Intel

5M570ZT100A5N - MAX V CPLD, 440 Macrocells, 118.3 MHz | Intel

MPN: 5M570ZT100A5N ✓ Active
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1.8 V Vdss 100-pin TQFP Package 118.3 MHz Speed On-chip non-volatile flash Memory
From $9.75 USD / Unit
MOQ: 1 |
Price updated: 2026-09-06
Volume Pricing
Qty Unit Price Extended
1 $18.5 $18.50
10 $16.2 $162.00
100 $13.85 $1,385.00
500 $11.4 $5,700.00
1,000 $9.75 $9,750.00
ℹ️ All prices are in USD

Drop-in alternatives for 5M570ZT100A5N — 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:

5M570ZT100C5N

✅ Drop-In
Intel
📦 100-pin TQFP
MAX V · 570 · 440 · 74 · 118.3 MHz · 17.7 ns · 1.8 V · 1.8 V / 2.5 V / 3.3 V / 5.0 V (LVCMOS, LVTTL, PCI 3.3 V)

✓ In Stock

$3.7 / Unit

View Datasheet →

5M570ZT100I5N

✅ Drop-In
Intel
📦 100-pin TQFP
MAX V · MAX V CPLD · 570 · 440 · 79 · 9 ns · 118.3 MHz · 8

✓ In Stock

$6.74 / Unit

View Datasheet →

5M570ZT100C4N

✅ Drop-In
Intel
📦 100-pin TQFP
MAX V · 440 · 74 · TQFP-100 (14x14 mm) · 100 · Internal flash (non-volatile) · 8 Kbits (typical, MAX V) · 1.8 V

✓ In Stock

$9.2 / Unit

View Datasheet →

5M570ZT144C5N

✅ Drop-In ⚠️ 参数待验证
Altera
📦 100-pin TQFP
MAX V · MAX V CPLD · 440 · 440 · 118.3 MHz · 212 (max for MAX V family) · 8 Kbits · 1.8 V

✓ In Stock

$7.25 / Unit

View Datasheet →

5M570ZT100A5N Maximum Ratings & Electrical Characteristics

Family MAX V
Device Logic Elements 570
Macrocells 440
Logic Array Blocks (LABs) 8
Maximum User I/O Pins 74
Maximum Operating Frequency 118.3 MHz
Pin-to-Pin Logic Delay (tPD) 9.0 ns
Core Voltage (VCCINT) 1.8 V
I/O Voltage (VCCIO) 1.8 V / 2.5 V / 3.3 V (multi-voltage I/O banks)
Package 100-pin TQFP
Mounting Type Surface Mount
Configuration Memory On-chip non-volatile flash
Programming Interface JTAG (IEEE 1149.1), in-system programmable (ISP)
Operating Temperature (A suffix) -40C to +125C
Automotive Qualification AEC-Q100 (per Arrow listing)
RoHS Status Compliant
Internal Oscillator Yes (on-chip)
User Flash Memory Yes (on-chip)

5M570ZT100A5N 100-pin tqfp Pin Configuration Guide

Complete pinout information for 5M570ZT100A5N (100-pin tqfp package) with 74 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.

100-pin tqfp package pinout diagram for 5M570ZT100A5N

No detailed pinout data available for 5M570ZT100A5N.

Refer to the datasheet for full pin configuration.

Estimated pin count: 74 pins (digital package)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 5M570ZT100A5N 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

5M570ZT100A5N is suitable for 6 applications: Industrial PLC I/O Expansion, Automotive Body Controller, Microcontroller I/O Expansion, SPI/I2C to Parallel Bus Bridge, Power Sequencing Controller, Consumer Electronics Glue Logic.

🏭

Industrial PLC I/O Expansion

The 5M570ZT100A5N provides 440 macrocells and 74 user I/O pins in a 100-pin TQFP, making it well suited for PLC I/O expansion modules. Its -40C to +125C operating range (A grade) handles harsh factory-floor temperatures, and multi-voltage I/O (1.8/2.5/3.3 V) interfaces directly to 3.3 V MCU peripherals and 5 V-tolerant sensors via level shifters. The 9.0 ns tPD and 118.3 MHz fMAX easily satisfy scan-time requirements for 100 kHz digital I/O blocks.

🚗

Automotive Body Controller

The 5M570ZT100A5N is AEC-Q100 qualified and operates from -40C to +125C, making it suitable for automotive body controller modules controlling lighting, mirrors, and door modules. Its on-chip flash configuration means instant-on at battery reconnect, critical for retaining network nodes without boot delay. The 1.8 V core plus 3.3 V-tolerant I/O interfaces directly to modern automotive MCUs, and 74 I/O pins handle typical body-controller signal counts.

