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产品型号TMS320F28027FPTT的概述

TMS320F28027FPTT概述 TMS320F28027FPTT是德州仪器(Texas Instruments, TI)公司推出的一款高性能的数字信号处理器(DSP)系列中的一员,属于C2000系列。该芯片专为嵌入式控制和高速信号处理应用而设计,特别适合于电机控制、数字电源和工业自动化等领域。凭借其强大的性能以及丰富的外设,TMS320F28027FPTT提供了优越的计算能力,能够高效处理复杂的控制算法。 芯片详细参数 TMS320F28027FPTT的核心参数如下: - 架构: C28x RISC架构 - 主频: 60 MHz - 指令集: 包含一系列高效的指令,支持多种操作,如快速乘法、外设接口等 - Flash存储: 128 KB - RAM: 20 KB - ADC通道: 12位分辨率,最多可支持16个通道 - PWM模块: 包含多个高精度PWM输出,适用于电机驱动 - ...

产品型号TMS320F28027FPTT的Datasheet PDF文件预览

LAUNCHXL-F28027 C2000 Piccolo LaunchPad  
Experimenter Kit  
User's Guide  
Literature Number: SPRUHH2  
July 2012  
Contents  
1
2
3
4
LAUNCHXL-F28027 Overview ............................................................................................... 4  
1.1  
1.2  
1.3  
Overview .................................................................................................................. 4  
Kit Contents .............................................................................................................. 5  
Revisions ................................................................................................................. 5  
Installation ......................................................................................................................... 5  
2.1  
2.2  
2.3  
Download the Required Software ..................................................................................... 5  
Install the Software ...................................................................................................... 6  
Install the Hardware ..................................................................................................... 6  
Getting Started with the LAUNCHXL-F28027 ........................................................................... 6  
3.1  
3.2  
3.3  
Getting Started ........................................................................................................... 6  
Demo Application, Internal Temperature Measurement ............................................................ 6  
Program and Debug the Temperature Measurement Demo Application ........................................ 6  
Hardware Configuration ....................................................................................................... 6  
4.1  
4.2  
4.3  
4.4  
4.5  
4.6  
Power Domain ........................................................................................................... 7  
Serial Connectivity ...................................................................................................... 7  
Boot Mode Selection .................................................................................................... 7  
Connecting a Crystal .................................................................................................... 7  
Connecting a Satellite Board .......................................................................................... 7  
Device Migration Path .................................................................................................. 8  
5
LAUNCHXL-F28027 Hardware ............................................................................................... 8  
5.1  
5.2  
5.3  
5.4  
Device Pin Out ........................................................................................................... 8  
Schematics ............................................................................................................... 9  
PCB Layout ............................................................................................................. 11  
Bill of Materials (BOM) ................................................................................................ 12  
6
7
Suggested Reading ........................................................................................................... 13  
Frequently Asked Questions (FAQ) ...................................................................................... 14  
2
Table of Contents  
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List of Figures  
1
2
3
4
5
6
LAUNCHXL-F28027 Board Overview ....................................................................................  
C2000 LaunchPad Schematic—Sheet 1 of 2 ...........................................................................  
C2000 LaunchPad Schematic—Sheet 2 of 2.......................................................................... 10  
LAUNCHXL-F28027 PCB Layout—Top Layer ........................................................................ 11  
LAUNCHXL-F28027 PCB Layout—Bottom Layer .................................................................... 11  
LAUNCHXL-F28027 PCB Layout—Silkscreen Image................................................................ 11  
5
9
List of Tables  
1
2
C2000 LaunchPad Pin Out and Pin Mux Options ......................................................................  
LAUNCHXL-F28027 Bill of Materials ................................................................................... 12  
8
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User's Guide  
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LAUNCHXL-F28027 C2000 Piccolo LaunchPad  
Experimenter Kit  
1
LAUNCHXL-F28027 Overview  
1.1 Overview  
The C2000™ Piccolo™ LaunchPad™, LAUNCHXL-F28027, is a complete low-cost experimenter board  
for the Texas Instruments Piccolo F2802x devices. The LAUNCHXL-F28027 kit features all the hardware  
and software necessary to develop applications based on the F2802x microprocessor. The LaunchPad is  
based on the superset F28027 device, and easily allows users to migrate to lower cost F2802x devices  
once the design needs are known. It offers an on-board JTAG emulation tool allowing direct interface to a  
PC for easy programming, debugging, and evaluation. In addition to JTAG emulation, the USB interface  
provides a UART serial connection from the F2802x device to the host PC.  
Users can download an unrestricted version of Code Composer Studio™ IDE version 5 to write,  
download, and debug applications on the LAUNCHXL-F28027 board. The debugger is unobtrusive,  
allowing the user to run an application at full speed with hardware breakpoints and single stepping  
available while consuming no extra hardware resources.  
