A3P060-1FG144T - ProASIC3 FPGA, 60K Gates | Microchip
MPN: A3P060-1FG144T β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $12.5 | $12.50 |
| 10 | $11.25 | $112.50 |
| 100 | $10 | $1,000.00 |
| 500 | $8.75 | $4,375.00 |
| 1,000 | $7.5 | $7,500.00 |
Drop-in alternatives for A3P060-1FG144T β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
A3P060-1FGG144T
β Drop-Inπ Reference alternative (not in catalog)
A3P250-1FG144T
β Drop-Inβ In Stock
$28.9 / Unit
View Datasheet βA3P060-VQG100I
β Drop-Inβ In Stock
$6.95 / Unit
View Datasheet βA3P060-QNG48I
β Drop-Inπ Reference alternative (not in catalog)
A3P125-VQ100T
β Drop-Inβ In Stock
$7.5 / Unit
View Datasheet βA3P060-1FG144T Maximum Ratings & Electrical Characteristics
| Family | ProASIC3 |
| System Gates | 60000 |
| Maximum Internal Frequency | 272 MHz |
| Core Voltage | 1.5 V |
| Technology | 130 nm |
| Package | 144-pin FBGA |
| Operating Temperature Range | -40Β°C to +125Β°C (Tj up to 135Β°C) |
| Automotive Grade | Yes (PPAP documentation) |
| Configuration | Flash-based, reprogrammable |
| I/O Standards | LVCMOS, LVTTL, PCI, LVDS (selectable) |
| Supply Voltage Range | 1.425 V to 1.575 V |
| RoHS Status | Compliant |
| Mounting Type | Surface Mount |
A3P060-1FG144T Pin Configuration
| Pin 1 | VCC β Core power supply (1.5V) |
| Pin 2 | GND β Ground |
| Pin 3 | IO β User I/O |
| Pin 4 | IO β User I/O |
| Pin 5 | IO β User I/O |
| Pin 6 | IO β User I/O |
| Pin 7 | IO β User I/O |
| Pin 8 | IO β User I/O |
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| Pin 27 | IO β User I/O |
| Pin 28 | IO β User I/O |
| Pin 29 | IO β User I/O |
| Pin 30 | IO β User I/O |
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| Pin 33 | IO β User I/O |
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| Pin 37 | IO β User I/O |
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| Pin 42 | IO β User I/O |
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| Pin 45 | IO β User I/O |
| Pin 46 | IO β User I/O |
| Pin 47 | IO β User I/O |
| Pin 48 | IO β User I/O |
| Pin 49 | IO β User I/O |
| Pin 50 | IO β User I/O |
| Pin 51 | IO β User I/O |
| Pin 52 | IO β User I/O |
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| Pin 60 | IO β User I/O |
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| Pin 70 | IO β User I/O |
| Pin 71 | IO β User I/O |
| Pin 72 | IO β User I/O |
| Pin 73 | IO β User I/O |
| Pin 74 | IO β User I/O |
| Pin 75 | IO β User I/O |
| Pin 76 | IO β User I/O |
| Pin 77 | IO β User I/O |
| Pin 78 | IO β User I/O |
| Pin 79 | IO β User I/O |
| Pin 80 | IO β User I/O |
| Pin 81 | IO β User I/O |
| Pin 82 | IO β User I/O |
| Pin 83 | IO β User I/O |
| Pin 84 | IO β User I/O |
| Pin 85 | IO β User I/O |
| Pin 86 | IO β User I/O |
| Pin 87 | IO β User I/O |
| Pin 88 | IO β User I/O |
| Pin 89 | IO β User I/O |
| Pin 90 | IO β User I/O |
| Pin 91 | IO β User I/O |
| Pin 92 | IO β User I/O |
| Pin 93 | IO β User I/O |
| Pin 94 | IO β User I/O |
| Pin 95 | IO β User I/O |
| Pin 96 | IO β User I/O |
| Pin 97 | IO β User I/O |
| Pin 98 | IO β User I/O |
| Pin 99 | IO β User I/O |
| Pin 100 | IO β User I/O |
| Pin 101 | IO β User I/O |
| Pin 102 | IO β User I/O |
| Pin 103 | IO β User I/O |
| Pin 104 | IO β User I/O |
| Pin 105 | IO β User I/O |
| Pin 106 | IO β User I/O |
| Pin 107 | IO β User I/O |
| Pin 108 | IO β User I/O |
| Pin 109 | IO β User I/O |
| Pin 110 | IO β User I/O |
| Pin 111 | IO β User I/O |
| Pin 112 | IO β User I/O |
| Pin 113 | IO β User I/O |
| Pin 114 | IO β User I/O |
| Pin 115 | IO β User I/O |
| Pin 116 | IO β User I/O |
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| Pin 120 | IO β User I/O |
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| Pin 128 | IO β User I/O |
| Pin 129 | IO β User I/O |
| Pin 130 | IO β User I/O |
| Pin 131 | IO β User I/O |
| Pin 132 | IO β User I/O |
| Pin 133 | IO β User I/O |
| Pin 134 | IO β User I/O |
| Pin 135 | IO β User I/O |
| Pin 136 | IO β User I/O |
| Pin 137 | IO β User I/O |
| Pin 138 | IO β User I/O |
| Pin 139 | IO β User I/O |
| Pin 140 | IO β User I/O |
| Pin 141 | IO β User I/O |
| Pin 142 | IO β User I/O |
| Pin 143 | IO β User I/O |
| Pin 144 | GND β Ground |
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
A3P060-1FG144T is suitable for 6 applications: Automotive Body Electronics, Industrial Motor Control, Infotainment Systems, Aerospace and Defense, IoT and Smart Home, Medical Devices.
