Template Revision 2.12
- Module: TRM Name always "TE Series Name" +TRM
Example: "TE0728 TRM" - Carrier: TRM Name usually "TEB Series Name" +TRM
Example: "TEB0728 TRM"
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Table of Contents |
Overview
The Trenz Electronic TEI0023 is a commercial-grade, low cost and small size module integrated with Intel® MAX 10. Intel MAX 10 devices are the ideal solution for system management, I/O expansion, communication control planes, industrial, automotive, and consumer applications.
Refer to https://wiki.trenz-electronic.de/display/PD/TEI0023+Resources for the current online version of this manual and other available documentation.
Key Features
Note: 'description: Important components and connector or other Features of the module → please sort and indicate assembly options Key Features' must be split into 6 main groups for modules and mainboards: - SoC/FPGA
- Package: SFVC784
- Device: ZU2...ZU5*
- Engine: CG, EG, EV*
- Speed: -1LI, -2LE,*, **
- Temperature: I, E,*, **
- RAM/Storage
- Low Power DDR4 on PS
- Data width: 32bit
- Size: def. 2GB*
- Speed:***
- eMMC
- Data width: 8Bit
- size: def. 8GB *
- QSPI boot Flash in dual parallel mode (size depends on assembly version)
- Data width: 8bit
- size: def. 128MB *
- HyperRAM/Flash (optional, default not assembled)
- MAC address serial EEPROM with EUI-48™ node identity (Microchip 24AA025E48)
- On Board
- Lattice LCMXO2
- PLL SI5338
- Gigabit Ethernet transceiver PHY (Marvell Alaska 88E1512)
- Hi-speed USB2 ULPI transceiver with full OTG support (Microchip USB3320C)
- Interface
- 132 x HP PL I/Os (3 banks)
- ETH
- USB
- 4 GTR (for USB3, Sata, PCIe, DP)
- MIO for UART
- MIO for SD
- MIO for PJTAG
- JTAG
- Ctrl
- Power
- 3.3V-5V Main Input
- 3.3V Controller Input
- Variable Bank IO Power Input
- Dimension
- Notes
- * depends on assembly version
- ** also non low power assembly options possible
- *** depends on used U+ Zynq and DDR4 combination
Key Features' must be split into 6 main groups for carrier: - Modules
- TE0808, TE807, TE0803,...
- RAM/Storage
- On Board
- Interface
- E.g. ETH, USB, B2B, Display port
- Power
- E.g. Input supply voltage
- Dimension
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Intel® MAX 10 Commercial [10M08SAU169C8G]
SDRAM Memory up to 64Mb, 166MHz
Dual High Speed USB to Multipurpose UART/FIFO IC
64 Mb Quad SPI Flash
4Kb EEPROM Memory
8x User LED
Micro USB2 Receptacle 90
18 Bit 2 MSPS Analog to Digital Converter
2x SMA Female Connector
I/O interface: 23x GPIO
Power Supply: 5V
Dimension: 86.5mm x 25mm
- Fully-Differential Programmable-Gain Instrumentation Amplifier
Block Diagram
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Main Components
Notes : - Picture of the PCB (top and bottom side) with labels of important components
- Add List below
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SMA Connector, J5...6
Amplifier, U12
Series Voltage Reference, U8
Analog to Digital Converter, U6
Voltage Regulator, U4 - U10 - U13 - U16
Switching Voltage Regulator, U11
SDRAM Memory, U2
- Intel® MAX 10, U1
SPI Flash Memory, U5
Oscillator, U7 - U19
FTDI USB2 to JTAG/UART adapter, U3
User LEDs, D2...9
FTDI configuration EEPROM, U9
Configuration/Status LED (Red) , D10
Power-on LED (Green), D1
Push button, S1...2
Micro USB Connector, J9
1x14 pin header, J2 (Not assembled)
1x6 pin header, J4 (Not assembled)
1x4 Header, J3 (Not assembled)
1x14 pin header, J1 (Not assembled)
Initial Delivery State
Notes : Only components like EEPROM, QSPI flash can be initialized by default at manufacture. If there is no components which might have initial data ( possible on carrier) you must keep the table empty |
Storage device name | Content | Notes |
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Quad SPI Flash | Not Programmed |
| EEPROM | Programmed | FTDI configuration | SDRAM | Not Programmed |
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Configuration Signals
- Overview of Boot Mode, Reset, Enables.
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The FPGA configuration for Intel MAX 10 FPGAs can be stored through JTAG interface either in external configuration device (QSPI flash memory U5) or on the FPGA itself since the Intel MAX 10 FPGA offers non-volatile memory on chip. The FPGA configuration is loaded from the non-volatile memory when the board is powered up.
To configure the FPGA directly, the JTAG interface can be used to configure the FPGA volatile, means the configuration is lost after power off.
Reset process must be done by pressing push button S1.
Signal | Push Button | Pin Header | Note |
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RESET | S1 | J2 | Connected to nCONFIG |
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Signals, Interfaces and Pins
Notes : - For carrier or stand-alone boards use subsection for every connector type (add designator on description, not on the subsection title), for example:
- For modules which needs carrier use only classes and refer to B2B connector if more than one is used, for example
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Board to Board (B2B) I/Os
FPGA bank number and number of I/O signals connected to the B2B connector:
FPGA Bank | B2B Connector | I/O Signal Count | Voltage Level | Notes |
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JTAG Interface
JTAG access to the TExxxx SoM through B2B connector JMX.
