參數(shù)資料
型號: MCP602T-ISL
廠商: Microchip Technology Inc.
英文描述: 2.7V to 6.0V Single Supply CMOS Op Amps
中文描述: 2.7V至6.0V的單電源CMOS運(yùn)算放大器
文件頁數(shù): 12/34頁
文件大小: 460K
代理商: MCP602T-ISL
MCP601/1R/2/3/4
DS21314G-page 12
2007 Microchip Technology Inc.
4.0
APPLICATIONS INFORMATION
The MCP601/1R/2/3/4 family of op amps are fabricated
on Microchip’s state-of-the-art CMOS process. They
are unity-gain stable and suitable for a wide range of
general purpose applications.
4.1
Inputs
4.1.1
PHASE REVERSAL
The MCP601/1R/2/3/4 op amp is designed to prevent
phase reversal when the input pins exceed the supply
voltages.
Figure 2-34
shows the input voltage
exceeding the supply voltage without any phase
reversal.
4.1.2
INPUT VOLTAGE AND CURRENT
LIMITS
The ESD protection on the inputs can be depicted as
shown in
Figure 4-1
. This structure was chosen to
protect the input transistors, and to minimize input bias
current (I
B
). The input ESD diodes clamp the inputs
when they try to go more than one diode drop below
V
SS
. They also clamp any voltages that go too far
above V
DD
; their breakdown voltage is high enough to
allow normal operation, and low enough to bypass
quick ESD events within the specified limits.
FIGURE 4-1:
Structures.
Simplified Analog Input ESD
In order to prevent damage and/or improper operation
of these op amps, the circuit they are in must limit the
currents and voltages at the V
IN
+ and V
IN
– pins (see
Absolute Maximum Ratings
at the beginning of
Section 1.0 “Electrical Characteristics”
).
Figure 4-2
shows the recommended approach to protecting these
inputs. The internal ESD diodes prevent the input pins
(V
IN
+ and V
IN
–) from going too far below ground, and
the resistors R
1
and R
2
limit the possible current drawn
out of the input pins. Diodes D
1
and D
2
prevent the
input pins (V
IN
+ and V
IN
–) from going too far above
V
DD
, and dump any currents onto V
DD
. When
implemented as shown, resistors R
1
and R
2
also limit
the current through D
1
and D
2
.
FIGURE 4-2:
Inputs.
Protecting the Analog
It is also possible to connect the diodes to the left of
resistors R
1
and R
2
. In this case, current through the
diodes D
1
and D
2
needs to be limited by some other
mechanism. The resistors then serve as in-rush current
limiters; the DC current into the input pins (V
IN
+ and
V
IN
–) should be very small.
A significant amount of current can flow out of the
inputs when the common mode voltage (V
CM
) is below
ground (V
SS
); see
Figure 2-34
. Applications that are
high impedance may need to limit the useable voltage
range.
4.1.3
NORMAL OPERATION
The Common Mode Input Voltage Range (V
CMR
)
includes ground in single-supply systems (V
SS
), but
does not include V
DD
. This means that the amplifier
input behaves linearly as long as the Common Mode
Input Voltage (V
CM
) is kept within the specified V
CMR
limits (V
SS
–0.3V to V
DD
–1.2V at +25°C).
Figure 4-3
shows a unity gain buffer. Since V
OUT
is the
same voltage as the inverting input, V
OUT
must be kept
below V
DD
–1.2V for correct operation.
FIGURE 4-3:
Limited V
OUT
Range.
Unity Gain Buffer has a
Bond
Pad
Bond
Pad
Bond
Pad
V
DD
V
IN
+
V
SS
Input
Stage
Bond
Pad
V
IN
V
1
MCP60X
R
1
V
DD
D
1
R
1
>V
SS
– (minimum expected V
1
)
2 mA
R
2
>V
SS
– (minimum expected V
2
)
2 mA
V
2
R
2
D
2
R
3
MCP60X
V
OUT
+
V
IN
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