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The Trenz Electronic TE0741 is a FPGA module integrating an AMD Kintex 7 FPGA with two Quad GTP transceivers, Quad SPI Flash memory for configuration and operation and a Programmable Clock Generator. Numerous configurable I/O' are provided via high-speed connections.
Refer to http://trenz.org/te0741-info for current online available documentation.
1) Available as assembly variant or upon request.
2) Other sizes/devices, which are pin/package-compatible, upon request.
Storage device name | Content | Notes |
|---|---|---|
Quad SPI Flash, U4 | Not programmed | |
System Controller, U7 | Firmware | Refer to TE0741 CPLD Firmware / TE0741 CPLD for more information. |
Programmable Clock Generator, U2 | Not programmed |
Connector Type | Designator | Interface | IO count | Notes |
|---|---|---|---|---|
B2B | JM1 | MGT | 3x MGT (RX/TX) | FPGA bank 115 |
B2B | JM3 | MGT | 1x MGT (RX/TX) | FPGA bank 115 |
B2B | JM3 | MGT | 4x MGT (RX/TX) | FPGA bank 116 |
B2B | JM3 | MGT CLK | 1x DIFF | FPGA bank 115 |
B2B | JM3 | MGT CLK | 1x DIFF | FPGA bank 116 |
B2B | JM1 | IO HR | 48x SE / 24x DIFF | FPGA bank 13 |
B2B | JM1 | IO HR | 8x SE | FPGA bank 14 |
B2B | JM3 | IO HR | 4x SE / 2x DIFF | FPGA bank 14 |
B2B | JM3 | IO HR | 8x SE / 16x DIFF | FPGA bank 16 |
B2B | JM2 | IO HR | 18x SE / 9x DIFF | FPGA bank 15 |
B2B | JM2 | IO HR | 48x SE / 24x DIFF | FPGA bank 12 |
B2B | JM2 | IO HR | 2x SE | FPGA bank 12 |
Test Point | Top | Bottom | Signal | Notes |
|---|---|---|---|---|
TP1 | x | VIN | ||
TP2 | x | 3.3V | ||
TP3 | x | VCCIO16 | ||
TP4 | x | VCCIO15 | ||
TP5 | x | VCCIO12 | ||
TP6 | x | VCCIO13 | ||
TP7 | x | 1V | ||
TP8 | x | 1V_MGT | ||
TP9 | x | 1.2V_MGT | ||
TP10 | x | 1.8V | ||
TP11 | x | GND | ||
TP12 | x | GND |
Chip/Interface | Designator | Connected to | Notes |
|---|---|---|---|
AMD Kintex 7 FPGA | U1 |
| |
QSPI Flash | U4 |
| |
Clock generator | U2 |
| |
System Controller | U7 |
| Refer to TE0741 CPLD Firmware / TE0741 CPLD for further information. |
Oscillator | U3 |
|
Signal Name | Connector.Pin | Direction 1) | Description |
|---|---|---|---|
EN1 | JM1.28 | IN | SoM power enable. |
PGOOD | JM1.30 | OUT | SoM voltage rail status. Low, if power failed, internal pull-up activated. 2) |
MODE | JM1.32 | IN | Currently not used. 2) |
JTAGMODE | JM1.89 | IN | Select JTAG target, high for System Controller and low for FPGA. 2) |
JTAG (TMS / TDI / TDO / TCK) | JM2.93 / JM2.95 / JM2.97 / JM2.99 | Signal dependent | |
RESIN | JM2.18 | IN | SoM reset signal. 2) |
1) Direction:
IN: Input from the point of view of this board.
OUT: Output from the point of view of this board.
2) Firmware dependent. Refer to TE0741 CPLD Firmware / TE0741 CPLD for further information.
Power Rail Name / Schematic Name | Connector.Pin | Direction 1) | Notes |
|---|---|---|---|
VIN | JM1.1 / JM1.3 / JM1.5 | IN | Main supply. |
3.3VIN | JM1.13 / JM1.15 | IN | Management supply. |
VCCIO12 | JM2.7 / JM2.9 | IN | FPGA IO bank supply. |
VCCIO13 | JM1.9 / JM1.11 | IN | FPGA IO bank supply. |
VCCIO15 | JM2.5 | IN | FPGA IO bank supply. |
B15_VREF | JM2.29 | IN | FPGA IO bank reference voltage. |
VCCIO16 | JM2.1 / JM2.3 | IN | FPGA IO bank supply. |
B16_VREF | JM3.56 | IN | FPGA IO bank reference voltage. |
VBAT_IN | JM1.79 | IN | FPGA back up supply. |
3.3V | JM2.10 / JM2.12 / JM2.91 | OUT | External IO supply. |
1) Direction:
IN: Input from the point of view of this board.
OUT: Output from the point of view of this board.
A good starting point into your own custom carrier board design can be the familiarisation with Trenz Electronic's Carrier designs for the this SoM. The Trenz 4 x 5 SoM Integration Guide and our FAQ - PCB Design hold valuable information.
See also AMD data sheet Kintex-7 FPGAs Data Sheet: DC and AC Switching Characteristics (DS182) for additional information.
