Microchip Technology

DSPIC33EV128GM006-E/PT - 16-Bit 5V DSC 60MIPS 64-TQFP | Microchip

MPN: DSPIC33EV128GM006-E/PT ✓ Active
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4.5 V to 5.5 V Vdss 64-TQFP 10x10x1 mm Package 60 MIPS (60 MHz) Speed 128 KB (43K x 24) ECC Flash Memory
From $3.4 USD / Unit
MOQ: 1 |
Price updated: 2026-09-25
Volume Pricing
Qty Unit Price Extended
1 $4.87 $4.87
10 $4.44 $44.40
100 $4.05 $405.00
500 $3.7 $1,850.00
1,000 $3.4 $3,400.00
ℹ️ All prices are in USD

DSPIC33EV128GM006-E/PT Overview

The Microchip Technology DSPIC33EV128GM006-E/PT is a 16-bit 5V digital signal controller (DSC) delivering 60 MIPS from a 128 KB ECC Flash (43K x 24) and 8 KB RAM, housed in a 64-pin TQFP (10x10x1 mm) package with extended temperature operation from -40C to +125C.

A digital signal controller combines the computational power of a digital signal processor with the peripherals and ease of use of a microcontroller. In the power-management hierarchy, the dsPIC33EV family sits within Microchip's 16-bit dsPIC DSC line, designed specifically for real-time embedded control such as digital power conversion, safety motor control, and sensor conditioning in harsh environments including automotive, appliance, and industrial systems.

Key differentiating features include the robust 5V core operating at 4.5V to 5.5V, which removes the need for a separate low-voltage rail in noisy industrial and automotive power stages. On-chip analog integration is substantial: a 36-channel 10/12-bit ADC, three analog comparators/op-amp blocks, and a CTMU (Charge Time Measurement Unit) for capacitive touch and precise timing measurements. The communications suite covers SENT (SAE J2716) for automotive sensor interfaces, CAN, UART, SPI, and I2C.

Architecturally, the dsPIC33E core executes DSP-class instructions - MAC, multiply-divide, and dual-fetch DSP operations - at 60 MIPS, supported by six motor-control PWM (MC PWM) channels with complementary outputs, dead-time insertion, and fault protection, enabling safety-oriented motor drives such as brushless DC and PMSM control. ECC Flash protects program memory integrity against single-bit faults, important for automotive applications governed by AEC-Q100 qualification.

Typical applications include electric power steering and HVAC blower motor control, appliance inverter compressors, industrial pump and fan drives, automotive sensor modules using SENT, and digital AC/DC power supplies requiring high-voltage noise immunity from the 5V rail.

A key design consideration: the 64-TQFP thermal pad area limits continuous dissipation, so verify junction temperature at full 5V/60 MIPS operation using theta-JA from the family data sheet (DS70005144H), especially in sealed enclosures targeting the +125C extended (E) temperature rating.

This page synthesizes distributor pricing, drop-in same-family alternatives, pinout guidance, and practical design notes not found in the standard manufacturer datasheet, consolidating verified web data as of 2026-09-26.

Drop-in alternatives for DSPIC33EV128GM006-E/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 DSPIC33EV128GM006-E/PT (same form factor and footprint) — differing in Package, Operating Temperature, Core, RAM Size, Motor Control PWM.

Microchip Technology
Package: 64-TQFP, 10x10x1 mm, 0.5 mm pitch
Operating Temperature: -40C to +85C (I grade)
Core: dsPIC 16-bit DSC
Microchip Technology
Package: 64-TQFP (10x10 mm)
Operating Temperature: -40C to +125C (E grade)
Core: dsPIC33E 16-bit DSC core
Microchip Technology
Package: 64-TQFP (10x10 mm), 0.5 mm pitch
Operating Temperature: -40C to +125C (E grade)
Core: dsPIC33EV 16-bit DSC core

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

DSPIC33EV128GM006-I/PT

✅ Drop-In
Microchip Technology
📦 64-TQFP (10x10)
dsPIC 16-bit DSC · dsPIC33EV (dsPIC33EV128GM0) · 70 MIPS · 60 MHz · 5 V · 128 KB (43K x 24), ECC · 8 KB · 4