Automotive Body Electronics
The A3P060-1FG144T is ideal for automotive body electronics such as window lift controllers, seat control modules, and lighting systems. Its automotive-grade qualification (up to 135Β°C junction temperature) and PPAP documentation ensure reliability in harsh environments. The flash-based configuration provides instant-on operation, eliminating boot time delays. With 60K gates, it can handle multiple communication interfaces (CAN, LIN) and logic functions. The 1.5V core reduces power consumption, critical for battery-powered vehicles. Its small 144-pin FBGA package fits space-constrained ECU designs. The low-impedance flash switches enable high-speed signal routing, meeting the timing requirements of automotive protocols. Additionally, the device supports secure remote updates, allowing manufacturers to fix bugs or add features post-production. Overall, the A3P060-1FG144T offers a cost-effective, reliable solution for automotive electronics.
Recommended
Industrial Motor Control
In industrial motor control, the A3P060-1FG144T can implement PWM generation, encoder interfaces, and safety logic. Its 272 MHz performance allows precise timing for high-frequency PWM signals. The 1.5V core and flash-based design offer low power consumption and instant-on, reducing system complexity. The device supports multiple I/O standards, enabling direct interface with motor drivers and sensors. Its wide temperature range (-40Β°C to +125Β°C) suits factory environments. The 60K gates provide enough resources for control algorithms and communication protocols like Modbus. The flash configuration ensures secure, non-volatile storage of the bitstream, preventing unauthorized copying. Additionally, the device's low-impedance routing minimizes signal delays, improving control loop response. For safety-critical applications, the automotive-grade version (A3P060-1FG144T) offers enhanced reliability. Overall, it is a versatile FPGA for industrial motor control systems.
Recommended
Infotainment Systems
The A3P060-1FG144T is suitable for infotainment systems, handling display control, audio processing, and user interface logic. Its 60K gates can implement video timing controllers and audio codec interfaces. The 1.5V core reduces power consumption, important for in-vehicle electronics. The flash-based configuration allows for secure, instant-on boot, enhancing user experience. The device supports LVDS I/O for high-speed display data transmission. Its automotive-grade qualification ensures reliable operation in temperature extremes. The 144-pin FBGA package is compact, fitting into head units and dashboard modules. The low-impedance flash switches enable high-speed signal integrity for video and audio data. Additionally, the device can be reprogrammed in the field for software updates. With its combination of performance, low power, and reliability, the A3P060-1FG144T is an excellent choice for infotainment applications.
Recommended
Aerospace and Defense
The A3P060-1FG144T is used in aerospace and defense applications such as flight control, navigation, and communication systems. Its flash-based architecture provides inherent security against reverse engineering, crucial for defense systems. The device operates over a wide temperature range and is available in automotive grade, which often aligns with military requirements. The 60K gates can implement complex logic functions, while the 272 MHz performance meets real-time processing needs. The 1.5V core reduces power consumption, important for battery-powered or heat-constrained environments. The 144-pin FBGA package is rugged and suitable for harsh conditions. The device supports secure remote updates, allowing for mission-critical firmware changes. Its low-impedance routing ensures reliable signal integrity in high-vibration environments. Additionally, the flash configuration provides instant-on, eliminating boot delays in critical systems. Overall, the A3P060-1FG144T offers a secure, reliable FPGA solution for aerospace and defense.
