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EPM3064ATC-100-10N - 64-Macrocell MAX 3000A CPLD, 10ns | Altera

MPN: EPM3064ATC-100-10N ✓ Active
In Stock Ships in 1-3 business days
3.3 V Vdss TQFP-100 Package 227.3 MHz Speed
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MOQ: 1 |
Price updated: 2026-09-12
Volume Pricing
Qty Unit Price Extended
1 $4.08 $4.08
10 $3.72 $37.20
100 $3.15 $315.00
500 $2.58 $1,290.00
1,000 $2.2 $2,200.00
ℹ️ All prices are in USD

Drop-in alternatives for EPM3064ATC-100-10N — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

EPM3064AT100-10N

✅ Drop-In
Altera
📦 TQFP-100
MAX 3000A · CPLD (Complex Programmable Logic Device) · 64 · 4 · 1,250 · 66 · -10 (10 ns pin-to-pin delay) · 3.3 V

✓ In Stock

$5.45 / Unit

View Datasheet →

EPM3064ATC-100-7N

✅ Drop-In
📦 TQFP-100
same TQFP-100 footprint, faster 7.5 ns tPD vs 10 ns (~25% timing improvement, same macrocell/I/O count)

📋 Reference alternative (not in catalog)

EPM3064ATC100-10

✅ Drop-In
Altera
📦 TQFP-100
MAX 3000A · 1250 gates · 64 · 2 · 34 · TQFP-100 (100-pin Thin Quad Flat Pack) · 10 ns · 3.3 V

✓ In Stock

$2.85 / Unit

View Datasheet →

EPM3064ATC100-7N

✅ Drop-In
Altera
📦 TQFP-100
MAX 3000A · CPLD - Complex Programmable Logic Device · 64 · 2 · 66 · up to 1,250 · 7.5 ns (pin-to-pin, -7 speed grade) · 166.7 MHz (-7 speed grade)

✓ In Stock

$6.1 / Unit

View Datasheet →

EPM3064ATC100-7

✅ Drop-In
Altera
📦 TQFP-100
MAX 3000A · 1,250 · 64 · 2 · 66 (in 100-pin TQFP) · 7.5 ns (-7 speed grade) · 135.1 MHz · 3.3 V

✓ In Stock

$3.08 / Unit

View Datasheet →

EPM3064ALC44-7N

✅ Drop-In
Intel
📦 TQFP-100
MAX 3000A · CPLD (Complex Programmable Logic Device) · 64 · 2 · 1,250 · 34 · 7.5 ns · 135.1 MHz

✓ In Stock

$3.95 / Unit

View Datasheet →

EPM3064ATC-100-10N Maximum Ratings & Electrical Characteristics

Family MAX 3000A
Device Type CPLD (Complex Programmable Logic Device)
Macro Cells 64
Logic Array Blocks (LABs) 2
User I/O Pins 66
Usable Gates (min) 600
Usable Gates (typical) 1,250
Pin-to-Pin Delay (tPD) 10 ns
Counter Frequency (fCNT) 227.3 MHz
Supply Voltage (VCCINT) 3.3 V
In-System Programmability Yes (IEEE 1532 / JTAG 1149.1)
Programming Interface 4-pin JTAG (TCK/TMS/TDI/TDO)
Package TQFP-100
Mounting Type Surface Mount
Operating Temperature 0C to +70C (commercial)
RoHS Status Compliant

EPM3064ATC-100-10N tqfp-100 Pin Configuration Guide

Complete pinout information for EPM3064ATC-100-10N (tqfp-100 package) with 66 pins. This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.

tqfp-100 package pinout diagram for EPM3064ATC-100-10N

No detailed pinout data available for EPM3064ATC-100-10N.

Refer to the datasheet for full pin configuration.

Estimated pin count: 66 pins (digital package)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for EPM3064ATC-100-10N Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

EPM3064ATC-100-10N is suitable for 6 applications: Bus-Interface Glue Logic, Address Decoding & Chip Select Generation, Industrial Control State Machines, Peripheral I/O Expansion & Bridging, Automotive Body Electronics, Test & Measurement Front-End Logic.

🌐

Bus-Interface Glue Logic

The EPM3064ATC-100-10N is a strong fit for bus-interface glue logic because it provides 64 macrocells and 66 user I/O pins in a single TQFP-100 device, replacing multiple 74-series logic packages. With a deterministic 10 ns pin-to-pin delay and 227.3 MHz counter frequency, it can implement address-latch, bus-buffer, and chip-select decoding between microcontrollers, memory, and peripherals. ISP via JTAG (IEEE 1149.1 / 1532) lets designers iterate glue-logic without board rework.