🧩

Microcontroller I/O Expansion

When an MCU runs out of GPIO or peripheral channels, the 5M570ZT100A5N adds 74 user I/O and flexible logic blocks. Designers connect it to the MCU via SPI (using 4-6 pins) and implement up to 70 generic digital I/O, PWM generators, or custom serial protocols in CPLD logic. The 118.3 MHz fMAX supports fast SPI transfers at 50 MHz clock rates, keeping interrupt latency low. On-chip flash and JTAG-ISP enable in-field reconfiguration if the I/O map changes.

🌐

SPI/I2C to Parallel Bus Bridge

The 5M570ZT100A5N excels as a bus bridge translating SPI or I2C commands into 8/16/32-bit parallel bus cycles for legacy peripherals, LCD controllers, or FPGAs. With 440 macrocells, designers implement full custom state machines for non-standard protocols, and 74 user I/O handle bidirectional data plus control lines. The on-chip user flash can store lookup tables or bootloader code, reducing host MCU firmware size.

Power Sequencing Controller

The 5M570ZT100A5N is widely used as a multi-rail power-sequencing controller for ASICs, SoCs, and FPGAs requiring strict rail-on/rail-off ordering. Each macrocell can drive a discrete power-good signal or FET gate with programmable delays, and the on-chip flash ensures deterministic startup without external MCU involvement. The 1.8 V core and 3.3 V I/O interface directly to typical PMBus or GPIO rails, and 74 I/O handle up to 30 sequenced rails.

📺

Consumer Electronics Glue Logic

The 5M570ZT100A5N replaces 5-10 discrete 74-series glue-logic ICs (LVC, AHC, HC) in consumer products, reducing PCB area and BOM cost. The 100-pin TQFP package fits into a small footprint with 74 user I/O available, and the 1.8 V core plus multi-voltage I/O interfaces to modern SoCs running at 1.8 V while driving legacy 3.3 V peripherals. Its instant-on flash configuration eliminates boot delay for time-critical signal paths.

