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  1. 6-pin header J26 for selecting PL-bank I/O voltage
  2. 6-pin header J27 for selecting XMOD/JTAG VCCIO
  3. Samtec Razor Beam™ LSHM-150 B2B connector, JM1
  4. Samtec Razor Beam™ LSHM-150 B2B connector, JM2
  5. XMOD header, JX1
  6. Ultra small SMT coaxial connector, J5
  7. Ultra small SMT coaxial connector, J6
  8. Ultra small SMT coaxial connector, J7
  9. Ultra small SMT coaxial connector, J8
  10. User LED D1 (green)
  11. User LED D2 (red)
  12. LED D3 (red) indicating FPGA's 'Programming DONE'-signal
  13. SFP+ Connector, J1
  14. 10-pin header solder pads J4 for access to SoM's PL I/O-banks (LVDS - pairs possible)
  15. 16-pin header solder pads J3, JTAG/UART header ('XMOD FTDI JTAG Adapter'-compatible pin-assignment)
  16. 50-pin header solder pads J20 for access to SoM's PL I/O-banks (LVDS pairs possible)
  17. 50-pin header solder pads J17 for access to SoM's PL I/O-banks (LVDS pairs possible)

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Connector DesignatorConnected toB2B Connector
J5MGT_TX3_PJM1-8
J6MGT_TX3_NJM1-10
J7MGT_RX3_PJM1-1
J8MGT_RX3_NJM1-3

Table 24: Pin-assignment of the coaxial connectors.

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The I/O-voltage of the XMOD adapter board with the schematic name 'V_CFG' and pin-name 'VIO' (pin 6) on XMOD header JX1 can be selected via Jumper J27:

V_CFG Value

Jumper J27 SettingNote
1.8Vpins 1-2 connectedModule's output voltage.
V_CFG0pins 3-4 connectedInternal module
's
VCCIO: 3.3V or 1.8V, depending on TE0714 module configuration.
3.3V_OUTpins 5-6 connectedModule's output voltage.

Table 78: Setting of reference I/O-voltage XMOD header.

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Pin Schematic NameHeader J3 PinB2BNote
TCK4JM1-90-
TDO8JM1-88-
TDI10JM1-86-
TMS12JM1-92-
B14_L253JM2-97UART-TX (transmit line)
B14_L07JM2-99UART-RX (receive line)
BOOTMODE9JM2-100-
PROG_B11JM1-94-
XADC_P13JM1-25Analog input differential pair
XADC_N14JM1-27
CLK0_N15JM1-4AC decoupled on-board (100 nF capacitor)
CLK0_P16JM1-2

Table 89: JTAG/UART header J3 signals and connections.

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UART Signal Schematic NameB2BXMOD Header JX1Pin Header J3Note
B14_L0JM2-99JX1-7J3-7UART-RX (receive line)
B14_L25JM2-97JX1-3J3-3UART-TX (transmit line)

Table 610: UART interface signals.

QSPI Interface

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SD IO Signal Schematic NameB2BPin Header J17Note
SPI-DQOJM2-68J17-24QSPI data
SPI-DQ1JM2-71J17-27QSPI data
SPI-DQ2JM2-73J17-28QSPI data
SPI-DQ3JM2-70J17-23QSPI data
SPI-CLKJM2-67J17-26QSPI clock
SPI_CSJM2-69J17-25QSPI chip select

Table 711: QSPI interface signals.

On-board Peripherals

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The on-board LEDs are available to the user and can be used to indicate system status and activities:

LED DesignatorColorPin Schematic NameB2B ConnectorIndicating
D1greenGLEDJM2-26
available
Available to user.
D2redRLEDJM2-24
available
Available to user.
D3redDONEJM1-96FPGA
-modul
module programmed properly.

Figure 1112: On-board LEDs

VCCIO Selection Jumper

On the TEBB0714 Carrier Board the PL-bank I/O voltage (schematic name 'VCCIO34') can be selected by the jumper J26.

VCCIO34 Value

Jumper J26 SettingNote
1.8Vpins 1-2 connectedModule's output voltage.
2.5Vpins 3-4 connectedVoltage generated by on-board LDO U1.
3.3V_OUTpins 5-6 connectedModule's output voltage.