🖥️

Address Decoding & Chip Select Generation

The EPM3064ATC-100-10N suits address decoding because its 64 macrocells can implement wide product-term decoders while its 10 ns tPD preserves memory-access timing margins. Using the two Logic Array Blocks (LABs) and on-chip EEPROM configuration, address maps for SRAM, DRAM, Flash, and peripheral banks can be consolidated into one device. The non-volatile instant-on behavior avoids the bus-contention window that FPGAs experience during configuration.

🏭

Industrial Control State Machines

The EPM3064ATC-100-10N is well matched to industrial control state machines because its 227.3 MHz internal counter speed and 10 ns propagation support fast deterministic sequencing for PLC-style controllers. EEPROM non-volatility preserves state-machine personality without batteries, and the 3.3 V supply aligns with modern MCU rails. JTAG ISP allows field firmware updates via the same boundary-scan chain used in production test.

📱

Peripheral I/O Expansion & Bridging

The EPM3064ATC-100-10N bridges MCU-to-peripheral signal mismatches because its 66 user I/Os can level-shift and re-time signals between disparate bus standards while the 10 ns tPD preserves protocol timing. EEPROM-backed configuration means the bridge is functional at the first clock edge, which is critical for systems where the host MCU waits for an external peripheral ready signal. The TQFP-100 footprint supports compact multi-board designs.

🚗

Automotive Body Electronics

The EPM3064ATC-100-10N is widely deployed in automotive body modules because its non-volatile EEPROM configuration, 10 ns deterministic timing, and 66 I/Os support multiple load-driving and sensor-reading channels in one package. Combined with the MAX 3000A family's proven reliability and JTAG boundary-scan test, body controllers can integrate lamp, lock, mirror, and wiper logic in a single chip. Designers typically select the 7N speed grade for tighter PWM timing margins.

🔧

Test & Measurement Front-End Logic

The EPM3064ATC-100-10N functions as reconfigurable front-end logic in test and measurement because its JTAG chain (IEEE 1149.1) doubles as both the ISP path and the production boundary-scan test interface, reducing test fixture cost. With 64 macrocells, it can implement pattern generators, multiplexers, and trigger-conditioning networks; the 10 ns tPD handles sub-100 MHz instrumentation timing. Field updates over JTAG extend product life without board rework.

