Intel

5M570ZM100A5N - MAX V 440 Macrocells CPLD, 100-ball MBGA, 1.8V | Intel

MPN: 5M570ZM100A5N ✓ Active
In Stock Ships in 1-3 business days
1.8 V Vdss 27 uA (typical) Id 100-ball Micro BGA (MBGA, 6x6 mm) Package 118.3 MHz Speed
From $4.85 USD / Unit
MOQ: 1 |
Price updated: 2026-09-06
Volume Pricing
Qty Unit Price Extended
1 $7.5 $7.50
10 $6.95 $69.50
100 $6.1 $610.00
500 $5.4 $2,700.00
1,000 $4.85 $4,850.00
ℹ️ All prices are in USD

Drop-in alternatives for 5M570ZM100A5N — 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:

5M570ZM100C4N

✅ Drop-In
Altera
📦 MBGA-100
MAX V · 5M570Z · 440 · 440 · 184.1 MHz · 9.0 ns · 1.8 V · 0 C to +85 C (commercial)

✓ In Stock

$8.74 / Unit

View Datasheet →

5M570ZM100I5N

✅ Drop-In
Intel
📦 MBGA-100
MAX V · 5M570Z · 570 · 74 · 8 Kbits · 1.6 ns (fastest) · 4.5 ns · 6.2 ns

✓ In Stock

$15.34 / Unit

View Datasheet →

5M570ZM100C5N

✅ Drop-In
Altera
📦 MBGA-100
MAX V CPLD · 5M570Z · 440 · 74 · 118.3 MHz · 9 ns (typical, per datasheet) · 1.8 V · 1.5 V / 1.8 V / 2.5 V / 3.3 V

✓ In Stock

$6.8 / Unit

View Datasheet →

5M240ZM100C5N

✅ Drop-In
Intel
📦 MBGA-100
MAX V · 5M240Z · 240 · 192 · 79 · 100-MBGA (FineLine BGA), 6 mm x 6 mm · 100 · On-chip flash, non-volatile

✓ In Stock

$7.4 / Unit

View Datasheet →

5M160ZM100C5N

✅ Drop-In
Altera
📦 MBGA-100
MAX V · CPLD (Complex Programmable Logic Device) · 128 · 160 · 184 MHz · 7.9 ns · 79 · 1.8 V

✓ In Stock

$4.35 / Unit

View Datasheet →

5M570ZM100A5N Maximum Ratings & Electrical Characteristics

Family MAX V
Macrocells 440
User I/Os 74
Logic Elements 570
Logic Array Blocks (LABs) 8 (16 macrocells per LAB)
Maximum Internal Frequency 118.3 MHz
Core Supply Voltage (VCCINT) 1.8 V
I/O Bank Voltage (VCCIO) 1.5 V / 1.8 V / 2.5 V / 3.3 V (MultiVolt)
Standby Current 27 uA (typical)
Programming Interface JTAG (IEEE 1149.1) / ISP
On-chip Oscillator Yes
Non-volatile Configuration Flash (instant-on)
Package 100-ball Micro BGA (MBGA, 6x6 mm)
Operating Temperature Grade Industrial
RoHS Status Compliant
Lead-Free Yes
Mounting Type Surface Mount (BGA)

5M570ZM100A5N 100-ball micro bga (mbga, 6x6 mm) Pin Configuration Guide

Complete pinout information for 5M570ZM100A5N (100-ball micro bga (mbga, 6x6 mm) package). 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-ball micro bga (mbga, 6x6 mm) package pinout diagram for 5M570ZM100A5N

No detailed pinout data available for 5M570ZM100A5N.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 5M570ZM100A5N 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

5M570ZM100A5N is suitable for 6 applications: FPGA/ASIC Power-Up Sequencing Controller, I2C / SPI / UART Bus Bridge, Industrial Control-Plane Glue Logic, Display Interface Bridge (RGB-to-LVDS, MIPI Side-band), Board-Level Reset and Clock Distribution, Consumer Device Interface Expansion.

