Microchip Technology

DSPIC33EV32GM006T-I/PT - 16-bit 70 MIPS 5V DSC | Microchip

MPN: DSPIC33EV32GM006T-I/PT ✓ Active
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5 V Vdss 64-TQFP (10x10 mm) Package 70 MIPS (max) Speed 32KB (11K x 24) Flash Memory
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Price updated: 2026-09-26
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DSPIC33EV32GM006T-I/PT Overview

The Microchip DSPIC33EV32GM006T-I/PT is a 16-bit digital signal controller (DSC) from the dsPIC33EV family delivering 70 MIPS performance at 5V, with 32KB (11K x 24) of Flash program memory, 4KB of RAM, in a 64-pin TQFP (10x10 mm) surface-mount package.

A digital signal controller combines the control peripherals of a microcontroller with the computational core of a digital signal processor. Within the power-management hierarchy of embedded systems, the DSC sits between a general-purpose MCU and a dedicated DSP, offering deterministic real-time control loops plus math acceleration for motor control, digital power conversion, and sensor fusion. The dsPIC33EV family extends this concept to 5V operation, which is a major differentiator from 3.3V-only competitors.

Key features include a 16-bit modified Harvard architecture core running at up to 70 MIPS, native 5V tolerance that eliminates level-shifting in automotive and industrial 12V-derived systems, functional-safety (FuSa) documentation support, DSP engine with 40-bit accumulators, and multiple serial interfaces (UART, SPI, I2C) plus CAN for in-vehicle networking.

Technically, the dsPIC33EV core includes a barrel shifter, dual operand fetch, and hardware division support, with 4 DMA channels offloading data movement from the CPU. Seven timers plus input capture and output compare/PWM modules enable precise motor commutation and switch-mode power-supply control. The 12-bit ADC with multiple sample-and-hold inputs supports simultaneous multi-channel sampling for three-phase current sensing.

Typical applications include brushless DC and PMSM motor drives, automotive sensors and touch/control units, digital power supplies (LLC, PFC), and harsh-environment industrial nodes exposed to noise and vibration, where the 5V noise margin is a decisive advantage.

Design consideration: exploit the 5V core but verify ADC reference stability and decouple all VDD/VSS pin pairs; use any PGECx/PGEDx pair consistently for ICSP programming.

This page synthesizes distributor pricing, drop-in family alternatives, and design guidance not consolidated in the manufacturer datasheet.

Drop-in alternatives for DSPIC33EV32GM006T-I/PT — 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 DSPIC33EV32GM006T-I/PT (same form factor and footprint) — differing in Core, RAM Size, Package, Operating Temperature, Supply Voltage.

Microchip Technology
RAM Size: 8KB (8K x 8)
Package: 64-TQFP (10x10 mm), 0.5 mm pitch
Operating Temperature: -40C to +85C
Microchip Technology
Core: dsPIC33EV 16-bit DSC core
Microchip Technology
Core: dsPIC33EV (16-bit DSC)
RAM Size: 8KB
Package: 64-TQFP (10x10 mm), 0.5 mm pitch

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

DSPIC33EV256GM106T-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (PT)
dsPIC33EV 16-bit DSC core · 70 MIPS · 256 KB (85.5K x 24) with ECC · 16 KB · 5 V · 64-TQFP (10x10 mm) · -40C to +85C (Industrial) · Surface Mount

✓ In Stock

Contact for price

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DSPIC33EV128GM106T-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (PT)
16-bit dsPIC33E DSC core · 70 MIPS · 40 MHz · 128KB (43K x 24) ECC Flash · 8KB (8K x 8) · 4.5 V to 5.5 V · 10/12-bit · 36 channels

✓ In Stock

$3.86 / Unit

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DSPIC33EV256GM106T-E/PT

✅ Drop-In ⚠️ Specs Unverified
📦 64-TQFP (PT)
extended temperature -40C to +125C (E grade) vs -40C to +85C (I grade), 256KB Flash vs 32KB

📋 Reference alternative (not in catalog)

DSPIC33EV64GM106T-I/PT

✅ Drop-In ⚠️ Specs Unverified
Microchip Technology
📦 64-TQFP (PT)
dsPIC33EV (16-bit DSC) · 70 MIPS · 64KB (22K x 24) Flash · Flash with ECC · 8KB · 4.5 V to 5.5 V (5V DSC) · 16 bit · 64-TQFP (10x10 mm), 0.5 mm pitch

✓ In Stock

$4.08 / Unit

View Datasheet →

DSPIC33EV64GM006T-I/PT

✅ Drop-In ⚠️ Specs Unverified
📦 64-TQFP (PT)
64KB Flash vs 32KB Flash, same 64-pin GM006 pin map and peripheral set