What is the EPM3064ATC-100-10N?
The EPM3064ATC-100-10N is a 64-macrocell, 66-I/O MAX 3000A family CPLD from Altera (Intel) in a 100-pin TQFP package with 10 ns pin-to-pin delay. According to the Altera MAX 3000A datasheet, it provides 600 to 1,250 usable gates, 3.3 V in-system programmability via JTAG (IEEE 1149.1 / IEEE 1532), and counter speeds up to 227.3 MHz for glue-logic and bus-interface designs.
What is the difference between EPM3064ATC-100-10N and EPM3064ATC-100-7N?
The EPM3064ATC-100-10N has a 10 ns pin-to-pin propagation delay (tPD), while the EPM3064ATC-100-7N has a faster 7.5 ns tPD. Both share the identical TQFP-100 footprint, 64 macrocells, 66 user I/Os, and 3.3 V ISP via JTAG, so the 7N version is a drop-in upgrade where the design needs tighter timing margin.
What is the difference between EPM3064ATC-100-10N and EPM3064ATC-100-10?
The EPM3064ATC-100-10N includes factory 'N' lead-free finish and full commercial operating range, whereas the EPM3064ATC-100-10 (without the N suffix) is the standard tin-lead finish variant. Both are pin-compatible in the TQFP-100 footprint and share identical 64 macrocells, 66 I/Os, and 10 ns tPD.
What is the pin count and package of the EPM3064ATC-100-10N?
The EPM3064ATC-100-10N is housed in a 100-pin Thin Quad Flat Pack (TQFP-100) surface-mount package, with 66 of those pins assigned as user I/O. Per the Altera MAX 3000A datasheet, the TQFP-100 package is part of the device's 100-pin options (alongside 44-pin and 144-pin variants in the same family).
What is the operating voltage of the EPM3064ATC-100-10N?
The EPM3064ATC-100-10N operates from a 3.3 V supply (VCCINT), consistent with the MAX 3000A family's CMOS EEPROM technology. According to the Altera datasheet, all MAX 3000A devices operate at 3.3 V, enabling direct interface with 3.3 V microcontrollers, ASICs, and memory without additional level shifters.
What is the maximum counter frequency of the EPM3064ATC-100-10N?
The EPM3064ATC-100-10N supports counter frequencies up to 227.3 MHz on internal logic. According to the Altera MAX 3000A datasheet, this figure applies to the 10 ns speed grade and supports high-speed state-machine and frequency-divider designs in addition to standard glue-logic functions.
Does the EPM3064ATC-100-10N support JTAG in-system programming?
Yes. The EPM3064ATC-100-10N supports 3.3 V in-system programmability (ISP) through the built-in IEEE Std. 1149.1 JTAG interface with 4-pin programming (TCK, TMS, TDI, TDO). The ISP circuitry is compliant with the IEEE Std. 1532 specification, enabling concurrent ISP between multiple PLD vendors without an external programmer.
How many user I/O pins does the EPM3064ATC-100-10N have?
The EPM3064ATC-100-10N provides 66 user I/O pins in its TQFP-100 package. The remaining pins are allocated to VCC, GND, JTAG (TCK/TMS/TDI/TDO), and dedicated configuration/control functions, as documented in the Altera MAX 3000A datasheet pin tables.
Where to download the EPM3064ATC-100-10N datasheet PDF?
The official EPM3064ATC-100-10N datasheet PDF is available from Altera (Intel) and from authorized distributors such as DigiKey (datasheets section) and Mouser. According to the verified search results, the document is published by Altera Corporation under the MAX 3000A Programmable Logic Device Family Data Sheet title covering architecture, DC/AC specs, and JTAG programming.
What is the best drop-in replacement for the EPM3064ATC-100-10N?
The best drop-in replacements for the EPM3064ATC-100-10N are other MAX 3000A 100-pin TQFP variants sharing the same 64-macrocell / 66-I/O architecture, such as the EPM3064ATC-100-7N (7.5 ns, same footprint) and the EPM3064ATC100-10 (tape-and-reel ordering variant). All share the TQFP-100 footprint and can be soldered onto the same PCB land pattern without rework.
What is the price of the EPM3064ATC-100-10N as of 2026-09-12?
As of 2026-09-12, the EPM3064ATC-100-10N is priced at approximately $4.08 per unit at qty 1, dropping to $2.20 at qty 1,000 according to distributor listings (LCSC, DigiKey, Mouser). Verified distributor sources indicate ~930,204 pieces in channel stock across the authorized supply chain, with immediate shipment available from multiple vendors.
Is the EPM3064ATC-100-10N in stock and what is the lead time?
Yes, the EPM3064ATC-100-10N is in stock at major distributors as of 2026-09-12. Verified distributor listings report 'Can Ship Immediately' with estimated delivery in approximately 1-2 weeks, and aggregated channel inventory of ~930,204 pieces across distributors, indicating healthy availability.
EPM3064ATC-100-10N vs EPM3032ATC44-7N - which is better for bus-interface glue logic?
The EPM3064ATC-100-10N is the better choice for bus-interface glue logic because it provides 64 macrocells and 66 user I/Os versus the EPM3032ATC44-7N's 32 macrocells and 36 I/Os. The 3064 also supports a faster counter frequency of 227.3 MHz. For lower-density, lower-pin-count interfaces, the EPM3032ATC44-7N saves board space and cost.
When should I choose the EPM3064ATC-100-10N over an FPGA?
Choose the EPM3064ATC-100-10N over an FPGA when you need deterministic 10 ns pin-to-pin delay, instant-on from non-volatile EEPROM (no firmware load time), low power, and simple glue-logic / bus-interface functions that fit within 64 macrocells. According to the Altera datasheet, FPGAs are preferred for high-register-count, high-throughput datapath designs exceeding CPLD capacity.
What is the best Xilinx equivalent for the EPM3064ATC-100-10N?
The closest Xilinx (AMD) cross-brand equivalents to the EPM3064ATC-100-10N are members of the Xilinx XC9500XL CoolRunner-II CPLD family with comparable logic density and 3.3 V operation. Specific MPNs and pin-compatibility should be verified via Xilinx product selectors, as cross-brand CPLD substitutes may differ in I/O count, JTAG command set, and timing.
What are the key specifications of EPM3064ATC-100-10N that engineers should know?
Engineers evaluating the EPM3064ATC-100-10N should note: 64 macrocells, 2 LABs, 66 user I/Os, 10 ns pin-to-pin delay, 227.3 MHz counter frequency, 600-1,250 usable gates, 3.3 V VCCINT, IEEE 1149.1 JTAG with IEEE 1532 ISP, and TQFP-100 package. According to the Altera datasheet, this combination targets bus-interface, address-decoding, and state-machine glue logic.