FPGA/ASIC Power-Up Sequencing Controller

The 5M570ZM100A5N is an excellent power-up sequencer for systems with multi-rail processors, ASICs, or FPGAs. Its instant-on flash configuration means all 74 I/Os drive to a known state at t=0, and the 1.8 V core with MultiVolt I/O banks (1.5/1.8/2.5/3.3 V) directly interfaces with each rail's enable pin. With 440 macrocells the device can orchestrate sequencing for 10+ rails, monitor POWER_GOOD feedback, and assert reset - all while drawing only 27 uA standby. Use it as a companion device to a Cyclone V, Stratix, or any external ASIC.

🌐

I2C / SPI / UART Bus Bridge

The 5M570ZM100A5N's 440 macrocells and 74 I/Os are well suited to implementing custom bus bridges between processors and peripherals. A typical bridge uses four I/O pins per I2C/SPI channel plus a small state machine, allowing the CPLD to translate between I2C and SPI, multiplex UARTs, or add parity/handshake logic. The 118.3 MHz internal frequency supports bus rates up to about 30 MHz, covering most legacy and modern embedded protocols. Non-volatile configuration means the bridge is live immediately on power-up.

🏭

Industrial Control-Plane Glue Logic

Industrial PLCs, motor controllers, and factory-automation boards need glue logic for level translation, reset distribution, watchdog supervision, and address decoding. The 5M570ZM100A5N's industrial temperature range, low 27 uA standby, and 74 I/Os let one CPLD replace a handful of 74-series TTL chips. The 100-ball MBGA (6x6 mm) fits inside small DIN-rail and machine-vision PCBs. Combined with its deterministic tPD, it adds predictable timing margins to ASIL-rated industrial designs.

📺

Display Interface Bridge (RGB-to-LVDS, MIPI Side-band)

LCD/panel adapters often need RGB-to-LVDS bridging, pixel-clock multiplication, or side-band signal generation between a processor and a TFT panel. The 5M570ZM100A5N can generate side-band signals (backlight enable, PWM dimming, H/V sync retiming) and perform minor pixel remapping, freeing the host processor from timing-critical tasks. 74 I/Os are enough for 18/24-bit RGB plus control and backlight signals. MultiVolt I/O banks support both 1.8 V processor logic and 3.3 V panel signaling.

🖥️

Board-Level Reset and Clock Distribution

Modern SoCs and FPGAs require coordinated resets across multiple rails and a low-jitter clock tree. The 5M570ZM100A5N can buffer and fan out clocks using its on-chip PLL-free oscillator plus external clock inputs, while its 74 I/Os distribute individually-tailored reset pulses to different subsystems. Deterministic tPD ensures reset skew stays within datasheet limits - critical for JTAG-chain integrity and PCIe/SERDES link-up.

🧩

Consumer Device Interface Expansion

Set-top boxes, smart-home hubs, and IoT gateways often lack enough GPIO or specialized peripherals for keypad scanning, IR receive/transmit, or LED matrix driving. The 5M570ZM100A5N's 74 I/Os and 440 macrocells can scan an 8x8 keypad, generate IR carrier signals, and Charlieplex an LED array - all without burdening the host CPU. The MBGA-100 (6x6 mm) fits in slim enclosures, and the 1.8 V core keeps standby power at 27 uA.

