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Trenz Electronic TE0711 is an industrial-grade FPGA module integrating an AMD Artix-7 FPGA, Quad SPI Flash memory for configuration and operation and powerful switching-mode power supplies for all on-board voltages. Numerous configurable I/O's are provided via high-speed connections. All Trenz Electronic SoM's in 4 x 5 cm form factor are mechanically compatible.
Refer to http://trenz.org/te0711-info for the current online available documentation.
Speed grades: 1 / 2 / 2L / 3 1)
Storage device name | Content | Notes |
|---|---|---|
Quad SPI Flash, U7 | Not programmed | |
| EEPROM, U2 | Not programmed | |
| System Controller, U4 | Firmware | Visit TE0711 CPLD Firmware for further information. |
| Connector Type | Designator | Interface | IO CNT | Notes |
|---|---|---|---|---|
| B2B | JM1 | HR Bank 14 | 8 | |
| B2B | JM1 | HR Bank 15 | 48 | |
| B2B | JM1 | HR Bank 16 | 6 | |
| B2B | JM1 | HR Bank 34 | 8 | |
| B2B | JM2 | HR Bank 14 | 18 | |
| B2B | JM2 | HR Bank 35 | 50 | |
| B2B | JM2 | JTAG | 4 | |
| B2B | JM3 | HR Bank 34 | 40 | |
| B2B | JM3 | USB | 2 | FPGA UART, JTAG, IO-BUS |
| U.FL | J1 | GPIO | 1 |
| Test Point | Signal | Notes |
|---|---|---|
| TP1 | GND | |
| TP2 | DONE | FPGA DONE signal 1) |
| TP3 | PROG_B | FPGA PROG_B Reset 1) |
| TP4 | PG_ALL | |
| TP5 | 1V | |
| TP6 | GND | |
| TP7 | GND | |
| TP8 | VIN | |
| TP9 | 3.3VIN | |
| TP10 | 3.3V | |
| TP11 | 1.8V | |
| TP12 | VCCIO35 | |
| TP13 | VCCIO34 | |
| TP14 | VCCIO15 | |
| TP15 | GND | |
| TP16 | DONE | FPGA DONE signal 1) |
| TP17 | PROG_B | FPGA PROG_B Reset 1) |
| TP18 | PG_ALL | |
| TP19 | 1V |
1) Refer to AMD Documentation 7 Series FPGAs Configuration User Guide (UG470) for further information.
| Chip/Interface | Designator | Connected To | Notes |
|---|---|---|---|
FPGA | U5 |
| |
Quad SPI | U7 |
| |
System Controller | U4 |
| Visit TE0711 CPLD Firmware for further information. |
FTDI | U6 |
| |
EEPROM | U2 |
| |
Voltage Supervisor | U23 |
| |
Power Switch | Q1 |
| |
Oscillator | U8 |
| 100 MHz |
Oscillator | U3 |
| 12 MHz |
| Signal Name | Connector.Pin | Direction1) | Description |
|---|---|---|---|
| USB | JM3.47 / JM3.49 | INOUT | UART/FIFO via FTDI USB |
| JTAG | JM2.93 / JM2.95 / JM2.97 / JM2.99 | Signal-dependent | Configuration JTAG. |
| JTAGSEL | JM1.89 | IN | Select JTAG target 2), 3) Logic low = Access FPGA |
| UIO | U.FL.1 | INOUT | GPIO 2). |
| nRST_SC0 | JM2.18 | IN | Active low Reset Signal 2), 3) |
| MODE_SC1 | JM1.32 | IN | Boot Mode Pin 2), 3) |
| STAT_SC2 | JM1.30 | INOUT | POWER GOOD 2), 3) |
EN_SC3 | JM1.28 | IN | Enable FPGA Core Voltage supply 2), 3) |
NOSEQ_SC4 | JM1.7 | INOUT | No sequencing signal 2), 3) |
1) Direction:
2) Firmware dependent. Refer to TE0711 CPLD Firmware for further information.
3) For more information refer to 4 x 5 SoM Integration Guide.
| Power Rail Name/ Schematic Name | Connector.Pin | Direction1) | Notes |
|---|---|---|---|
| VIN | JM1.1 / JM1.3 / JM1.5 JM2.2 / JM2.4 / JM2.6 / JM2.8 | IN | Supply power from carrier. |
| 3.3VIN | JM1.13 / JM1.15 | IN | Supply power from carrier. |
VCCIO15 | JM1.9 / JM1.11 | IN | IO Bank supply from carrier. |
VCCIO34 | JM2.1 / JM2.3 | IN | IO Bank supply from carrier. |
| VCCIO35 | JM2.7 / JM2.9 | IN | IO Bank supply from carrier. |
| 3.3V | JM2.10 / JM2.12 | OUT | Module internal power. |
| VREF_JTAG | JM2.91 | OUT | 3.3 V JTAG reference voltage |
| 1.8V | JM1.39 | OUT | Module internal power. |
1) Direction:
| Sequence | Net name | Recommended Voltage Range | Pull-up/down | Description | Notes |
|---|---|---|---|---|---|
| 1 | - | - | - | Configuration SoM signal setup. | |
3.3VIN VIN | - 1) | - | Main Power supply. | ||
| 2 | EN_SC3 | 3.3 V (± 5 %) 2) | - 3) | Enable SoM. |
|
| 3 | 3.3V or 1.8V | - 1) | - | Module generated output voltages. | SoM's internal power-on sequence is complete when these voltages reach their nominal values. |
| 4 | VCCIO35 | - | - | Supply module bank voltages. |
1) Refer to Recommended Operating Conditions.
