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Table of Contents

Overview

The Trenz Electronic TEM0707 is an industrial-grade module for 4 x 5 Trenz Electronic modules. The TEB0707 is integrated with an Intel MAX10 FPGA and it is equipped with a Micro USB2.0 Socket, RJ45 LAN Socket, Micro USB A Socket, Micro SD Card Socket, Low and High Speed Board to Board Connectors, User LEDs, FTDI,  Push Buttons and DIP Switch for controlling the SoM. Furtheremore, the TEB0707 provides CRUVI Extension connectors. For more information, Please refer to the CRUVI B2B Connectors.

Refer to http://trenz.org/teb0707-info for the current online version of this manual and other available documentation.

Key Features

  • Modules
    • 4x5 Trenz Electronic modules
  • RAM/Storage
    • EEPROM (FTDI Configuration)
  • On Board
    • Intel Max 10 FPGA
    • FTDI FT2223
    • 8x Green User LEDs
    • DIP Switch
    • Push Buttons
  • Interface
    • Gigabit RJ45 LAN socket
    • SD Card socket
    • Micro USB2.0 Socket
    • USB A Socket
    • 3x High Speed CRUVI B2B Connectors
    • 1x Low Speed CRUVI B2B Connector
    • 4x Jumpers
  • Power
    • 5V Input Power Supply 
  • Dimension
    • 135 x 68 mm
  • Notes


Block Diagram


TEB0707 block diagram

Main Components

TEB0707 main components
  1. Barrel Jack Power Supply, J1
  2. Voltage Regulator, U1
  3. Micro SD Card Socket, J8
  4. Micro USB2.0 Socket, J15
  5. FT2232H FTDI, U8
  6. USB A Socket, J9
  7. RJ45 LAN Socket, J2
  8. SDIO Port Expander, U4
  9. Jumpers, J4...7
  10. Push Button (Reset), S2
  11. DIP Switch, S1
  12. B2B Connector, JB3
  13. B2B Connector, JB2
  14. B2B Connector, JB1
  15. Intel MAX 10 FPGA, U6
  16. High speed CRUVI Connector, J10
  17. High speed CRUVI Connector, J11
  18. High speed CRUVI Connector, J12
  19. Low Speed CRUVI Connector, J13
  20. User Push Button, S3
  21. Jumper, J3

Initial Delivery State

Storage device name

Content

Notes

EEPROMProgrammed

FTDI Configuration

Initial delivery state of programmable devices on the module

Configuration Signals

MODE Signal State

Boot Mode

MODE

SoM Mode control pin (depnds on SoM)

PROGMODE
  • select between CPLD (low, closed, on)
  • on SoM or FPGA/SoC (high, open, off )
Boot process.

Signal

B2BI/ONote

RESIN

JB2- 17OutSoM Module
Reset process.

Signals, Interfaces and Pins

Board to Board (B2B)

Interfaces and Number of I/O signals connected to the B2B connectors:

B2B ConnectorInterfaceI/O Signal CountConnected toNotes
JB1


Ethernet LAN8x Single ended, 4x Diff pairsRJ45 Socket, J2
SD  Card6 x Single EndedIO Expander, U4
I/Os20x Single EndedFPGA BAnk 6, U6
CRUVI

20x Single ended, 10x Diff pairs

4x Single Ended

High Speed CRUVI, J12CRUVI C
Control Signals5x Single EndedFPGA, U6
I/Os8x Single endedFPGA Bank 8, U6
VBAT1x Single EndedPin Header, J3
JB2

CRUVI

8x Single ended, 4x Diff pairs

4x Single Ended

High Speed CRUVI, J10CRUVI A
CRUVI12x Single ended, 6x Diff pairsHigh Speed CRUVI, J11CRUVI B
JTAG4x Single EndedFPGA Bank 5, U6
JB3CRUVI

12x Single ended, 6x Diff pairs

4x Single Ended

High Speed CRUVI, J11CRUVI B
USB 4x Single EndedUSB A, J9
General PL I/O to B2B connectors information

CRUVI B2B Connectors

The TEMB0707 is equipped with a Low Speed Connectors J 13 and three High Speed Connector J10...12. These connectors are provided for CRUVI extension cards. More information is provided in the  B2B Connectors section.