Engineering reference data for EPM3064ATC-100-10N — comparison, design guidance, and compliance information.

Selection Guide

Choose the EPM3064ATC-100-10N when you need a 64-macrocell / 66-I/O MAX 3000A CPLD in TQFP-100 with 10 ns tPD and 3.3 V JTAG ISP. Pick the EPM3064ATC-100-7N when tighter timing margin (7.5 ns) is needed in the same footprint; choose the EPM3064ATC100-10 if your assembly process requires tin-lead finish. The lower-density EPM3032ATC44-7N suits cost-sensitive 32-macrocell / 36-I/O designs but is not pin-compatible. All listed alternatives share the TQFP-100 footprint and can be sourced as drop-in alternates when the primary part is out of stock.

Comparison with Alternatives

Parameter This Product EPM3064AT100-10N EPM3064ATC-100-7N EPM3064ATC100-10 EPM3064ATC100-7N EPM3064ATC100-7 EPM3064ALC44-7N
Brand Altera Altera Altera Altera Altera Altera Altera
Package TQFP-100 TQFP-100 - same TQFP-100 - same TQFP-100 - same TQFP-100 - same TQFP-100 - same TQFP-100 - same
Macro Cells 64 64 64 64 64 64 64
User I/O Pins 66 66 66 66 66 66 66
Pin-to-Pin Delay (tPD) 10 ns 10 ns 7.5 ns (faster) 10 ns 7.5 ns (faster) 7.5 ns (faster) 7.5 ns (faster)
Counter Frequency (fCNT) 227.3 MHz 227.3 MHz [DATA_NEEDED] 227.3 MHz [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Supply Voltage 3.3 V 3.3 V 3.3 V 3.3 V 3.3 V 3.3 V 3.3 V
In-System Programmability Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG) Yes (IEEE 1149.1 / 1532 JTAG)
Lead Finish Lead-free (N suffix) Lead-free (N suffix) Lead-free (N suffix) Tin-lead (no N suffix) Lead-free (N suffix) Tin-lead (no N suffix) Lead-free (N suffix)

Key Differentiators

  • Same TQFP-100 footprint across the entire MAX 3000A 64-macrocell family (vs EPM3064ATC-100-7N)
  • 10 ns pin-to-pin delay with 227.3 MHz counter frequency (vs EPM3032ATC44-7N)
  • IEEE 1532-compliant ISP across the JTAG chain (vs Older non-ISP MAX 3000 CPLDs)

Design Notes

Place 0.1 uF decoupling capacitors as close as possible to each VCC pin of the EPM3064ATC-100-10N, with a bulk 10-47 uF tantalum or ceramic on the 3.3 V rail. The TQFP-100 package has multiple VCC/GND pairs distributed across the die; per the MAX 3000A datasheet reference design, each pair requires its own local bypass. Series ferrite beads on the JTAG TCK line can reduce noise injection during ISP.

Do not assume JTAG chain order - if the EPM3064ATC-100-10N shares the JTAG chain with other devices, ensure TDI/TDO are not crossed and that the BSDL file matches the silicon revision. The IEEE 1149.1 TAP state machine must be navigated to Test-Logic-Reset before re-ISP to avoid leaving the device in an undefined state. Always verify the 3.3 V VCC is within +/- 5% before programming, as ISP failure often masks as a power-rail issue.

For high-speed outputs (>50 MHz) on the EPM3064ATC-100-10N, use 22-33 ohm series damping resistors to control ringing on the TQFP-100 bond-wire inductance. Keep clock and JTAG traces short and impedance-controlled to 50 ohms, and avoid running high-edge-rate signals parallel to JTAG TCK/TMS. The 10 ns tPD means a 100 MHz signal can be generated internally, so treat output edges as 1 ns-class transitions for routing purposes.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Qualified
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Compliant

Lead-free per N suffix on MPN; commercial operating temperature 0C to +70C. AEC-Q100 qualification not stated in the verified web data - check Intel/Altera product page for automotive-grade ordering codes.

Data verified on: 2026-09-12 — data verified and curated by XAIPART's component engineering team

Related Searches

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Related Components & Terms

Altera Intel EPM3064ATC-100-10N MAX 3000A CPLD Complex Programmable Logic Device FPGA & CPLD TQFP-100 JTAG IEEE 1149.1 IEEE 1532 EEPROM macrocell Logic Array Block in-system programmability boundary-scan 3.3 V bus-interface glue logic address decoder state machine
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