What is the maximum operating frequency of the 5M570ZT100A5N?
The 5M570ZT100A5N has a maximum internal operating frequency of 118.3 MHz, per the MAX V device family datasheet. The pin-to-pin logic delay (tPD) is 9.0 ns, which limits combinational paths but is more than adequate for glue-logic, bus-bridging, and power-sequencing tasks at common microcontroller bus speeds (SPI up to 50 MHz, parallel up to ~100 MHz). Source: Intel MAX V datasheet.
How many user I/O pins does the 5M570ZT100A5N provide in its 100-pin TQFP package?
The 5M570ZT100A5N provides up to 74 user I/O pins in the 100-pin TQFP package. The remaining pins are allocated to VCCINT, VCCIO, GND, JTAG (TMS, TDI, TDO, TCK), dedicated inputs, and No-Connects. The 100-pin TQFP is the most pin-dense TQFP package option for the MAX V 570 macrocell device, providing an extra 10-15 I/O versus smaller TQFP-64 packages. Source: MAX V family datasheet pin tables.
Does the 5M570ZT100A5N require an external configuration memory device?
No. The 5M570ZT100A5N uses on-chip non-volatile flash memory to store its configuration, so it does not require an external EEPROM, flash, or configuration PROM. The device configures itself in microseconds at power-on, simplifying board design and reducing BOM cost versus SRAM-based FPGAs or larger CPLDs that need boot memory.
Is the 5M570ZT100A5N AEC-Q100 qualified for automotive applications?
Yes. According to the Arrow product listing, the 5M570ZT100A5N is AEC-Q100 qualified for automotive applications. The 'A' in the part number suffix indicates the automotive temperature grade (-40C to +125C). Combined with on-chip flash and 1.8-3.3 V I/O support, this part is suitable for body controllers, infotainment, ADAS peripherals, and other automotive subsystems.
Where can I buy the 5M570ZT100A5N and what is the typical price?
As of 2026-09-06, the 5M570ZT100A5N is in stock at DigiKey (PN 544-3181-ND), Mouser, Arrow, Heisener, and other distributors. Pricing tiers as of 2026-09-06: $18.50 at qty 1, $16.20 at qty 10, $13.85 at qty 100, $11.40 at qty 500, and $9.75 at qty 1000. For real-time stock and lead-time, check the distributor page directly.
What is the lead time for the 5M570ZT100A5N?
As of 2026-09-06, the 5M570ZT100A5N shows distributor stock at multiple sources including Heisener (6,928 pieces) and icDirectory (17,500 pieces updated 2025-08-25). Lead time at major distributors (DigiKey, Mouser, Arrow) is typically 6-10 weeks for factory orders when distributor stock is depleted, due to the MAX V family's continued active production by Intel.
What is the difference between the 5M570ZT100A5N and the 5M570ZT100I5N?
The 5M570ZT100A5N and 5M570ZT100I5N differ only in operating temperature grade and AEC-Q100 qualification. The 'A' suffix denotes the automotive grade (-40C to +125C) with AEC-Q100 qualification, while the 'I' suffix denotes the industrial grade (-40C to +100C) without AEC-Q100. Both share the same 100-pin TQFP package, 440 macrocells, 118.3 MHz performance, and pinout, making them drop-in compatible except for the qualification requirement. Source: ETEI comparison data.
How does the 5M570ZT100A5N compare to the legacy EPM570T100A5N?
The 5M570ZT100A5N (MAX V) and EPM570T100A5N (legacy MAX II) both offer 440 macrocells in a 100-pin TQFP package and are pin-to-pin compatible. The 5M570ZT100A5N has a slightly slower tPD of 9.0 ns versus the EPM570T100A5N's 5.4 ns, but the MAX V family offers lower power consumption, integrated internal oscillator, on-chip user flash, and improved Quartus Prime support. Source: JAK Electronics comparison.
What is the best drop-in replacement for the 5M570ZT100A5N?
The best drop-in replacement for the 5M570ZT100A5N is the 5M570ZT100C5N (commercial grade, same 100-pin TQFP, same 440 macrocells, same pinout), followed by the 5M570ZT100I5N (industrial grade, same package and pinout). For more margin on logic delay, the 5M1270ZT100C5N (MAX V 1270 macrocell, 100-pin TQFP) provides 3x more logic capacity in the same footprint but consumes more power. Source: Intel MAX V device ordering guide.
Where can I download the 5M570ZT100A5N datasheet PDF?
The official 5M570ZT100A5N datasheet is available as part of the Intel MAX V Device Family datasheet (file MZV55001) at https://www.intel.com/content/www/us/en/programmable/documentation/lit-mpx/mzv55001.html. Third-party mirrors include alterasemi.com/datasheet/alterasemi/5M570ZT100A5N.pdf. Always cross-reference pinout and electrical characteristics against the official Intel document before finalizing PCB layouts.
Where can I find the 5M570ZT100A5N pinout for the 100-pin TQFP package?
The 5M570ZT100A5N pinout for the 100-pin TQFP (T100 package) is documented in the Intel MAX V Device Family datasheet, Chapter 2 (Pin Tables) and the Quartus Prime pinout file. The 100-pin TQFP exposes 74 user I/O plus dedicated pins for VCCINT (1.8 V), VCCIO (1.8/2.5/3.3 V banks), JTAG (TMS/TDI/TDO/TCK), and GND. The T100 package is shared across the MAX V 570 macrocell variants, enabling easy migration.
When should I choose the 5M570ZT100A5N over the 5M160ZT100A5N?
Choose the 5M570ZT100A5N over the 5M160ZT100A5N when your design requires 440 macrocells of logic capacity versus only 160 macrocells. Both share the same 100-pin TQFP package and pinout (drop-in upgrade path). Use the 5M570Z when implementing complex state machines, multiple bus interfaces, or larger glue-logic consolidation. Use the 5M160Z for simpler glue logic where the lower cost and lower power benefit outweigh the smaller logic capacity. Source: MAX V family datasheet.
Is the 5M570ZT100A5N suitable for industrial control applications?
Yes. The 5M570ZT100A5N operates over -40C to +125C (A grade), supports multi-voltage I/O (1.8/2.5/3.3 V), includes on-chip flash for instant-on, and offers 74 user I/O pins in a 100-pin TQFP. This makes it well suited for industrial PLC I/O expansion, motor control peripherals, sensor hub glue logic, and industrial communication interface bridging. For non-automotive industrial use, the lower-cost 5M570ZT100I5N (industrial grade) is also an option. Source: MAX V family datasheet.
What software tools are used to program the 5M570ZT100A5N?
The 5M570ZT100A5N is programmed using Intel Quartus Prime Design Software (Lite or Standard edition), which supports schematic, VHDL, and Verilog HDL entry, plus functional simulation. Programming is performed via JTAG using an Intel/Altera USB-Blaster, ByteBlaster, or compatible third-party programmer. The .pof file is generated by Quartus Prime and loaded into the on-chip flash via in-system programming. Source: Intel MAX V datasheet and Quartus Prime user guide.
What cross-brand equivalent exists for the 5M570ZT100A5N?
True cross-brand drop-in equivalents for the 5M570ZT100A5N are limited because MAX V CPLDs use a unique on-chip flash, internal oscillator, and Intel-specific JTAG/ISP programming protocol. Competing CPLDs from Lattice (MachXO2), Microchip (ATF15xx), and Xilinx (CoolRunner-II) provide similar macrocell counts and I/O counts but are not pin-compatible and require redesign of the schematic, PCB, and firmware toolchain. For an in-family alternative with the same package, consider the 5M570ZT100C5N or 5M570ZT100I5N. Source: cross-reference research.
Is the 5M570ZT100A5N in stock as of 2026?
Yes. As of 2026-09-06, the 5M570ZT100A5N is in active production and stocked at multiple distributors including DigiKey, Mouser, Arrow, Heisener (6,928 pieces), and icDirectory (17,500 pieces, updated 2025-08-25). Intel continues to manufacture the MAX V family; lifecycle status is active and no end-of-life notice has been issued as of the last verified date.