2) A higher or lower input voltage may be possible.
3) Firmware dependent. Refer to TE0711 CPLD Firmware for further information.
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.
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 number | Connector on baseboard | compatible to | Mating height |
|---|---|---|---|
| 23836 | REF-189016-01 | LSHM-150-02.5-L-DV-A-S-K-TR | 6.5 mm |
| LSHM-150-03.0-L-DV-A-S-K-TR | LSHM-150-03.0-L-DV-A-S-K-TR | 7.0 mm | |
| 23838 | REF-189016-02 | LSHM-150-04.0-L-DV-A-S-K-TR | 8.0 mm |
| LSHM-150-06.0-L-DV-A-S-K-TR | LSHM-150-06.0-L-DV-A-S-K-TR | 10.0mm | |
| 26125 | REF-189017-01 | LSHM-130-02.5-L-DV-A-S-K-TR | 6.5 mm |
| LSHM-130-03.0-L-DV-A-S-K-TR | LSHM-130-03.0-L-DV-A-S-K-TR | 7.0 mm | |
| 24903 | REF-189017-02 | LSHM-130-04.0-L-DV-A-S-K-TR | 8.0 mm |
| LSHM-130-06.0-L-DV-A-S-K-TR | LSHM-130-06.0-L-DV-A-S-K-TR | 10.0mm |
The module can be manufactured using other connectors upon request.
The LSHM connector speed rating depends on the stacking height; please see the following table:
| Stacking height | Speed rating |
|---|---|
| 12 mm, Single-Ended | 7.5 GHz / 15 Gbps |
| 12 mm, Differential | 6.5 GHz / 13 Gbps |
| 5 mm, Single-Ended | 11.5 GHz / 23 Gbps |
| 5 mm, Differential | 7.0 GHz / 14 Gbps |
Current rating of Samtec Razor Beam™ LSHM B2B connectors is 2.0A per pin (2 adjacent pins powered).
| File | Modified | |
|---|---|---|
| PDF File hsc-report_lshm-lshm-05mm_web.pdf High speed test report | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File lshm_dv.pdf LSHM catalog page | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File LSHM-1XX-XX.X-X-DV-A-X-X-TR-FOOTPRINT(1).pdf Recommended layout and stencil drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File LSHM-1XX-XX.X-XX-DV-A-X-X-TR-MKT.pdf Technical drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File REF-189016-01.pdf Technical Drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File REF-189016-02.pdf Technical Drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File REF-189017-01.pdf Technical Drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File REF-189017-02.pdf Technical Drawing | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File TC0923--2523_report_Rev_2_qua.pdf Design qualification test report | Apr 07, 2016 by Thorsten Trenz | |
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| PDF File tc0929--2611_qua(1).pdf Shock and vibration report | Apr 07, 2016 by Thorsten Trenz | |
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| Power Rail Name/ Schematic Name | Description | Min | Max | Unit |
|---|---|---|---|---|
| VIN | IN | -0.3 | 6.5 | V |
| 3.3VIN | IN | -0.3 | 3.75 | V |
VCCIO15 | IN | –0.5 | 3.6 | V |
VCCIO34 | IN | –0.5 | 3.6 | V |
| VCCIO35 | IN | –0.5 | 3.6 | V |
*) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, which do not imply functional operation of the device at these or any other conditions beyond those indicated under Recommended Operating Condition. Exposure to absolute-maximum rated conditions for extended periods may affect device reliability.
This TRM is generic for all variants. Temperature range can be different depending on the assembly version. Voltage range is mostly the same during variants (exceptions are possible, depending on custom request).
The module components are capable of being operated at industrial-grade temperatures, which cover at least the range of -40 °C to +85 °C.
Operating temperature range depends also on customer design and cooling solution.
| Parameter | Min | Max | Units | Reference Document |
|---|---|---|---|---|
| VIN | 3.15 | 5.25 | V | |
| 3.3VIN | 3.15 | 3.45 | V | |
VCCIO15 | 1.14 | 3.465 | V | See AMD DS181 Artix 7 datasheet . |
VCCIO34 | 1.14 | 3.465 | V | See AMD DS181 Artix 7 datasheet . |
| VCCIO35 | 1.14 | 3.465 | V | See AMD DS181 Artix 7 datasheet . |
Module size: 50 mm × 40 mm. Please download the assembly diagram for exact numbers.
All dimensions are shown in millimeters.

| Trenz shop TE0711 overview page* | |
|---|---|
| English page | German page |
*) Module article name encoding table: 7 Series Spartan, Artix and Kintex modules
The hardware revision number is located on the PCB next to the module identifier, separated by a dash.
| Date | Revision | Changes | Documentation Link |
|---|---|---|---|
| 2023-11 | 02 | 1) Pages "Legal_Notices.SchDoc", "Revision_Changes.SchDoc", "Overview.SchDoc" and "Power_Diagram.SchDoc" were added. | |
| 2015-01 | 01 | Initial revision | REV01 |
Hardware revision number can be found on the PCB board together with the module model number separated by the dash.
| Date | Revision | Contributors | Description |
|---|---|---|---|
| |||
2025-05-13 | v.42 | Kilian Jahn |
|
2018-04-20 | v.34 | John Hartfiel |
|
| 2017-11-10 | v.33 | John Hartfiel |
|
| 2017-01-29 | v.30 | Jan Kumann |
|
| 2017-01-01 | v.10 | Ali Naseri, Thorsten Trenz, Jan Kumann |
|
| 2015-06-05 | v.1 | Antti Lukats |
|
-- | all |
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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.
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