MA300015 Microchip Technology, MA300015 Datasheet - Page 33

MODULE PLUG-IN DSPIC30F 80QFP

MA300015

Manufacturer Part Number
MA300015
Description
MODULE PLUG-IN DSPIC30F 80QFP
Manufacturer
Microchip Technology
Datasheet

Specifications of MA300015

Accessory Type
Plug-in Module (PIM) - dsPIC30F6010A
Peak Reflow Compatible (260 C)
Yes
Mcu Supported Families
DsPICDEM 1.1 Plus
Leaded Process Compatible
Yes
Supported Devices
DsPIC30F6010A
Development Tool Type
Hardware - Daughter Card
Silicon Manufacturer
Microchip
Core Architecture
DsPIC
Core Sub-architecture
DsPIC30
Silicon Core Number
DsPIC30F
Silicon Family Name
DsPIC30F6xxx
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
dsPICDEM Boards (DM300014 or DM300019)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MA300015
Manufacturer:
MICROCHIP
Quantity:
12 000
Summary
The Digital Filter Design tool for the 16-bit dsPIC® Digital Signal
Controller (DSC) makes designing, analyzing and implementing
Finite Impulse Response (FIR) and Infinite Impulse Response
(IIR) digital filters easy through a menu-driven and intuitive user
interface. The filter design tool performs complex mathematical
computations for filter design, provides superior graphical
displays and generates comprehensive design reports.
Desired filter frequency specifications are entered and the tool
generates the filter code and coefficient files ready to use in
the MPLAB®IDE Integrated Development Environment. System
analysis of the filter transfer function is supported with multiple
generated graphs, such as magnitude, phase, group delay, log
magnitude, impulse response and pole/zero locations.
Finite Impulse Response Filter Design
Digital Filter Design/
Digital Filter Design Lite
List Price
Low-pass
High-pass
Band-pass
Band-stop
FIR Taps
IIR Taps for LP , HP
IIR Taps for BP , BS
Generate ASM Code
Export to MPLAB® IDE
Export to MPLAB® C30 C Compiler
MATLAB® Support
Design method selection
Low-pass, high-pass, band-pass and band-stop filters
FIR filters can have up to 513 taps
Following window functions are supported:
Reports provide design details such as window
coefficients and impulse response prior to multiplying by
the window function
– FIR window design
– FIR equiripple design (Parks-McClellan)
Rectangular
Hanning (Hann)
Hamming
Triangular
Blackman
Exact Blackman
3 term cosine
3 term cosine with
continuous 3rd derivative
Minimum 3 term cosine
Filter Design
4 term cosine
4 term cosine with
continuous 5th derivative
Minimum 4 term cosine
Good 4 term Blackman Harris
Harris flat top
Kaiser
Dolph-Tschebyscheff
Taylor
Gaussian
Up to 513
Up to 10
Up to 0
$49
Filter Design Lite
www.microchip.com
Up to 64
Up to 4
Up to 8
$9
Infinite Impulse Response Filter Design
Code Generation Features
Graphs
Low-pass, high-pass, band-pass and band-stop filters
Filter orders up to 10 for low-pass and high-pass filters
Filter orders up to 0 for band-pass and band-stop filters
Five analog prototype filters are available:
Digital transformations are performed by bilinear
transformation method
Reports show design details such as all transformations
from normalized low-pass filter to desired filter
Generated files are compliant with Microchip’s MPLAB
C30 C compiler, assembler and linker
Choice of placement of coefficients in program space or
data space
C wrapper/header code generation
Magnitude response vs. frequency
Log magnitude vs. frequency
Phase response vs. frequency
Group delay vs. frequency
Impulse response vs. time (per sample)
Step response vs. time (per sample)
Pole and zero locations (IIR only)
– Butterworth
– Tschebyscheff
– Inverse Tschebyscheff
– Elliptic
– Bessel
DS01033C-33

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