As shown in Figure 1, the LAUNCHXL-F28027 C2000 LaunchPad features include:  
USB debugging and programming interface via a high-speed galvanically isolated XDS100v2 emulator  
featuring a USB/UART connection.  
Superset F28027 device which allows applications to easily migrate to lower cost devices.  
Nibble (4-bit) wide LED display.  
Two push buttons for user feedback and device reset.  
Easily accessible device pins for debugging purposes or as sockets for adding customized extension  
boards.  
Boot selection and USB and UART disconnect switches.  
C2000, Piccolo, LaunchPad, Code Composer Studio, controlSUITE are trademarks of Texas Instruments.  
Windows is a registered trademark of Microsoft Corporation in the United States and/or other countries.  
All other trademarks are the property of their respective owners.  
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Installation  
Serial  
TX/RX  
LEDs  
JTAG Emulator  
Circuitry  
USB Connection  
JTAG  
Isolation  
Jumpers:  
JP1 and JP3  
Jumper: JP2  
20 PCB Pins  
(doubled-sided male connectors)  
S4 Serial  
Connection Switch  
Pre-Programmed C2000  
Piccolo TMS320F28027  
MCU  
S1 Boot  
Selection Switch  
Programmable  
Push Button:  
GPIO12  
CPU Reset  
Push Button  
Four LEDs  
Figure 1. LAUNCHXL-F28027 Board Overview  
1.2 Kit Contents  
The LAUNCHXL-F28027 C2000 LaunchPad experimenter kit includes the following items:  
C2000 LaunchPad Board (LAUNCHXL-F28027)  
Mini USB-B Cable, 0.5m  
Quick Start Guide  
1.3 Revisions  
The first production revision of the LAUNCHXL-F28027 C2000 Piccolo LaunchPad, version 1.0, was  
released in July of 2012 and is currently the only revision available.  
2
Installation  
The C2000 LaunchPad installation consists of three easy steps:  
1. Download Code Composer Studio and controlSUITE™.  
2. Install Code Composer Studio and controlSUITE.  
3. Connect and install the C2000 LaunchPad to the PC.  
Now the LaunchPad is ready to develop applications or run the pre-programmed demo.  
2.1 Download the Required Software  
Code Composer Studio IDE is available for free without any restriction when used with the XDS100  
emulator on the C2000 LaunchPad. The software can be downloaded from the C2000 LaunchPad page at  
www.ti.com/c2000-launchpad. At this site, you can also download a copy of controlSUITE that includes  
drivers, examples, and other support software needed to get started.  
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2.2 Install the Software  
Once downloaded, install Code Composer Studio and the controlSUITE package.  
2.3 Install the Hardware  
After Code Composer Studio is installed, plug the supplied USB cable into the C2000 LaunchPad board  
and into an available USB port on your computer.  
®
Windows will automatically detect the hardware and ask you to install software drivers. Let Windows run  
a search for the drivers and automatically install them. After Windows successfully installs the drivers for  
the integrated XDS100v2 emulator, your LaunchPad is now ready for use.  
3
Getting Started with the LAUNCHXL-F28027  
3.1 Getting Started  
The first time the LAUNCHXL-F28027 is used, a demo application automatically starts when the board is  
powered from a USB host. If your board does not start the demo application, try placing S1 in the following  
positions and resetting the board: UP - UP - DOWN. To start the demo, connect the LAUNCHXL-F28027  
with the included mini-USB cable to a free USB port. The demo application starts with the LEDs flashing  
to show the device is active.  
3.2 Demo Application, Internal Temperature Measurement  
The LAUNCHXL-F28027 includes a pre-programmed TMS320F28027 device. When the LaunchPad is  
connected via USB, the demo starts with an LED flash sequence that points toward S3. Press S3 to start  
the temperature measurement mode.  
A reference temperature is taken at the beginning of this mode and the LEDs of the LaunchPad are used  
to display any difference between the current temperature and the reference temperature. Initially, the  
LED connected to GPIO3 is lit to indicate an 8 in binary, which corresponds to the current temperature  
being equal to the reference temperature. As the temperature drifts away from the reference, the  
difference is displayed as a binary increment or decrement of the nibble wide LED display. For instance, if  
the reference temperature was 30ºC and the current temperature is 33ºC, the LEDs would be (from left to  
right) ON, OFF, ON, and ON which would be 11 in binary (33-30=3 and 11-8=3). A new reference  
temperature may be set at any time by pressing S3 again.  