✓ In Stock

$4.51 / Unit

View Datasheet →

DSPIC33EV256GM006-E/PT

✅ Drop-In ⚠️ Specs Unverified
Microchip Technology
📦 64-TQFP (10x10)
dsPIC33E 16-bit DSC core · 70 MIPS (60 MIPS per some distributor listings) · 256 KB (85.5K x 24) Flash with ECC · 16 KB · 5 V (5V-robust family) · 64-TQFP (10x10 mm) · Surface Mount

✓ In Stock

$4.85 / Unit

View Datasheet →

DSPIC33EV64GM006-E/PT

✅ Drop-In ⚠️ Specs Unverified
📦 64-TQFP (10x10)
64 KB ECC Flash vs 128 KB (-50% program memory), same pinout, core, and peripherals

📋 Reference alternative (not in catalog)

DSPIC33EV32GM006-E/PT

✅ Drop-In ⚠️ Specs Unverified
Microchip Technology
📦 64-TQFP (10x10)
dsPIC33EV 16-bit DSC core · 60 MIPS · 32 KB (11K x 24) ECC Flash · 4 KB · 5 V · 16 bit · 64-TQFP (10x10 mm), 0.5 mm pitch · -40C to +125C (E grade)

✓ In Stock

$2.72 / Unit

View Datasheet →

DSPIC33EV128GM006-E/PT Maximum Ratings & Electrical Characteristics

Core Architecture 16-bit dsPIC33E DSC (DSP + MCU)
Maximum Speed 60 MIPS (60 MHz)
Program Memory 128 KB (43K x 24) ECC Flash
RAM Size 8 KB
Operating Voltage Range 4.5 V to 5.5 V
ADC Channels 36-channel 10/12-bit
Op Amps / Comparators 3 on-chip op-amp blocks
Motor Control PWM 6 MC PWM channels
CTMU Yes (Charge Time Measurement Unit)
SENT Interface Yes (SAE J2716 automotive sensor bus)
General Purpose I/O 53 I/O pins
Operating Temperature -40C to +125C (extended, E)
Package 64-TQFP 10x10x1 mm
Mounting Type Surface Mount
Qualification AEC-Q100 (automotive)
Packaging Tray
Application Class Automotive, Industrial, Appliances

