Parameters | |
---|---|
Series | MAX® 7000S |
Moisture Sensitivity Level (MSL) | 3 (168 Hours) |
Package / Case | 84-LCC (J-Lead) |
Mfr | Intel |
Mounting Type | Surface Mount |
Operating Temperature | 0°C ~ 70°C (TA) |
Supplier Device Package | 84-PLCC (29.31x29.31) |
Number of I/O | 68 |
Number of Gates | 2500 |
Programmable Type | In System Programmable |
Voltage Supply - Internal | 4.75V ~ 5.25V |
Number of Logic Elements/Blocks | 8 |
Delay Time tpd(1) Max | 7.5 ns |
Number of Macrocells | 128 |
Package | Tube |
Product Status | Obsolete |
Conevo-Key Programmable | Verified |
Base Product Number | EPM7128 |
REACH Status | REACH Unaffected |
Standard Package | 15 |
ECCN | 3A991D |
HTSUS | 8542.39.0001 |
The Intel EPM7128SLC84-7N is a complex programmable logic device (CPLD) manufactured by Intel (formerly Altera) and belonging to the MAX 7000 series. This CPLD
is favored by the market for its high performance and flexibility, and is suitable for application scenarios that require rapid development and reconfigurable logic.
The EPM7128SLC84-7N has 128 macro cells for flexible logic implementation. It has 84 input/output (I/O) pins to support many different logical configurations and
application requirements. This FPGA Chip supports in-system programmability (ISP), allowing reprogramming in post-production devices to adapt to changing application
requirements. The operating voltage is 5V, which can work stably in the temperature range of 0°C to 85°C, in line with EU RoHS standards.
EPM7128SLC84-7N Features:
- 128 macro units, providing flexible logic implementation capabilities
- 84 I/O pins, supporting multiple logical configurations
- In-system programmability (ISP) for later reprogramming
- The operating voltage is 5V, which meets the requirements of various power supplies
- Wide operating temperature range, adapt to different environmental conditions
- Supports a variety of programming methods, including Quartus II software tools
EPM7128SLC84-7N Application:
EPM7128SLC84-7N CPLD is widely used in communication, industrial control, automotive electronics and other fields. It can be used to realize a variety of complex
digital logic functions such as high-speed data transmission, signal processing, image processing, machine learning algorithms, etc. Due to its reprogrammability and
flexibility, it is commonly used for design prototyping, system validation, and product development to meet changing market needs and technological advances.