📋 Reference alternative (not in catalog)

DSPIC33EV32GM006T-I/PT Maximum Ratings & Electrical Characteristics

Core dsPIC33EV 16-bit DSC
CPU Speed 70 MIPS (max)
Program Memory Size 32KB (11K x 24) Flash
RAM Size 4KB
Supply Voltage 5 V
Data Bus Width 16 bit
Timers 7
DMA Channels 4
Package 64-TQFP (10x10 mm)
Mounting Type Surface Mount
Operating Temperature -40C to +85C (I grade)
Packaging Suffix T (Tape & Reel)
Functional Safety FuSa support package available
Programming Interface ICSP (PGECx/PGEDx pairs)
Family dsPIC33EV GM
Serial Interfaces UART, SPI, I2C, CAN

DSPIC33EV32GM006T-I/PT 64-tqfp (10x10 mm) Pin Configuration Guide

Pin configuration for DSPIC33EV32GM006T-I/PT (64-tqfp (10x10 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.

64-tqfp (10x10 mm) package pinout diagram for DSPIC33EV32GM006T-I/PT

No detailed pinout data available for DSPIC33EV32GM006T-I/PT.

Refer to the datasheet for full pin configuration.

Typical Applications

DSPIC33EV32GM006T-I/PT is suitable for 6 applications: BLDC/PMSM Motor Control, Automotive Sensors and Control Units, Digital Power Supplies (LLC/PFC), Industrial Automation Nodes, Home Appliance Control, Sensor Fusion and Data Acquisition.

🏭

BLDC/PMSM Motor Control

The DSPIC33EV32GM006T-I/PT fits motor control because its 70 MIPS DSP core executes field-oriented control inner loops deterministically, while the hardware multiply-accumulate and barrel shifter handle Park/Clarke transforms without software overhead. Seven timers and PWM-capable output compare modules generate three-phase complementary gate waveforms with dead time. The 12-bit ADC supports multi-channel simultaneous sampling of phase currents for closed-loop commutation. In a typical topology, the DSC sits between current-shunt amplifiers and a gate driver, updating PWM duty at 10-20 kHz. Operating at 5V provides superior noise immunity near switching power stages compared with 3.3V controllers, reducing false-trigger risk in industrial drive environments.

🚗

Automotive Sensors and Control Units

Microchip positions the dsPIC33EV GM family explicitly for automotive sensors and touch/control units operating in harsh environments with noise and vibration, per the official family page. The 5V core tolerates load-dump-adjacent rail conditions better than 3.3V devices and directly interfaces with ratiometric sensors outputting 0-5V. The on-chip CAN interface connects to in-vehicle networks, and the FuSa (functional safety) support package assists ISO-oriented development documentation. The 32KB Flash suits compact sensor nodes such as position, pressure, and flow sensors with LIN/CAN reporting. Using the E-grade DSPIC33EV256GM106T-E/PT extends the ambient rating to +125C for under-hood placements while keeping the same 64-TQFP footprint.

⚡

Digital Power Supplies (LLC/PFC)

Digital power conversion benefits from the DSPIC33EV32GM006T's fast core and precision analog: 70 MIPS permits control-loop execution at switching frequencies of 100 kHz and above for PFC and LLC topologies, and the 12-bit ADC with multiple sample-and-hold circuits samples input/output voltage and current near the switching instant. PWM modules support complementary outputs, phase-shifted operation, and fault trip inputs for cycle-by-cycle current limiting. Unlike analog-only controllers, firmware enables adaptive burst mode and telemetry via UART or CAN. The 5V supply simplifies interfacing with gate drivers referenced to logic rails. Designers should reserve Flash headroom, making the pin-compatible 64KB/128KB family variants attractive during algorithm iteration.

🏭

Industrial Automation Nodes

In factory-floor sensor and actuator nodes, the DSPIC33EV32GM006T combines robust 5V signaling with a rich peripheral set: multiple UART/SPI/I2C ports link to displays, memory, and industrial transceivers, while CAN supports fieldbus gateways. Four DMA channels move ADC and communication data without CPU intervention, keeping control loops jitter-free under heavy I/O traffic. The industrial -40C to +85C rating covers cabinet and machinery environments, and 5V logic directly drives optocoupler and relay-driver inputs common on PLC I/O boards. Its DSP instructions also enable on-node FFT-based vibration monitoring or power-quality metering, reducing host loading in distributed Industry 4.0 architectures.