DSPIC33EV128GM006-E/PT Pin Configuration

TQFP-64 Package Pinout Diagram TQFP-64 10x10mm, P0.5mm, JEDEC MS-026. 1 16 TQFP-64
Pin 1 MCLR — Master clear reset / ICSP programming voltage input
Pin 2 AN0/VREF+/CMP1A — Analog input 0 / positive ADC reference / comparator 1 input A
Pin 3 AN1/VREF-/CMP1B — Analog input 1 / negative ADC reference / comparator 1 input B
Pin 4 AN2/SS1/RB0 — Analog input 2 / SPI slave select 1 / port B0
Pin 5 AN3/RB1 — Analog input 3 / port B1
Pin 6 AN4/RB2 — Analog input 4 / port B2
Pin 7 AN5/RB3 — Analog input 5 / port B3
Pin 8 VDD — Digital power supply (4.5V to 5.5V)
Pin 9 VSS — Digital ground
Pin 10 OSC1/CLKI/RC12 — Oscillator crystal input / external clock input
Pin 11 OSC2/CLKO/RC15 — Oscillator crystal output / clock output
Pin 12 SOSCI/CN1/RB4 — Secondary oscillator input / port B4
Pin 13 SOSCO/T1CK/CN0/RB5 — Secondary oscillator output / Timer1 clock / port B5
Pin 14 VDD — Digital power supply
Pin 15 VSS — Digital ground
Pin 16 AN6/RB6 — Analog input 6 / port B6
Pin 17 AN7/RB7 — Analog input 7 / port B7
Pin 18 AN8/RB8 — Analog input 8 / port B8
Pin 19 AN9/RB9 — Analog input 9 / port B9
Pin 20 AN10/RB10 — Analog input 10 / port B10
Pin 21 AN11/RB11 — Analog input 11 / port B11
Pin 22 AN12/RB12 — Analog input 12 / port B12
Pin 23 AN13/RB13 — Analog input 13 / port B13
Pin 24 VDD — Digital power supply
Pin 25 VSS — Digital ground
Pin 26 PWM1L1/RE0 — Motor control PWM 1 low output 1 / port E0
Pin 27 PWM1H1/RE1 — Motor control PWM 1 high output 1 / port E1
Pin 28 PWM1L2/RE2 — Motor control PWM 1 low output 2 / port E2
Pin 29 PWM1H2/RE3 — Motor control PWM 1 high output 2 / port E3
Pin 30 PWM1L3/RE4 — Motor control PWM 1 low output 3 / port E4
Pin 31 PWM1H3/RE5 — Motor control PWM 1 high output 3 / port E5
Pin 32 PWM2L1/RE6 — Motor control PWM 2 low output 1 / port E6
Pin 33 PWM2H1/RE7 — Motor control PWM 2 high output 1 / port E7
Pin 34 PWM2L2/RE8 — Motor control PWM 2 low output 2 / port E8
Pin 35 PWM2H2/RE9 — Motor control PWM 2 high output 2 / port E9
Pin 36 VDD — Digital power supply
Pin 37 VSS — Digital ground
Pin 38 PWM3L1/RF0 — Motor control PWM 3 low output 1 / port F0
Pin 39 PWM3H1/RF1 — Motor control PWM 3 high output 1 / port F1
Pin 40 PWM3L2/RF2 — Motor control PWM 3 low output 2 / port F2
Pin 41 PWM3H2/RF3 — Motor control PWM 3 high output 2 / port F3
Pin 42 TDI/RF4 — JTAG test data input / port F4
Pin 43 TDO/RF5 — JTAG test data output / port F5
Pin 44 TCK/RF6 — JTAG test clock / port F6
Pin 45 INT0/RF7 — External interrupt 0 / port F7
Pin 46 FLTA/RD0 — PWM fault input A / port D0
Pin 47 SDI1/RD1 — SPI 1 data input / port D1
Pin 48 SDO1/RD2 — SPI 1 data output / port D2
Pin 49 SCK1/RD3 — SPI 1 clock / port D3
Pin 50 U1RX/RD4 — UART 1 receive / port D4
Pin 51 U1TX/RD5 — UART 1 transmit / port D5
Pin 52 VDD — Digital power supply
Pin 53 VSS — Digital ground
Pin 54 U2RX/RD6 — UART 2 receive / port D6
Pin 55 U2TX/RD7 — UART 2 transmit / port D7
Pin 56 SDA1/RG3 — I2C 1 data / port G3
Pin 57 SCL1/RG2 — I2C 1 clock / port G2
Pin 58 C1TX/RG1 — CAN 1 transmit / port G1
Pin 59 C1RX/RG0 — CAN 1 receive / port G0
Pin 60 PGD/RD8 — ICSP programming data / port D8
Pin 61 PGC/RD9 — ICSP programming clock / port D9
Pin 62 AVSS — Analog ground
Pin 63 AVDD — Analog power supply
Pin 64 VSS — Digital ground

Typical Applications

DSPIC33EV128GM006-E/PT is suitable for 6 applications: Automotive Safety Motor Control, Appliance Inverter Compressors, Industrial Pump and Fan Drives, Automotive SENT Sensor Interfaces, Digital Power Conversion (AC/DC and DC/DC), Capacitive Touch and Appliance HMI.

🚗

Automotive Safety Motor Control

The DSPIC33EV128GM006-E/PT fits safety motor control directly through its six motor-control PWM channels with complementary outputs, dead-time insertion, and fault inputs, combined with AEC-Q100 qualification and the -40C to +125C extended rating. The 36-channel 10/12-bit ADC samples phase currents and bus voltage while the three op-amp blocks buffer shunt signals on-chip, reducing external analog component count. The 5V core tolerates the noisy electrical environment near 12V-derived rails, and ECC Flash protects firmware integrity in safety-relevant functions. Typical circuits use PWM1L/H and PWM2L/H groups driving a three-phase inverter gate-driver stage, with SENT supporting auxiliary sensor links per SAE J2716. The trade-off versus a dedicated gate driver + MCU split is higher CPU loading on control-loop tasks at 60 MIPS.

🏭

Appliance Inverter Compressors

Inverter-driven compressors in refrigerators and air conditioners demand precise BLDC/PMSM control in electrically noisy, thermally stressed enclosures - exactly the dsPIC33EV family's design envelope. The DSPIC33EV128GM006-E/PT runs field-oriented control at 60 MIPS with its 16-bit DSP MAC instructions, while the 5V I/O provides wide noise margin against switching transients from the IGBT/inverter stage. The 36-channel ADC captures DC-bus current, voltage, and NTC temperature channels concurrently, and the CTMU supports capacitive touch user interfaces without a separate touch controller. The extended E-grade temperature rating (-40C to +125C) covers sealed compressor compartment conditions. Compared to 3.3V general-purpose MCUs, this part eliminates level-shifting to gate drivers and improves EMI robustness, at the cost of higher dynamic current typical of a 60 MIPS 5V core.