Sequence | Net name | Recommended Voltage Range | Pull-up/down | Description | Notes |
|---|---|---|---|---|---|
| 0 | - | - | - | Configuration SoM signal setup. | |
| 1 | VIN 3.3VIN | 3.3 V - 5.5V (±5%) 3.3 V (±3 %) | - | Main supply. Management supply. | |
| 2 | EN1 | 3.3 V (± 5 %) 2) | PU 1), 3.3 V | SoM power enable. | |
| 3 | PGOOD | 3.3 V | - 1), 2) | Signals to carrier all voltage rails are active. | |
| 4 | VCCIO12 VCCIO13 VCCIO15 VCCIO16 | 1.2 V - 3.3 V (±3 %) 1.2 V - 3.3 V (±3 %) 1.2 V - 3.3 V (±3 %) 1.2 V - 3.3 V (±3 %) | - - - - | When PGOOD is high (3.3V), enable SoC IO bank supplies. |
1) (on module)
2) Firmware dependent. Refer to TE0741 CPLD Firmware / TE0741 CPLD for further information.
Refer to Trenz 4 x 5 SoM Integration Guide, FAQ - PCB Design and AMD data sheet Kintex-7 FPGAs Data Sheet: DC and AC Switching Characteristics (DS182) for more 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 | SoM main supply. | -0.3 | 7 | V |
3.3VIN | SoM management supply. | -0.3 | 3.6 | V |
VCCIO12 | FPGA IO bank supply. | –0.5 | 3.6 | V |
VCCIO13 | FPGA IO bank supply. | –0.5 | 3.6 | V |
VCCIO15 | FPGA IO bank supply. | –0.5 | 3.6 | V |
VCCIO16 | FPGA IO bank supply. | –0.5 | 3.6 | V |
VBAT_IN | Memory backup supply. | –0.5 | 2.0 | 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.
Trenz Electronic classifies modules into temperature range categories by subsumption of its component data (PCB, ICs, connectors, passive components). The temperature ranges are values for ambient air temperature and do not reflect the junction temperature of individual components.
The categories are:
Modules with commercial (C) temperature grade are equipped with components that cover at least the ambient temperature range of 0 °C to 70 °C.
Modules with extended (E) temperature grade are equipped with components that cover at least the ambient temperature range of 0 °C to 85 °C.
Modules with industrial (I) temperature grade are equipped with components that cover at least the ambient temperature range of -40 °C to 85 °C.
These categories do not take into account the entire custom system consisting of:
Customer SoC design. The allowed main SoC temperature range is specified from the vendor by junction temperature using corresponding classes (C, E, I). See vendor documentation.
Cooling solution, active and or passive cooling.
Climate or environmental conditions besides ambient temperature range.
Module orientation, neighbouring assemblies, neither other heat sources nor the SoC as heat source to other components.
Classification of the module can be locked up here: Article Number Information i.e.: TExxxx-xx-xx'I'xx, the 'I' indicates that all components are at least in Industrial temperature class.
The temperature of individual components should not exceed the specified range due to self-heating or heating by adjacent components. The actual operating temperature range will depend on the customer design, usage, environment and cooling solution. Consult Cooling Solutions for more information.
The following table aims to be generic for all variants. The voltage ranges are consistent across assembly variants, but exceptions are possible (custom request).
Parameter | Min | Max | Unit | Reference Document |
|---|---|---|---|---|
VIN | 3.135 | 5.775 | V | Refer to schematic. |
3.3VIN | 3.201 | 3.399 | V | Refer to schematic. |
VCCIO12 | 1.164 | 3.399 | V | Refer to DS182 datasheet. |
VCCIO13 | 1.164 | 3.399 | V | Refer to DS182 datasheet. |
VCCIO15 | 1.164 | 3.399 | V | Refer to DS182 datasheet. |
VCCIO16 | 1.164 | 3.399 | V | Refer to DS182 datasheet. |
VBAT_IN | 1.067 | 1.854 | V | Refer to DS182 datasheet. |
Module size: 40 mm × 50 mm. Please download the assembly diagram for exact numbers.
Mating height with standard connectors: 8 mm.
All dimensions are shown in millimeters.
Trenz shop TE0741 overview 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 |
|---|---|---|---|
2023-05 | REV05 |
| |
| 2021-11 | REV04 |
| |
| 2017-10 | REV03 |
| |
| 2014-06 | REV02 | ||
| 2013-11 | REV01 | Initial release |
| Date | Revision | Contributors | Description |
|---|---|---|---|
| |||
2020-03-06 | v.65 | John Hartfiel |
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| 2018-08-29 | v.64 | John Hartfiel |
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2017-11-10 | v.63 | John Hartfiel |
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| 2017-08-28 | v.60 | Jan Kumann |
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| 2017-07-20 | v.57 | John Hartfiel |
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| 2017-06-07 | v.55 | Jan Kumann |
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| 2017-06-02 | v.50 | Jan Kumann |
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| 2017-01-22 | v.42 | Jan Kumann |
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| 2017-01-13 | v.38 | Jan Kumann |
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| 2017-01-12 | v.21 | John Hartfiel |
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| 2016-12-14 | v.19 | Ali Naseri |
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| 2013-12-02 | v.1 | Antti Lukats, Jon Bean |
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