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MCP609 查看數據表(PDF) - Microchip Technology

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MCP609
Microchip
Microchip Technology Microchip
MCP609 Datasheet PDF : 30 Pages
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MCP606/7/8/9
3.0 PIN DESCRIPTIONS
Descriptions of the pins are listed in Table 3-1.
TABLE 3-1: PIN FUNCTION TABLE.
MCP606
(PDIP, SOIC,
TSSOP)
6
2
3
7
4
1, 5, 8
MCP606
(SOT-23-5)
1
4
3
5
2
MCP607 MCP608 MCP609
1
6
1
2
2
2
3
3
3
4
7
4
5
5
6
6
7
7
8
9
10
8
4
11
12
13
14
8
1, 5
Symbol
Description
VOUT, VOUTA
VIN–, VINA
VIN+, VINA+
VDD
VINB+
VINB
VOUTB
VOUTC
VINC
VINC+
VSS
VIND+
VIND
VOUTD
CS
Output (op amp A)
Inverting Input (op amp A)
Non-inverting Input (op amp A)
Positive Power Supply
Non-inverting Input (op amp B)
Inverting Input (op amp B)
Output (op amp B)
Output (op amp B)
Inverting Input (op amp C)
Non-inverting Input (op amp C)
Negative Power Supply
Non-inverting Input (op amp D)
Inverting Input (op amp D)
Output (op amp D)
Chip Select
NC
No Internal Connection
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.
3.4 Digital Input
The Chip Select (CS) pin is a Schmitt-triggered, CMOS
logic input. It is used to place the MCP608 op amp in a
Low-power mode, with the output(s) in a Hi-Z state.
3.3 Power Supply (VSS and VDD)
The positive power supply pin (VDD) is 2.5V to 5.5V
higher than the negative power supply pin (VSS). For
normal operation, the output pins are at voltages
between VSS and VDD; while the input pins are at
voltages between VSS – 0.3V and VDD + 0.3V.
Typically, these parts are used in a single-supply
(positive) configuration. In this case, VSS is connected
to ground and VDD is connected to the supply. VDD will
need a local bypass capacitor (typically 0.01 µF to
0.1 µF) within 2 mm of the VDD pin. These parts can
share a bulk capacitor with nearby analog parts
(typically 1 µF or larger) within 100 mm of the VDD pin.
DS11177D-page 10
© 2005 Microchip Technology Inc.

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