In addition to the LED display, temperature information is also displayed on your PC through the  
USB/UART connection. To view the UART information on your PC, first figure out the COM port  
associated with the LaunchPad. To do this in Windows, right click on My Computer and click on  
Properties. In the dialog box that appears, click on the Hardware tab and open Device Manager. Look for  
an entry under Ports (COM & LPT) titled "USB Serial Port (COMX)", where X is a number. Remember this  
number for when you open a serial terminal. The demo applications UART data was written and debugged  
using PuTTY, and for the best user experience we recommend you use PuTTY to view the UART data.  
Open your serial terminal program and open the COM port you found previously in device manager with  
the following settings: 115200 Baud, 8 data bits, no parity, 1 stop bit. After opening the serial port in your  
serial terminal, reset the Launchpad with the reset push button and observe the serial terminal for a  
surprise.  
3.3 Program and Debug the Temperature Measurement Demo Application  
The project and associated source code for the C2000 Piccolo LaunchPad demo is included in the  
controlSUITE software package and should automatically be found by the TI Resource Explorer in Code  
Composer Studio v5. In the resource explorer, open the controlSUITE folder and then the kits tab and look  
for the C2000 LaunchPad line item. Expand this item and select the LaunchPad Demo Application. Follow  
the steps in the main pane of the resource explorer to import, build, debug, and run this application.  
4
Hardware Configuration  
The C2000 LaunchPad gives users several options as to how to configure the board.  
6
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Hardware Configuration  
4.1 Power Domain  
The C2000 LaunchPad has two separate power domains for the purpose of allowing JTAG isolation.  
Jumpers JP1, JP2, and JP3 configure whether the USB power is passed to the target device.  
Jumper  
JP1  
Power Domain  
3.3 V  
JP2  
Ground  
5 V  
JP3  
4.2 Serial Connectivity  
The LAUNCHXL-F28027 has a USB to UART adapter built in. This makes it easy to print debug  
information back to the host PC even in isolated environments. However, in some cases the user may  
wish to connect the Piccolo SCI peripheral (C2000 UART peripheral) to a BoosterPack or other hardware  
via the header pins. If the SCI pins are connected to both the header pins, the XDS100 UART channel  
contention would exist and the pins would not be driven to the correct voltage levels. To solve this issue  
we have included a switch to allow the user to disconnect the Piccolo serial pins from the XDS100 UART  
connection. When S4 is in the up position, the Piccolo device's SCI is connected to the XDS100 and you  
are able to receive and send serial information from or to the board. When S4 is in the down position, the  
Piccolo device's SCI is disconnected from the XDS100 and BoosterPacks, which use serial  
communication, and can communicate with the Piccolo device.  
4.3 Boot Mode Selection  
The LaunchPad's F28027 device includes a boot ROM that performs some basic start-up checks and  
allows for the device to boot in many different ways. Most users will either want to perform an emulation  
boot or a boot to flash (if they are running the application standalone). S1 has been provided to allow  
users to easily configure the pins that the bootROM checks to make this decision. The switches on S1  
correspond to:  
Switch  
Function  
GPIO34  
GPIO37  
TRSTn  
1
2
3
Keep in mind that the debugger does not connect if the device is not in the emulation boot mode (TRST  
switch in the up position). More information about boot mode selection can be found in the  
TMS320x2802x Piccolo Boot ROM Reference Guide (SPRUFN6).  
4.4 Connecting a Crystal  
Although the Piccolo device present on the LAUNCHXL-F28027 has an internal oscillator — and for most  
applications this is sufficient — the LaunchPad offers a footprint for surface mount or through-hole HC-49  
crystals for users who require a more precise clock. If you wish to use an external crystal, solder the  
crystal to the Q1/Q2 footprint and appropriate load capacitors to the C3 and C4 footprints. You also need  
to configure the device to use the external oscillator in software.  
4.5 Connecting a Satellite Board  
The C2000 LaunchPad is the perfect experimenter board to start hardware development with the F2802x  
devices. Connectors J1, J2, J5, and J6 and the power supply at J3 are aligned in a 0.1-in (2.54-mm) grid  
to allow an easy and inexpensive development of a breadboard extension module. These satellite boards  
can access all of the GPIO and analog signals. The alignment of the connectors and the pin out can be  
found in Section 5.  
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4.6 Device Migration Path  
Applications developed on the LAUNCHXL-F28027 can easily be migrated to any of these lower cost  
devices in the F2802x family:  
Part Number  
Description  
TMS320F28027(1)  
TMS320F28026  
TMS320F28023  
TMS320F28022  
TMS320F28021  
TMS320F28020  
TMS320F280200  
32-bit Real Time Microcontroller, 60 MHz, 32K Flash, 6K RAM, 4 HRPWM  
32-bit Real Time Microcontroller, 60 MHz, 16K Flash, 6K RAM, 4 HRPWM  
32-bit Real Time Microcontroller, 50 MHz, 32K Flash, 6K RAM, 4 HRPWM  
32-bit Real Time Microcontroller, 50 MHz, 16K Flash, 6K RAM, 4 HRPWM  
32-bit Real Time Microcontroller, 40 MHz, 32K Flash, 5K RAM  
32-bit Real Time Microcontroller, 40 MHz, 16K Flash, 3K RAM  
32-bit Real Time Microcontroller, 40 MHz, 8K Flash, 3K RAM  
(1)  
This device is present on the LAUNCHXL-F28027.  
