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Template Revision 1.1 For carrier - module combination, create main getting started page for carrier Design Name always "TE Series Name" +Getting Started, for example "TE0701 Getting started" and add carrier/module combination in the description → link on the module resource page also For whole board, use the board name, for example "TEBF0911 Getting Started"
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In this section you must explain how to power on the board and run the Reference Design (test board) on the particular module. The main points must be mentioned are:
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TEB2000 with TEM0007
Overview
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Board Overview
Number | Note |
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1 | J14- Ethernet interface |
2 | J5,J8,J9,J10- Bank voltage adjustment |
3 | JB1,JB2,JB3- B2B connector |
4 | J3- SD card socket |
5 | J21- UART0 socket |
6 | J4- UART1 socket |
7 | J13- 5V voltage input |
8 | J12- USB stick socket |
9 | S6- Reset button (SRST) (Soft reset) |
10 | S1- Reset button |
11 | S2- Dip Switch |
12 | U5- CPLD Chip |
13 | U4- FTDI chip for UART1 interface (Linux console) |
14 | U12- FTDI chip for UART0 interface (HSS console) |
Power supply
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The input power supply must be mentioned. |
Single ??V 5V power supply with minimum current capability of ??A 1.5A is recommended to power on the board.
DIP-Switches and Push Buttons
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Explain all DIP switches functionality. |
There is a switch (S??) which is connected to RESET signal, it resets the system entirelytwo reset switchs on the board (S1 and S6). The S6 is a soft reset button (SRST) that is not directed to CPLD chip. The S1 signal is connected to CPLD chip and is used in firmware code to create a reset signal.
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There is no DIPs on TExxxx. In case of TE0790 (XMOD) usage, see DIPs modeDIP switch on the TEM0007 module.
Jumpers
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Explain all Jumpers functionality and connection. |
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I2C to GPIO
Such signals same as NOSEQ can be read or written via i2c commands in linux console. For more information about it refer to TEB2000 CPLD#I2C to GPIO
LEDs
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Explain all user LEDs functionality and connections. |
There are three user six LEDs which can be used for variant purposes.
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anchor | Table_LED_Carrier |
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title | Carrier LEDs |
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LED Status | Condition | Description | ||
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ULED1 (Red) | D1 | Fast blink red | Access to CPLD of module ( CM0 = '1') → S2-2 = OFF | |
Connected to UART1_RX | Otherwise | |||
ULED2 (Green) | D2 | Fast blink green | Access to CPLD of module ( CM0 = '1') → S2-2 = OFF | |
Connected to UART1_TX | Otherwise | |||
FLED_1 (Red) | D3 | Fast blink red | PGOOD = '1' ( CM1 = '0' ) → S2-1 = ON | |
Connected to UART0_RX | Otherwise | |||
FLED_2 (Green) | D4 | Fast blink green | PGOOD = '1' ( CM1 = '0' ) → S2-1 = ON | |
Connected to UART0_TX | Otherwise |
LED | Designator | LED Status | Condition | Description |
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PHY_LED1 (Green LED Anode, Yellow LED Cathode) / PHY_LED1R (Green LED Cathode, Yellow LED Anode) | J14B* | Fast blink yellow | NOSEQ = '0' and MIO0 = '0' | In Linux console enter: i2cset -y 0 0x20 0x02 0x00 and S2-4 = ON* |
Slow blink yellow | NOSEQ = '0' and MIO0 = '1' | In Linux console enter: i2cset -y 0 0x20 0x02 0x00 and S2-4 = OFF* | ||
Fast blink yellow green | NOSEQ = '1' and MIO0 = '0' | In Linux console enter: i2cset -y 0 0x20 0x02 0x01 and S2-4 = ON* | ||
Slow blink yellow green | NOSEQ = '1' and MIO0 = '1' | In Linux console enter: i2cset -y 0 0x20 0x02 0x01 and S2-4 = OFF* | ||
PHY_LED2 (Green LED Cathode, Yellow LED Anode) / PHY_LED2R (Green LED Anode, Yellow LED Cathode) | J14C* | ON | SD card plugged (SD_CD = '0') | |
OFF | Otherwise |
* This LEDs exit on the ethernet socket (J14A).
Note: The TEM0007 module has no LED.
JTAG/UART
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Explain JTAG or UART connection breifly. |
JTAG and UART connections are available through mini USB connector.micro USB connector. MIO14 is driven by BDBUS0 (FTDI RX). BDBUS1 (FTDI TX) is driven by MIO15 . MIO13 is driven by UART_TXD. UART_RXD is driven by MIO12.
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For more information refer to TEB2000 CPLD#UART
Reference Designs
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In this Section you must refer to the Reference Design (Test board) for the particular module. For Example: TE0728 Reference Designs |
- TExxxx Reference TEM0007 Reference Designs
Notes
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In this Section you must refer to the Resources Page for the particular module. For Example: TE0728 Resources |
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