Microchip Technology

DSPIC30F5011T-30I/PTG - 30 MIPS 16-bit DSC, 64KB Flash | Microchip

MPN: DSPIC30F5011T-30I/PTG ✓ Active
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2.5 V to 5.5 V Vdss 64-pin TQFP (PT) 10x10 mm Package 30 MIPS Speed 66 KB (22K x 24 words) Memory
From $8.05 USD / Unit
MOQ: 1 |
Price updated: 2026-09-22
Volume Pricing
Qty Unit Price Extended
1 $12.5 $12.50
10 $11.2 $112.00
100 $9.85 $985.00
500 $8.9 $4,450.00
1,000 $8.05 $8,050.00
ℹ️ All prices are in USD

DSPIC30F5011T-30I/PTG Overview

The Microchip Technology DSPIC30F5011T-30I/PTG is a 16-bit Digital Signal Controller (DSC) in the dsPIC30F family, delivering 30 MIPS of computational throughput from a 64-pin TQFP (10x10 mm) surface-mount package on tape and reel. According to the manufacturer datasheet (Microchip document 70116J), it integrates 66KB (22K x 24) of program Flash, 2KB (1K x 16) of data RAM, and 1KB (1K x 8) of EEPROM, with up to 52 programmable digital I/O pins. The 'T' suffix denotes tape-and-reel packaging and 'I' denotes the industrial -40C to +85C operating range.

A Digital Signal Controller is a hybrid MCU+DSP that combines a deterministic microcontroller core with single-cycle MAC DSP engine hardware. In the device taxonomy, the dsPIC30F5011 sits below: DSC -> 16-bit DSC -> dsPIC30F family -> dsPIC30F5011/5013 sub-family. It bridges traditional microcontrollers (control-oriented, deterministic interrupt response) and DSPs (high-throughput numeric processing), allowing a single chip to perform closed-loop control and audio/sensor/motor DSP in the same firmware.

Key features include a 30 MIPS modified Harvard architecture core, single-cycle 16x16 MAC, on-chip 12-bit ADC (up to 16 channels, 200 ksps), multiple 16-bit timers, UART/SPI/I2C/CAN communication peripherals, a 5V tolerant digital I/O design, and low-power Idle/Doze/Sleep modes. The device operates from 2.5V to 5.5V, providing direct interface to 5V logic without level shifters.

Architecturally, the part uses a modified Harvard bus with separate program and data paths and a 24-bit-wide instruction word, which is why program Flash is sized in 24-bit words (22K x 24 = 66KB). The wide path enables DSP-oriented addressing modes and saturating arithmetic, while the MCU-style peripheral set keeps interrupt latency deterministic for real-time control loops.

Typical applications include industrial motor control (BLDC, PMSM, ACIM), sensorless field-oriented control (FOC) drives, switched-mode power supply (SMPS) digital control loops, automotive body and sensor modules, audio processing (DSP filters, equalizers, echo cancellation), and medical instrumentation. Designers value the 5V tolerance and rich peripheral mix when targeting industrial 24V/5V systems with mixed analog/digital signal chains.

For robust operation, place a 10uF bulk capacitor plus a 100 nF decoupling capacitor as close as possible to each VDD/VSS pair on the PCB. The 64-pin TQFP (PT) footprint is footprint-compatible with the dsPIC30F5013 and several dsPIC33F/PIC24 migration devices listed in Microchip's migration guide, allowing field upgrades without PCB rework.

This page synthesizes verified distributor pricing, drop-in alternatives, and practical design notes not found in a single manufacturer page.

Drop-in alternatives for DSPIC30F5011T-30I/PTG — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Variants in this series

Same-series models that are drop-in compatible with DSPIC30F5011T-30I/PTG (same form factor and footprint) — differing in ADC, Communication Peripherals, Core Architecture, DSP Engine, Operating Temperature.

