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some sources available on public doc TEBT0808 TRM

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Template Revision 2.5

  • 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

Table of Contents

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The Trenz Electronic TEBT0808 -01 is a testboard test fixture for module TE0808(REV 02 and 03) as well as for TE0803 (REV 01)REV02, REV03) and TE0803(REV01) series.

Refer to http://trenz.org/tebt0808-info for the current online version of this manual and other available documentation.

...

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Note:
Use 'Key Features' description in shoping page, for example: https://shop.trenz-electronic.de/de/TE0728-04-1Q-SoC-Micromodul-mit-Xilinx-Automotive-Zynq-7020-512-MByte-DDR3L-6-x-6-cm

  • Modules
    • TE0808, TE0803
  • On Board
    • Done/Error/Status LEDs
    • MEMS Oscillator 125.00 MHz
    • Boot Mode DIP-Switch
    • 2x DIP-Switches to control TE080x power domains
  • Interface
    • Pin
  • Accepts TE0808 / TE0803
  • Single 3.3V input
    • Header for TE0790 JTAG/UART Adapter
    20 Pin
    • ARM JTAG header
    (connected to MIO JTAG 0)
    10
    • Pin
    I2C header for Silabs Clock Builder Field ProgrammerDone, Error/Status LEDs
    • Header for I2C
    • Board to Board (B2B) Connectors
    • One PL GT with 4x SMA
    connectors
    • Connectors
    • One PS GT with
    SMA connectors
  • GT local loopback
  • PL I/O loopbacks
  • PS I/O loopbacks
  • Boot Mode switches
  • Power control switches to control TE0808 power domains
    • 4x SMA Connectors
    • One pre-assembled TE0790 XMOD FTDI JTAG adapter

Supported Bootmodes are SPI and JTAG.

  • Power:
    • 3.3 V (Nominal Supply Voltage)
  • Dimension: 90mm x 90mm

Block Diagram

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Note

For more information regarding how to draw a diagram, Please refer to "Diagram Drawing Guidline" .


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titleTEBT0808 block diagramBlock Diagram


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Main Components

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titleTEBT0808 main componentsMain Components


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  1. Uninsulated 2 mm rigid socket. J8-J7Power Jack. J7-J8
  2. SMA Coaxial straight. J6- J9...15
  3. Surface Mount Schottky Barrier Rectifier. D1
  4. ARM PJTAG Pin Header J16
  5. I2C Pin Header, J5Box Headers, Straight/Angled J5-J16
  6. Board to Board ConnectorConnectors. J1...4
  7. Clock MEMS Oscillator, U2
  8. On-Board LEDLEDs, D1D2...34
  9. DIP-Switch, S1...3
  10. XMOD JTAG Baseheader,  JX1

Initial Delivery State

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Notes :

Only components like EEPROM, QSPI flash and DDR3 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

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titleInitial delivery state of programmable devices on the module

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Storage device name

Content

Notes

-

-

-


Configuration Signals

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  • Overview of Boot Mode, Reset, Enables.

Boot mode can be set by DIP-Switch S1.

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titleBoot processProcess.

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titleReset process.
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Signal

B2BI/ONote

Signals, Interfaces and Pins

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Notes :

  • For carrier or stand-alone boards use subsection for every connector type (add designator on description, not on the subsection title), for example:
    • SD
    • USB
    • ETH
    • FMC
    • ...
  • For modules which needs carrier use only classes and refer to B2B connector if more than one is used, for example
    • JTAG
    • UART
    • I2C
    • MGT
    • ...

Board to Board (B2B) I/Os

FPGA bank number and number of I/O signals connected to the B2B connector:

...

anchorTable_SIP_B2B
titleGeneral PL I/O to B2B connectors information

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JTAG access to the TExxxx SoM through B2B connector JMX.

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anchorTable_SIP_JTG
titleJTAG pins connection

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JTAG Signal

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B2B Connector

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MIO Pins

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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:

...

