Datasheet

© 2007 Microchip Technology Inc. DS21812E-page 11
MCP6291/1R/2/3/4/5
3.0 PIN DESCRIPTIONS
Descriptions of the pins are listed in Table 3-1 (single op amps) and Table 3-2 (dual and quad op amps).
TABLE 3-1: PIN FUNCTION TABLE FOR SINGLE OP AMPS
TABLE 3-2: PIN FUNCTION TABLE FOR DUAL AND QUAD OP AMPS
3.1 Analog Outputs
The output pins are low-impedance voltage sources.
3.2 Analog Inputs
The non-inverting and inverting inputs are high-
impedance CMOS inputs with low bias currents.
3.3 MCP6295’s V
OUTA
/V
INB
+ Pin
For the MCP6295 only, the output of op amp A is
connected directly to the non-inverting input of
op amp B; this is the V
OUTA
/V
INB
+ pin. This connection
makes it possible to provide a Chip Select pin for duals
in 8-pin packages.
3.4 Chip Select Digital Input
This is a CMOS, Schmitt-triggered input that places the
part into a low power mode of operation.
3.5 Power Supply Pins
The positive power supply (V
DD
) is 2.4V to 6.0V higher
than the negative power supply (V
SS
). For normal
operation, the other pins are between V
SS
and V
DD
.
Typically, these parts are used in a single (positive)
supply configuration. In this case, V
SS
is connected to
ground and V
DD
is connected to the supply. V
DD
will
need bypass capacitors
MCP6291
MCP6291R
MCP6293
Symbol Description
PDIP, SOIC,
MSOP
SOT-23-5
PDIP, SOIC,
MSOP
SOT-23-6
61 1 61V
OUT
Analog Output
24 4 24V
IN
Inverting Input
33 3 33V
IN
+ Non-inverting Input
75 2 76V
DD
Positive Power Supply
42 5 42V
SS
Negative Power Supply
—— 8 5CS
Chip Select
1,5,8 1,5 NC No Internal Connection
MCP6292 MCP6294 MCP6295 Symbol Description
11V
OUTA
Analog Output (op amp A)
222V
INA
Inverting Input (op amp A)
333V
INA
+ Non-inverting Input (op amp A)
848 V
DD
Positive Power Supply
55V
INB
+ Non-inverting Input (op amp B)
666V
INB
Inverting Input (op amp B)
777V
OUTB
Analog Output (op amp B)
—8—V
OUTC
Analog Output (op amp C)
—9—V
INC
Inverting Input (op amp C)
—10— V
INC
+ Non-inverting Input (op amp C)
4114 V
SS
Negative Power Supply
—12— V
IND
+ Non-inverting Input (op amp D)
—13— V
IND
Inverting Input (op amp D)
—14— V
OUTD
Analog Output (op amp D)
—— 1V
OUTA
/V
INB
+ Analog Output (op amp A)/Non-inverting Input (op amp B)
—— 5 CS
Chip Select