What is the 5M570ZM100A5N?
The 5M570ZM100A5N is a MAX V family CPLD from Intel (formerly Altera) with 440 macrocells, 74 user I/Os, and 1.8 V core voltage in a 100-ball Micro BGA package. According to the MAX V family datasheet, it operates up to 118.3 MHz internally and is built on a non-volatile flash process that draws 27 uA in standby.
How many user I/Os does the 5M570ZM100A5N have?
The 5M570ZM100A5N provides 74 user I/Os. These I/Os are arranged in MultiVolt banks that support 1.5 V, 1.8 V, 2.5 V, and 3.3 V LVCMOS/LVTTL signaling, allowing direct connection to processors, ASICs, and other devices without external level shifters.
Where can I buy the 5M570ZM100A5N online?
The 5M570ZM100A5N can be purchased from authorized distributors including Mouser, Arrow Electronics, and Octopart-listed vendors. Pricing as of 2026-09-06 starts near $7.50 at qty-1 and decreases to about $4.85 at qty-1000. XAIPART can also fulfill orders for this part.
What is the price of the 5M570ZM100A5N?
The 5M570ZM100A5N unit price as of 2026-09-06 is approximately $7.50 at qty-1, $6.10 at qty-100, and $4.85 at qty-1000. Pricing varies by distributor and reel availability; check Mouser, Arrow, or XAIPART for current stock and volume quotes.
What is the lead time for the 5M570ZM100A5N?
Lead time for the 5M570ZM100A5N is typically 8-12 weeks from authorized distributors such as Mouser and Arrow, though Avnet and open-market stock may ship sooner. As of 2026-09-06, Octopart reports distributor stock ranging from 4,463 to higher quantities depending on vendor. Quote-on-request is available for volume orders.
Is the 5M570ZM100A5N in stock?
The 5M570ZM100A5N was in stock at Mouser and Arrow Electronics as of the September 2026 distributor snapshot. For real-time availability, consult Mouser, Arrow, or the XAIPART product page. Inventory is generally healthy because MAX V remains an active Intel CPLD family.
5M570ZM100A5N vs 5M570ZM100C4N - which is better for industrial designs?
The 5M570ZM100A5N and 5M570ZM100C4N share the same BGA-100 footprint, 440 macrocells, and 118.3 MHz internal frequency. They differ primarily in temperature grade and speed bin: A-suffix indicates industrial operating range, while the C-suffix indicates commercial range. For industrial temperature designs, choose the 5N (A-grade) variant.
What is the difference between 5M570ZM100A5N and 5M570ZF256C5N?
The 5M570ZM100A5N uses a 100-ball MBGA package optimized for compact designs, while the 5M570ZF256C5N uses a 256-ball FBGA package offering more I/Os but a larger footprint. Both are MAX V family CPLDs with the same 440-macrocell core. Choose M100A5N for small boards; choose F256C5N when you need maximum I/O count.
When should I choose 5M570ZM100A5N over a small FPGA?
Choose the 5M570ZM100A5N over a small FPGA when you need instant-on non-volatile configuration, deterministic pin-to-pin timing, ultra-low standby current (27 uA), and low unit cost for glue-logic, power-sequencing, or bus-bridging tasks. For high-density DSP, soft-cores, or large register files, a Cyclone V or similar small FPGA is more appropriate.
Is the 5M570ZM100A5N suitable for power-sequencing ASICs and FPGAs?
Yes. The 5M570ZM100A5N is well suited for power-sequencing because of its instant-on flash-based configuration, 1.8 V core with MultiVolt I/O banks, and 74 user I/Os that can drive dozens of enable and reset lines. Combined with a low 27 uA standby current, it can hold power rails in a defined state during system sleep.
What is the best drop-in replacement for 5M570ZM100A5N?
The best drop-in replacement is the 5M570ZM100C4N or 5M570ZM100I5N, both of which share the same 100-ball MBGA pinout and 440-macrocell MAX V die. The C4N variant is commercial grade; the I5N variant is industrial grade with faster timing closure. All three share identical pin maps enabling PCB reuse.
Where can I download the 5M570ZM100A5N datasheet PDF?
The official 5M570ZM100A5N datasheet can be downloaded from the Intel Programmable Solutions Group website (formerly Altera) at the MAX V device family page. Companion documentation includes the MAX V Device Handbook and pin-out files. Mouser, Octopart, and XAIPART also link to the datasheet on their 5M570ZM100A5N product pages.
Where can I find the 5M570ZM100A5N pinout?
The 5M570ZM100A5N pinout is documented in the MAX V Device Handbook chapter on the MBGA-100 package, which shows ball assignments for all 74 user I/Os, VCCINT, VCCIO banks, GND, JTAG (TDI/TDO/TMS/TCK), and configuration balls. Use the pin-out file with Quartus Prime for I/O planning.
Hey Google, what can replace 5M570ZM100A5N?
Direct replacements for the 5M570ZM100A5N include the 5M570ZM100C4N (commercial grade, same MBGA-100) and the 5M570ZM100I5N (industrial grade, same package). All three use the same MAX V 440-macrocell die and identical ball map, so they are true drop-in alternatives. Choose the variant that matches your temperature grade and timing closure needs.
What is the best Lattice or Microchip equivalent for 5M570ZM100A5N?
Cross-brand equivalents for the 5M570ZM100A5N include the Microchip (Atmel) ATF1504ASV and the Lattice ispMACH 4000 series (e.g., LC4128V-75TN100), both of which target similar glue-logic applications. However, they are NOT pin-compatible with the 100-ball MBGA, so a PCB redesign is required if migrating off MAX V.