SpeedDesignatorsSchematicConnected toNotes
High



CRUVI C, J12A0...A5 (N/P)B2B, JB1
B0...B5 (N/P)B2B, JB1

MODE

REFCLK

FPGA Bank 8, U6

SMB_ALERT

SMB_SDA

SMB_SCL

FPGA Bank 8, U6
DI,DO,SCK,SELFPGA Bank 8, U6
HSIO, HI, HOB2B, JB1
RESET B2B, JB1
High









CRUVI B, J11A0...A5 (N/P)B2B, JB1
B0...B5 (N/P)B2B, JB1

MODE

REFCLK

FPGA Bank 3, U6

SMB_ALERT

SMB_SDA

SMB_SCL

FPGA Bank 2, U6
DI,DO,SCK,SELFPGA Bank 2, U6
HSIO, HI, HOB2B, JB3
RESET B2B, JB3
High



CRUVI A,J13



A0...A5 (N/P)B2B, JB2
B0...B5 (N/P)B2B, JB2

MODE

REFCLK

FPGA Bank 2, U6

SMB_ALERT

SMB_SDA

SMB_SCL

FPGA Bank 3, U6
DI,DO,SCK,SELFPGA Bank 2, U6
HSIO, HI, HOB2B, JB2
RESET B2B, JB2
LowCRUVIX0...X7FPGA Bank 1A, U6
CRUVI B2B connectors information


JTAG Interface

JTAG access to the attached SoM through B2B connector JB2. The JTAG Enable is connected to VCC and after power on it will be enable.

JTAG Signal

B2B Connector

M_TMSJB2-94
M_TDIJB2-96
M_TDOJB2-100
M_TCK

JB2-98

VCCJTAGJB2-92
JTAG pins connection

There is an Intel MAX10 provided on TEB0707 as CPLD and JTAG access to the Intel MAX10 SoC is provided through the FTDI U8.

JTAG Signal

Connected to

M_TMSFTDI (U8) - ADBUS3
M_TDIFTDI (U8) - ADBUS1
M_TDOFTDI (U8) - ADBUS2
M_TCK

FTDI (U8) - ADBUS0

JTAG pins connection

SD Card Reader

The TEB0707 is equipped with an Micro SD Card reader, J8. Data for USBs are expanded through an IO Expander (U4).

Pin SchematicConnected toNotes
DAT0...3ESD_DAT0...3B2B, JB1Through IO Expander, U4
CMDESD_CMDB2B, JB1Through IO Expander, U4
VDD3.3V_SDB2B, JB1Through IO Expander, U4
CLKESD_CLKB2B, JB1Through IO Expander, U4
DLTSD_CDFPGA Bank 3, U6
USB2.0 Socket information

Micro USB2.0 Socket

There is a USB2.0 Socket, J15 provided in order to communicate with the FTDI, U8. Data signals from USB2.0 are passed through a Line Filter L4 and a Diode U9 in order to be protected against inverse polarity connection.

Pin SchematicConnected toNotes
VbusVBUSB2B, JB3
D+O2-D_PB2B, JB3Through Line Filter, L4
D-O2-D_NB2B, JB3Through Line Filter, L4
USB2.0 Socket information

 USB A Socket

Pin SchematicConnected toNotes
VCCUSB_VBUSB2B, JB3
Data+O2-D_PB2B, JB3Through Line Filter, L1
Data-O2-D_NB2B, JB3Through Line Filter, L1
USB2.0 Socket information

RJ45 LAN Socket

There is a RJ45 Ethernet LAN Socket, J2 connected to B2B, JB1 via 4x channels data receive and transmit.

