Allicdata Part #: | MC10H160PG-ND |
Manufacturer Part#: |
MC10H160PG |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ON Semiconductor |
Short Description: | IC 12-BIT GEN/CHKER 16DIP |
More Detail: | Parity Generator 12-Bit 16-DIP |
DataSheet: | MC10H160PG Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Series: | 10H |
Packaging: | Tube |
Part Status: | Obsolete |
Logic Type: | Parity Generator/Checker |
Number of Circuits: | 12-Bit |
Current - Output High, Low: | -- |
Voltage - Supply: | 4.94V ~ 5.46V |
Operating Temperature: | 0°C ~ 75°C |
Mounting Type: | Through Hole |
Package / Case: | 16-DIP (0.300", 7.62mm) |
Supplier Device Package: | 16-DIP |
Base Part Number: | 10H160 |
Description
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The MC10H160PG parity generator and checker is widely used in many different application fields demanding reliable logic circuitry. This popular integrated circuit is used to detect or generate parity errors in electronic and computer systems. The MC10H160PG logic chip offers strong protection against errors from soft and hard noise signals, as well as other types of unexpected parity errors. The MC10H160PG is available in several different package types and can be designed for high-speed multipurpose operations. The MC10H160PG has a built-in synchronizer, an adjustable input setup/hold time, and an adjustable output delay. This enables designers to customize the logic chip to their specific needs. The MC10H160PG has a straightforward working principle. It specifically detects or generates when an even or odd number of its logic inputs are active. When any of the logic inputs become active, the corresponding output will ‘toggle’ or change its logical state. The MC10H160PG can be used as an error detection device by simply connecting an even number of external logic circuits to its inputs. When the external logic circuits are activated, the MC10H160PG will generate an error output. When the MC10H160PG is used as a parity generator, the logic chip will output a ‘1’ when an odd number of external logic circuits are activated. Similarly, the output will assert a ‘0’ when an even number of external logic circuits are activated. The parity generator can be configured for both single and multiplexer operations. The MC10H160PG is ideal for use in various applications requiring strong and reliable parity detection, generation and error correction. These applications include, but are not limited to, digital transmission and switching systems, medical systems, communications, industrial automation, computers and digital electronics. The MC10H160PG also offers a wide range of advantages when compared to other parity solutions. These advantages include enhanced operating temperature and power supply range, long-term reliability, greater EMC protection, and faster speed performance. The low power requirement and smaller power demand of the MC10H160PG make it ideal for use in battery-powered or solar-powered solutions. The MC10H160PG is also able to withstand harsh environmental conditions and is furnished with radiation-hardened materials for increased tolerance. The MC10H160PG is built with robust design features to ensure maximum reliability. The integrated chip can be used to detect and correct single-bit errors as well as higher order single-bit errors. The parity generator and checker is designed for both synchronous and asynchronous operations and provides both on-chip and external modes for maximum operational flexibility. The MC10H160PG also incorporates edge rate control for improved fault-rejecting performances and suppression capability. The MC10H160PG is a popular logic chip that provides strong protection against parity errors from soft and hard noise signals, as well as other types of unexpected parity errors. This all-in-one logic unit is available in several different package types and is suitable for a wide range of applications requiring parity detection, generation, and error correction. The MC10H160PG provides enhanced operating temperature and power supply range, long-term reliability, greater EMC protection, faster speed performance, and low power requirements.The specific data is subject to PDF, and the above content is for reference
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