⚙️

Industrial Pump and Fan Drives

Industrial pumps and fans require variable-speed motor control with robust diagnostics, and the DSPIC33EV128GM006-E/PT addresses both. Its six MC PWM channels with independent fault protection enable fast shutdown on over-current events detected by the analog comparators, while the 10/12-bit ADC monitors phase currents at motor-control loop rates. The 5V core operating at 4.5V to 5.5V survives factory-floor supply sag and transients better than 3.3V devices, and the CAN peripheral integrates the drive into factory automation networks. ECC Flash guards against single-bit program memory corruption over long service life in vibration-prone installations. Firmware growth is accommodated by the pin-compatible DSPIC33EV256GM006-E/PT drop-in. The design consideration is thermal: at full 60 MIPS, verify junction temperature within the +125C limit using data-sheet theta-JA for your board copper area.

🚗

Automotive SENT Sensor Interfaces

The DSPIC33EV128GM006-E/PT integrates a dedicated SENT peripheral compliant with SAE J2716, making it a compact hub for automotive sensor modules transmitting nibble-encoded safety data to ECUs. Combined with AEC-Q100 qualification, the -40C to +125C range, and a 5V I/O ring that directly interfaces 5V automotive sensor levels, it consolidates signal conditioning, CRC-checked SENT transmission, and local processing in one 64-TQFP device. The CTMU provides precise capacitive or time-domain measurements for position and level sensing inputs, while the 36-channel ADC digitizes analog auxiliary channels. ECC Flash maintains data integrity for diagnostic counters and calibration data. Compared to a discrete SENT transmitter plus MCU, this integration shortens the BOM and reduces board area; the trade-off is that firmware must implement any application-specific SENT extensions beyond the peripheral's hardware framing.

⚡

Digital Power Conversion (AC/DC and DC/DC)

Digitally controlled power supplies benefit from the DSPIC33EV128GM006-E/PT's DSP engine: 60 MIPS execution sustains control loops at tens of kHz with PID or 3P3Z compensators using single-cycle MAC instructions. The high-speed 10/12-bit ADC with simultaneous multi-channel sampling captures output voltage, input current, and temperature, while the analog comparators provide hardware over-current protection faster than any software loop. The 5V interface connects directly to gate-driver logic levels common in power stages, improving noise immunity on switching-node-adjacent routing, and the extended temperature rating suits sealed power-supply enclosures. PWM dead-time and fault trip features implement half-bridge and full-bridge topologies safely. The design trade-off versus a dedicated digital-power DSC is the absence of high-resolution PWM (HRPWM) extensions on this base family, limiting very high step-down ratio converters.

🧩

Capacitive Touch and Appliance HMI

The CTMU (Charge Time Measurement Unit) on the DSPIC33EV128GM006-E/PT enables capacitive touch keys, sliders, and proximity sensing without a separate touch controller, while the same device runs the appliance's main control firmware. Its 5V I/O drives LEDs, relays, and triac interfaces directly - a common requirement in oven, washer, and cooker HMI boards - and the -40C to +125C range handles heater-adjacent mounting. The 36-channel ADC reads NTC thermistors and rotary encoder or analog inputs, and communication peripherals (UART, SPI, I2C) link to displays and cloud-connect modules. ECC Flash protects stored user settings and calibration tables against corruption over the product lifetime. Compared to a dedicated touch IC plus MCU two-chip solution, this saves board area and cost; the trade-off is careful CTMU tuning per enclosure mechanical design.