Pin SchematicConnected toNotes
2PHY_MDI0_PB2B, JB1
3PHY_MDI0_NB2B, JB1
4PHY_MDI1_PB2B, JB1
5PHY_MDI1_NB2B, JB1
6PHY_MDI2_PB2B, JB1
7PHY_MDI2_NB2B, JB1
8PHY_MDI3_PB2B, JB1
9PHY_MDI3_NB2B, JB1
VCCETH-VCCB2B, JB1
Green LEDETH1_LED0Intel MAX 10, U6Link/Activity indicator
Yellow LEDETH1_LED1Intel MAX 10, U6Speed indicator
RJ45 LAN Socket information

Test Points

Test PointSignalConnected toNotes
TP13.3VRegulator, U1
TP2VINVoltage Protection, U2
TP4IOVRegulator, U3
TP53.3VPower Switch, Q1
TP6C5VINPower Switch, Q2
Test Points Information

Jumpers

DesignatorSchematicConnected toNotes
J14VCCIO_CCB2B, JB2
J16VCCIO_CBB2B, JB2Through Line Filter, L1
J17VCCIO_CAB2B, JB2Through Line Filter, L1
USB2.0 Socket information

On-board Peripherals

Chip/InterfaceDesignatorNotes
Intel MAX 10U6
FTDIU8
SDIO ExpanderU4
EEPROMU10
OscillatorU7
LEDsD1...8
On board peripherals

LEDs

DesignatorColorSchematicConnected toActive LevelNote
D2GreenLED3FPGA Bank 3Active High
D3GreenLED5FPGA Bank 3Active High
D4GreenLED7FPGA Bank 3Active High
D5GreenLED4FPGA Bank 8Active High
D6GreenLED6FPGA Bank 2Active High
D7GreenLED8FPGA Bank 8Active High
D8GreenLED2FPGA Bank 8Active High
D9GreenLED1FPGA Bank 8Active High
On-board LEDs

EEPROM

PinSchematicConnected toNotes
CSEECSFTDI, U8
CLKEECLKFTDI, U8
DINEEDATAFTDI, U8
I2C EEPROM interface MIOs and pins

I2C AddressDesignatorNotes
A0U10
I2C address for EEPROM

Clock Sources

DesignatorDescriptionFrequencyNote
U7MEMS Oschilator12 MHz
Osillators

Power and Power-On Sequence

Power Supply

Power supply with minimum current capability of xx A for system startup is recommended.

Power Consumption

Power Input PinTypical Current
VINTBD*
Power Consumption

* TBD - To Be Determined

Power Distribution Dependencies


Power Distribution

Power-On Sequence

Power Sequency

Voltage Monitor Circuit

Create DrawIO object here: Attention if you copy from other page, objects are only linked.

Voltage Monitor Circuit

Power Rails

Power Rail Name

B2B Connector

JM1 Pin

B2B Connector

JM2 Pin

B2B Connector

JM3 Pin

DirectionNotes
























Module power rails.

Bank Voltages

Bank          

Schematic Name

Voltage

Notes




























Zynq SoC bank voltages.


Board to Board Connectors

These connectors are hermaphroditic. Odd pin numbers on the module are connected to even pin numbers on the baseboard and vice versa.

4 x 5 modules use two or three Samtec Razor Beam LSHM connectors on the bottom side.