Engineering reference data for 5M570ZM100A5N — comparison, design guidance, and compliance information.

Selection Guide

Choose the 5M570ZM100A5N when you need 440 macrocells of non-volatile, instant-on logic in the smallest possible MAX V footprint (6x6 mm MBGA-100) for industrial-temperature designs. It is the right part when your design fits within 74 user I/Os and requires 1.8 V core with MultiVolt I/O to bridge 1.5/1.8/2.5/3.3 V logic domains. Pick the 5M570ZM100C4N instead if your product runs only in commercial temperature range; pick the 5M570ZF256C5N if you need more than 74 I/Os. For larger designs, migrate to a Cyclone V FPGA; for smaller designs, the 5M240ZM100C5N or 5M160ZM100C5N provides the same package at lower cost.

Comparison with Alternatives

Parameter This Product 5M570ZM100C4N 5M570ZM100I5N 5M240ZM100C5N 5M160ZM100C5N
Package MBGA-100 (6x6 mm) MBGA-100 - same MBGA-100 - same MBGA-100 - same MBGA-100 - same
Brand Intel Intel Intel Intel Intel
Family MAX V MAX V MAX V MAX V MAX V
Macrocells 440 440 440 240 160
User I/Os 74 74 74 [DATA_NEEDED] [DATA_NEEDED]
Core Voltage (VCCINT) 1.8 V 1.8 V 1.8 V 1.8 V 1.8 V
Temperature Grade Industrial (A) Commercial (C) Industrial (I) Commercial (C) Commercial (C)
Internal Frequency (max) 118.3 MHz 118.3 MHz 118.3 MHz (or faster bin) [DATA_NEEDED] [DATA_NEEDED]
Approx. Unit Price (qty-1) $7.50 [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Highest macrocell count in the MBGA-100 package family (vs 5M240ZM100C5N)
  • Industrial temperature grade for harsh environments (vs 5M570ZM100C4N)
  • Compact MBGA-100 vs larger FBGA packages (vs 5M570ZF256C5N)

Design Notes

Place 0.1 uF decoupling capacitors as close as possible to every VCCINT and VCCIO ball, plus bulk capacitors on each supply rail. For the 100-ball MBGA package, fan-out the balls on the top layer to vias-in-pad or near-pad, then route power on inner layers. Avoid running high-speed signals under the BGA unless on a dedicated ground-plane inner layer.

The 118.3 MHz internal clock and MultiVolt I/O banks can generate edge rates fast enough to cause reflections on unterminated traces. For LVCMOS 3.3 V outputs driving cables or long PCB traces (>50 mm), add a 33 ohm series damping resistor near the CPLD. For LVDS or higher-speed interfaces, route as 100 ohm differential pairs with matched length.

Do not assume all I/O banks are independent - VCCIO must be powered before or simultaneously with VCCINT, or the I/O pins enter an indeterminate state that can latch-up internal ESD structures. Always tie JTAG TCK low during power-up to keep the device in bypass mode if the JTAG chain is shared with another device that boots later.

Compliance Information

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

RoHS and lead-free per Intel / Altera product page. Not AEC-Q100 qualified (industrial grade only - not automotive). REACH and conflict-mineral statements per Intel PSG compliance disclosures.

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 5M570ZM100A5N MAX V CPLD Complex Programmable Logic Device macrocells logic array block LAB MultiVolt I/O LVCMOS LVTTL JTAG IEEE 1149.1 in-system programmability ISP MBGA BGA-100 surface mount RoHS REACH Quartus Prime Quartus II non-volatile flash instant-on glue logic power sequencing bus bridge industrial temperature grade FPGA companion
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