JTAG Signal | B2B Connector |
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TMS |
| TDI |
| TDO |
| TCK |
| JTAG_EN |
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MIO Pins
you must fill the table below with group of MIOs which are connected to a specific components or peripherals, you do not have to specify pins in B2B, Just mention which B2B is connected to MIOs. The rest is clear in the Schematic. Example: MIO Pin | Connected to | B2B | Notes |
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MIO12...14 | SPI_CS , SPI_DQ0... SPI_DQ3 SPI_SCK | J2 | QSPI |
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MIO Pin | Connected to | B2B | Notes |
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Test Points
you must fill the table below with group of Test Point which are indicated as TP in a schematic. If there is no Test Point remarked in the schematic, delet the Test Point section. Example: Test Point | Signal | B2B | Notes |
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10 | PWR_PL_OK | J2-120 |
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Test Point | Signal | Connected to | Notes |
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On-board Peripherals
Notes : - add subsection for every component which is important for design, for example:
- Two 100 Mbit Ethernet Transciever PHY
- USB PHY
- Programmable Clock Generator
- Oscillators
- eMMCs
- RTC
- FTDI
- ...
- DIP-Switches
- Buttons
- LEDs
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Notes : In the on-board peripheral table "chip/Interface" must be linked to the corresponding chapter or subsection |
Chip/Interface | Designator | Notes |
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Quad SPI Flash Memory
Notes : Minimum and Maximum density of quad SPI flash must be mentioned for other assembly options. |
MIO Pin | Schematic | U?? Pin | Notes |
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RTC
MIO Pin | Schematic | U? Pin | Notes |
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MIO Pin | I2C Address | Designator | Notes |
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EEPROM
MIO Pin | Schematic | U?? Pin | Notes |
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MIO Pin | I2C Address | Designator | Notes |
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LEDs
Designator | Color | Connected to | Active Level | Note |
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DDR3 SDRAM
Notes : Minimum and Maximum density of DDR3 SDRAM must be mentioned for other assembly options. (pay attention to supported address length for DDR3) |
The TE???? SoM has ??? GByte volatile DDR3 SDRAM IC for storing user application code and data.
- Part number:
- Supply voltage:
- Speed:
- NOR Flash
- Temperature:
Ethernet
U?? Pin | Signal Name | Connected to | Signal Description | Note |
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CAN Transceiver
Bank | Schematic | U?? Pin | Notes |
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| D-Tx |
| Driver Input |
| R-Rx |
| Reciever Output |
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Clock Sources
Designator | Description | Frequency | Note |
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| MHz |
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| KHz |
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Programmable Clock Generator
There is a programmable clock generator on-board (U??) provided in order to generate variable clocks for the module. Programming can be done using I2C via PIN header J??. The I2C Address is 0x??.
U?? Pin
| Signal | Connected to | Direction | Note |
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IN0 |
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| XAXB |
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| SCLK |
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| SDA |
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| OUT0 |
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| OUT1 |
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| OUT2 |
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| OUT3 |
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| OUT4 |
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| OUT5 |
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| OUT6 |
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| OUT7 |
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| OUT8/OUT9 |
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Power and Power-On Sequence
In 'Power and Power-on Sequence' section there are three important digrams which must be drawn: - Power on-sequence
- Power distribution
- Voltage monitoring circuit
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Power Supply
Power supply with minimum current capability of xx A for system startup is recommended.
Power Consumption
Power Input Pin | Typical Current |
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VIN | TBD* |
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* TBD - To Be Determined
Power Distribution Dependencies
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Power-On Sequence
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Voltage Monitor Circuit
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Power Rails
Power Rail Name | B2B Connector JM1 Pin | B2B Connector JM2 Pin | B2B Connector JM3 Pin | Direction | Notes |
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Bank Voltages
Board to Board Connectors
- This section is optional and only for modules.
use "include page" macro and link to the general B2B connector page of the module series, For example: 6 x 6 SoM LSHM B2B Connectors
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? x ? modules use two or three Samtec Micro Tiger Eye Connector on the bottom side.
3 x REF-??????? (compatible to ????????), (?? pins, ?? per row)
Operating Temperature: -??°C ~ ??°C
Current Rating: ??A per ContactNumber of Positions: ??
Number of Rows: ??
Technical Specifications
Absolute Maximum Ratings
Symbols | Description | Min | Max | Unit |
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Recommended Operating Conditions
Operating temperature range depends also on customer design and cooling solution. Please contact us for options.
Parameter | Min | Max | Units | Reference Document |
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| V | See ???? datasheets. |
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| V | See Xilinx ???? datasheet. |
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| V | See Xilinx ???? datasheet. |
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| V | See Xilinx ???? datasheet. |
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| V | See Xilinx ???? datasheet. |
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| V | See Xilinx ???? datasheet. |
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| V | See Xilinx ???? datasheet. |
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| °C | See Xilinx ???? datasheet. |
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| °C | See Xilinx ???? datasheet. |
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Physical Dimensions
PCB thickness: ?? mm.
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Currently Offered Variants
Revision History
Hardware Revision History
Date | Revision | Changes | Documentation Link |
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Hardware revision number can be found on the PCB board together with the module model number separated by the dash.
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Document Change History
- Note this list must be only updated, if the document is online on public doc!
- It's semi automatically, so do following
Add new row below first Copy "Page Information Macro(date)" Macro-Preview, Metadata Version number, Author Name and description to the empty row. Important Revision number must be the same as the Wiki document revision number Update Metadata = "Page Information Macro (current-version)" Preview+1 and add Author and change description. --> this point is will be deleted on newer pdf export template - Metadata is only used of compatibility of older exports
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Date | Revision | Contributor | Description |
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Disclaimer