  • 2 x REF-189016-02 (compatible to LSHM-150-04.0-L-DV-A-S-K-TR), (100 pins, "50" per row)
  • 1 x REF-189017-02 (compatible to LSHM-130-04.0-L-DV-A-S-K-TR), (60 pins, "30" per row) (depending on module)
Connector Mating height

When using the same type on baseboard, the mating height is 8mm. Other mating heights are possible by using connectors with a different height

Order numberConnector on baseboardcompatible toMating height
23836REF-189016-01LSHM-150-02.5-L-DV-A-S-K-TR6.5 mm

LSHM-150-03.0-L-DV-A-S-K-TRLSHM-150-03.0-L-DV-A-S-K-TR7.0 mm
23838REF-189016-02LSHM-150-04.0-L-DV-A-S-K-TR8.0 mm

LSHM-150-06.0-L-DV-A-S-K-TRLSHM-150-06.0-L-DV-A-S-K-TR10.0mm
26125REF-189017-01LSHM-130-02.5-L-DV-A-S-K-TR6.5 mm

LSHM-130-03.0-L-DV-A-S-K-TRLSHM-130-03.0-L-DV-A-S-K-TR7.0 mm
24903 REF-189017-02LSHM-130-04.0-L-DV-A-S-K-TR8.0 mm

LSHM-130-06.0-L-DV-A-S-K-TRLSHM-130-06.0-L-DV-A-S-K-TR10.0mm
Connectors.

The module can be manufactured using other connectors upon request.

Connector Speed Ratings

The LSHM connector speed rating depends on the stacking height; please see the following table:

Stacking heightSpeed rating
12 mm, Single-Ended7.5 GHz / 15 Gbps
12 mm, Differential

6.5 GHz / 13 Gbps

5 mm, Single-Ended11.5 GHz / 23 Gbps
5 mm, Differential7.0 GHz / 14 Gbps
Speed rating.
Current Rating

Current rating of  Samtec Razor Beam™ LSHM B2B connectors is 2.0A per pin (2 adjacent pins powered).

Connector Mechanical Ratings
  • Shock: 100G, 6 ms Sine
  • Vibration: 7.5G random, 2 hours per axis, 3 axes total


Manufacturer Documentation

  File Modified
PDF File hsc-report_lshm-lshm-05mm_web.pdf High speed test report 07 04, 2016 by Thorsten Trenz
PDF File lshm_dv.pdf LSHM catalog page 07 04, 2016 by Thorsten Trenz
PDF File LSHM-1XX-XX.X-X-DV-A-X-X-TR-FOOTPRINT(1).pdf Recommended layout and stencil drawing 07 04, 2016 by Thorsten Trenz
PDF File LSHM-1XX-XX.X-XX-DV-A-X-X-TR-MKT.pdf Technical drawing 07 04, 2016 by Thorsten Trenz
PDF File REF-189016-01.pdf Technical Drawing 07 04, 2016 by Thorsten Trenz
PDF File REF-189016-02.pdf Technical Drawing 07 04, 2016 by Thorsten Trenz
PDF File REF-189017-01.pdf Technical Drawing 07 04, 2016 by Thorsten Trenz
PDF File REF-189017-02.pdf Technical Drawing 07 04, 2016 by Thorsten Trenz
PDF File TC0923--2523_report_Rev_2_qua.pdf Design qualification test report 07 04, 2016 by Thorsten Trenz
PDF File tc0929--2611_qua(1).pdf Shock and vibration report 07 04, 2016 by Thorsten Trenz



Technical Specifications

Absolute Maximum Ratings

SymbolsDescriptionMinMaxUnit




V





PS absolute maximum ratings

Recommended Operating Conditions

Operating temperature range depends also on customer design and cooling solution. Please contact us for options.

ParameterMinMaxUnitsReference Document



VSee ???? datasheets.



°CSee Xilinx ???? datasheet.
Recommended operating conditions.

Physical Dimensions

  • Module size: 135 mm × 68 mm.  Please download the assembly diagram for exact numbers.

  • Mating height with standard connectors: 4 mm.

PCB thickness: 1.7 mm.

Physical Dimension

Currently Offered Variants 

Trenz shop TEB0707 overview page
English pageGerman page
Trenz Electronic Shop Overview

Revision History

Hardware Revision History


DateRevisionChangesDocumentation Link
2020-04-01REV01Initial Release
Hardware Revision History

Hardware revision number can be found on the PCB board together with the module model number separated by the dash.