5
LAUNCHXL-F28027 Hardware  
5.1 Device Pin Out  
Table 1 lists the pin out and pin mux options for the C2000 LaunchPad.  
Table 1. C2000 LaunchPad Pin Out and Pin Mux Options  
Mux Value  
Mux Value  
3
2
1
0
J1 Pin  
J5 Pin  
0
1
2
3
+3.3V  
1
2
1
2
+5V  
ADCINA6  
GPIO28  
GPIO29  
GND  
TZ2  
TZ3  
Rsvd  
SDAA  
SCLA  
Rsvd  
SCIRXDA  
SCITXDA  
3
3
ADCINA7  
ADCINA3  
ADCINA1  
ADCINA0  
ADCINB1  
ADCINB3  
ADCINB7  
NC  
4
4
COMP2OUT GPIO34  
ADCINA4  
5
5
6
6
SCITXDA  
SPICLK  
GPIO18  
7
7
ADCINA2  
ADCINB2  
ADCINB4  
8
8
9
9
10  
10  
3
2
Rsvd  
1
0
GPIO0  
GPIO1  
GPIO2  
GPIO3  
GPIO4  
GPIO5  
J6 Pin  
J2 Pin  
0
GND  
1
2
3
Rsvd  
EPWM1A  
EPWM1B  
EPWM2A  
EPWM2B  
EPWM3A  
EPWM3B  
1
2
3
4
5
6
1
2
3
4
5
6
COMP1OUT  
Rsvd  
Rsvd  
GPIO19  
GPIO12  
NC  
SPISTEA  
TZ1  
SCIRXDA  
SCITXDA  
ECAP1  
Rsvd  
Rsvd  
COMP2OUT  
Rsvd  
Rsvd  
Rsvd  
RESET#  
GPIO16/32  
ECAP1  
Rsvd  
SPISIMOA/  
SDAA  
Rsvd/  
TZ2/  
EPWMSYNCI  
ADCSOCA  
TZ2/  
ADCSOCA  
Rsvd/  
EPWMSYNCI  
SPISIMOA/  
SDAA  
GPIO16/32  
GPIO17/33  
7
8
7
8
GPIO17/33  
GPIO6  
SPISOMIA/  
SCLA  
Rsvd/  
EPWMSYNCO  
TZ3/  
ADCSOCB  
TZ3/  
ADCSOCB  
Rsvd/  
EPWMSYNCO  
SPISOMIA/  
SCLA  
EPWM4A  
EPWMSYNCI  
EPWMSYNCO  
NC  
NC  
9
9
GPIO7  
EPWM4B  
SCIRXDA  
Rsvd  
10  
10  
ADCINB6  
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5.2 Schematics  
Figure 2 and Figure 3 show the C2000 LaunchPad schematics sheets.  
1
2
3
4
5
6
U4  
3
2
4
USBVCC  
FTDI_3V3  
VIN  
VOUT1  
VOUT2  
USBVCC  
A
B
C
D
E
A
B
C
D
E
R16  
C7  
C8  
C9  
TLV1117-33  
0
R18  
FTDI_3V3  
1u  
100u 0.1u  
0
R19  
L1  
L2  
0
R20  
C10 C11  
4.7u 4.7u  
0
FTDI_1V8  
FTDI_3V3  
U6  
F1  
R21  
0
USBVCC  
FTDI_3V3  
U5  
1
2
3
4
5
500mA  
D-  
D+  
P$16  
P$17  
P$18  
P$19  
P$21  
P$22  
P$23  
P$24  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
10  
9
ADBUS0  
ADBUS1  
ADBUS2  
ADBUS3  
ADBUS4  
ADBUS5  
ADBUS6  
ADBUS7  
VCC1  
VCC2  
GND2  
OUTA  
OUTB  
OUTC  
OUTD  
EN  
GND1  
INA  
INB  
TCK  
TDI  
TMS  
SCI_RX  
P$50  
P$49  
FTDI_3V3  
VREGIN  
VREGOUT  
INC  
IND  
C12 C13 C14 C15  
0.1u 0.1u 0.1u 3.3u  
P$7  
P$8  
D-  
USBDM  
USBDP  
NC  
GND1  
GND2  
D+  
P$26  
P$27  
P$28  
P$29  
P$30  
P$32  
P$33  
P$34  
ISO7240  
ACBUS0  
ACBUS1  
ACBUS2  
ACBUS3  
ACBUS4  
ACBUS5  
ACBUS6  
ACBUS7  
P$6  
P$14  
GND  
REF  
RESET#  
R22  
FTDI_3V3  
U7  
1k  
16  
1
2
3
4
5
6
7
8
VCC2  
15  
VCC1  
GND1  
INA  
R23  
1k  
GND2  
14  
TDO  
SCI_TX  
JTAG_TRST  
OUTA  
13  
OUTB  
12  
INB  
INC  
11  
OUTC  
NC1  
EN1  
P$38  
P$39  
P$40  
P$41  
P$43  
P$44  
P$45  
P$46  
FTDI_3V3  
BDBUS0  
BDBUS1  
BDBUS2  
BDBUS3  
BDBUS4  
BDBUS5  
BDBUS6  
BDBUS7  
NC2  
10  
EN2  
9
GND2  
GND1  
U8  
ISO7231  
4
5
P$63  
P$62  
P$61  