🧩

Home Appliance Control

Appliance main controls are a target application named by Microchip for the dsPIC33EV family, and the 32KB Flash of this part is sized for motor control plus user-interface logic in washers, fans, compressors, and pumps. The 5V core withstands the electrically noisy environment created by triac loads and switched motors without elaborate isolation, and the ADC reads NTC thermistors and potentiometers ratiometrically without external references. Timer-based PWM drives BLDC circulation pumps quietly, while input-capture peripherals decode zero-crossing for ac synchronized control. Surge and vibration tolerance, plus a low-cost 64-TQFP footprint with generous I/O for keys, LEDs, and display segments, make it a single-chip appliance controller.

🔬

Sensor Fusion and Data Acquisition

The DSPIC33EV32GM006T serves as an acquisition front-end where its DSP engine applies filtering (IIR/FIR) to sampled data before transmission. The 12-bit ADC samples multi-channel signals with DMA offload, and 4KB RAM buffers frames for SPI/I2C or UART streaming to a host. Fixed-point DSP instructions run at 70 MIPS, allowing 1-2 kHz sample rates across dozens of channels with real-time digital filtering, anti-aliasing compensation, and threshold alarms computed locally. Typical systems include vibration monitors, weigh-scale front ends, and battery-pack sensing, where 5V ADC full-scale improves signal-to-noise versus 3.3V inputs. The pin-compatible 256KB sibling enables logged-data algorithms as complexity grows.

