MAX914 Maxim, MAX914 Datasheet - Page 8

no-image

MAX914

Manufacturer Part Number
MAX914
Description
40ns / Low-Power / 3V/5V / Rail-to-Rail Single-Supply Comparators
Manufacturer
Maxim
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX9140-XK
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9140AAUK+
Manufacturer:
Maxim
Quantity:
385
Part Number:
MAX9140AAUK+T
Manufacturer:
MAXIM
Quantity:
9
Part Number:
MAX9140AAXK+T
Manufacturer:
MURATA
Quantity:
958
Part Number:
MAX9140EUK+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9140EXK+T
Manufacturer:
MAXIM
Quantity:
51
Part Number:
MAX9140EXK-T
Manufacturer:
MAXIM
Quantity:
1
Part Number:
MAX9141ESA
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9142ESA
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Part Number:
MAX9142ESA+T
Manufacturer:
MAXIM
Quantity:
2 500
Part Number:
MAX9144ESD
Manufacturer:
MAXIM/美信
Quantity:
20 000
40ns, Low-Power, 3V/5V, Rail-to-Rail
Single-Supply Comparators
The MAX9140/MAX9141/MAX9142/MAX9144 contain a
current-driven output stage as shown in Figure 4.
During an output transition, I
or pulled to the output pin. The output source or sink
current is high during the transition, creating a rapid
slew rate. Once the output voltage reaches V
V
value, capable of maintaining the V
condition. This significant decrease in current con-
serves power after an output transition has occurred.
One consequence of a current-driven output stage is a
linear dependence between the slew rate and the load
capacitance. A heavy capacitive load will slow down a
voltage output transition. This can be useful in noise-
sensitive applications where fast edges may cause
interference.
The high-gain bandwidth of the MAX9140/MAX9141/
MAX9142/MAX9144 requires design precautions to
realize the full high-speed capabilities of these com-
parators. The recommended precautions are:
8
Figure 2. MAX9141 Timing Diagram with Latch Operator
OL
1) Use a printed circuit board with a good, unbro-
2) Place a decoupling capacitor (a 0.1µF ceramic
_______________________________________________________________________________________
, the source or sink current decreases to a small
ken, low-inductance ground plane.
capacitor is a good choice) as close to V
possible.
DIFFERENTIAL
Applications Information
VOLTAGE
Circuit Layout and Bypassing
INPUT
OUT
LE
V
V
V
V
V
CC
OH
OL
CC
2
CC
2
0
Output Stage Circuitry
V
OS
SOURCE
V
OD
or I
OH
t
S
SINK
or V
t
H
is pushed
OL
t
PD
CC
OH
static
as
or
Figure 3. Input Stage Circuitry
3) Pay close attention to the decoupling capacitor’s
4) On the inputs and outputs, keep lead lengths
5) Solder the device directly to the printed circuit
IN+
IN–
bandwidth, keeping leads short.
short to avoid unwanted parasitic feedback
around the comparators.
board instead of using a socket.
t
4.1kΩ
4.1kΩ
LPW
t
LPD
TO INTERNAL
CIRCUITRY
TO INTERNAL
CIRCUITRY
MAX9140
MAX9141
MAX9142
MAX9144

Related parts for MAX914