FTDI_CLK  
FTDI_CS  
VCC  
FTDI_CS  
FTDI_CLK  
FTDI_DATA  
CLK  
EECS  
EECLK  
EEDATA  
FTDI_3V3  
CS  
C16  
0.1u  
R31  
R25  
0
1
P$48  
P$52  
P$53  
P$54  
P$55  
P$57  
P$58  
P$59  
FTDI_DATA  
DO  
BCBUS0  
BCBUS1  
BCBUS2  
BCBUS3  
BCBUS4  
BCBUS5  
BCBUS6  
BCBUS7  
D7  
3
FTDI_DATA  
DI  
2.2k  
GND  
P$2  
P$3  
OSCI  
93  
GND  
R27  
330  
R28  
OSCO  
0
R30  
D8  
12M  
Q3  
0
R32  
P$13  
P$60  
P$36  
PWREN#  
SUSPEND#  
TEST  
PWREN#  
SUSPEND#  
0
C17  
36p  
C18  
36p  
FT2232H  
Emulator - XDS100v2  
C2000_LaunchPad.sch  
1.0  
Figure 2. C2000 LaunchPad Schematic—Sheet 1 of 2  
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1
2
3
4
5
6
S1  
1
2
3
6
5
4
SCI_RX  
SCI_TX  
GPIO34  
TDO  
TRST  
A
A
JTAG_TRST  
ON  
1
219-03  
GPIO28  
U1 GPIO29  
GND  
GND GND GND  
1
2
3
4
5
6
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
48  
47  
46  
45  
44  
43  
42  
41  
GPIO29  
GPIO28  
GPIO12  
GPIO29/SCITXDA/SCLA/TX3#  
TRST#  
XRS#  
ADCINA6/AIO6  
ADCINA4/COMP2A/AIO4  
ADCINA7  
ADCINA3  
ADCINA1  
ADCINA2/COMP1A/AIO2  
ADCINA0/VREFHI  
VDDA  
VSSA/VREFLO  
ADCINB1  
ADCINB2/COMP1B/AIO10  
ADCINB3  
ADCINB4/COMP2B/AIO12  
ADCINB6/AIO14  
ADCINB7  
GPIO34/COMP2OUT  
TDI  
TMS  
GPIO28/SCIRXDA/SDAA/TZ2#  
GPIO12/TZ1#/SCITXDA  
X2  
TRST  
RESET#  
ADCINA6  
ADCINA4  
ADCINA7  
ADCINA3  
ADCINA1  
ADCINA2  
ADCINA0  
X1  
VSS2  
VDD2  
B
C
D
E
B
GPIO7  
GPIO6  
GPIO5  
GPIO4  
GPIO3  
GPIO2  
GPIO33  
GPIO7/EPWM4B/SCIRXDA  
GPIO6/EPWM4A/EPWMSYNCI/EPWMSYNCO  
40  
GPIO5/EPWM3B/ECAP1  
GPIO4/EPWM3A  
GPIO3/EPWM2B/COMP2OUT  
GPIO2/EPWM2A  
39  
38  
37  
36  
GND  
SPI_MOSI  
GPIO16  
ADCINB1  
ADCINB2  
ADCINB3  
ADCINB4  
ADCINB6  
ADCINB7  
GPIO34  
TDI  
GPIO33/SCLA/EPWMSYNCO/ADCSOCBO#  
35  
VDDIO  
VREGENZ#  
VSS1  
34  
33  
32  
31  
C21 C19  
2.2u 2.2u  
C20  
2.2u  
GPIO32  
VDD1  
GPIO32  
GPIO32/SDAA/EPWMSYNCI/ADCSOCAO#  
30  
TEST  
GPIO0/EPWM1A  
GPIO1/EPWM1B/COMP1OUT  
GPIO16/SPISIMOA/TZ2#  
GPIO17/SPISOMIA/TZ3#  
29  
28  
27  
26  
25  
GPIO0  
GPIO1  
GPIO16  
GPIO17  
GPIO19  
TMS  
SPI_MISO  
GPIO17  
1
2
3
4
5
6
7
8
9
10  
1
2
3
4
5
6
7
8
TDO  
TCK  
GPIO18  
GPIO0  
GPIO1  
GPIO2  
GPIO3  
GPIO4  
GPIO5  
TDO  
TCK  
GPIO18/SPICLKA/SCITXDA/XCLKOUT  
C
GPIO19  
GPIO12  
GPIO19/XCLKIN/SPISTEA#/SCIRXDA/ECAP1  
TMS320F28027PT  
RESET#  
GPIO33  
C5 C6  
GND GND  
GND  
GPIO6  
GPIO7  
ADCINB6  
2.2u 2.2u  
9
10  
SPI_MOSI  
GPIO16  
GNDGND GND GND  
J6 J2  
U2  
U3  
GPIO32  
1
3
6
4
1
3
6
4
GPIO0  
GPIO1  
GPIO2  
GPIO3  
SPI_MISO  
GPIO17  
1A  
2A  
1Y  
2Y  
1A  
2A  
1Y  
2Y  
D
1
2
3
GND  
GPIO33  
J3  
SN74LVC2G07  
SN74LVC2G07  
GND  
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
ADCINA6  
SCI_RXGPIO28  
SCI_TXGPIO29  
GPIO34  
GND  
