MAX913CSA+ Maxim Integrated Products, MAX913CSA+ Datasheet - Page 8

IC COMPARATOR TTL SNGL HS 8-SOIC

MAX913CSA+

Manufacturer Part Number
MAX913CSA+
Description
IC COMPARATOR TTL SNGL HS 8-SOIC
Manufacturer
Maxim Integrated Products
Type
with Latchr
Datasheet

Specifications of MAX913CSA+

Number Of Elements
1
Output Type
Complementary, TTL
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.154", 3.90mm Width)
Number Of Channels
1 Channel
Supply Voltage (max)
7 V
Supply Voltage (min)
- 7 V
Supply Current (max)
10 mA
Maximum Operating Temperature
+ 70 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
0 C
Propagation Delay Time
16 ns
Comparator Type
Precision
No. Of Comparators
1
Response Time
10ns
Ic Output Type
TTL
Supply Current
6mA
Supply Voltage Range
4.5V To 5.5V, -2V To -7V
Amplifier Case Style
SOIC
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The MAX912/MAX913 are tested with ±5V power sup-
plies that provide an input common-mode range (V
of 8.7V (-5.2V to +3.5V). Operation from a single +5V
supply provides a common-mode input range of 3.7V
(-0.2V to +3.5). Connect V- to GND for single-supply
operation. The MAX912/MAX913 will operate from a
minimum single-supply voltage of +4.5V.
The V+ supply provides power to both the analog input
stage and digital output circuits, whereas the V- supply
only powers the analog section. Bypass V+ and V- to
ground with 0.1µF to 1.0µF ceramic capacitors in parallel
with 10µF or greater tantalum capacitors. Connect the
ceramic capacitors very close to the MAX912/MAX913’s
supply pins, keeping leads short to minimize lead induc-
tance. For particularly noisy applications, use ferrite
beads on the power-supply lines.
As with all high-speed components, careful attention to
layout is essential for best performance.
Single/Dual, Ultra-Fast, Low-Power
Precision TTL Comparators
Figure 2. Effect of Hysteresis on Input Resolution
8
_______________________________________________________________________________________
Applications Information
Power Supplies and Bypassing
IN+
IN-
Q
WITH HYSTERESIS
IDEAL (WITHOUT HYSTERESIS)
*WHEN HYSTERESIS IS ADDED, A COMPARATOR CANNOT RESOLVE ANY INPUT SIGNAL WITHIN THE HYSTERESIS BAND.
Board Layout
CM
HYSTERESIS
BAND*
)
1) Use a printed circuit board with an unbroken ground
2) Pay close attention to the bandwidth of bypass com-
3) Avoid sockets; solder the comparator and other
The MAX912/MAX913 design eliminates the input slew-
rate requirement imposed on many standard compara-
tors. As long as LE is high after the maximum propaga-
tion delay and the input is greater than the
comparator’s total DC error, the output will be valid
without oscillations.
The maximum clock and signal rate is 70MHz, based
on the comparator’s rise and fall time with a 5mV over-
drive at +25°C (Figure 1). With a 20mV overdrive, the
maximum propagation delay is 12ns and the clock sig-
nal rate is 85MHz.
MAX912 TRANSISTOR COUNT: 285
MAX913 TRANSISTOR COUNT: 154
PROCESS: Bipolar
plane.
ponents and keep leads short.
components directly to the board to minimize
unwanted parasitic inductance and capacitance.
Maximum Clock (LE) and Signal Rate
Chip Information
Input Slew Rate

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