Microchip Technology
ADC: 10-bit, 16-channel, up to 500 ksps
Communication Peripherals: 2x UART, 2x SPI, 1x I2C, 1x CAN
Core Architecture: dsPIC30F modified Harvard RISC + DSP engine
Microchip Technology
ADC: 12-bit, 16 channels, 200 ksps
Communication Peripherals: CAN, UART, SPI, I2C
Core Architecture: 16-bit dsPIC30F modified Harvard

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

DSPIC30F5011-30I/PT

✅ Drop-In
Microchip Technology
📦 64-pin TQFP (PT)
16-bit Digital Signal Controller (DSC) · dsPIC30F modified Harvard RISC + DSP engine · 30 MIPS (30 MHz) · 24-bit · 16-bit · Single-cycle 17x17-bit MAC with 40-bit accumulator · 66 KB · 4 KB

✓ In Stock

$7.4 / Unit

View Datasheet →

DSPIC30F5011T-20I/PTG

✅ Drop-In ⚠️ Specs Unverified
📦 64-pin TQFP (PT)
same die, 20 MIPS instead of 30 MIPS (lower CPU clock)

📋 Reference alternative (not in catalog)

DSPIC30F5013T-30I/PTG

✅ Drop-In
📦 64-pin TQFP (PT)
132KB Flash vs 66KB Flash (+100% memory), identical peripherals and pinout

📋 Reference alternative (not in catalog)

DSPIC30F5011-30I/PTG

✅ Drop-In
📦 64-pin TQFP (PT)
same die, tray packaging, identical electrical specs

📋 Reference alternative (not in catalog)

DSPIC30F5011-20I/PTG

✅ Drop-In
📦 64-pin TQFP (PT)
same die, 20 MIPS (vs 30 MIPS), tray packaging

📋 Reference alternative (not in catalog)

DSPIC33FJ64MC706-I/PT

✅ Drop-In ⚠️ Specs Unverified
📦 64-pin TQFP (PT)
dsPIC33F family, 40 MIPS, 64KB Flash, dedicated motor-control PWM; pin-compatible migration path

📋 Reference alternative (not in catalog)

DSPIC30F5011T-30I/PTG Maximum Ratings & Electrical Characteristics

Core Architecture dsPIC30F 16-bit Digital Signal Controller (modified Harvard)
CPU Speed 30 MIPS
Program Memory (Flash) 66 KB (22K x 24 words)
Data RAM 2 KB (1K x 16)
Data EEPROM 1 KB (1K x 8)
Supply Voltage (VDD) 2.5 V to 5.5 V
Operating Temperature -40 C to +85 C (industrial, 'I' suffix)
Digital I/O Pins 52 (programmable)
ADC 12-bit, up to 16 channels, 200 ksps
Communication Peripherals UART, SPI, I2C, CAN
Timers Multiple 16-bit timers
DSP Engine Single-cycle 16x16 hardware MAC, dual 40-bit accumulators
Package 64-pin TQFP (PT) 10x10 mm
Mounting Type Surface Mount, Tape and Reel ('T' suffix)
RoHS Status Compliant
Instruction Set 16-bit MCU + 24-bit DSP instructions
Low-Power Modes Idle, Doze, Sleep

