MA300012 Microchip Technology, MA300012 Datasheet - Page 16

MODULE DSPIC30F SAMPLE 64QFP

MA300012

Manufacturer Part Number
MA300012
Description
MODULE DSPIC30F SAMPLE 64QFP
Manufacturer
Microchip Technology
Datasheets

Specifications of MA300012

Module/board Type
dsPIC30F Plug-in Module
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
DM240001
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Online Resources for Self-paced Learning
OSEK and CAN Drivers
Vector Informatik GmbH provides automotive operating systems, sometimes labeled
as an OSEK operating system. The Vector Informatik osCAN operating system,
which is based on the OSEK/VDX® standard, provides a multitasking operating
system with optimal features for use on MCUs. This product represents a small,
sturdy operating system kernel.
The companion support for managing the CAN interface drivers on the dsPIC30F
family of products is the CANbedded CAN driver suite from Vector Informatik.
This product consists of a number of adaptive source code modules that cover the
basic communication requirements in automotive applications.
Microchip offers extensive online resources for designers ranging from downloadable documentation to web seminars (webinars)
to online discussion groups. All of these helpful resources are accessible on www.microchip.com/webseminars and are updated
frequently with the most current information on our products and services.
Operating Systems and Communication Drivers
RTOS
If you need a Real-Time Operating System (RTOS) to handle multitasking, we have a
three-tier solution for you.
• CMX-RTX™: full-featured fully preemptive multi-tasking OS
• CMX-Tiny+™: fully preemptive scaled-down version of the RTX OS
• CMX-Scheduler™: fully preemptive multi-tasking mini OS (FREE)
All three operating systems are fully preemptive and written in Assembly
language optimized for maximum performance. These RTOS products are
developed by CMX and available from Microchip and CMX.
Webinar Topic
Introduction to the dsPIC® Digital Signal Controller
Introduction to Microchip’s Development Tools
Introduction to dsPIC30F Architecture - Part 1
Introduction to dsPIC30F Architecture - Part 2
Introduction to MPLAB® IDE Integrated Development Environment
Basic dsPIC30F Development Tools
dsPIC30F Addressing Modes - Part 1
dsPIC30F Addressing Modes - Part 2
Introduction to dsPIC30F DSP Engine and ALU
Introduction to dsPIC30F Interrupts
dsPIC30F 12-bit ADC Module - Part 1
dsPIC30F 12-bit ADC Module - Part 2
dsPIC30F 10-bit ADC Module - Part 1
dsPIC30F 10-bit ADC Module - Part 2
Introduction to the MPLAB® VDI Visual Device Initializer
Serial Communications using the dsPIC30F - Part 1 (UART)
Serial Communications using the dsPIC30F - Part 2 (SPI™)
Serial Communications using the dsPIC30F - Part 3 (I²C™)
Serial Communications using the dsPIC30F - Part 4 (CAN)
General Purpose Timers
dsPIC30F Motor Control Peripherals - Part 1 (MCPWM)
dsPIC30F Motor Control Peripherals - Part 2 (QEI)
Duration
20 min
25 min
20 min
20 min
25 min
25 min
20 min
20 min
30 min
25 min
20 min
20 min
20 min
20 min
30 min
20 min
20 min
30 min
30 min
20 min
20 min
20 min
To watch an archived Webinar, you need:
• Windows Media Player v6 or higher
Notes:
• Unzipped media files are large
• Performance of media files may be
• Small program memory footprints
• The fastest context switch times
• The lowest interrupt latency times
• True Preemption
• Initialize CAN Module
• Set CAN Operational Mode
• Set CAN Baud Rate
• Set CAN Mask
• Set CAN Filter
• Send CAN Message
• Receive CAN Message
• Abort CAN Sequence
• Random Number Generator
• Provide Error Notification
sound card
approximately 20 to 50 MB each
affected by type of video card, amount
of system RAM and CPU speed
Some of the CAN functions
RTOS features:
supported:

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