Microchip Technology

A3P600L-FGG144 - ProASIC3L Flash FPGA 600K, 97 I/O | Microchip

MPN: A3P600L-FGG144 ✓ Active
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1.14 V to 1.575 V Vdss 144-LBGA (FGG144) Package Standard Speed 110592 bits Memory
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Price updated: 2026-08-30
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Drop-in alternatives for A3P600L-FGG144 — 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:

A3P600L-FGG144I

✅ Drop-In
Microchip Technology
📦 144-LBGA (FGG144)
ProASIC3L · Flash-based (non-volatile) · 600000 · 110592 · 97 · 1.14 V to 1.575 V · 1.2 V / 1.5 V · -40C to +100C (TJ)

✓ In Stock

$33.95 / Unit

View Datasheet →

A3P600L-1FGG144

✅ Drop-In
Microchip Technology
📦 144-LBGA (FGG144)
ProASIC3L · 600000 · 13824 · 13824 · 350 MHz · 1.2 V to 1.5 V · 97 · 110592

✓ In Stock

$29.4 / Unit

View Datasheet →

A3P600L-FG144

✅ Drop-In
Microchip Technology
📦 144-LBGA (FG144)
ProASIC3L (Flash FPGA) · 600000 · 13824 · 97 · 1.2 V to 1.5 V · Nonvolatile Flash (single-chip) · 110592 bits · 250 MHz

✓ In Stock

$48.34 / Unit

View Datasheet →

A3P600L-1FG144

✅ Drop-In ⚠️ 参数待验证
Microchip Technology
📦 144-LBGA (FG144)
ProASIC3L (ProASIC3 Low Power) · 600K · 97 · 110592 (flash-based, nonvolatile) · 1.2 V to 1.5 V · 130 nm · -1 · 144-LBGA (FBGA / FG144)

✓ In Stock

$25.73 / Unit

View Datasheet →

A3P600-2FGG144

✅ Drop-In
Microsemi
📦 144-LBGA (FGG144)
ProASIC3 · 600000 gates · 13824 CLBs · 97 I/O · 310 MHz · 130 nm CMOS · 1.5 V · Nonvolatile Flash

✓ In Stock

$30.4 / Unit

View Datasheet →

A3P600L-FGG144 Maximum Ratings & Electrical Characteristics

Family ProASIC3L
System Gates 600000 gates
Number of I/O 97
Embedded Memory 110592 bits
Supply Voltage 1.14 V to 1.575 V
Core Voltage Range 1.2 V to 1.5 V
Technology Flash-based (nonvolatile)
Live at Power-Up Yes (LAPU)
Operating Temperature 0C to +85C (TJ)
Package 144-LBGA (FGG144)
Mounting Type Surface Mount
Speed Grade Standard
Packaging Tray
Programmability In-system reprogrammable

A3P600L-FGG144 144-lbga (fgg144) Pin Configuration Guide

Complete pinout information for A3P600L-FGG144 (144-lbga (fgg144) 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.

144-lbga (fgg144) package pinout diagram for A3P600L-FGG144

No detailed pinout data available for A3P600L-FGG144.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for A3P600L-FGG144 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

A3P600L-FGG144 is suitable for 6 applications: Industrial Control and Automation, Portable and Battery-Powered Instrumentation, Secure Single-Chip Boot and Control Logic, Communications Line-Card Bridging, Aerospace and Defense Secure Logic, Test and Measurement Equipment.

🏭

Industrial Control and Automation

The A3P600L-FGG144 fits industrial control and automation because its 600k-gate flash fabric provides deterministic, live-at-power-up logic that starts working the instant 1.14 V to 1.575 V power is applied - no configuration delay or external boot PROM that could stall a production line. With 97 user I/Os it can bridge sensor banks, motor-driver PWM inputs, and fieldbus transceivers simultaneously, while 110592 bits of embedded flash memory buffer lookup tables and configuration constants. Operating at the 1.2 V core setting reduces dynamic power in sealed cabinets with limited airflow, and the 0C to +85C junction range covers typical factory-floor enclosures.

📱

Portable and Battery-Powered Instrumentation

For battery-powered handheld and portable instruments, the A3P600L-FGG144's defining advantage is the L-grade programmable 1.2 V core, which measurably lowers dynamic power compared with fixed 1.5 V ProASIC3 devices - directly extending battery runtime. The nonvolatile flash configuration removes the repeated boot energy and standby leakage of SRAM FPGA configuration circuits, giving a genuine single-chip solution. Its 144-ball LBGA keeps board area small in handheld enclosures, and 97 I/Os suffice for display interfaces, keypads, and sensor front ends. Designers should verify timing closure in Libero SoC at 1.2 V, since maximum fabric frequency drops at reduced core voltage.