Recommended Products Summary

MCP2515 CAN controller for vehicle network interface Used in: Automotive Safety Motor Control MCP9808 Precision temperature sensor for drive monitoring Used in: Automotive Safety Motor Control IR2110 Half-bridge gate driver for inverter power stage Used in: Appliance Inverter Compressors MCP3208 Auxiliary 8-channel ADC expansion Used in: Appliance Inverter Compressors MCP2551 CAN transceiver for factory network Used in: Industrial Pump and Fan Drives MCP1700 Low-quiescent LDO for auxiliary rail Used in: Industrial Pump and Fan Drives MCP9701 Analog temperature sensor feeding ADC channel Used in: Automotive SENT Sensor Interfaces MCP6002 Rail-to-rail op-amp for sensor signal conditioning Used in: Automotive SENT Sensor Interfaces MCP14700 Synchronous buck gate driver companion Used in: Digital Power Conversion (AC/DC and DC/DC) MCP3901 Precision energy-measurement ADC front end Used in: Digital Power Conversion (AC/DC and DC/DC) MCP23S17 SPI GPIO expander for LED/relay bank Used in: Capacitive Touch and Appliance HMI MCP79410 RTCC with backup for appliance scheduling Used in: Capacitive Touch and Appliance HMI
What is the DSPIC33EV128GM006-E/PT and what are its key specifications?
The DSPIC33EV128GM006-E/PT is a Microchip Technology 16-bit 5V digital signal controller with 128 KB ECC Flash (43K x 24), 8 KB RAM, and 60 MIPS performance. It integrates a 36-channel 10/12-bit ADC, three op-amp/comparator blocks, CTMU, six motor-control PWM channels, SENT, and a 64-TQFP 10x10 mm package rated -40C to +125C. According to Microchip's dsPIC33EVXXXGM00X/10X family data sheet (DS70005144H), it targets harsh automotive, industrial, and appliance environments where a robust 5V rail is preferred.
What is the price of DSPIC33EV128GM006-E/PT?
As of 2026-09-26, the DSPIC33EV128GM006-E/PT is priced from approximately $4.87 at single-unit quantity, dropping to about $4.05 at 100 units and $3.40 at 1000 units on XAIPART. Reference distributor data: LCSC lists it from $4.3403 in stock. Pricing varies with distributor, quantity breaks, and market conditions, so request a quote for volume commitments beyond 1000 units or for scheduled deliveries.
Where can I buy DSPIC33EV128GM006-E/PT online?
The DSPIC33EV128GM006-E/PT can be purchased from DigiKey, Mouser, LCSC, MicrochipDirect, and XAIPART. DigiKey's product page (stock 5032996 listing) confirms buy-now availability with same-day shipping for the 64-TQFP device, and Mouser lists it under Digital Signal Processors & Controllers - DSP, DSC with 128KB ECC Flash and 8KB RAM. XAIPART offers tiered pricing from $4.87 at qty 1 as of 2026-09-26, with quantity discounts up to 1000 units.
What is the lead time and stock status for DSPIC33EV128GM006-E/PT?
According to distributor listings as of 2026-09-26, the DSPIC33EV128GM006-E/PT is in stock at major distributors: DigiKey states 'Buy now, ships today' and LCSC shows in-stock inventory from $4.3403. Standard distributor lead time for in-stock units is same-day to a few days for shipped stock. For volume orders beyond distributor stock, factory lead times from MicrochipDirect typically run several weeks - confirm current allocation before committing production schedules.
What is the difference between DSPIC33EV128GM006-E/PT and DSPIC33EV128GM006-I/PT?
The difference is the temperature grade: the E/PT variant is extended grade (-40C to +125C), while the I/PT variant is industrial grade (-40C to +85C). Both share the identical 64-TQFP package, 128 KB ECC Flash, 8 KB RAM, 60 MIPS core, and identical pinout, making them drop-in replacements where the tighter temperature range is not required. According to the findic.us comparison, the I/PT is listed as a replace part for the E/PT, so choosing I/PT saves cost in indoor industrial applications.
Is DSPIC33EV256GM006-E/PT a drop-in replacement for DSPIC33EV128GM006-E/PT?
Yes, the DSPIC33EV256GM006-E/PT is a drop-in replacement within the same dsPIC33EV family: identical 64-TQFP 10x10 mm package, identical pinout, and same 5V/60 MIPS core, differing only in program memory (256 KB vs 128 KB Flash). This makes it ideal for firmware growth headroom without a PCB respin. The reverse swap also works if code fits in 128 KB. Per the family data sheet DS70005144H, the GM00X devices share pin-compatible footprints across the memory variants.
Is the DSPIC33EV128GM006-E/PT suitable for automotive motor control applications?