Recommended
IoT and Smart Home
The A3P060-1FG144T can be used in IoT gateways and smart home controllers, handling protocol bridging, sensor data aggregation, and edge processing. Its low power consumption (1.5V core) is ideal for always-on devices. The flash-based configuration allows for secure, over-the-air updates. The 60K gates provide enough resources for multiple communication interfaces (SPI, I2C, UART) and simple processing tasks. The device's instant-on capability ensures quick response times. The 144-pin FBGA package is compact, suitable for small form-factor devices. The wide temperature range supports various environments. The low-impedance routing enables reliable data transfer. Additionally, the automotive-grade version offers enhanced reliability for industrial IoT applications. With its balance of performance and power efficiency, the A3P060-1FG144T is a solid choice for IoT and smart home devices.
Recommended
Medical Devices
The A3P060-1FG144T is used in medical devices such as patient monitors, infusion pumps, and diagnostic equipment. Its reliability and wide temperature range make it suitable for medical environments. The flash-based configuration provides secure, non-volatile storage of the bitstream, ensuring device integrity. The 60K gates can implement signal processing, control logic, and communication interfaces. The 1.5V core reduces power consumption, important for battery-operated devices. The device's instant-on capability is critical for medical equipment that must be ready immediately. The 144-pin FBGA package is compact, fitting into portable devices. The low-impedance routing ensures accurate signal transmission for sensitive measurements. Additionally, the automotive-grade version offers enhanced reliability for critical medical applications. With its combination of performance, security, and reliability, the A3P060-1FG144T is a trusted choice for medical electronics.
Recommended
Recommended Products Summary
Engineering reference data for A3P060-1FG144T β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | A3P060-1FGG144T | A3P250-1FG144T | A3P060-VQG100I | A3P060-QNG48I |
|---|---|---|---|---|---|
| Package | 144-pin FBGA | 144-pin FBGA | 144-pin FBGA | 100-pin VQFP | 48-pin QFN |
| Brand | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology | Microchip Technology |
| System Gates | 60000 | 60000 | 250000 | 60000 | 60000 |
| Maximum Frequency | 272 MHz | 272 MHz | 272 MHz | 272 MHz | 272 MHz |
| Core Voltage | 1.5 V | 1.5 V | 1.5 V | 1.5 V | 1.5 V |
| Automotive Grade | Yes | Yes | Yes | No (industrial) | No (industrial) |
| Operating Temperature | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +100Β°C | -40Β°C to +100Β°C |
| Pin Compatibility | Reference | Pin-compatible | Pin-compatible | Not pin-compatible | Not pin-compatible |
Key Differentiators
- Automotive-grade qualification with PPAP documentation (vs A3P060-VQG100I)
- Higher logic capacity in the same package (vs A3P060-1FGG144T)
- Flash-based configuration with instant-on (vs SRAM-based FPGAs)
Design Notes
The A3P060-1FG144T requires a 1.5V core supply with tight regulation (Β±5%). Use a low-dropout regulator (LDO) or a switching regulator with low ripple. Place 0.1uF and 10uF decoupling capacitors close to each VCC pin. For the I/O banks, follow the recommended supply voltages for the chosen I/O standard. Estimated: total power consumption depends on logic utilization and toggle rate; for a typical design with 50% utilization, power can be estimated using the Microchip power calculator.
For the 144-pin FBGA package, use a 4-layer or more PCB with dedicated power and ground planes. Route high-speed signals with controlled impedance (e.g., 50 ohm for single-ended). Place the FPGA away from noisy components. Use via-in-pad for the thermal pad to improve heat dissipation. Follow the layout guidelines in the Microchip ProASIC3 datasheet for optimal signal integrity.
The A3P060-1FG144T is rated for junction temperatures up to 135Β°C. For high-power designs, ensure adequate thermal management. The FBGA package has a thermal pad that should be soldered to a copper pour on the PCB. Estimated: for a power dissipation of 1W, the junction-to-ambient thermal resistance is typically 20-30Β°C/W, so the ambient temperature must be kept below 105Β°C. Use thermal vias to improve heat transfer.
Compliance Information
Automotive grade with PPAP documentation. RoHS compliant per Microchip product page.