MCP6569-E/ST Microchip Technology, MCP6569-E/ST Datasheet - Page 10

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MCP6569-E/ST

Manufacturer Part Number
MCP6569-E/ST
Description
IC COMP QUAD 1.8V OD 14-TSSOP
Manufacturer
Microchip Technology
Type
General Purposer
Datasheets

Specifications of MCP6569-E/ST

Number Of Elements
4
Output Type
CMOS, Open-Drain
Voltage - Supply
1.8 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
14-TSSOP (0.173", 4.40mm Width)
Comparator Type
Low Power
No. Of Comparators
4
Response Time
34ns
Ic Output Type
Open Drain
Supply Current
100µA
Supply Voltage Range
1.8V To 5.5V
Amplifier Case Style
TSSOP
No. Of Pins
14
Rohs Compliant
Yes
Output Compatibility
CMOS
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP6569-E/ST
Manufacturer:
MICROCHIP
Quantity:
12 000
MCP6566/6R/7/9
Note: Unless otherwise indicated, V
R
FIGURE 2-31:
Common-mode Input Voltage.
FIGURE 2-32:
Capacitive Load.
FIGURE 2-33:
Voltage vs Temperature.
DS22143A-page 10
L
= 20 kΩ to V
1000
0.01
80
70
60
50
40
30
20
1E+11
1E+09
1E+07
1E+05
1E+03
1E+01
100
0.1
1E-01
100n
10
0.1p
0.00
10m
10p
10µ
1
0.001
1m
1n
1
-0.8
V
100 mV Over-Drive
100mV Over-Drive
V
DD
CM
= 1.8V
= V
T
T
T
T
0.01
A
A
A
A
PU
10
= -40°C
= +25°C
= +85°C
= +125°C
DD
0.50
/2
= V
-0.6
Capacitive Load (nf)
0.1
100
DD
Propagation Delay vs.
Propagation Delay vs.
Input Bias Current vs. Input
V
Input Voltage (V)
DD
, and C
= 5.5V, t
V
CM
1000
1.00
V
1
-0.4
(V)
DD
PHL
= 1.8V, t
L
t
PHL
10000 100000 1E+06
= 25 pF.
10
DD
PHL
1.50
-0.2
= +1.8V to +5.5V, V
100
1000
2.00
0
SS
= GND, T
FIGURE 2-34:
Common-mode Input Voltage.
FIGURE 2-35:
up Resistor.
FIGURE 2-36:
up Voltage.
80
70
60
50
40
30
20
10000
10000
1000
1000
100
100
0.0
A
10
10
= +25°C, V
V
100 mV Over-Drive
0.1
0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5
DD
= 5.5V
100 mV Over-Drive
V
100 mV Over-Drive
V
CM
CM
1.0
= V
= V
DD
DD
/2
/2
IN
2.0
Propagation Delay vs.
1.0
Propagation Delay vs. Pull-
Propagation Delay vs. Pull-
+ = V
t
PLH,
© 2009 Microchip Technology Inc.
V
V
R
t
DD
CM
t
PLH,
V
PU
PHL,
3.0
DD
t
t
= 1.8V
PU
PHL
PLH,
(V)
V
(kΩ)
V
/2, V
DD
(V)
DD
V
DD
= 5.5V
t
= 1.8V
PLH
= 5.5V
10.0
4.0
IN –
= GND,
5.0
t
PHL
100.0
6.0

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