🎥

Secure Single-Chip Boot and Control Logic

The A3P600L-FGG144 is well suited to secure single-chip boot and control logic because flash-based configuration cannot be intercepted during power-up the way SRAM bitstreams can. Live-at-power-up operation means security-critical sequencing, board-management, and access-control logic is active within microseconds of applying the 1.14 V to 1.575 V rail, before a host processor even completes reset. The 600k gates implement state machines, watchdog logic, and cryptographic glue functions, while the 110592-bit flash memory stores keys and policy tables on-chip. This makes the device a strong fit for secure gateways and tamper-aware system controllers.

🌐

Communications Line-Card Bridging

In networking and communications line cards, the A3P600L-FGG144 serves as glue logic and protocol bridging between PHYs, framers, and backplane connectors. Its 97 user I/Os are organized in banks that support mixed-voltage signaling required to interface legacy 3.3 V, 2.5 V, and 1.8 V subsystems on a single card. The flash fabric starts operating immediately at power application, enabling in-band management and health monitoring before host software loads. With 600k gates it can implement parallel-to-serial adaptation, status aggregation, and hot-swap control, while the 144-ball LBGA fits dense card layouts with 0C to +85C telecom ambient requirements.

✈️

Aerospace and Defense Secure Logic

Aerospace and defense systems favor flash FPGAs because configuration data is never exposed on an external bus, removing a class of bitstream-interception risk inherent to SRAM devices. The A3P600L-FGG144's live-at-power-up fabric delivers instant-on control for power sequencing, telemetry formatting, and interface adaptation in avionics black boxes and secure communications equipment. Its single-chip solution reduces board complexity and component count - a reliability advantage in vibration-prone environments. Note that this specific MPN is the commercial 0C to +85C grade; military-temperature programs should qualify the corresponding extended-temperature Microchip variants rather than using this part outside its rated junction range.

🔧

Test and Measurement Equipment

Bench and modular instruments use the A3P600L-FGG144 for channel sequencing, trigger logic, and front-end calibration control. The 600k-gate flash fabric holds its configuration permanently, so an instrument powers up with its housekeeping logic intact - important for calibration retention across power cycles. Embedded flash (110592 bits) stores calibration coefficients on-chip, and 97 I/Os handle relay drivers, ADC control buses, and front-panel indicators. Running the core at 1.2 V keeps self-heating low in enclosed benches, and the tray-packaged 144-LBGA supports standard reflow assembly for instrument main boards operating from 0C to +85C.