Engineering reference data for 5M570ZT100A5N — comparison, design guidance, and compliance information.

Selection Guide

Choose the 5M570ZT100A5N when you need 440 macrocells of non-volatile programmable logic with AEC-Q100 automotive qualification and -40C to +125C operating range. It is the optimal choice for automotive body controllers, ADAS peripheral glue logic, industrial PLC I/O expansion, and power-sequencing controllers. For cost-sensitive non-automotive industrial designs, choose the 5M570ZT100I5N (industrial grade, -40C to +100C). For commercial products operating below +85C, choose the 5M570ZT100C5N (commercial grade). If you need fewer macrocells and want lower cost, the 5M160ZT100A5N (160 macrocells) shares the same 100-pin TQFP footprint. If you need substantially more logic capacity, the 5M1270ZT100C5N (1270 macrocells) provides 3x more logic in the same package. All four alternatives share the same 100-pin TQFP footprint as the 5M570ZT100A5N, enabling PCB layout reuse across the MAX V family.

Comparison with Alternatives

Parameter This Product 5M570ZT100C5N 5M570ZT100I5N 5M570ZT100C4N
Brand Intel Intel Intel Intel
Package 100-pin TQFP 100-pin TQFP - same 100-pin TQFP - same 100-pin TQFP - same
Macrocells 440 440 440 440
Maximum User I/O 74 74 74 74
Pin-to-Pin Delay (tPD) 9.0 ns 9.0 ns 9.0 ns 9.0 ns
Maximum Frequency (fMAX) 118.3 MHz 118.3 MHz 118.3 MHz 118.3 MHz
Operating Temperature -40C to +125C (A grade) -40C to +85C (C grade) -40C to +100C (I grade) -40C to +85C (C grade)
AEC-Q100 Qualified Yes No No No
Configuration Memory On-chip flash On-chip flash On-chip flash On-chip flash

Key Differentiators

  • AEC-Q100 automotive qualification with -40C to +125C operation (vs 5M570ZT100I5N)
  • 440 macrocells in a 100-pin TQFP package (vs 5M160ZT100A5N)
  • On-chip flash configuration memory - no boot PROM required (vs EPM570T100A5N (MAX II))

Design Notes

The 5M570ZT100A5N requires a stable 1.8 V VCCINT supply with a recommended 100 nF decoupling capacitor placed within 5 mm of the VCCINT pin. VCCIO pins are organized into multiple banks (1.8 V, 2.5 V, or 3.3 V) and each VCCIO bank should be bypassed with a 100 nF ceramic plus 4.7 uF bulk capacitor. Sequence VCCINT before VCCIO during power-up to prevent latch-up; a simple RC delay or external power-good signal can enforce sequencing if the rails come up simultaneously.

Route all JTAG signals (TMS, TDI, TDO, TCK) as a 4-wire bus with ground reference, keeping trace length under 50 mm to maintain signal integrity at TCK frequencies up to 33 MHz. Place a 10 kohm pull-up on TCK and TMS per the IEEE 1149.1 specification to ensure defined logic levels when the programmer is disconnected. The 100-pin TQFP has a 0.5 mm pitch; use 0.15 mm trace width with 0.15 mm spacing and 4-layer stack-up (signal-ground-power-signal) to route all 74 user I/O without dog-bones.

Do not confuse the 'A' suffix (automotive grade, -40C to +125C, AEC-Q100) with the 'I' (industrial, -40C to +100C, no AEC-Q100) or 'C' (commercial, -40C to +85C) suffixes - they are NOT electrically identical for qualification purposes. When migrating designs between grades, verify that the FPGA bitstream (POF file) generated for one grade works on the other, since speed grades may affect timing closure. Use Quartus Prime Design Assistant to check for unconstrained I/O or incomplete timing constraints before programming.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS and REACH compliant per distributor listings. AEC-Q100 qualified per Arrow listing. Lead-free and halogen-free per Intel MAX V family datasheet. Conflict-minerals compliant per Intel supplier declarations.

Data verified on: 2026-09-06 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Intel Altera 5M570ZT100A5N 5M570ZT100C5N 5M570ZT100I5N 5M570ZT100C4N 5M160ZT100A5N 5M1270ZT100C5N EPM570T100A5N MAX V CPLD Complex Programmable Logic Device macrocell logic array block TQFP JTAG IEEE 1149.1 AEC-Q100 RoHS REACH on-chip flash internal oscillator Quartus Prime in-system programming
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