A3P600L-FGG144 - ProASIC3L Flash FPGA 600K, 97 I/O | Microchip
MPN: A3P600L-FGG144 ✓ Active| Qty | Unit Price | Extended |
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| 1 | $0 | $0.00 |
| 10 | $0 | $0.00 |
| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
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✓ In Stock
$33.95 / Unit
View Datasheet →A3P600L-1FGG144
✅ Drop-In✓ In Stock
$29.4 / Unit
View Datasheet →A3P600L-FG144
✅ Drop-In✓ In Stock
$48.34 / Unit
View Datasheet →A3P600L-1FG144
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$25.73 / Unit
View Datasheet →A3P600-2FGG144
✅ Drop-In✓ 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.
No detailed pinout data available for A3P600L-FGG144.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
Recommended Products Summary
Engineering reference data for A3P600L-FGG144 — comparison, design guidance, and compliance information.
Selection Guide
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
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.