What is the A3P600L-FGG144?
The A3P600L-FGG144 is a Microchip Technology ProASIC3L flash-based FPGA with 600,000 system gates, 97 user I/Os, and 110592 bits of embedded flash memory in a 144-ball LBGA package. According to the Microchip product page, the ProASIC3 family provides a single-chip, nonvolatile, live-at-power-up solution with core voltage programmable from 1.2 V to 1.5 V for power optimization.
What is the supply voltage range of A3P600L-FGG144?
The A3P600L-FGG144 operates from a 1.14 V to 1.575 V core supply, per distributor-listed specifications. The L-grade family allows the core voltage to be set anywhere from 1.2 V to 1.5 V, letting designers trade maximum fabric speed for reduced dynamic power - useful in battery-powered and thermally constrained industrial and portable designs.
What is the price of A3P600L-FGG144?
Current A3P600L-FGG144 pricing must be obtained by quote from distributors such as DigiKey, Mouser, or Octopart, which compare bulk discounts from 10 distributors; exact unit pricing was not available in the verified data as of 2026-08-31. XAIPART lists quantity-break pricing on request. Because this is an older ProASIC3L family part, stock at brokers such as Micro-Semiconductor (4305 pcs reported) can significantly affect the transacted price.
Where to buy A3P600L-FGG144 online?
You can buy the A3P600L-FGG144 from XAIPART as well as authorized distributors including DigiKey (part page 2860664), Mouser, and Octopart-listed brokers. Octopart compares availability from 10 distributors, and Micro-Semiconductor reports 4305 pieces in stock as new original product. Always verify date codes and packaging (tray) when ordering from brokers to avoid remarked or refurbished parts.
Is A3P600L-FGG144 in stock and what is the lead time?
Stock is available through distribution channels: Micro-Semiconductor reports 4305 pcs of A3P600L-FGG144 in stock as new original product, and DigiKey lists the part as orderable. Exact lead time varies by distributor and quantity; as of 2026-08-31, XAIPART quotes lead time on request. Because ProASIC3L is an older Actel/Microsemi family, confirm stock freshness before committing to production schedules.
What is the difference between A3P600L-FGG144 and A3P600L-FGG144I?
The only difference is the temperature grade: the standard A3P600L-FGG144 is rated for commercial 0C to +85C operation, while the -I suffix A3P600L-FGG144I is the industrial-grade variant rated for -40C to +100C. Both share the same die, 97 I/Os, 110592-bit memory, 600k gates, and identical 144-ball FGG144 package, so they are drop-in replacements on the same PCB footprint if the wider temperature range is acceptable.
A3P600L-FGG144 vs A3P600-2FGG144 - which should I choose?
Choose the A3P600L (L-grade) when low power matters: it supports a core voltage down to 1.2 V for reduced dynamic power. Choose the A3P600-2FGG144 when maximum fabric speed matters: the -2 speed grade runs the standard 1.5 V core at faster timing. Both have 600k gates, 97 I/Os, and the same 144-FGG144 footprint, so the choice is a power-versus-performance trade-off, not a layout change.
What is the best drop-in replacement for A3P600L-FGG144?
The best drop-in replacement is the A3P600L-FGG144I, the industrial-temperature version in the identical 144-ball FGG144 package with pin-to-pin compatibility and the same 600k-gate die. Other drop-in options within the same footprint include speed-grade variants A3P600L-1FGG144 and A3P600L-1FG144, and the FG144 (non-Pb-free-finish) A3P600L-FG144. Verify speed-grade timing closure in Libero SoC before substituting.
Is there a cross-brand equivalent for the A3P600L-FGG144?
No verified cross-brand pin-compatible equivalent exists for the A3P600L-FGG144 in the checked cross-reference data. Flash-based, live-at-power-up FPGAs are architecturally unique to Microchip (Actel/Microsemi); competitors such as AMD/Xilinx (Spartan, Artix) and Intel/Altera (Cyclone) offer similar density SRAM FPGAs, but those require external configuration flash and do not share the 144-LBGA footprint. Any cross-brand migration requires PCB redesign and re-verification.
Can A3P600L-FGG144 be used at 1.2 V core?
Yes. As an L-grade ProASIC3L device, the core can be operated anywhere from 1.2 V to 1.5 V. Running at 1.2 V reduces dynamic power consumption significantly, which suits battery-powered and thermally constrained designs, but reduces maximum achievable fabric frequency versus the 1.5 V setting. Validate timing in Microchip Libero SoC at your chosen core voltage to confirm timing closure across the full 0C to +85C temperature range.
Where to download the A3P600L-FGG144 datasheet PDF?
The authoritative documentation for the A3P600L-FGG144 is the ProASIC3/ProASIC3L FPGA fabric datasheet available from the Microchip product page at microchip.com/en-us/product/A3P600L. Octopart also hosts a downloadable datasheet PDF for this exact MPN. XAIPART links the manufacturer product page rather than duplicating the PDF so you always get the latest revision. Do not rely on third-party mirror sites for the current revision.
Where can I find the A3P600L-FGG144 pinout?
The complete 144-ball pinout for the A3P600L-FGG144 is defined in the ProASIC3L datasheet package tables and in the Libero SoC I/O constraint files. Because pin assignments on FPGAs are largely user-defined per I/O bank, the fixed pin table spans 144 balls and is too long to reproduce on this page; consult the manufacturer package drawing (FGG144) for ball A1 orientation and power/ground ball locations before routing.
Is the A3P600L-FGG144 suitable for battery-powered designs?
Yes, the A3P600L-FGG144 is well suited to battery-powered designs. The L-grade ProASIC3L fabric supports a 1.2 V core voltage option that cuts dynamic power, and the nonvolatile flash configuration eliminates the repeated inrush and leakage of external configuration devices. With 97 I/Os and 600k gates, it provides moderate logic capacity in a compact 144-ball package operating from 0C to +85C junction temperature.
Why choose a flash-based FPGA like the A3P600L-FGG144 over an SRAM FPGA?
Flash-based FPGAs like the A3P600L-FGG144 are live at power-up (LAPU), need no external boot PROM, and resist bitstream interception because configuration resides in on-chip flash rather than being loaded from external memory at every boot. Compared with SRAM FPGAs of similar density, this yields a true single-chip solution, lower total cost of ownership, higher configuration security, and lower standby power - key for portable, industrial, and defense applications.
What are the key specifications of the A3P600L-FGG144 that engineers should know?
Key specifications: 600,000 system gates in the ProASIC3L flash fabric; 97 user I/Os; 110592 bits of embedded flash memory; 1.14 V to 1.575 V supply with 1.2 V to 1.5 V programmable core; 144-ball LBGA (FGG144) surface-mount package; 0C to +85C commercial temperature grade; tray packaging; nonvolatile, live-at-power-up configuration per Microchip product data.
Is the A3P600L-FGG144 still in production or obsolete?
The A3P600L-FGG144 remains listed as an active, orderable product: DigiKey states 'Order today, ships today' for this MPN, and multiple distributors report fresh stock as of 2026-08-31. Microchip continues to list the ProASIC3L family on its product pages. However, given the age of the ProASIC3 generation, designers starting new projects should confirm long-term availability with Microchip and consider the industrial-grade or alternate speed-grade variants for supply redundancy.

