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PLM393LVDR Datenblatt(PDF) 23 Page - Texas Instruments

Teilenummer PLM393LVDR
Bauteilbeschribung  LM393LV-Q1 Dual and LM339LV-Q1 Quad Low Voltage Automotive Comparators
PDF  29 Pages
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Hersteller  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
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PLM393LVDR Datenblatt(HTML) 23 Page - Texas Instruments

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VCC
Ground
6
5
7
1
2
3
4
8
Ground
PF
1IN-
1IN+
GND
2OUT
2IN-
2IN+
1OUT
VCC
OK
VCC or GND
Better
Input Resistors
Close to device
23
LM393LV-Q1
www.ti.com
SNOSDB3 – JUNE 2020
Product Folder Links: LM393LV-Q1
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Copyright © 2020, Texas Instruments Incorporated
11 Power Supply Recommendations
Due to the fast output edges, it is critical to have bypass capacitors on the supply pin to prevent supply ringing
and false triggers and oscillations. Bypass the supply directly at each device with a low ESR 0.1 µF ceramic
bypass capacitor directly between VCC pin and ground pins. Narrow, peak currents will be drawn during the
output transition time, particularly for the push-pull output device. These narrow pulses can cause un-bypassed
supply lines and poor grounds to ring, possibly causing variation that can eat into the input voltage range and
create an inaccurate comparison or even oscillations.
12 Layout
12.1 Layout Guidelines
For accurate comparator applications it is important maintain a stable power supply with minimized noise and
glitches. Output rise and fall times are in the tens of nanoseconds, and should be treated as high speed logic
devices. The bypass capacitor should be as close to the supply pin as possible and connected to a solid ground
plane, and preferably directly between the VCC and GND pins.
Minimize coupling between outputs and inputs to prevent output oscillations. Do not run output and input traces
in parallel unless there is a VCC or GND trace between output to reduce coupling. When series resistance is
added to inputs, place resistor close to the device. A low value (<100 ohms) resistor may also be added in series
with the output to dampen any ringing or reflections on long, non-impedance controlled traces. For best edge
shapes, controlled impedance traces with back-terminations should be used when routing long distances.
12.2 Layout Example
Figure 21. Dual Layout Example



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