GND  
ADCINA7  
ADCINA3  
ADCINA1  
ADCINA0  
ADCINB1  
ADCINB3  
ADCINB7  
S2  
S3  
ADCINA4  
Piccolo F2802x  
SPI_CLKGPIO18  
ADCINA2  
ADCINB2  
RESET#  
FSMJSMA  
GPIO12  
FSMJSMA  
9
10  
9
10  
E
ADCINB4  
J1  
J5  
C2000_LaunchPad.sch  
1.0  
GND  
GND  
GND  
Figure 3. C2000 LaunchPad Schematic—Sheet 2 of 2  
10  
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LAUNCHXL-F28027 Hardware  
5.3 PCB Layout  
Figure 4, Figure 5, and Figure 6 show the LAUNCHXL-F28027 PCB layout.  
Figure 4. LAUNCHXL-F28027 PCB Layout—Top Layer  
Figure 5. LAUNCHXL-F28027 PCB Layout—Bottom Layer  
Figure 6. LAUNCHXL-F28027 PCB Layout—Silkscreen Image  
11  
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LAUNCHXL-F28027 C2000 Piccolo LaunchPad Experimenter Kit  
Copyright © 2012, Texas Instruments Incorporated  
 
 
 
LAUNCHXL-F28027 Hardware  
www.ti.com  
5.4 Bill of Materials (BOM)  
Table 2 lists the LAUNCHXL-F28027 bill of materials.  
Table 2. LAUNCHXL-F28027 Bill of Materials  
Quantity  
per  
Reference  
Board  
Description  
R12, R13, R14, R15, R26, R27  
6
4
2
5
2
1
1
9
RES 330 Ω 1/10W 5% 0402 SMD  
RES 820 Ω 1/10W 5% 0402 SMD  
RES 1.0K Ω 1/10W 5% 0402 SMD  
RES 2.2K Ω 1/10W 5% 0402 SMD  
RES 10K Ω 1/10W 5% 0402 SMD  
RES 12K Ω 1/16W .5% 0402 SMD  
RES 1.0M Ω 1/10W 5% 0402 SMD  
RES 0.0 Ω 1/4W 1206 SMD  
R1, R4, R5, R17  
R22, R23  
R6, R8, R9, R10, R31  
R11, R29  
R24  
R7  
R16, R18, R19, R20, R21, R25, R28, R30,  
R32  
L1, L2  
2
1
1
5
1
5
1
2
2
2
1
1
1
1
2
1
1
1
1
6
3
2
1
1
1
2
1
1
1
1
1
FERRITE BEAD 600 Ω 0402  
L3  
FERRITE BEAD 220 Ω 0402  
L4  
FERRITE CHIP 60 Ω 1.5A 0402  
C9, C12, C13, C14, C16  
CAP .10 µF 16 V CERAMIC Y5V 0402  
CAP CER 1.0 µF 6.3 V X5R 20% 0402  
CAP CER 2.2 µF 6.3 V 20% X5R 0402  
CAP CER 3.3 µF 4.0 V X5R 0402  
CAP CER 4.7 µF 4 V X5R 0402  
C7  
C5, C6, C19, C20, C21  
C15  
C10, C11  
C3, C4  
CAP CER 36PF 50 V C0G 0402  
C17, C18  
CAP CER 36PF 50 V C0G 0402  
C8  
CAP TANTALUM 100 µF 6.3 V 10% SMD  
PTC RESETTABLE .50A 15 V 1812  
SWITCH DIP 3POS TOP SLIDE SMT  
SWITCH DIP DPST 1POS SMT  
F1  
S1  
S4  
S2, S3  
SW TACT SPST-NO MOM 160GF SMD  
Crystal  
Q1, Q2  
Q3  
CRYSTAL 12.0000 MHZ 18PF SMD  
LED RED HIGH BRIGHT ESS SMD  
LED GREEN HIGH BRIGHT ESS SMD  
LED BLUE HIGH BRIGHT ESS SMD  
BERGSTIK II .100" SR STRAIGHT  
CONN HEADER .100 DUAL STR 20POS  
CONN HEADER .100 SNGL STR 3POS  
CONN RECEPT MINI-USB TYPE B SMT  
IC LDO REG 800MA 3.3 V SOT223-4  
IC BUFF/DVR DL NON-INV SOT236  
ISOLAT DGTL 2.5 KVRMS 4CH 16-SOIC  
ISOLAT DGTL 3 KVRMS 3CH 16-SOIC  
IC USB HS DUAL UART and FIFO 64-QFN  
IC EEPROM 2KBIT 3 MHZ SOT23-6  
IC MCU 32 BIT 64KB FLASH 48LQFP  
D6  
D1  
D2, D3, D4, D5, D7, D8  
JP1, JP2, JP3  
J1 and J5, J2 and J6  
J3  
CON1  
U4  
U2, U3  