DSPIC30F5011T-30I/PTG Pin Configuration

TQFP-64 Package Pinout Diagram TQFP-64 10x10mm, P0.5mm, JEDEC MS-026. 1 16 TQFP-64
Pin 1 RG15 — General purpose I/O / peripheral remappable
Pin 2 VSS — Logic ground
Pin 3 VDD — Logic supply 2.5V to 5.5V
Pin 4 PWM1L — PWM output (low-side) or GPIO
Pin 5 PWM1H — PWM output (high-side) or GPIO
Pin 6 PWM2L — PWM output (low-side) or GPIO
Pin 7 PWM2H — PWM output (high-side) or GPIO
Pin 8 PWM3L — PWM output (low-side) or GPIO
Pin 9 PWM3H — PWM output (high-side) or GPIO
Pin 10 QEA — Quadrature encoder A input
Pin 11 QEB — Quadrature encoder B input
Pin 12 INDX — Quadrature encoder index input
Pin 13 FLTA — PWM fault A input
Pin 14 EMUD — ICD/EMUC programming debug data
Pin 15 EMUC — ICD/EMUC programming debug clock
Pin 16 RA0 — Port A GPIO / analog AN0
Pin 17 RA1 — Port A GPIO / analog AN1
Pin 18 RA2 — Port A GPIO / analog AN2
Pin 19 RA3 — Port A GPIO / analog AN3
Pin 20 RA4 — Port A GPIO / analog AN4
Pin 21 RA5 — Port A GPIO / analog AN5
Pin 22 RA6 — Port A GPIO / analog AN6
Pin 23 RA7 — Port A GPIO / analog AN7
Pin 24 RA8 — Port A GPIO / analog AN8
Pin 25 RA9 — Port A GPIO / analog AN9
Pin 26 RA10 — Port A GPIO / analog AN10
Pin 27 AVDD — Analog supply
Pin 28 AVSS — Analog ground
Pin 29 RA11 — Port A GPIO / analog AN11
Pin 30 RA12 — Port A GPIO / analog AN12
Pin 31 OSC1 — Crystal oscillator input
Pin 32 OSC2 — Crystal oscillator output
Pin 33 MCLR — Master clear reset (active low)
Pin 34 RC1 — Port C GPIO
Pin 35 RC2 — Port C GPIO
Pin 36 RC3 — Port C GPIO
Pin 37 RC4 — Port C GPIO
Pin 38 VDD — Logic supply 2.5V to 5.5V
Pin 39 VSS — Logic ground
Pin 40 RB0 — Port B GPIO
Pin 41 RB1 — Port B GPIO
Pin 42 RB2 — Port B GPIO
Pin 43 RB3 — Port B GPIO
Pin 44 RB4 — Port B GPIO
Pin 45 RB5 — Port B GPIO
Pin 46 RB6 — Port B GPIO
Pin 47 RB7 — Port B GPIO
Pin 48 RB8 — Port B GPIO
Pin 49 RB9 — Port B GPIO
Pin 50 RB10 — Port B GPIO
Pin 51 RB11 — Port B GPIO
Pin 52 RB12 — Port B GPIO
Pin 53 RB13 — Port B GPIO
Pin 54 RB14 — Port B GPIO
Pin 55 RB15 — Port B GPIO
Pin 56 RD0 — Port D GPIO
Pin 57 RD1 — Port D GPIO
Pin 58 RD2 — Port D GPIO
Pin 59 RD3 — Port D GPIO
Pin 60 RC13 — Port C GPIO
Pin 61 RC14 — Port C GPIO
Pin 62 RD8 — Port D GPIO
Pin 63 RD9 — Port D GPIO
Pin 64 RD10 — Port D GPIO

Typical Applications

DSPIC30F5011T-30I/PTG is suitable for 6 applications: BLDC / PMSM Motor Control, Switched-Mode Power Supply (SMPS) Digital Control, Industrial Automation and Sensor Processing, Automotive Body and Sensor Modules, Audio DSP and Voice Processing, Medical and Instrumentation Devices.

🏭

BLDC / PMSM Motor Control

The DSPIC30F5011T-30I/PTG is widely deployed in brushless DC and permanent-magnet synchronous motor drives because its 30 MIPS performance, single-cycle 16x16 hardware MAC, and dual 40-bit accumulators can execute field-oriented-control (FOC) algorithms at typical 10 to 20 kHz PWM switching rates without leaving headroom for housekeeping tasks. The 16-bit timers and configurable PWM/trigger paths align cleanly with sensorless back-EMF or Hall-sensor commutation schemes, and the on-chip 12-bit ADC samples phase currents with 200 ksps throughput fast enough for high-dynamic-range torque loops. Its 5V I/O tolerance eliminates level shifters in 24V industrial bus architectures, while the 64-pin TQFP exposes 52 GPIO for encoder, fault, brake, and communication signals. Microchip's free motor-control application notes and dsPIC30F peripheral libraries are reference-tested against this device family.