Table 1213: Base-board PL-bank I/O voltage setting.

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Following diagram shows the distribution of the external input voltage of nominal 3.3V to the components:


Figure 43: Board power distribution diagram.

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M18VOUT40JB2In9, 11
Module Connector (B2B) DesignatorVCC / VCCIODirectionPinsNotes
JB1JM1

3.3V

Out

2, 4, 6, 14, 1697, 99

3.3V module supply voltage
3.3V_OUTIn833.3V module output voltage
VCCIO34VCCIOAOut10, 1261PL IO-bank VCCIO
JM2

1.

8V

In

18

1.8V module output voltage
3.3V_OUTOut543.3V module output voltage
3.3VOut1, 3, 5, 73.3V module supply voltage
VCCIODOut8, 10PL IO-bank VCCIO
JB3USB-VBUSOut56USB Host supply voltage
V_CFG0In53Internal module VCCIO: 3.3V or 1.8V

Table 16: Power pin description of B2B module connector.

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On-board Pin Header DesignatorVCC / VCCIODirectionPinsNotes
J17

3.3V

In / Out

5, 4846

3.3V external supply voltage
VCCIODV_CFGIn / Out6, 45PL IO-bank VCCIO, depends on Jumper jumper 27 settings
J20

3.3V

In / Out

5, 4846

3.3V external supply voltage
VCCIOAVCCIO34In / Out6, 45PL IO-bank VCCIO, depends on Jumper settings

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VCCIOD2 4 6
Jumper / Header DesignatorVCC / VCCIODirectionPinsNotes
J26VCCIOAVCCIO34In21, 43, 65-
M11.8VOUT8VOut12-
2.5VOut34-
3.3V_OUTOut56-
J27V_CFGIn1, 3, 5-
M11.8VOUT8VOut12-2.5V
V_CFG0Out34-
3.3V_OUTOut5-
J43.3VOut5-
M1.8VOUTOut6-

Table 18: Power Pin description of VCCIO selection jumper pin header.

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Table 19: Power pin description of peripheral connector.

 connected connected
XMOD JTAG/UART Header DesignatorVCC / VCCIODirectionPinsNotes
JX1 (XMOD)3.3VOut5Connected to 3.3V external supply voltage
VIOOut6
VIOOut6Connected to 'V_CFG', depends on jumper 27 settings
J33.3VOut5Connected to 3.3V external supply voltage
3.3VV_CFGOut6VCCIO, depends on jumper 27 settings

Table 19Table 20: Power pin description of XMOD/JTAG Connector.

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ParameterMinMaxUnitsNotes

Vin supply voltage

3.135

3.465

V

3.3V supply-voltage ± 5%

Storage Temperature

-554010585

°C

Molex 74441-0001 Product SpecificationWL-SMCW SMD chip LED data sheet

Table 2120: Board absolute maximum ratings.

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 ParameterMinMaxUnitsNotes
Vin supply voltage3.1353.465V-
Operating temperature-40+85°CMolex 74441-0001 Product Specification

Table 2221: Module recommended operating conditions.

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Physical Dimensions

  • Board size:  PCB 56.47 mm ×  75 mm46mm ×  75mm. Notice that some parts the are hanging slightly over the edge of the PCB like the mini USB-jacks and the SFP+ connector, which determine the total physical dimensions of the carrier board. Please download the assembly diagram for exact numbers.

  • Mating height of the module with standard connectors: 8mm

  • PCB thickness: ca. 1.65mm

  • Highest part on the PCB is the SFP+ connector, which has an approximately 11.3 mm overall hight. Please download the step model for exact numbers.

 The dimensions are given in mm and mil (milli inch).

Image RemovedImage Added

Figure 54: Board physical dimensions drawing.

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DateRevision

Notes

PCNDocumentation Link
-

01

  • First Production Release
-TEBB0714-01

Table 2322: Module hardware revision history.


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

Image RemovedImage Added

Figure 65: Board hardware revision number.

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Date

Revision

Contributors

Description

Page info
modified-date
modified-date
dateFormatyyyy-MM-dd



Ali Naseri, Jan Kumann
  • First TRM release

Table 2423: Document change history.

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