MA300011 Microchip Technology, MA300011 Datasheet - Page 3

MODULE DSPIC30F SAMPLE 80QFP

MA300011

Manufacturer Part Number
MA300011
Description
MODULE DSPIC30F SAMPLE 80QFP
Manufacturer
Microchip Technology
Datasheet

Specifications of MA300011

Module/board Type
dsPIC30F Plug-in Module
Product
Microcontroller Modules
Data Bus Width
16 bit
Core Processor
dsPIC30F6014
Operating Supply Voltage
2.5 V to 5.5 V
Development Tools By Supplier
Integrated Development Environment, Assembler, ANSI C Compiler
Processor Series
dsPIC30F
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
DM30004-1, DM30004-2
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
True DSP Performance
The dsPIC DSC balances its outstanding
MCU qualities with real DSP performance.
All the features you require from a high
performance, robust DSP are effortlessly
integrated in a single core.
Best of Both Worlds
Bridging the Performance Gap
Microchip’s digital signal controllers place unprecedented performance in the hands of 16-bit MCU designers. The dsPIC DSC
has the “heart” of a 16-bit MCU with robust peripherals and fast interrupt handling capability and the “brain” of a DSP that
manages high computation activities, creating the optimum single-chip solution for embedded system designs. This enables
you to add powerful new features to your product and integrate functions to save board space.
Outstanding MCU Performance
The first 16-bit MCUs were developed
to overcome the native 64 KB boundary
imposed by 8-bit MCUs. The need
for advanced performance was not
contemplated in these early architectures.
When the need for improved performance
became obvious, next-generation devices
were developed, but were constrained by
backward compatibility requirements and
legacy issues.
Developed from the ground up, the dsPIC
DSC addresses traditional 16-bit
requirements without sacrificing
performance. It combines state-of-the-art
16-bit MCU performance in its general-
purpose, register-based core with all the
features you need for DSP operations.
•State-centric
•Interrupt intensive
•Cost driven
•Flash capability
•Robust peripherals
•HLL frequently used
MCU Attributes
DSP Performance
Advanced interrupt capability
Function
Complex FFT**
Complex FFT**
Complex FFT**
Single Tap FIR
Block FIR
Block FIR Lattice
Block IIR Canonic
Block IIR Lattice
Matrix Add
Matrix Transpose
Vector Dot Product
Vector Max
Vector Multiply
Vector Power
PID Loop Core
*C= # columns, N= # samples, M= # taps, S= # sections, R= # rows
**Complex FFT routine inherently prevents overfl ow
1 cycle = 25 nanoseconds @ 40 MIPS
Self-programming capability
Familiar MCU look and feel
Single core architecture
Rich peripheral options
Flexible Flash memory
Low pin count options
DSP performance
Optimized for C
16+C(6+3(R-1))
46+N(16+7M)
41+N(4+7M)
Cycle Count
36+N(8+7S)
53+N(4+M)
20+3(C*R)
®
19+7(N-2)
Equation
17+3N
17+4N
16+2N
-—
N=32, M=32
N=32, M=32
Conditions*
N=32, M=8
N=32, S=4
C=8, R=8
C=8, R=8
N=128
N=256
N=64
N=32
N=32
N=32
N=32
—-
Number of
•Flow-centric
•Interrupt averse
•Performance driven
•Emerging Flash
•Limited peripherals
•HLL infrequently used
Cycles
19055
DSP Attributes
3739
8485
1205
7337
1188
2350
212
232
113
229
145
80
1
7
Execution Time
@40 MIPS
212.1 μs
476.4 μs
183.5 μs
93.5 μs
30.2 μs
29.7 μs
58.7 μs
175 ns
5.3 μs
5.8 μs
2.9 μs
5.7 μs
3.6 μs
2.0 μs
25 ns
3

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