U5  
U7  
U6  
U8  
U1  
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Suggested Reading  
6
Suggested Reading  
The following documents describe the C2000 devices. Copies of these documents are available on the  
Internet at http://www.ti.com/c2000 and www.ti.com/c2000-launchpad, or click on the links below:  
TMS320F28027/28026/28023/28022/28021/28020/280200 Piccolo Microcontrollers Data Manual  
(SPRS523)  
TMS320F28027/28026/28023/28022/28021/28020/2802x0 Piccolo MCU Silicon Errata (SPRZ292)  
TMS320x2802x, 2803x Piccolo Analog-to-Digital Converter (ADC) and Comparator Reference Guide  
(SPRUGE5)  
TMS320x2802x, 2803x Piccolo High Resolution Pulse Width Modulator (HRPWM) Reference Guide  
(SPRUGE8)  
TMS320x2802x, 2803x Piccolo Inter-Integrated Circuit (I2C) Reference Guide (SPRUFZ9)  
TMS320x2802x, 2803x Piccolo Enhanced Pulse Width Modulator (ePWM) Module Reference Guide  
(SPRUGE9)  
TMS320x2802x/TMS320F2802xx Piccolo System Control and Interrupts Reference Guide (SPRUFN3)  
TMS320x2802x Piccolo Boot ROM Reference Guide (SPRUFN6)  
TMS320x2802x, 2803x Piccolo Serial Communications Interface (SCI) Reference Guide (SPRUGH1)  
TMS320x2802x, 2803x Piccolo Enhanced Capture (eCAP) Module Reference Guide (SPRUFZ8)  
TMS320C28x Instruction Set Simulator Technical Overview (SPRU608)  
TMS320C28x Optimizing C/C++ Compiler v6.1 User's Guide (SPRU514)  
TMS320C28x Assembly Language Tools v6.1 User's Guide (SPRU513)  
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Frequently Asked Questions (FAQ)  
www.ti.com  
7
Frequently Asked Questions (FAQ)  
1. Can other programming and debug tools (such as an XDS510 emulator) be used with the C2000  
LaunchPad?  
While a user could potentially connect an external emulator to the F28027 device present on the  
LaunchPad, it would require some rework of the board. It is recommended that users who want to use  
an external emulator purchase a controlCard and docking station that includes an external JTAG  
connector.  
2. What versions of Code Composer Studio can be used to develop software for the C2000 LaunchPad?  
It is highly recommend that novice users develop applications with Code Composer Studio v5. The  
drivers, examples, and other associated software are tailored to make the user experience as smooth  
as possible in Code Composer Studio v5. However, there is nothing to prevent a user from creating  
projects in Code Composer Studio v3 or v4 with the source files available in controlSUITE. Keep in  
mind that all the projects for the C2000 LaunchPad are Code Composer Studio v5 projects and will not  
import into Code Composer Studio v3 or v4. Only expert users should attempt to use the LaunchPad  
with Code Composer Studio v3 or v4.  
