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EL2252CN 데이터 시트보기 (PDF) - Intersil

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EL2252CN Datasheet PDF : 10 Pages
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Simplified Schematic
EL2252
ONE COMPARATOR
Applications Information
The EL2252 is very easy to use and is relatively oscillation-
free, but a few items must be attended. The first is that both
supplies should be bypassed closely. 1µF tantalums are very
good and no additional smaller capacitors are necessary.
The EL2252 requires V- to be at least 5V to preserve AC
performance. V+ must be at least 6V for a TTL output swing,
8V for CMOS outputs.
The input voltage range will be referred to the more positive
of the two inputs. That is, bringing an input as negative as V-
will not cause problems; it's the other input's level that must
be considered. The typical input range is +13/-12V when the
supplies are ±15V. This range diminishes over temperature
and varies with processing; it is wise to set power supplies
such that V+ is 5V more positive than the most positive input
signal and V- more negative than 6V below the most
negative input. ±12V supplies will easily encompass all
CMOS and ECL logic inputs. If the input exceeds the
device's common-mode input capability, the EL2252
propagation delay and input bias current will increase. Fault
currents will occur with inputs a diode below V- or above V+.
No damage nor VOS shift will occur even when fault currents
within the absolute maximum ratings.
One of the few ways in which oscillations can be induced is
by connecting a high-Q reactive source impedance to the
EL2252 inputs. Such sources are long wires and
unterminated coaxial lines. The source impedance should
be de-Q'ed. One method is to connect a series resistor to the
EL2252 input of around 100value. More resistance will
calm the system more effectively, but at the expense of
comparator response time. Another method is to install a
“snubber” network from comparator input to ground. A
snubber is a resistor in series with a small capacitor, around
100and 33pF. Each physical and electrical environment
will require different treatments, although many need none.
The major use of the HYS pin is to suppress noise
superimposed on the input signal. By shorting the HYS pin
to V- a ±30mV hysteresis is placed around the VOS of the
comparator input. Leaving the pin open, or more
appropriately, grounding the HYS pin removes all hysteresis.
Connecting a resistor between HYS and V- allows an
adjustment of the peak-to-peak hysteresis level.
Unfortunately, an external resistor cannot track the internal
devices properly, so temperature and unit-to-unit variations
of hysteresis are increased. The relationship between the
resistor and resulting hysteresis level is not linear, but a 1.5k
resistor will approximately halve the nominal value.
The time delay of the EL2252 will increase by about 0.7ns
when using full hysteresis.
The EL2252 is specifically designed to be tolerant of large
inputs. It will exhibit very much increased delay times for
input overdrives below 100mV. If very small overdrives must
be sensed, the EL2018 or EL2019 comparators would be
good choices, although they lose accuracies with signal
input Slew Rates above 400V/µs. The EL2252 keeps its
timing accuracy with input Slew Rates between 100V/µs and
4000V/µs of input Slew Rate.
The output stage drives tens of pF load capacitances without
increased overshoot, but propagation delay increases about
7

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