仕様
| 属性 | 値 |
| Package / Case | Tray |
| Series | MAX® 3000A |
| Part Status | Obsolete |
| Programmable Type | In System Programmable |
| Delay Timetpd(1)Max | 4.5 ns |
| Voltage Supply - Internal | 3V ~ 3.6V |
| Number of Logic Elements/Blocks | 4 |
| Number of Macrocells | 64 |
| Number of Gates | 1250 |
| Number of I/O | 66 |
| Operating Temperature | 0°C ~ 70°C (TA) |
| Mounting Type | Surface Mount |
概要
Description
The EPM3064ATC100-4N is a CPLD (Complex Programmable Logic Device) from Altera’s MAX 3000A family. Key features:
- 64 macrocells, 1,600 usable gates
- 3.3V operation, low-power design
- 100-pin TQFP package
- 4ns pin-to-pin logic delay (speed grade -4N)
- In-system programmable (ISP) via JTAG
- Non-volatile EEPROM configuration
Commonly used in glue logic, interface bridging, and simple state machines, it offers reprogrammability and fast performance for cost-sensitive designs.
- 64 macrocells, 1,600 usable gates
- 3.3V operation, low-power design
- 100-pin TQFP package
- 4ns pin-to-pin logic delay (speed grade -4N)
- In-system programmable (ISP) via JTAG
- Non-volatile EEPROM configuration
Commonly used in glue logic, interface bridging, and simple state machines, it offers reprogrammability and fast performance for cost-sensitive designs.
Equivalent
The EPM3064ATC100-4N is a CPLD from Altera (now Intel). Equivalent alternatives include:
1. Xilinx XC9536XL-100VQ64C
2. Lattice ispMACH 4032ZE-100LT128
3. Microchip ATF1504AS-100AU44
These offer similar logic capacity, speed, and package options. Verify pin compatibility and features before substitution.
1. Xilinx XC9536XL-100VQ64C
2. Lattice ispMACH 4032ZE-100LT128
3. Microchip ATF1504AS-100AU44
These offer similar logic capacity, speed, and package options. Verify pin compatibility and features before substitution.
Features
The EPM3064ATC100-4N is a CPLD (Complex Programmable Logic Device) from Altera's MAX 3000A family. Key features:
- 64 macrocells (up to 1,250 usable gates)
- 4ns pin-to-pin logic delay (high-speed operation)
- 3.3V operation (low power, TTL-compatible)
- In-system programmable (ISP) via JTAG
- 100-pin TQFP package (compact footprint)
- 5,000+ reprogramming cycles (high reliability)
- Security bit for design protection
- 5V-tolerant I/O (flexible interfacing)
Ideal for glue logic, interface bridging, and control applications.
- 64 macrocells (up to 1,250 usable gates)
- 4ns pin-to-pin logic delay (high-speed operation)
- 3.3V operation (low power, TTL-compatible)
- In-system programmable (ISP) via JTAG
- 100-pin TQFP package (compact footprint)
- 5,000+ reprogramming cycles (high reliability)
- Security bit for design protection
- 5V-tolerant I/O (flexible interfacing)
Ideal for glue logic, interface bridging, and control applications.
Pinout
The EPM3064ATC100-4N is a CPLD (Complex Programmable Logic Device) from Intel (formerly Altera).
- Pin Count: 100-pin (TQFP package).
- Key Functions:
- 64 macrocells for logic implementation.
- 3.3V operation with 5V-tolerant I/O.
- 4ns pin-to-pin delay (speed grade -4N).
- In-system programmable (ISP) via JTAG.
- 36 I/O pins, 4 dedicated inputs, and 4 clock pins.
Commonly used for glue logic, interface bridging, and control applications.
- Pin Count: 100-pin (TQFP package).
- Key Functions:
- 64 macrocells for logic implementation.
- 3.3V operation with 5V-tolerant I/O.
- 4ns pin-to-pin delay (speed grade -4N).
- In-system programmable (ISP) via JTAG.
- 36 I/O pins, 4 dedicated inputs, and 4 clock pins.
Commonly used for glue logic, interface bridging, and control applications.
Manufacturer
The EPM3064ATC100-4N is manufactured by Intel (formerly Altera). Intel acquired Altera in 2015, integrating it into its Programmable Solutions Group.
Altera was a leading company in programmable logic devices (PLDs), specializing in FPGAs (Field-Programmable Gate Arrays) and CPLDs (Complex Programmable Logic Devices). The EPM3064ATC100-4N is part of Altera’s MAX 3000A CPLD family, known for low-power, cost-effective programmable logic solutions.
Intel continues to produce and support Altera’s legacy PLD products while advancing FPGA technology for applications like AI, data centers, and embedded systems.
Altera was a leading company in programmable logic devices (PLDs), specializing in FPGAs (Field-Programmable Gate Arrays) and CPLDs (Complex Programmable Logic Devices). The EPM3064ATC100-4N is part of Altera’s MAX 3000A CPLD family, known for low-power, cost-effective programmable logic solutions.
Intel continues to produce and support Altera’s legacy PLD products while advancing FPGA technology for applications like AI, data centers, and embedded systems.
Application
The EPM3064ATC100-4N, a CPLD from Altera (now Intel), is commonly used in:
1. Digital Logic Replacement – Replaces discrete logic gates in circuits.
2. Interface Bridging – Connects incompatible protocols (e.g., UART to SPI).
3. Embedded Control – Manages simple state machines and control logic.
4. Industrial Automation – Used in PLCs and sensor interfacing.
5. Consumer Electronics – Controls displays, buttons, and power management.
6. Automotive Systems – Handles basic signal conditioning and diagnostics.
Its low power, fast response, and reprogrammability make it ideal for small-scale logic integration.
1. Digital Logic Replacement – Replaces discrete logic gates in circuits.
2. Interface Bridging – Connects incompatible protocols (e.g., UART to SPI).
3. Embedded Control – Manages simple state machines and control logic.
4. Industrial Automation – Used in PLCs and sensor interfacing.
5. Consumer Electronics – Controls displays, buttons, and power management.
6. Automotive Systems – Handles basic signal conditioning and diagnostics.
Its low power, fast response, and reprogrammability make it ideal for small-scale logic integration.
Package
The EPM3064ATC100-4N is an Altera (now Intel) CPLD in a 100-pin Thin Quad Flat Pack (TQFP) package. It features a 100-lead, 14x14mm body with a 0.5mm lead pitch, suitable for surface-mount applications. The "TC100" denotes the TQFP-100 package, while "-4N" indicates its 4ns pin-to-pin delay speed grade. Compact and reliable for embedded designs.