Lead embedded this a startup company start in June 2021
1.LEAD EMBEDDED SPECIALIZES IN SOFT WARE DEVELOPMEAT FOR CAN EOL TOOLS USING IN UDS AND OBD2 PROTOCOLS IN AUTOMOTIVE VEHICLES .
2.WE ARE SPECIALIZES IN CONTROL OF BLDC AND PMSM MOTORS USING FOC .
A robot is usually an electro-mechanical machine that is guided by computer and electronic programming. Many robots have been built for manufacturing purpose and can be found in factories around the world. Designing of the latest inverted ROBOT which can be controlling using an APP for android mobile. We are developing the remote buttons in the android app by which we can control the robot motion with them. A smart phone Android operated robot car. Now here is a simple to control our robo car using Bluetooth module HC-05 and AT89S52 microcontroller with our android Smartphone device. The controlling devices of the whole system are a microcontroller. Bluetooth module, DC motors are interfaced to the microcontroller. . The robot in the project can be made to move in all the four directions using the android phone. In achieving the task the controller is loaded with program written using Embedded ‘C’ Languages. Android smart phone controller Bluetooth robot using microcontroller. In our work, move the robot upward, backward, left and right side by the android application such as Bluetooth Controlled Car.
A robot is usually an electro-mechanical machine that is guided by computer and electronic programming. Many robots have been built for manufacturing purpose and can be found in factories around the world. Designing of the latest inverted ROBOT which can be controlling using an APP for android mobile. We are developing the remote buttons in the android app by which we can control the robot motion with them. A smart phone Android operated robot car. Now here is a simple to control our robo car using Bluetooth module HC-05 and AT89S52 microcontroller with our android Smartphone device. The controlling devices of the whole system are a microcontroller. Bluetooth module, DC motors are interfaced to the microcontroller. . The robot in the project can be made to move in all the four directions using the android phone. In achieving the task the controller is loaded with program written using Embedded ‘C’ Languages. Android smart phone controller Bluetooth robot using microcontroller. In our work, move the robot upward, backward, left and right side by the android application such as Bluetooth Controlled Car.
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2. Index
About Us
Who We Are
What We Do
Projects
Software Tools
Hardware Tools
www.leadembedded.com
3. About Us
Lead Embedded is a start up company started in June 2021 near Uppal Telengana.
Lead Embedded is specialized in
Firmware development for CAN(Controller Area Network protocol, EOL (End Of Line) tools using
UDS (Unified Diagnostic Services) and OBD2 (On Board Diagnostic) protocols for Automotive Vehicles.
Control of BLDC and PMSM motors using FOC (Field oriented Control).
Firmware development for the Microcontroller based Embedded Application.
Hardware Schematic design for the Microcontroller based Embedded Applications.
Wiring harness design using Siemens Software.
www.leadembedded.com
4. Who We Are www.leadembedded.com
Janaki Reddy
CEO
Exp: 20 Years Software &
Hardware
Automotive
Kavita
Software Manager
Exp: 10 Years
Rajesh
Marketing Manager
Exp: 1 Year
Anjaneyulu
Software Engineer
Exp: 3 Years
Pranati
Hardware Engineer
Exp: 2 Years
Mutyam Reddy
Marketing Manager
30 Years Retired
(Home Department)
TBR
TBR
TBR
TBR
TBR TBR
Hardware
Software
TBR To Be Recruited
5. What We Do
Firmware Development for Board Support Packages and Application
BSP (Board Support Packages) will be developed for any micro controller and customized based on requirement.
The below BSP are developed for the Microchip 16 bit family Micro controllers.
a. Microcontroller Clock - Driver to initialize the micro controller Clock at different clock frequencies
b. Sleep and Wakeup Module – The sleep and wakeup drivers implemented for power saving when the
module is not active,
c. Digital (DIO) Module - Software module to read the digital input and control the digital outputs.
d. Analog (ADC) Module – Software Module to read the Analog input with 12 / 10 bit ADC.
e. Timer Module – Software module to initialize the timer for 1ms, this is the basic OS scheduler.
f. CAN – Software module to perform the CAN communication used in Automotive applications.
g. UART – Module to perform the serial communication.
h. SPI - SPI drivers to read and write data into EEPROM memory to store non volatile memory.