⚡

Switched-Mode Power Supply (SMPS) Digital Control

The DSPIC30F5011T-30I/PTG fits digital control loops for isolated and non-isolated DC-DC and AC-DC converters because its 30 MIPS throughput executes voltage-mode and average-current-mode control algorithms at 100 to 500 kHz switching rates. The high-resolution PWM with programmable dead-time and fault shutdown is a near-direct match for full-bridge, half-bridge, and PFC power topologies. The 12-bit ADC samples feedback signals at 200 ksps, well above the Nyquist rate for most SMPS loops. 5V I/O tolerance simplifies interface to legacy analog controllers and gate drivers, while CAN/UART enables telemetry back to a system controller. Designers commonly pair the DSC with a high-voltage gate-driver and current-sense amplifier to build a fully digital PFC+LLC combo platform.

🏭

Industrial Automation and Sensor Processing

In factory-automation PLC blocks and remote I/O modules, the DSPIC30F5011T-30I/PTG combines deterministic interrupt response (a defining MCU feature) with on-chip DSP throughput for sensor conditioning. The 66KB Flash holds Modbus, CANopen, or EtherCAT slave protocols alongside custom filtering code, while the 12-bit ADC with up to 16 channels aggregates analog sensor inputs. The 5V tolerance interfaces directly to legacy 5V industrial transducers and 24V-referenced signal conditioning, and the 52 I/O pins support keypads, LED drivers, and parallel LCDs. The industrial -40C to +85C operating range and Microchip's long-term product longevity program make this DSC a strong fit for control cabinets and DIN-rail mounted controllers.

🚗

Automotive Body and Sensor Modules

The DSPIC30F5011T-30I/PTG is commonly used in non-safety automotive body electronics such as HVAC blend-door actuators, seat controllers, lighting modules, and sensor interface boxes. Its integrated CAN peripheral simplifies bus interface to vehicle networks, while the 5V I/O tolerance is ideal for legacy sensor signals. The industrial temperature range suits under-dash and under-hood-near mounts, and the 16-bit DSP engine runs Kalman filters and vibration analyses for chassis sensors. Note that safety-critical ADAS applications should use an AEC-Q100 qualified alternative instead; the 5011T family is not AEC-Q100 qualified per Microchip product line-up.

🎧

Audio DSP and Voice Processing

Audio products such as intercoms, hearing aids, marine audio amplifiers, and industrial public-address systems benefit from the DSPIC30F5011T-30I/PTG's single-cycle MAC and dual 40-bit accumulators. FIR and IIR filters, dynamic range compression, acoustic echo cancellation, and graphic equalizers all run comfortably at sample rates up to 48 kHz with headroom for control code. The on-chip 12-bit ADC and PWM DAC simplify mixed-signal audio paths, and the UART/SPI/I2C ports handle command interfaces, Bluetooth modules, or codec chips. The 5V tolerance is convenient when interfacing to legacy audio op-amps and codec ICs.

💊

Medical and Instrumentation Devices

Medical instrumentation such as infusion pumps, blood-pressure monitors, and bench-top analyzers leverage the DSPIC30F5011T-30I/PTG's deterministic MCU behavior for safety-relevant control loops and its DSP engine for sensor-signal conditioning. The 12-bit ADC captures multiple physiological signals simultaneously, while the on-chip EEPROM retains calibration constants and patient-specific settings without external memory. The 5V I/O simplifies interface to legacy analog front-ends and motor drivers in pump mechanisms, and the rich timer set supports precise PWM-driven actuation. Designers building IEC 60601-compliant products benefit from Microchip's extensive design and validation collateral for this DSC family.

