AS393P-E1 Allicdata Electronics

AS393P-E1 Integrated Circuits (ICs)

Allicdata Part #:

AS393P-E1DI-ND

Manufacturer Part#:

AS393P-E1

Price: $ 0.27
Product Category:

Integrated Circuits (ICs)

Manufacturer: Diodes Incorporated
Short Description: IC COMP OPEN COLLECTOR 8DIP
More Detail: Comparator General Purpose Open Collector 8-DIP
DataSheet: AS393P-E1 datasheetAS393P-E1 Datasheet/PDF
Quantity: 850
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 0.27000
10 +: $ 0.26190
100 +: $ 0.25650
1000 +: $ 0.25110
10000 +: $ 0.24300
Stock 850Can Ship Immediately
$ 0.27
Specifications
Current - Input Bias (Max): 250nA @ 5V
Base Part Number: AS393
Supplier Device Package: 8-DIP
Mounting Type: Through Hole
Package / Case: 8-DIP (0.300", 7.62mm)
Operating Temperature: -40°C ~ 85°C
Hysteresis: --
Propagation Delay (Max): --
CMRR, PSRR (Typ): --
Current - Quiescent (Max): 1mA
Current - Output (Typ): 16mA @ 5V
Series: --
Voltage - Input Offset (Max): 5mV @ 5V
Voltage - Supply, Single/Dual (±): 2 V ~ 36 V, ±1 V ~ 18 V
Output Type: Open Collector
Number of Elements: 2
Type: General Purpose
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Tube 
Description

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Linear-Comparators are sophisticated electronic devices/circuits that allow real-time monitoring and comparing two signals and take pre-determined action when either or both signals exceed or fall below a certain threshold. The main purpose of these Linear-Comparators is to give a precise measure of the difference between two input signals, and then use this difference to control some other process or alert a user of the change. As such, Linear-Comparators are used in a wide range of applications and can be found in numerous areas such as telecommunications, industrial, medical and military applications.The AS393P-E1 is a classic example of a Linear-Comparator. It is a low-cost, precision, differential comparator that can detect the very small differences in signals, and it is compatible with CMOS logic. It was specifically designed to enable high performance comparison in the most demanding applications, such as high-precision temperature control, high speed control systems, voltage regulation and automotive applications.The AS393P-E1 Linear-Comparator consists of two inputs, an inverted analog input (–IN), and a non-inverted analog input (+IN). The output voltage is determined by the difference between the two inputs. When the voltage at +IN is greater than at –IN, the output voltage goes high, and when the voltage at +IN is lower than at –IN, the output voltage goes low.The main feature of the AS393P-E1 is its very low power consumption, making it ideal for battery-powered applications. It also has a wide input dynamic range and excellent linearity, which allows for accurate sensing of signals even at very low voltages. Furthermore, the AS393P-E1 has fast response time and a relatively low offset voltage, so it is well suited for precise switching applications such as temperature and pressure control.In terms of application field, the AS393P-E1 Linear-Comparator is suitable for various applications such as high-precision temperature control, voltage regulation systems, security equipment, power converters, remote sensing, medical equipment and so on. For example, it can be used in motor controls and telecommunication equipment to detect current or voltage that have reached a threshold level, or in automotive applications as an over-current protection circuit.In terms of working principles, there are several factors that can affect the Linear-Comparator\'s performance. Firstly, the gain (or hysteresis) of the device determines how quickly the output voltage changes in response to variations in the input signals. If a large gain is set, then it will be more sensitive to even small differences in the input signals, whereas a lower gain can help to reduce the chances of false positives or unexpected results. Secondly, the offset voltage of the device should be taken into account, as it affects the level at which the output voltage switches. Finally, the input impedance of the device also plays a role in determining the amount of power consumed by the system and should be taken into consideration when setting up a Linear-Comparator system.

The specific data is subject to PDF, and the above content is for reference

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