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New Digital Signal Controller (DSC) Accelerates DSP Performance for Time-Critical Control Applications
dsPIC33CK is Microchip’s highest performance single-core DSC in an ultra-small package

CHANDLER, Ariz., September 25, 2018 — System designers looking for digital signal processing power with the design simplicity of a microcontroller (MCU) can now utilize a new family of 16-bit Digital Signal Controllers (DSCs) from Microchip Technology Inc. (Nasdaq: MCHP). Designed to deliver faster deterministic performance in time-critical control applications, the new dsPIC33CK DSCs have expanded context selected registers to reduce interrupt latency and new, faster instruction execution to accelerate Digital Signal Processor (DSP) routines. This dsPIC33CK single-core family complements the recently announced dsPIC33CH dual-core family based on the same core.

With 100 MIPS performance, the core delivers almost double the performance of previous single-core dsPIC® DSCs, making it ideally suited for motor control, digital power and other applications requiring sophisticated algorithms such as automotive sensors and industrial automation. It has been designed specifically for controlling multiple sensorless, brushless motors running field-oriented control algorithms and power factor correction.

The new DSCs are also designed to ease functional safety certification required by many automotive, medical and appliance applications where safe operation and shutdown in failure situations are critical. The devices include integrated functional safety features for safety-critical designs such as: RAM Built-In Self-Test (BIST) for checking RAM health and functionality; Deadman Timer for monitoring the health of application software through periodic timer interrupts within a specified timing window; Dual Watchdog Timers (WDT); Flash Error Correction Code (ECC); Brown Out Reset (BOR); Power On Reset (POR); and Fail Safe Clock Monitor (FSCM).

“Microchip’s 16-bit DSCs are highly efficient with minimal delay or latency into the system, and this new core is our best yet,” said Joe Thomsen, vice president of Microchip’s MCU16 business unit. “The feature set and performance make the dsPIC33CK family ideal for time-critical functions such as controlling the precise speed or rotation of a motor, as well as safety-critical functions to ease functional safety certification and ensure dependable operation.”

The dsPIC33CK family features a CAN-FD communication bus to support new automotive communication standards. It comes with a high level of analog integration including high-speed ADCs (3.5 Msps), analog comparators with DACs, and operational amplifiers, enabling motor control applications with smaller footprints and lower bill of material costs. The DSCs include a 250 ps resolution PWM which is ideal for advanced digital power topologies. Live update of firmware (with up to 2 × 128 KB blocks) is also offered to support high-availability systems, especially important for digital power supplies.

For additional information, contact any Microchip sales representative or authorized worldwide distributor, or visit Microchip’s website. To purchase products mentioned in this press release, go to Microchip’s full-service channel microchipDIRECT or contact one of Microchip’s authorized distribution partners.

Development Support

The dsPIC33CK is supported by Microchip’s MPLAB® development ecosystem including Microchip’s free, downloadable and award-winning MPLAB X Integrated Development Environment (IDE), MPLAB Code Configurator, MPLAB XC16 C Compiler tool chain and MPLAB in-circuit debugger/programmer tools.

The dsPIC33CK Curiosity Development Board (DM330030) is a cost-effective and flexible platform enabling customers to rapidly create a feature-rich prototype. Motor control PIMs are available with internal (MA330041-2) and external (MA330041-1) op amps for use with for Microchip’s MCLV-2 and MCHV-2/3 systems. The dsPIC33CK PIM for general purpose platforms (MA330042) is available for the Explorer 16/32 Development Board (DM240001-2). The Digital Power Starter Kit (DPSK-3, DM330017-3) is being updated to feature the dsPIC33CK256MP508.

Pricing and Availability

The dsPIC33CK is available in eight package variants. The 28-pin dsPIC33CK32MP202 is priced at $1.34 each in high volume. Variants include packages from 28 to 80 pins and as small as 5 x 5 mm. Memory sizes range from 32 to 256 KB of Flash.

The dsPIC33CK Curiosity Development Board will be available in November for $39.99 each.

The dsPIC33CK PIMs for the MCLV-2 and MCHV-2/3 motor control development platforms are available now for $25.00 each.

The dsPIC33CK PIM for use with Explorer 16/32 boards is available now for $25.00 each.

The Digital Power Starter Kit will be available in October for $129.99.

2018092501 / 25.09.2018 / Electronic-components / Microchip Technology Inc. /

Microchip’s RTG4™ FPGAs with Lead-Free Flip-Chip Bumps Achieve Highest Space Qualification
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New VelocityDRIVE™ Software Platform and Automotive-Qualified Multi-Gigabit Ethernet Switches for Software-Defined Vehicles

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New Solution from Microchip Makes it Easier to Build Sophisticated Graphical User Interfaces for MPLAB® Harmony v3 and Linux® Environments

Functional Safety Certification for Microchip’s PolarFire® FPGAs Speeds Time to Market
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Expanded Single Pair Ethernet Portfolio with 100BASE-T1 and 1000BASE-T1 PHY Transceivers for Network Interoperability
Microchip’s LAN887x PHYs offer extended reach up to 40m and are designed to be compliant with industry standards

Microchip Technology Adds ECC20x and SHA10x Families of Secure Authentication ICs to TrustFLEX Platform
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Microchip and Acacia Collaborate to Enable Optimized Terabit-Scale Data Center Interconnect Systems
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Pick Your Power with Microchip’s New Electric Vehicle Charger Reference Designs
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Microchip Introduces High-Performance PCIe® Gen 5 SSD Controller Family
Flashtec® NVMe® 5016 controllers are optimized to manage growing enterprise and data center workloads

Microchip Technology Introduces a New Core in the dsPIC® Digital Signal Controller Family to Enhance Precision and Execution of Real-Time Control

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