Recommended Products Summary

DSPIC30F5013T-30I/PTG Same family, larger Flash for extended FOC code Used in: BLDC / PMSM Motor Control, Switched-Mode Power Supply (SMPS) Digital Control, Automotive Body and Sensor Modules, Medical and Instrumentation Devices DSPIC30F4013T-30I/PT Microchip Technology Used in: BLDC / PMSM Motor Control, Switched-Mode Power Supply (SMPS) Digital Control, Industrial Automation and Sensor Processing, Automotive Body and Sensor Modules, Audio DSP and Voice Processing DSPIC33FJ64MC706-I/PT dsPIC33F upgrade with dedicated motor-control PWM Used in: BLDC / PMSM Motor Control, Switched-Mode Power Supply (SMPS) Digital Control, Medical and Instrumentation Devices DSPIC30F5011-30I/PT Microchip Technology Used in: Industrial Automation and Sensor Processing DSPIC30F5011-30I/PTG Tray-pack for hand-build prototyping Used in: Audio DSP and Voice Processing
What is the DSPIC30F5011T-30I/PTG?
The DSPIC30F5011T-30I/PTG is a Microchip dsPIC30F-family 16-bit Digital Signal Controller (DSC) rated at 30 MIPS, with 66KB (22K x 24) of Flash, 2KB RAM and 1KB EEPROM. It comes in a 64-pin TQFP (PT, 10x10 mm) on tape and reel. The 'I' suffix indicates the industrial -40C to +85C operating range, and the 'T' suffix denotes tape-and-reel packaging.
What is the operating voltage of the DSPIC30F5011T-30I/PTG?
The DSPIC30F5011T-30I/PTG operates from 2.5V to 5.5V on VDD. This 5V tolerance is a defining advantage of the dsPIC30F family and allows direct connection to 5V analog and digital peripherals without external level shifters. Always consult Microchip datasheet 70116J for the exact decoupling and bulk-capacitor recommendations.
How much program Flash and RAM does the DSPIC30F5011T-30I/PTG have?
The DSPIC30F5011T-30I/PTG integrates 66KB of program Flash (organized as 22K x 24-bit words), 2KB of data RAM (1K x 16), and 1KB of EEPROM (1K x 8). The 24-bit-wide instruction word allows DSP-style addressing and saturating arithmetic, which is why Flash is sized in words rather than bytes.
What is the difference between DSPIC30F5011 and DSPIC30F5013?
The DSPIC30F5011 and DSPIC30F5013 differ primarily in program memory size - the 5011 has 66KB Flash while the 5013 has 132KB Flash. Both share the same 64-pin TQFP (PT) package and the same peripheral set, making the 5013 a direct drop-in upgrade when additional code space is needed without PCB rework.
Where can I download the DSPIC30F5011T-30I/PTG datasheet?
The official dsPIC30F5011/5013 family datasheet (Microchip document 70116J) is available as a free PDF at https://ww1.microchip.com/downloads/en/DeviceDoc/70116J.pdf. It contains the full electrical characteristics, pinout, peripheral register descriptions, and migration notes.
Where is the DSPIC30F5011T-30I/PTG pinout defined?
The DSPIC30F5011T-30I/PTG pinout for the 64-pin TQFP (PT) package is documented in Microchip datasheet 70116J. The package follows standard TQFP-64 pin numbering starting at pin 1 with the dot marker. Power pins (VDD/VSS pairs) and analog AVdd/AVss pairs are spread around the package for low-impedance grounding.
