Getting To Know Your Kit; Powering The Bemicro Max 10 - Arrow BeMicro Max 10 Getting Started User Manual

Fpga evaluation kit
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Overview
Overview
Overview

1.3 Getting To Know Your Kit

1.3 Getting To Know Your Kit
1.3 Getting To Know Your Kit
Below is an annotated photo of the board to help you get familiar with the kit and locate the various peripherals and
Below is an annotated photo of the board to help you get familiar with the kit and locate the various peripherals and
Below is an annotated photo of the board to help you get familiar with the kit and locate the various peripherals and
expansion connectors.
expansion connectors.
expansion connectors.
Altera MAX 10 FPGA
Altera MAX 10 FPGA
Altera MAX 10 FPGA
10M08DAF484C8GES
10M08DAF484C8GES
10M08DAF484C8GES
Photo Resistor
Photo Resistor
Photo Resistor
Thermistor
Thermistor
Thermistor
Analog
Analog
Analog
Inputs
Inputs
Inputs
80-pin
80-pin
80-pin
BeMicro
BeMicro
BeMicro
Edge
Edge
Edge
Connector
Connector
Connector
Push
Push
Push
Buttons
Buttons
Buttons
LEDs
LEDs
LEDs
Accelerometer
Accelerometer
Accelerometer
Your BeMicro Max10 is preloaded with a simple design which can be used to confirm that your kit is operational upon
Your BeMicro Max10 is preloaded with a simple design which can be used to confirm that your kit is operational upon
Your BeMicro Max10 is preloaded with a simple design which can be used to confirm that your kit is operational upon
power up.
power up.
power up.
Connect your BeMicro Max10 board to any USB power source(PC or USB charger) and watch the LED1 shine.
Connect your BeMicro Max10 board to any USB power source(PC or USB charger) and watch the LED1 shine.
Connect your BeMicro Max10 board to any USB power source(PC or USB charger) and watch the LED1 shine.
Put your finger on the Analog Devices ADT7420 temperature sensor and watch the LEDs change intensity.
Put your finger on the Analog Devices ADT7420 temperature sensor and watch the LEDs change intensity.
Put your finger on the Analog Devices ADT7420 temperature sensor and watch the LEDs change intensity.
(Your finger need to be somewhat close to body temperature.) The temperatures sensor device is component
(Your finger need to be somewhat close to body temperature.) The temperatures sensor device is component
(Your finger need to be somewhat close to body temperature.) The temperatures sensor device is component
U7 on the back of the board.
U7 on the back of the board.
U7 on the back of the board.

1.3.1 Powering the BeMicro MAX 10

1.3.1 Powering the BeMicro MAX 10
1.3.1 Powering the BeMicro MAX 10
The BeMicro MAX 10 is powered through the USB connection provided for the USB-Blaster functionality. If you wish
The BeMicro MAX 10 is powered through the USB connection provided for the USB-Blaster functionality. If you wish
The BeMicro MAX 10 is powered through the USB connection provided for the USB-Blaster functionality. If you wish
to run the board stand-alone, you will need to source a 5V power supply with a 2.5mm jack. This optional power
to run the board stand-alone, you will need to source a 5V power supply with a 2.5mm jack. This optional power
to run the board stand-alone, you will need to source a 5V power supply with a 2.5mm jack. This optional power
supply is not included with the kit.
supply is not included with the kit.
supply is not included with the kit.
BeMicro Max 10 Getting Started User Guide, Version 14.0
BeMicro Max 10 Getting Started User Guide, Version 14.0
BeMicro Max 10 Getting Started User Guide, Version 14.0
Figure 1-2: BeMicro Max 10 Development Kit
Figure 1-2: BeMicro Max 10 Development Kit
Figure 1-2: BeMicro Max 10 Development Kit
Temperature Sensor
Temperature Sensor
Temperature Sensor
(U3 on back)
(U3 on back)
(U3 on back)
12-bit DAC
12-bit DAC
12-bit DAC
(U7 on back)
(U7 on back)
(U7 on back)
(U4 on back)
(U4 on back)
(U4 on back)
8MB SDRAM
8MB SDRAM
8MB SDRAM
PMOD A & B
PMOD A & B
PMOD A & B
Two 40-pin
Two 40-pin
Two 40-pin
Expansion
Expansion
Expansion
Headers
Headers
Headers
USB Blaster
USB Blaster
USB Blaster
PMOD C & D
PMOD C & D
PMOD C & D
4
4
4

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