MAX9647 Maxim, MAX9647 Datasheet - Page 8

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MAX9647

Manufacturer Part Number
MAX9647
Description
The MAX9647/MAX9648 comparators are drop-in, pin-for-pin compatible replacements for the LMX331/LMX331H
Manufacturer
Maxim
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX9647AUK+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
The MAX9647/MAX9648 are low-cost, general-purpose
comparators that have a single-supply +1.8V to +5V
operating voltage range. The common-mode input range
extends from -0.1V below the negative supply to within
+0.7V of the positive supply. They require approximately
60FA per comparator with a 5V supply and 52FA with a
2.7V supply.
The MAX9648 has 2mV of hysteresis for noise immunity.
This significantly reduces the chance of output oscilla-
tions even with slow moving input signals. The ICs are
ideal for automotive applications because they oper-
ate from -40NC to +125NC. See the
Characteristics.
PIN
1
2
3
4
5
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Detailed Description
NAME
OUT
V
V
IN+
IN-
DD
SS
Typical Operating
Noninverting Input
Negative Supply (Connect to GND)
Inverting Input
Comparator Output (Open Drain)
Positive Supply
TOP VIEW
General-Purpose, Low-Voltage,
V
IN+
IN-
SS
1
2
3
SC70/SOT23
+
MAX9647
MAX9648
Many comparators oscillate in the linear region of opera-
tion because of noise or undesired parasitic feedback.
This tends to occur when the voltage on one input is
equal or very close to the voltage on the other input. The
MAX9648 has internal hysteresis to counter parasitic
effects and noise.
The hysteresis in a comparator creates two trip points:
one for the rising input voltage and one for the falling
input voltage
points is the hysteresis. When the comparator’s input
voltages are equal, the hysteresis effectively causes
one comparator input to move quickly past the other,
thus taking the input out of the region where oscillation
occurs. This provides clean output transitions for noisy,
slow-moving input signals.
Tiny Pack Comparators
5
4
V
OUT
DD
MAX9647/MAX9648
FUNCTION
(Figure
Applications Information
1). The difference between the trip
Pin Configuration
Pin Description
Hysteresis

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