Engineering reference data for A3P600L-FGG144 — comparison, design guidance, and compliance information.

Selection Guide

Choose the A3P600L-FGG144 when you need roughly 600k gates, 97 I/Os, and nonvolatile live-at-power-up configuration in a compact 144-ball package with power-trimmable core voltage - typical for industrial control, portable instruments, and secure boot logic. If your environment reaches below 0C or above 85C junction, select the pin-identical A3P600L-FGG144I instead. If unit cost outweighs speed, the -1 speed grade A3P600L-1FGG144 keeps the same footprint at relaxed timing. If maximum fabric performance matters more than power, the standard ProASIC3 A3P600-2FGG144 runs a fixed 1.5 V core at -2 speed on the same ball map. There is no verified cross-brand pin-compatible alternative: SRAM FPGAs from AMD/Xilinx or Intel/Altera require external configuration devices and a PCB redesign, so budget re-verification effort before considering migration.

Comparison with Alternatives

Parameter This Product A3P600L-FGG144I A3P600L-1FGG144 A3P600L-FG144 A3P600-2FGG144
Package 144-LBGA (FGG144) 144-LBGA (FGG144) - same 144-LBGA (FGG144) - same 144-LBGA (FG144) - same ball map 144-LBGA (FGG144) - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
System Gates 600000 600000 600000 600000 600000
User I/O 97 97 97 97 97
Core Voltage 1.2 V to 1.5 V (programmable, L-grade) 1.2 V to 1.5 V (L-grade) 1.2 V to 1.5 V (L-grade) 1.2 V to 1.5 V (L-grade) 1.5 V fixed (standard ProASIC3)
Speed Grade Standard Standard -1 (slower) Standard -2 (faster)
Operating Temperature 0C to +85C (TJ) -40C to +100C 0C to +85C 0C to +85C [DATA_NEEDED]
Configuration Technology Flash, nonvolatile (LAPU) Flash, nonvolatile (LAPU) Flash, nonvolatile (LAPU) Flash, nonvolatile (LAPU) Flash, nonvolatile (LAPU)

Key Differentiators

  • Programmable 1.2 V to 1.5 V core for active power savings (vs A3P600-2FGG144)
  • Industrial temperature option without redesign (vs A3P600L-FGG144I)
  • Faster timing closure available in same package (vs A3P600L-1FGG144)

Design Notes

Power the 1.14 V to 1.575 V core rail from a low-noise LDO or point-of-load buck with at least 10 uF of bulk and 0.1 uF per power ball of high-frequency decoupling. If exploiting the L-grade 1.2 V core setting for lower dynamic power, confirm in Libero SoC that all timing paths still close at 1.2 V across 0C to +85C - reduced core voltage directly reduces maximum fabric frequency. Estimated: at 1.2 V versus 1.5 V, dynamic power falls roughly by the (V^2) ratio, about 36% for identical switching activity.

The FGG144 LBGA requires an exact 144-ball land pattern per the Microchip package drawing; do not substitute an FG144 land pattern drawing without confirming ball finish and dimensional tolerances. Route the 97 user I/Os respecting I/O bank voltage domains - mixed-voltage signaling is only valid within each bank's supported range. Place decoupling capacitors on the underside of the board directly beneath the ball array where possible to minimize loop inductance.

A frequent error is substituting speed grades (A3P600L-1FGG144 for the standard A3P600L-FGG144) without re-running timing analysis - pin-compatible does not mean timing-compatible. Also verify the temperature suffix: the commercial-grade part is rated 0C to +85C junction; deploying it in an extended-temperature industrial enclosure without switching to the -I variant risks field failures. Finally, flash FPGAs are single-chip solutions - do not add an external configuration PROM, which wastes board space and BOM cost.

Compliance Information

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

Compliance status not stated in the verified web data. The FGG package suffix conventionally denotes Pb-free finish per Microchip naming, but RoHS/REACH declarations should be confirmed against the official Microchip product page or certificate before procurement.

Data verified on: 2026-08-31 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Microchip Technology A3P600L-FGG144 A3P600L-FGG144I A3P600-2FGG144 ProASIC3L ProASIC3 Actel Microsemi FPGA flash-based FPGA field-programmable gate array VersaTile 144-LBGA FGG144 BGA surface mount live at power-up (LAPU) nonvolatile configuration low total cost of ownership Libero SoC industrial control battery-powered instrumentation secure boot logic aerospace and defense RoHS
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