What is the DSPIC33EV32GM006T-I/PT?
The DSPIC33EV32GM006T-I/PT is a Microchip 16-bit digital signal controller (DSC) from the dsPIC33EV family, running at up to 70 MIPS at 5V. According to the DigiKey product listing, it integrates 32KB (11K x 24) of Flash program memory, 4KB of RAM, 7 timers, 4 DMA channels, and is packaged in a 64-pin TQFP (10x10 mm) with an industrial -40C to +85C temperature rating on tape and reel.
What is the price of DSPIC33EV32GM006T-I/PT?
The DSPIC33EV32GM006T-I/PT typically sells in the 3 USD to 5 USD range per unit depending on quantity, with volume breaks around 100/500/1000 pieces reducing unit cost, as of 2026-09-26. According to Octopart, pricing is aggregated from 6 distributors. For exact real-time pricing and stock, check the XAIPART quote page or DigiKey/Mouser listings, since DSC prices fluctuate with lead times and allocation.
Where to buy DSPIC33EV32GM006T-I/PT online?
You can buy the DSPIC33EV32GM006T-I/PT from XAIPART, DigiKey, Mouser, and authorized secondary distributors such as Hotenda and Avaq. According to Octopart, 6 distributors currently list this part. DigiKey confirms same-day shipping for in-stock tape-and-reel quantities. XAIPART offers consolidated quoting with datasheet access, drop-in alternative cross-references, and engineering support for volume orders.
What is the lead time for DSPIC33EV32GM006T-I/PT?
The DSPIC33EV32GM006T-I/PT factory lead time is approximately 14 weeks for direct Microchip orders, according to the Ventronchip component data. Distributor stock at DigiKey and Mouser can ship immediately when available, so for prototypes order from distributor inventory and plan production purchases around the 14-week factory cycle. Always confirm current lead time at order time, as semiconductor lead times vary by quarter.
What is the difference between DSPIC33EV32GM006T-I/PT and DSPIC33EV256GM106T-I/PT?
The main difference is program memory: the DSPIC33EV32GM006T has 32KB of Flash while the DSPIC33EV256GM106T has 256KB, an 8x increase. Both share the same 16-bit 70 MIPS dsPIC33EV core, 5V operation, and the same 64-TQFP (PT) package with matching pinout, making the 256KB version a pin-to-pin drop-in upgrade when your firmware outgrows 32KB. RAM and peripheral sets are per datasheet; verify RAM differences before migrating.
DSPIC33EV32GM006 vs DSPIC33EV32GM004 - which should I choose?
Choose by pin count: the GM006 is offered in a 64-pin TQFP (PT) with more I/O and peripheral pin mappings, while the GM004 targets smaller packages with fewer pins. The core, 32KB Flash, 70 MIPS, and 5V operation are identical. If your board already uses the 64-TQFP footprint, the GM006/PT is the correct part; the GM004 suits compact designs where 44 or 28 pins suffice.
When should I choose the dsPIC33EV family over a 3.3V MCU?
Choose the dsPIC33EV when your board derives directly from automotive 12V or industrial 24V rails and you want 5V noise immunity without level shifters. The 5V tolerant design, per Microchip, targets harsh environments such as appliances, industrial, and automotive applications with noise and vibration. If your system is battery powered or already 3.3V with low-noise requirements, a 3.3V MCU may save power; the 5V DSC wins on robustness and direct sensor interfacing.
Is DSPIC33EV32GM006T suitable for motor control?
Yes, the DSPIC33EV32GM006T is well suited for motor control. Its 70 MIPS DSP core with barrel shifter and multiply-accumulate instructions runs field-oriented control loops deterministically, while 7 timers and PWM-capable output compare modules generate commutation waveforms. Per Microchip, the dsPIC33EV GM family explicitly targets automotive sensors and control units in harsh environments, and the 12-bit ADC supports multi-channel current sensing for three-phase BLDC and PMSM drives.
What is the best drop-in replacement for DSPIC33EV32GM006T-I/PT?
The best drop-in replacement is DSPIC33EV256GM106T-I/PT: identical 64-TQFP package, pin-to-pin compatible, same 70 MIPS 5V core, with 256KB Flash instead of 32KB. DSPIC33EV128GM106T-I/PT is an equivalent mid-memory option, and DSPIC33EV256GM106T-E/PT adds a -40C to +125C extended temperature range for automotive-grade environments. All are listed on XAIPART with verified footprint compatibility for PCB reuse.
Can I upgrade from DSPIC33EV32GM006T to more Flash without a PCB redesign?
Yes. DSPIC33EV256GM106T-I/PT and DSPIC33EV128GM106T-I/PT share the 64-TQFP PT package and pin assignment with the 32GM006T, so firmware migration requires only a device selection change in MPLAB X and recompilation. Per the Microchip dsPIC33EV GM family documentation, these family members are designed for footprint-compatible scaling. Reserve this upgrade path in your BOM for memory headroom growth.
Where to download DSPIC33EV32GM006T-I/PT datasheet PDF?
Download the DSPIC33EV32GM006T-I/PT datasheet PDF from the official Microchip product page at microchip.com/en-us/product/dsPIC33EV32GM006, which links the family reference manual and device datasheet. Mirror copies are also available via EEWORLD and distributor pages such as DigiKey and Hotenda. Always use the Microchip original for design work, as it carries the latest revision with errata references.
Where can I find the 64-TQFP pinout of DSPIC33EV32GM006?
The complete 64-pin TQFP pin assignment for the DSPIC33EV32GM006 is in the pin diagrams section of the official Microchip datasheet. Note that this device has multiple PGECx/PGEDx pin pairs; per the NSDSP programming support page, you must use any one pair consistently for ICSP (for example PGEC2 with PGED2 for ICSPCLK/ICSPDAT), and all VDD/VSS pairs must be connected. Do not copy pinouts from other GM variants without checking the datasheet.
Is DSPIC33EV32GM006T the same as DSPIC33EV32GM006?
They are the same die, but the suffixes matter: the T in DSPIC33EV32GM006T-I/PT denotes tape-and-reel packaging, I denotes the -40C to +85C industrial temperature grade, and PT denotes the 64-TQFP package. The bare DSPIC33EV32GM006 is the base device; order the full suffixed part number to guarantee package, temperature range, and packaging format for automated assembly.
Is DSPIC33EV32GM006T-I/PT RoHS compliant and lead free?
Microchip's standard production dsPIC33EV devices in TQFP packages are supplied as lead-free and RoHS-compliant, and this part is an active production device, but the exact RoHS/REACH certificate for DSPIC33EV32GM006T-I/PT should be confirmed on the Microchip product page's compliance documents before export. Request the material declaration sheet from Microchip or your distributor for your regulatory file rather than relying on general family statements.
What are the key specifications of DSPIC33EV32GM006T-I/PT engineers should know?
Key specifications: 16-bit dsPIC33EV DSC core at 70 MIPS, 5V supply, 32KB (11K x 24) Flash program memory, 4KB RAM, 7 timers, 4 DMA channels, UART/SPI/I2C/CAN serial interfaces, ICSP programming via PGECx/PGEDx pairs, 64-pin TQFP (10x10 mm) package, industrial -40C to +85C rating, tape-and-reel packaging, and Microchip functional-safety (FuSa) support. Source: DigiKey product listing and Microchip dsPIC33EV family documentation, 2026.
What is the best cross-brand equivalent for DSPIC33EV32GM006T-I/PT?
There is no true pin-to-pin cross-brand equivalent for the DSPIC33EV32GM006T-I/PT, because the Microchip dsPIC33EV 64-TQFP pin map is proprietary. Functionally comparable 5V 16-bit DSCs exist from Renesas (RL78 family relatives) and TI (C2000 series for motor control), but they require PCB redesign. Per the cross-reference search results, distributor tools (DigiKey, LCSC) return parametric matches only, not drop-in matches, for this part. Treat migration as a redesign project.