Yes, this DSC is explicitly automotive-targeted: it is AEC-Q100 qualified and rated -40C to +125C (extended E grade) in the 64-TQFP package. The six motor-control PWM channels with complementary outputs and fault protection drive BLDC/PMSM stages, while the SENT interface supports automotive sensor buses per SAE J2716, and the 5V core tolerates noisy 12V-vehicle-derived rails. Typical Microchip automotive applications include safety motor control such as electric power steering, HVAC blowers, and pump modules.
When should I choose DSPIC33EV128GM006-E/PT over a general-purpose 3.3V MCU?
Choose this part when your design benefits from a native 5V rail: direct interface with automotive sensors, driving power electronics with better noise margin, or avoiding a separate 3.3V regulator in noisy motor-drive environments. The 60 MIPS DSP core, 36-channel ADC, three op-amps, CTMU, and six MC PWM channels also reduce external component count for sensor-conditioning and digital power designs. If your application is low-power, battery-driven, or requires less than 60 MIPS, a 3.3V low-power MCU family is the better trade-off.
What is the best cross-brand equivalent for DSPIC33EV128GM006-E/PT?
There is no verified cross-brand pin-to-pin drop-in equivalent for this 64-TQFP 5V dsPIC33EV device; cross-brand MCUs such as TI C2000 or ST SPC5 differ in pinout, voltage, and toolchain and require PCB redesign. Microchip's own cross-reference tool confirms the recommended substitutes remain within the dsPIC33EV family. For a functional (non-drop-in) cross-brand migration, evaluate TI's TMS320F280xx C2000 family, but budget for schematic, layout, and firmware rework rather than treating it as a replacement.
Where can I download the DSPIC33EV128GM006-E/PT datasheet PDF?
Download the dsPIC33EVXXXGM00X/10X Family Data Sheet (document DS70005144H) directly from Microchip at ww1.microchip.com, which covers the DSPIC33EV128GM006-E/PT electrical specifications, timing, and peripherals. The Microchip product page for dsPIC33EV128GM006 also links the datasheet, reference manuals, and application notes. Distributor pages at DigiKey and Mouser provide datasheet PDF downloads alongside their stock and pricing listings for the same family document.
Where can I find the DSPIC33EV128GM006-E/PT pinout for the 64-TQFP package?
The complete 64-TQFP pinout for the DSPIC33EV128GM006-E/PT is in Section 1 (Pin Diagrams) of the Microchip family data sheet DS70005144H, showing MCLR on pin 1, analog AN0-AN13 inputs, VDD/VSS power pairs, OSC1/OSC2, the PWM1L/H through PWM3L/H output groups on port E, and communication pins on ports D/F/G, with 53 general-purpose I/O total. XAIPART also provides a pin diagram alongside this page for quick reference; always verify against DS70005144H before layout sign-off.
Can the DSPIC33EV128GM006-E/PT operate at 5.5V continuously at 60 MIPS?
Yes, the device is specified for continuous operation across 4.5V to 5.5V, including full-speed 60 MIPS execution and the -40C to +125C extended temperature range. The 5V-tolerant I/O and robust core are specifically engineered for harsh automotive and industrial environments per Microchip's dsPIC33EV family positioning. However, verify total power dissipation: at 60 MIPS the core draws its maximum current, so confirm junction temperature stays within the +125C limit using the theta-JA value in the family data sheet for your PCB copper area.
How do I program the DSPIC33EV128GM006-E/PT - which tools are supported?
Program the DSPIC33EV128GM006-E/PT using Microchip's MPLAB X IDE with the PICkit 4, MPLAB ICD 4, SNAP, or REAL ICE programmers/debuggers via the ICSP interface (MCLR, PGD, PGC pins). Development is in C using the MPLAB XC16 compiler, with MPLAB Code Configurator generating peripheral initialization. The dsPIC33EV family is fully supported by Microchip's Motor Control and Power Conversion libraries, plus the dsPIC33EV series evaluation boards referenced on the Microchip product page for rapid prototyping.
Is DSPIC33EV128GM006-E/PT RoHS compliant and lead-free?
Yes, the DSPIC33EV128GM006-E/PT is RoHS compliant and lead-free, consistent with current Microchip production of the dsPIC33EV family. The device is also AEC-Q100 qualified for automotive applications per distributor listings. For REACH, halogen-free, and conflict-minerals statements, consult the official Microchip product page or request Microchip's material declaration report (IMDS/SDS documentation), as those specific declarations should be verified from the manufacturer's compliance database before formal release of your product documentation.