The Application Software on microcontroller platform will be developed based on the requirement.
www.leadembedded.com
6. What We Do
EOL / UDS / OBD2 Software Development
Software development for UDS and OBD2 protocols for EOL (End of Life) tools
using CAN (Controller Area Network).
CAN driver development and CAN TP protocol development.
UDS protocol developed and tested for the following below services
a. Default, Programming, Extended Sessions. (0x10 service)
b. Read By Data Identifier ( 0x22)
c. Write By Data Identifier (0x2E)
d. DTC logging (0x29 Service)
e. Clear DTC (0x14 Service)
f. Flashing using UDS protocol. (0x36 Service)
OBD2 services implementation.
EOL hardware tool development to include the Keypad and Graphical
display.
www.leadembedded.com
7. What We Do
Motor Controller Software Development
Motor control software development for PMSM motors using FOC.
Motor Control software development using Trapezoidal switching.
Evaluation board MCLV-2 board from Microchip (dspic33EV family) is used for driving the motor.
PMSM 2KW motor with Digital Hall sensor and Encoder is driven in open loop conditions.
www.leadembedded.com
12V section Power
Section PMSM Motor
R
Y
B
MOTOR CONTROLLER
Rotor Position
Position Sensor
Torque
Command
8. What We Do www.leadembedded.com
Wiring Harness Design
VeSys Harness software is used for creating harness and
formboard drawings.
Development using VeSys software with automated parts selector
to configure and select terminals, wires, for each connector.
Reporting capabilities to generate documentation for
manufacturing.
Reduce production lead times
Prevent manufacturing errors.
9. Software Tools / Expertise www.leadembedded.com
PC-lint Plus static analysis software for C used for MISRA Checking.
Astyle – Artistic Style source code Indenter, formatter, and source code beautifier
MPLABX microchip Compiler IDE.
Microchip CAN Bus Analyzer Software.
Experience on Microchip, NXP, Infineon micro controller architectures.
10. Hardware Tools
XONIER 12V 10Amp
120W DC Power Supply
PICKit3 Programmer
Simulator for Microchip
Microchip CAN Bus Analyzer
MCLV-2 Dev Board
Owon MetroQ 2 Channel SDS1052
Digital Storage Oscilloscope 50 MHz
DT830D LCD Display
Digital Multi-meter
24V 3-Phase Brushless DC
Motor, Hall Effect Sensors
24V 3-Phase Brushless DC
Motor, Encoder
Full OBD2 Functions CAN Diagnostic
Scan Tool
www.leadembedded.com
11. Lab Setup
Software Flashing: The software is flashed using
the Pickit3 programmer.
The compiler used is MPLABX for programming and
flashing C programs.
Flashing Using Pickit3
Complete Setup
MPLABX Compiler C programme
www.leadembedded.com
12. Projects www.leadembedded.com
Buzzer / Relay Project
The project is switching ON the Buzzer and Relay based on the operational switch,
If the switch is ON for a duration of time in hours operated either continuously or intermittently.
Scope of Project: Proto Concept Development of the Hardware and Software.
Micro : PIC Microcontroller.
Software Modules Developed:
Internal clock for 20MHz
ADC Module for checking the voltage and taking a decision
if the operational switch is ON / OFF
Digital Module to interface the switch to reset the number of
hours.
NVM Memory for storing the number of hours the operational
switch is ON.
Hardware Schematic Design:
EasyEDA software used for schematic design.
13. Projects
CAN Driver:
CAN driver development for microchip dpsic33ev256gm106 at 500 KBPS
a. Transmit of CAN messages at 1sec periodicity.
b. Reception of the CAN messages.
c. Loop Back of CAN Messages, transmitting the CAN messages received from the CAN tool.
The CAN tool used is Microchip CAN Bus analyser. The MCU is the MCLV-2 board.
CAN Bus Analyzer
MCLV-2 Board
CAN 500 KBPS
www.leadembedded.com
14. Projects
PWM Driver Development:
The PWM is configured for 10Khz for motor driving in centre aligned mode.
Total of 6 PWMs are driven and different duty settings based on the CAN command.
PWM1H, PWM1L, PWM2H, PWM2L, PWM3H, PWM3L are the pwm channels.
If the CAN command requests 50% duty cycle, the board is configured for that duty.
Other driver development like Digital Input, Analog InputOutput are completed.
www.leadembedded.com