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EPM1270T144C5N
+StücklisteIC CPLD 980MC 6.2NS 144TQFP
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HerstellerIntel
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Herstellerteil #EPM1270T144C5N
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Paket QFP-144
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Auf Lager3805
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Tray |
| Series | MAX® II |
| ProductStatus | Active |
| ProgrammableType | In System Programmable |
| DelayTimetpd(1)Max | 6.2 ns |
| VoltageSupply-Internal | 2.5V, 3.3V |
| NumberofLogicElements/Blocks | 1270 |
| NumberofMacrocells | 980 |
| NumberofI/O | 116 |
| OperatingTemperature | 0°C ~ 85°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 144-LQFP |
Übersicht
Description
Key features of the EPM1270T144C5N include instant-on functionality, in-system programmability via the JTAG interface, and support for a wide range of I/O standards. These devices are often used in applications requiring quick power-up, robust logic integration, and flexible interfacing, such as in communication systems, consumer electronics, and industrial control systems. The MAX II CPLDs are praised for their efficient logic utilization and versatile design capabilities.
Equivalent
Features
1. Logic Elements: It contains 1270 logic elements, which are used to implement custom logic functions.
2. Package: Encased in a TQFP-144 package, which is a thin quad flat pack with 144 pins.
3. Non-Volatile: The device retains its configuration data without power, thanks to its EEPROM-based architecture.
4. I/O Pins: It offers multiple user I/O pins, making it flexible for various applications.
5. Performance: Operates efficiently at low power, making it suitable for portable and power-sensitive applications.
6. Voltage: Compatible with a range of operating voltages, enhancing its adaptability.
7. Speed Grade: The "-5" suffix indicates its speed grade, which impacts signal processing speed.
8. Design Support: Supported by Altera’s design software for hardware configuration and development.
These features make the EPM1270T144C5N suitable for a wide range of digital logic applications, from simple glue logic to complex state machines.
Pinout
Key features and functions of EPM1270T144C5N include:
- Pin Count: 144 pins
- Logic Elements: It contains 1,270 logic elements (LEs).
- User I/O Pins: It provides up to 98 user I/O pins, depending on the configuration.
- Operating Voltage: 1.8V core voltage, with 3.3V tolerant I/O.
- Onboard Flash: Features an embedded flash memory for storing the configuration data.
- Applications: Used in a wide range of applications including digital signal processing, data communications, and peripheral interfacing.
The EPM1270T144C5N is designed for high-speed and low-power consumption, making it suitable for applications that require flexible logic implementations and reconfigurable hardware.
Manufacturer
Intel Corporation is a global technology company headquartered in Santa Clara, California. It is one of the world's largest and highest-valued semiconductor chip manufacturers. Intel is renowned for its microprocessors, which are widely used in personal computers, servers, and other computing devices. The company's operations extend beyond CPUs to include the manufacture of memory chips, integrated graphics, and various other semiconductor products. With the acquisition of Altera, Intel expanded its portfolio to include programmable logic devices, positioning itself more robustly in the data-centric market by offering adaptable hardware solutions for a variety of applications, including data centers, IoT, and more.
Application
1. Embedded Systems: For implementing custom logic functions and interfacing with microcontrollers.
2. Industrial Automation: In control systems and signal processing applications.
3. Consumer Electronics: For managing input/output functions and data routing.
4. Communications: Used in networking equipment for protocol processing and data handling.
5. Automotive Systems: In vehicle electronics for managing control systems.
6. Prototyping and Development: For testing circuit designs before final implementation.
These applications benefit from the device's low power consumption, flexibility, and reprogrammability.