nin
1.3224(R
top right R
0.5696(R
V
thermocouple’s non-linearity. The ADC can use the
MCP1541 as its voltage reference. Alternately, an
absolute reference inside a PICmicro
instead of the MCP1541.
4.4.4
Figure 4-20
offset voltage of another op amp. R
the offset error seen at the other op amp’s input; the
integration needs to be slow enough to be stable (with
the feedback provided by R
FIGURE 4-20:
4.4.5
Use high gain before a comparator to improve the
latter’s performance. Do not use MCP6V06/7/8 as a
comparator by itself; the V
not operate properly without a feedback loop.
FIGURE 4-21:
DD
4
should be converted to digital, then corrected for the
V
V
V
V
DD
is at 5.0V. This voltage, tied to a resistor ladder of
IN
IN
DD
equivalent
/2
/2
TH
TH
TH
) and 1.3224(R
R
R
TH
R
) resistor is combined in parallel with the
) resistor.
OFFSET VOLTAGE CORRECTION
PRECISION COMPARATOR
2
shows a MCP6V06 correcting the input
1
R
1
R
resistor (in
2
MCP6V06
2
CJ
), and produces V
of
R
3
C
2
MCP6V06
Offset Correction.
Precision Comparator.
1.00V
© 2008 Microchip Technology Inc.
MCP6541
TH
R
Figure
OS
1
4
), would produce a Theve-
3 kΩ
and R
R
correction circuitry does
5
and
4-18), producing the
3
3
2
).
R
1 kΩ
(Figure
and C
250(R
3
®
MCP6XXX
can be used
2
TH
4-16).
V
integrate
V
).
OUT
OUT
The

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