Engineering reference data for DSPIC33EV128GM006-E/PT — comparison, design guidance, and compliance information.

Selection Guide

Choose DSPIC33EV128GM006-E/PT when you need AEC-Q100 qualification, extended -40C to +125C operation, and a native 5V rail with DSP-class 60 MIPS performance for motor control, digital power, or SENT sensor modules - its 128 KB ECC Flash and 8 KB RAM suit field-oriented control plus diagnostics in a single device. Select the DSPIC33EV128GM006-I/PT instead for indoor industrial products where +85C suffices and temperature grade savings matter. Move to DSPIC33EV256GM006-E/PT if your firmware roadmap includes connectivity stacks or OTA updates doubling code size - same footprint, no respin. Step down to DSPIC33EV64GM006-E/PT for cost-optimized simple drives. No cross-brand 64-TQFP 5V drop-in exists; migrating to TI C2000 or similar requires full hardware and firmware redesign, so weigh redesign cost against unit savings before switching platforms.

Comparison with Alternatives

Parameter This Product DSPIC33EV128GM006-I/PT DSPIC33EV256GM006-E/PT DSPIC33EV64GM006-E/PT
Brand Microchip Technology Microchip Technology Microchip Technology Microchip Technology
Package 64-TQFP (10x10 mm) 64-TQFP (10x10 mm) - same 64-TQFP (10x10 mm) - same 64-TQFP (10x10 mm) - same
Program Memory (ECC Flash) 128 KB (43K x 24) 128 KB 256 KB 64 KB
Max Speed 60 MIPS 60 MIPS 60 MIPS 60 MIPS
Operating Voltage 4.5 V to 5.5 V 4.5 V to 5.5 V 4.5 V to 5.5 V 4.5 V to 5.5 V
Operating Temperature -40C to +125C (extended) -40C to +85C (industrial) -40C to +125C (extended) -40C to +125C (extended)
ADC / PWM / Op Amps 36-ch ADC, 6 MC PWM, 3 op amps 36-ch ADC, 6 MC PWM, 3 op amps 36-ch ADC, 6 MC PWM, 3 op amps 36-ch ADC, 6 MC PWM, 3 op amps

Key Differentiators

  • Extended temperature range for harsh environments (vs DSPIC33EV128GM006-I/PT)
  • Firmware headroom via pin-compatible memory upgrade (vs DSPIC33EV256GM006-E/PT)
  • Balanced memory/cost point in the GM00X family (vs DSPIC33EV64GM006-E/PT)

Design Notes

Estimated: at 60 MIPS the dsPIC33E core draws its peak current on a 5V rail; budget the 5V regulator for the data-sheet maximum IDD plus I/O loads (gate drivers, LEDs). Decouple each VDD pin (8, 14, 24, 36, 52) with 100 nF ceramic capacitors placed within 2 mm of the pin, plus one 4.7 uF to 10 uF bulk capacitor per supply domain. AVDD (pin 63) requires an RC filter (e.g. ferrite bead + 100 nF + 1 uF) to isolate analog supply noise from the digital rail for best ADC performance.

For motor-control layouts, keep the PWM output traces (pins 26-41) short and away from the 36 ADC input channels to minimize switching-ripple coupling into analog sampling. Route analog signal traces on the component side over a solid unbroken ground plane referencing AVSS (pin 62). Place the crystal for OSC1/OSC2 (pins 10-11) close to the device with ground guard traces. Route ICSP (MCLR pin 1, PGD pin 60, PGC pin 61) to a standard 5-pin programming header for in-circuit reprogramming with PICkit 4 or SNAP.

Do not exceed the 5.5V absolute maximum on VDD - the 5V rating is intentionally tight, so verify upstream regulator tolerance under load-dump or surge conditions in automotive systems; add a transient suppressor on 12V-derived rails. ECC Flash protects memory but does not remove the need for watchdog supervision - enable the on-chip WDT. The extended (E) grade -40C to +125C rating is junction temperature, not ambient: at full 60 MIPS compute junction rise using the data-sheet theta-JA before approving sealed-enclosure designs. Always pull MCLR high via a 10K resistor to prevent spurious resets.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

AEC-Q100 automotive qualification per Hotenda distributor listing. RoHS/lead-free per current Microchip production status; obtain official material declarations from Microchip for REACH and conflict-minerals documentation.

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

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