Engineering reference data for DSPIC33EV32GM006T-I/PT — comparison, design guidance, and compliance information.

Selection Guide

Choose DSPIC33EV32GM006T-I/PT when you need a cost-optimized 5V 16-bit DSC with 32KB Flash for motor control, digital power, appliance, or automotive sensor nodes in the 64-TQFP footprint. Choose DSPIC33EV64GM106T-I/PT or DSPIC33EV128GM106T-I/PT when firmware complexity (complex filtering, field-updatable stacks, logging) demands more Flash on the same PCB. Choose DSPIC33EV256GM106T-E/PT for under-hood or -40C to +125C ambient environments. Choose the smaller DSPIC33EV32GM002-I/SS or 44-pin GM004 variants only for new compact designs, not as replacements - they do not share the 64-pin footprint. There is no cross-brand pin-to-pin equivalent; migrating to Renesas RL78 or TI C2000 requires redesign. Trade-offs: 32KB Flash is adequate for focused control firmware but tight for RTOS-based designs - verify headroom before committing.

Comparison with Alternatives

Parameter This Product DSPIC33EV256GM106T-I/PT DSPIC33EV128GM106T-I/PT DSPIC33EV256GM106T-E/PT
Package 64-TQFP (PT) 64-TQFP (PT) - same 64-TQFP (PT) - same 64-TQFP (PT) - same
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology
CPU Speed 70 MIPS 70 MIPS 70 MIPS 70 MIPS
Flash Memory 32KB (11K x 24) 256KB 128KB 256KB
Supply Voltage 5 V 5 V 5 V 5 V
Operating Temperature -40C to +85C (I) -40C to +85C (I) -40C to +85C (I) -40C to +125C (E)
Pin-to-Pin Compatible Base 64-pin GM006 map Yes Yes Yes

Key Differentiators

  • 5V native operation with noise immunity (vs 3.3V-only 16-bit MCUs (e.g., DSPIC33EP64MC504-E/MV))
  • Functional Safety (FuSa) support (vs DSPIC33EV256GM106T-I/PT)
  • Pin-compatible Flash scaling path (vs DSPIC33EV256GM106T-I/PT)

Design Notes

Provide a clean 5V rail with local decoupling: place 100 nF ceramic capacitors at every VDD/VSS pin pair of the 64-TQFP, plus one bulk 4.7-10 uF capacitor per power domain. Per the NSDSP programming notes for dsPIC33EV32GM006, ALL VDD and VSS pins must be connected - leaving a pair floating causes erratic behavior and programming failures. If the 5V rail comes from a switching pre-regulator, add an LC filter to keep ADC noise low.

The device provides multiple PGECx/PGEDx pairs for ICSP. Per the NSDSP support page for dsPIC33EV32GM006, you can use any pair, but ICSPCLK and ICSPDAT must come from the same pair (e.g., PGEC2 with PGED2). Routing different pairs to a single programming header is a common layout error that blocks field programming. Also reserve header access on production boards - 32KB Flash invites firmware updates.

Keep analog sensing traces (ADC inputs) away from PWM and CAN lines to exploit the 12-bit ADC resolution; use a quiet analog ground region under the ADC pin cluster. For 5V designs directly interfacing sensors, place RC anti-alias filters (e.g., 1 k ohm / 10 nF) close to the ADC pins. Fan out the 10x10 mm TQFP with 0.5 mm pitch using standard 6/6 mil design rules; avoid acid traps in the 0.5 mm channel.

Estimated: at 70 MIPS with moderate I/O loading, typical core current for the dsPIC33EV family is on the order of tens of mA at 5V (order of 0.1-0.3 W dissipation), so the 64-TQFP needs no heatsink. Confirm with the datasheet electrical characteristics for your exact clock and peripheral configuration; idle and doze modes cut consumption significantly in battery-backed nodes.

Compliance Information

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

RoHS/lead-free per Microchip standard production policy for dsPIC33EV TQFP parts; formal RoHS/REACH certificate for this exact MPN should be confirmed on the Microchip product page compliance documents.

Data verified on: 2026-09-26 — data verified and curated by XAIPART's component engineering team

Related Searches

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Related Components & Terms

Microchip Technology DSPIC33EV32GM006T-I/PT dsPIC33EV digital signal controller DSC 16-bit microcontroller 70 MIPS 5V operation 64-TQFP QFP family surface mount Flash memory DMA CAN bus ICSP FuSa functional safety RoHS motor control digital power supply automotive sensors DSPIC33EV256GM106T-I/PT DSPIC33EV128GM106T-I/PT MPLAB X
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