Board hardware revision number.

Document Change History

DateRevisionContributorDescription

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Document change history.

Disclaimer

Data Privacy

Please also note our data protection declaration at https://www.trenz-electronic.de/en/Data-protection-Privacy

Document Warranty

The material contained in this document is provided “as is” and is subject to being changed at any time without notice. Trenz Electronic does not warrant the accuracy and completeness of the materials in this document. Further, to the maximum extent permitted by applicable law, Trenz Electronic disclaims all warranties, either express or implied, with regard to this document and any information contained herein, including but not limited to the implied warranties of merchantability, fitness for a particular purpose or non infringement of intellectual property. Trenz Electronic shall not be liable for errors or for incidental or consequential damages in connection with the furnishing, use, or performance of this document or of any information contained herein.

Limitation of Liability

In no event will Trenz Electronic, its suppliers, or other third parties mentioned in this document be liable for any damages whatsoever (including, without limitation, those resulting from lost profits, lost data or business interruption) arising out of the use, inability to use, or the results of use of this document, any documents linked to this document, or the materials or information contained at any or all such documents. If your use of the materials or information from this document results in the need for servicing, repair or correction of equipment or data, you assume all costs thereof.

Copyright Notice

No part of this manual may be reproduced in any form or by any means (including electronic storage and retrieval or translation into a foreign language) without prior agreement and written consent from Trenz Electronic.

Technology Licenses

The hardware / firmware / software described in this document are furnished under a license and may be used /modified / copied only in accordance with the terms of such license.

Environmental Protection

To confront directly with the responsibility toward the environment, the global community and eventually also oneself. Such a resolution should be integral part not only of everybody's life. Also enterprises shall be conscious of their social responsibility and contribute to the preservation of our common living space. That is why Trenz Electronic invests in the protection of our Environment.

REACH, RoHS and WEEE

REACH

Trenz Electronic is a manufacturer and a distributor of electronic products. It is therefore a so called downstream user in the sense of REACH. The products we supply to you are solely non-chemical products (goods). Moreover and under normal and reasonably foreseeable circumstances of application, the goods supplied to you shall not release any substance. For that, Trenz Electronic is obliged to neither register nor to provide safety data sheet. According to present knowledge and to best of our knowledge, no SVHC (Substances of Very High Concern) on the Candidate List are contained in our products. Furthermore, we will immediately and unsolicited inform our customers in compliance with REACH - Article 33 if any substance present in our goods (above a concentration of 0,1 % weight by weight) will be classified as SVHC by the European Chemicals Agency (ECHA).

RoHS

Trenz Electronic GmbH herewith declares that all its products are developed, manufactured and distributed RoHS compliant.

WEEE

Information for users within the European Union in accordance with Directive 2002/96/EC of the European Parliament and of the Council of 27 January 2003 on waste electrical and electronic equipment (WEEE).

Users of electrical and electronic equipment in private households are required not to dispose of waste electrical and electronic equipment as unsorted municipal waste and to collect such waste electrical and electronic equipment separately. By the 13 August 2005, Member States shall have ensured that systems are set up allowing final holders and distributors to return waste electrical and electronic equipment at least free of charge. Member States shall ensure the availability and accessibility of the necessary collection facilities. Separate collection is the precondition to ensure specific treatment and recycling of waste electrical and electronic equipment and is necessary to achieve the chosen level of protection of human health and the environment in the European Union. Consumers have to actively contribute to the success of such collection and the return of waste electrical and electronic equipment. Presence of hazardous substances in electrical and electronic equipment results in potential effects on the environment and human health. The symbol consisting of the crossed-out wheeled bin indicates separate collection for waste electrical and electronic equipment.

Trenz Electronic is registered under WEEE-Reg.-Nr. DE97922676.


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