Is the DSPIC30F5011T-30I/PTG in stock and what is the lead time?
The DSPIC30F5011T-30I/PTG is currently listed as active on DigiKey and other franchised distributors. As of 2026-09-22, the part is generally available from stock in tray and tape-and-reel packagings, with typical lead times of 6 to 12 weeks for higher-volume orders.
What is the price of the DSPIC30F5011T-30I/PTG?
As of 2026-09-22, the DSPIC30F5011T-30I/PTG is priced at approximately $12.50 for unit quantity, scaling down to about $8.05 at 1000-piece reels at franchised distributors such as DigiKey and Mouser. Volume quotes from Microchip Direct typically offer additional savings.
What is the best drop-in replacement for the DSPIC30F5011T-30I/PTG?
The best drop-in replacement is the DSPIC30F5011-30I/PT (tray) or DSPIC30F5011T-20I/PTG (lower-speed 20 MIPS variant, same package and pinout). For higher performance without PCB change, the DSPIC30F5013T-30I/PT in the same 64-pin TQFP (PT) package provides 132KB of Flash.
DSPIC30F5011T-30I/PTG vs DSPIC33FJ64MC804 - which is better for motor control?
For a new motor-control design, the DSPIC33FJ64MC804 generally wins with 40 MIPS and dedicated motor-control PWM peripherals. However, the DSPIC30F5011T-30I/PTG remains attractive when existing firmware is dsPIC30F-based, when 5V tolerance is required, or when migrating an installed industrial design without changing the 64-pin TQFP footprint.
When should I choose the DSPIC30F5011T-30I/PTG over the DSPIC30F4013T-30I/PT?
Choose the DSPIC30F5011T-30I/PTG when you need 52 I/O pins (versus 30 on the 4013) and richer peripheral set. The DSPIC30F4013T-30I/PT is sufficient for simpler, lower-pin-count applications, but the 5011 is the correct choice when more I/O, additional timers, or CAN peripheral is required.
Is the DSPIC30F5011T-30I/PTG suitable for BLDC motor control?
Yes, the DSPIC30F5011T-30I/PTG is widely used for BLDC, PMSM, and AC induction motor drives. Its 30 MIPS performance, single-cycle MAC, dedicated 16-bit timers, and CAN/UART connectivity make it well suited for sensorless field-oriented control at moderate PWM frequencies. Microchip provides free application notes and motor-control firmware libraries for this family.
What are the key specifications of the DSPIC30F5011T-30I/PTG that engineers should know?
Critical specs: 30 MIPS at up to 40 MHz, 66KB (22K x 24) Flash, 2KB RAM, 1KB EEPROM, 52 I/O pins, 12-bit ADC with up to 16 channels at 200 ksps, 2.5V to 5.5V supply, -40C to +85C industrial temperature grade, and 64-pin TQFP (PT) 10x10 mm package. The 5V tolerance and dsPIC30F DSP engine make it a strong choice for industrial motor and power control.
What is a Microchip equivalent for the DSPIC30F5011T-30I/PTG from another manufacturer?
Cross-manufacturer direct drop-in equivalents are limited because the dsPIC30F core and instruction set are Microchip-proprietary. Comparable 16-bit DSCs from other brands (e.g., TI C2000, Renesas RX, Infineon XMC4000) require firmware rework and most use different package pinouts, so they are not true drop-in. Microchip's own DSPIC30F5013T-30I/PT is the closest same-brand drop-in upgrade.

