MCP6541-E/LT MICROCHIP [Microchip Technology], MCP6541-E/LT Datasheet - Page 2

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MCP6541-E/LT

Manufacturer Part Number
MCP6541-E/LT
Description
Push-Pull Output Sub-Microamp Comparators
Manufacturer
MICROCHIP [Microchip Technology]
Datasheet
MCP6541/1R/1U/2/3/4
1.0
Absolute Maximum Ratings †
V
Current at Analog Input Pin (V
Analog Input (V
All other Inputs and Outputs........... V
Difference Input voltage ....................................... |V
Output Short-Circuit Current .................................continuous
Current at Input Pins ....................................................±2 mA
Current at Output and Supply Pins ............................±30 mA
Storage temperature .....................................-65°C to +150°C
Maximum Junction Temperature (T
ESD protection on all pins (HBM;MM) ...................4 kV; 400V
DC CHARACTERISTICS
DS21696E-page 2
Electrical Specifications: Unless otherwise indicated, V
V
Power Supply
Supply Voltage
Quiescent Current per comparator
Input
Input Voltage Range
Common Mode Rejection Ratio
Common Mode Rejection Ratio
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Offset Voltage
Input Hysteresis Voltage
Input Bias Current
Input Offset Current
Common Mode Input Impedance
Differential Input Impedance
Note 1:
DD
IN –
Drift with Temperature
Linear Temp. Co. (Note 2)
Quadratic Temp. Co. (Note 2)
At Temperature (I-Temp parts)
At Temperature (E-Temp parts)
- V
= V
SS
2:
3:
4:
ELECTRICAL
CHARACTERISTICS
SS
.........................................................................7.0V
Parameters
, and R
The input offset voltage is the center (average) of the input-referred trip points. The input hysteresis is the difference
between the input-referred trip points.
V
Input bias current at temperature is not tested for SC-70-5 package.
Limit the output current to Absolute Maximum Rating of 30 mA.
HYST
IN
) †† ...................... V
at different temperatures is estimated using V
L
= 100 kΩ to V
IN
+, V
J
) .......................... +150°C
IN
SS
SS
-.........................±2 mA
DD
ΔV
- 1.0V to V
- 0.3V to V
CMRR
CMRR
CMRR
PSRR
V
V
Sym
Z
/2 (Refer to
V
V
OS
Z
TC
TC
HYST
I
CMR
DIFF
I
I
I
I
OS
CM
DD
OS
Q
B
B
B
/ΔT
1
2
A
DD
DD
DD
V
SS
+ 1.0V
+ 0.3V
Min
-7.0
Figure
1.6
0.3
1.5
- V
55
50
55
63
−0.3
SS
|
1-3).
10
10
DD
-0.035
1200
HYST
Typ
±1.5
0.6
3.3
70
65
70
80
6.7
25
±3
±1
13
13
1
= +1.6V to +5.5V, V
||4
||2
(T
† Notice: Stresses above those listed under “Absolute Maxi-
mum Ratings” may cause permanent damage to the device.
This is a stress rating only and functional operation of the
device at those or any other conditions above those indicated
in the operational listings of this specification is not implied.
Exposure to maximum rating conditions for extended periods
may affect device reliability.
†† See Section 4.1.2 “Input Voltage and Current
Limits”
A
) = V
V
DD
5000
Max
+7.0
100
5.5
1.0
6.5
HYST
+0.3
+ (T
µV/°C
Units
µV/°C
µV/°C
Ω||pF
Ω||pF
mV
mV
A
µA
dB
dB
dB
dB
pA
pA
pA
pA
V
V
SS
- 25°C) TC
2
= GND, T
I
V
V
V
V
V
T
V
T
T
V
T
T
V
OUT
A
A
A
A
A
DD
DD
DD
CM
CM
CM
CM
CM
© 2006 Microchip Technology Inc.
= -40°C to +125°C, V
= -40°C to +125°C, V
= -40°C to +125°C, V
= +85°C, V
= +125°C, V
= 5V, V
= 5V, V
= 5V, V
= V
= V
= V
= V
= V
= 0
1
+ (T
SS
SS
SS
SS
SS
A
= +25°C,V
(Note 1)
(Note 1)
A
Conditions
CM
CM
CM
- 25°C)
CM
= -0.3V to 5.3V
= 2.5V to 5.3V
= -0.3V to 2.5V
CM
= V
= V
2
SS
TC
SS
IN
(Note 3)
CM
CM
CM
+ = V
2
(Note 3)
.
= V
= V
= V
DD
SS
SS
SS
/2,

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