3. Why can’t I connect to the LaunchPad in Code Composer Studio?  
There are a number of things that could cause this and they all have an easy fix.  
Is S1 switch 3 in the down position?  
This is the TRST pin which enables and disables JTAG functionality on the chip. This switch must  
be in the up position for the emulator to be able to connect.  
Are both power LEDs lit?  
The board has two power domains because of the isolated JTAG interface. For low-voltage  
application development, JTAG isolation is not needed and the power domains can be combined to  
allow for convenience (that is, the board can be powered completely through the USB). Ensure that  
jumpers are placed on the posts of JP1, JP2, and JP3.  
Are drivers correctly installed for the XDS100v2 present on the LaunchPad?  
Right click on My Computer and select properties. Navigate to the Hardware tab in the dialog box  
and open the device manager. Scroll to the bottom of the list and expand the USB Serial Bus  
controllers item. Are there two entries for TI XDS100 Channel A/B? If not, try unplugging and  
replugging in the board. Does Windows give you any messages in the system tray? In Device  
Manger, do either of the entries have a yellow exclamation mark over their icon? If so, try  
reinstalling the drivers.  
4. Why is the serial connection not working?  
There are a few things that could cause this and they are easy to fix.  
Is S4 in the up position?  
S4 connects the F28027 device serial peripheral to the XDS100 serial port, so this switch must be  
turned on (up) for serial connectivity to function.  
Are you using the correct COM port?  
Right click on My Computer and select properties. Navigate to the Hardware tab in the dialog box  
and open the device manager. Scroll to Ports (COM & LPT) and expand this entry. Is there a USB  
Serial Port listed? If so, read the COM number to the right of the entry; this is the COM number you  
should be using.  
Are you using the correct baud rate?  
Most, if not all, of the examples are configured for a baud rate of 115200 when the CPU is running  
at 60 MHz. If you have changed the PLL settings or written your own application you may have to  
recalculate the baud rate for your specific application. For information on how to do this, see the  
TMS320x2802x, 2803x Piccolo Serial Communications Interface (SCI) Reference Guide  
(SPRUGH1).  
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配单直通车
TMS320F28027FPTT产品参数
型号:TMS320F28027FPTT
Brand Name:Texas Instruments
是否无铅:不含铅
是否Rohs认证:符合
生命周期:Active
IHS 制造商:TEXAS INSTRUMENTS INC
零件包装代码:QFP
包装说明:LQFP-48
针数:48
Reach Compliance Code:compliant
ECCN代码:3A991.A.2
HTS代码:8542.31.00.01
Factory Lead Time:6 weeks
风险等级:0.78
Samacsys Confidence:3
Samacsys Status:Released
Samacsys PartID:310478
Samacsys Pin Count:48
Samacsys Part Category:Integrated Circuit
Samacsys Package Category:Quad Flat Packages
Samacsys Footprint Name:TMS320F28027FPTT
Samacsys Released Date:2017-09-11 09:46:17
Is Samacsys:N
具有ADC:YES
地址总线宽度:
位大小:32
边界扫描:YES
CPU系列:TMS320
最大时钟频率:30 MHz
DAC 通道:NO
DMA 通道:NO
外部数据总线宽度:
格式:FIXED POINT
集成缓存:NO
JESD-30 代码:S-PQFP-G48
JESD-609代码:e4
长度:7 mm
低功率模式:YES
湿度敏感等级:2
DMA 通道数量:
外部中断装置数量:3
I/O 线路数量:22
串行 I/O 数:1
端子数量:48
计时器数量:3
片上数据RAM宽度:8
片上程序ROM宽度:8
最高工作温度:105 °C
最低工作温度:-40 °C
PWM 通道:YES
封装主体材料:PLASTIC/EPOXY
封装代码:LFQFP
封装等效代码:QFP48,.35SQ,20
封装形状:SQUARE
封装形式:FLATPACK, LOW PROFILE, FINE PITCH
峰值回流温度(摄氏度):260
电源:1.8,3.3 V
认证状态:Not Qualified
RAM(字节):12288
RAM(字数):12
ROM(单词):32768
ROM可编程性:FLASH
筛选级别:AEC-Q100
座面最大高度:1.6 mm
速度:60 MHz
子类别:Microcontrollers
最大压摆率:90 mA
最大供电电压:3.63 V
最小供电电压:2.97 V
标称供电电压:3.3 V
表面贴装:YES
技术:CMOS
温度等级:INDUSTRIAL
端子面层:Nickel/Palladium/Gold (Ni/Pd/Au)
端子形式:GULL WING
端子节距:0.5 mm
端子位置:QUAD
处于峰值回流温度下的最长时间:NOT SPECIFIED
宽度:7 mm
uPs/uCs/外围集成电路类型:MICROCONTROLLER
Base Number Matches:1
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