MCP2036-E/MG MICROCHIP [Microchip Technology], MCP2036-E/MG Datasheet - Page 12

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MCP2036-E/MG

Manufacturer Part Number
MCP2036-E/MG
Description
Inductive Sensor Analog Front End Device
Manufacturer
MICROCHIP [Microchip Technology]
Datasheet
MCP2036
TABLE 4-1:
TABLE 4-2:
DS22186B-page 12
Electrical Specifications: Unless otherwise indicated, T
Short Circuit Current
Voltage Reference Specific Parameters
Output Voltage
Output Short Circuit Current
Maximum Output Capacitance
Series Output Resistance
Coil Driver Specific Parameters
System Parameters
Amplifier Current Gain
Power Supply Rejection Ratio
Input Characteristics
Input Voltage Range
Input Bias/Leakage Current
Input Impedance
Output Characteristics
Minimum Output Voltage
Maximum Output Voltage
Short Circuit Current
Resistor Specifications
Resistance Value of R1
Resistance Value of R2
Electrical Characteristics: Unless otherwise indicated, V
Output Amplifier/Filter Specific Parameters
Gain Bandwidth Product
Slew Rate
Coil Driver Amplifier Parameters
Gain Bandwidth Product
Voltage Reference Specific Parameters
Gain Bandwidth Product
Slew Rate
Parameters
Parameters
DC CHARACTERISTICS (CONTINUED)
AC CHARACTERISTICS
GBWP
GBWP
GBWP
Sym.
SR
SR
V
Sym.
PSRR
V
C
R
V
V
A
A
OMAX
I
I
Z
OMIN
I
I
R1
R2
OUT
MAX
SC
REF
SC
SER
SC
SC
I
I
OL
OL
B
B
IN
Min.
V
V
Min.
-300
SS
DD
60
+20
/2
A
DD
= +25°C, V
= +2.7V to +5.5V, and V
Typ.
17.8
0.6
0.6
10
10
1
1
V
Typ.
250
±10
±10
3.6
DD
±6
10
±6
13
13
6
3
8
2
||6
||6
/2
DD
= +2.7V to +5.5V, V
V
V
Max.
Max.
+300
DD
±20
DD
±1
1
-20
/2
SS
Units
mA/V
mA/V
Ω||pF
Ω||pF
= GND.
mA
mA
mV
mA
mA
mV
mV
mV
mA
mA
dB
pA
nA
µF
Ω
Units
MHz
MHz
MHz
V/µs
V/µs
SS
= GND.
© 2009 Microchip Technology Inc.
V
V
V
(Note 1)
Internal resistor used to stabilize
op amp output for pure
capacitive loads
V
V
V
T = 85°C (Note 1)
T = 125°C (Note 1)
Common mode impedance
Differential impedance
DRVOUT, V
DRVOUT, V
Resistor between pass gates
and output amplifier input
Resistor between LBTN and
LREF inputs and voltage
reference
V
DETOUT
DETOUT
DD
DD
DD
DD
DD
= 3V
= +2.7V
= +5.5V
= 5V
= 5V
, V
, V
Conditions
DD
DD
Conditions
DD
DD
= 3V
= 5V
= 3V
= 5V

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