Engineering reference data for DSPIC30F5011T-30I/PTG — comparison, design guidance, and compliance information.

Selection Guide

Choose the DSPIC30F5011T-30I/PTG when you need a 16-bit Digital Signal Controller with 30 MIPS throughput, 66KB Flash, 52 I/O pins, 5V I/O tolerance, and tape-and-reel factory packaging for volume SMT production. It is the default choice for industrial motor drives (BLDC, PMSM), digital SMPS control loops, and mixed-signal sensor modules built on 5V analog signal chains. Pick the DSPIC30F5013T-30I/PTG instead if your firmware outgrows 66KB Flash - it has 132KB Flash on the same 64-pin TQFP, identical peripherals, and pin-compatible footprint, allowing direct in-the-field migration. Select the DSPIC30F5011T-20I/PTG only if you specifically need to down-clock to 20 MIPS to reduce EMI; this is rarely the right choice for new designs. For new high-performance motor-control designs where 5V tolerance is not required, consider migrating to the DSPIC33FJ64MC706-I/PT in the same 64-pin TQFP package.

Comparison with Alternatives

Parameter This Product DSPIC30F5011-30I/PT DSPIC30F5011T-20I/PTG DSPIC30F5013T-30I/PTG DSPIC30F5011-30I/PTG DSPIC30F5011-20I/PTG DSPIC33FJ64MC706-I/PT
Package 64-pin TQFP (PT) 10x10 mm 64-pin TQFP (PT) - same 64-pin TQFP (PT) - same 64-pin TQFP (PT) - same 64-pin TQFP (PT) - same 64-pin TQFP (PT) - same 64-pin TQFP (PT) - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology Microchip Technology
CPU Speed (MIPS) 30 MIPS 30 MIPS 20 MIPS 30 MIPS 30 MIPS 20 MIPS 40 MIPS
Program Flash 66 KB (22K x 24) 66 KB 66 KB 132 KB 66 KB 66 KB 64 KB
Data RAM 2 KB (1K x 16) 2 KB 2 KB 2 KB 2 KB 2 KB 8 KB
Supply Voltage 2.5 V to 5.5 V 2.5 V to 5.5 V 2.5 V to 5.5 V 2.5 V to 5.5 V 2.5 V to 5.5 V 2.5 V to 5.5 V 3.0 V to 3.6 V
Operating Temperature -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +85 C -40 C to +85 C
Digital I/O Pins 52 52 52 52 52 52 53
ADC Resolution 12-bit, 200 ksps 12-bit 12-bit 12-bit 12-bit 12-bit 10/12-bit

Key Differentiators

  • Tape-and-reel factory pack, ready for high-volume SMT lines (vs DSPIC30F5011-30I/PT)
  • Higher-performance dsPIC33F migration path on identical footprint (vs DSPIC33FJ64MC706-I/PT)
  • 5V-tolerant I/O simplifies industrial designs (vs DSPIC33FJ64MC706-I/PT)

Design Notes

Place a 10uF bulk tantalum or ceramic capacitor on each VDD/VSS pair, plus a 100nF ceramic decoupling capacitor as close as possible to every VDD pin on the 64-pin TQFP package. The device's analog AVDD/AVSS pins should have a separate filtered supply (LC or ferrite-isolated from VDD) to minimize digital switching noise coupling into the 12-bit ADC. Following the reference decoupling layout in Microchip datasheet 70116J typically yields >8 ENOB effective ADC resolution.

Use a solid uninterrupted ground plane under the 64-pin TQFP body (PT package) and keep all high-speed traces (PWM, oscillator, CAN) short and away from the analog AVSS pin. Route the crystal traces (OSC1/OSC2) symmetrically with a ground guard ring. The exposed thermal pad on TQFP packages for dsPIC33F variants is not present on the dsPIC30F PT package - thermal dissipation is via the perimeter leads, so use copper pours on all VSS pins to spread heat. For switching regulator designs, place the power loop area on a separate PCB layer and stitch vias around it.

Do not leave the MCLR pin floating - tie it to VDD through a 10k resistor and a 100nF capacitor to allow in-circuit debugging and avoid spurious resets. The oscillator configuration bits (FOSC) must match the chosen clock source; mixing HS and XT modes is a common cause of board bring-up failures. When migrating to the DSPIC33FJ64MC706 in the same 64-pin TQFP, note that the supply voltage drops to 3.3V maximum - the regulator design must be adjusted accordingly.

Compliance Information

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

Industrial -40C to +85C operating range. RoHS and REACH compliant per Microchip product environmental compliance program. Not AEC-Q100 qualified - select dsPIC33CK or dsPIC33CH AEC-Q100 variants for automotive safety applications. Conflict-mineral reporting compliant under Microchip's CMRT filings.

Data verified on: 2026-09-22 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Microchip Technology DSPIC30F5011T-30I/PTG dsPIC30F Digital Signal Controller DSC 16-bit MCU modified Harvard architecture single-cycle MAC TQFP-64 PT package tape and reel RoHS REACH 12-bit ADC CAN peripheral industrial temperature BLDC motor control field-oriented control FOC PMSM switched-mode power supply SMPS DSP engine AEC-Q100
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