SPI_CS , SPI_DQ0... SPI_DQ3

SPI_SCK

...

anchorTable_OBP_MIOs
titleMIOs pins

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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

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anchorTable_OBP
titleOn board peripherals

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Quad SPI Flash Memory

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Notes :

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M3M2M1M0BootmodeBootmodeNotes
ONONONON0b0000PS Main JTAG (TE0790 USB JTAG)DIPs are inverted
ONONOFFON0b0010SPI Flash (dual parallel, 4bit x 2, 32bit Addressing)DIPs are inverted
OFFONONON0b1000PJTAG(MIO29:26)DIPs are inverted



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titleReset Process.

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Signal

B2BNote

PLL_RST

J2-89
SRST_BJ2-96Connected to PJTAG0_SRST - J16


Signals, Interfaces and Pins

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Notes :

  • For carrier or stand-alone boards use subsection for every connector type (add designator on description, not on the subsection title), for example:
    • SD
    • USB
    • ETH
    • FMC
    • ...
  • For modules which needs carrier use only classes and refer to B2B connector if more than one is used, for example
    • JTAG
    • UART
    • I2C
    • MGT
    • ...

Board to Board (B2B) I/Os

TEBT0808 has four B2B Connectors and each connector has 160 pins. Number of I/O signals and Interfaces connected to the B2B connectors is as following table:

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B2B ConnectorInterfacesNumber of I/ONotes
J1

User I/O

46 Single Ended, 23 Differential

16 Single Ended, 8 Differential

16 Single Ended, 8 Differential

16 Single Ended, 8 Differential

4 Single Ended

IOs are Loop-Back

IOs are Loop-Back

IOs are Loop-Back

IOs are Loop-Back

PL_1V8

J2

User IO

28 Single Ended, 14 Differential

6 Single Ended, 3 Differential

IOs are Loop-Back

IOs are Loop-Back

Boot Mode 4 Single EndedMODE0...3
Control Signals25 Single Ended

PLL_SEL0, PLL_SEL1, PLL_RST, EN_GTR, EN_PL, PLL_LOLN, EN_PSGT, ERR_STATUS, ERR_OUT,SRST_B, INIT_B, PROG_B, EN_FPD , EN_LPD , DONE, EN_PLL_PWR, PLL_FINC ,PG_PLL_1V8, LP_GOOD, PG_DDR, PG_PL, PG_FPD, PG_PSGT, PG_GT_R, PG_GT_L

JTAG Interface7 Single EndedTCK, TDI, TMS, TDO, MR, Rxd, Txd
I22 Single EndedPLL_SCL, PLL_SDA
Clock

6 Single Ended, 3 Differential

CLK0, CLK7, CLK8

J3



User IO

24 Single Ended, 12 Differential

24 Single Ended, 12 Differential

Connected to Module FPGA, Bank 48

Connected to Module FPGA, Bank 47

Clock6 Single Ended, 3 DifferentialCLK228, CLK229, CLK230
PJTAG Interface4 Single EndedPJTAG0_TCK, PJTAG0_TDI, PJTAG0_TMS, PJTAG0_TDO,
MIO45 Single EndedMIO13..77
UART2 Single EndedTXD, RXD
Power Control Signals4 Single EndedPS_1V8, SI_PLL_1V8, VCCO_48, VCCO_47, PLL_3V3
J4User I/O

48 Single Ended, 24 Differential

48 Single Ended, 24 Differential

4 Single Ended

4 Single Ended

IOs are Loop-Back

IOs are Loop-Back

B64_T0...3

B65_T0...3

Power pins4 Single EndedVCCO_64, VCCO65


SMA Coaxial Connectors

TEBT0808 is equipped with 8 SMD Coaxial Connectors. 

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titleQuad SPI interface MIOs and pinsSMD Coaxial Connectors

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MIO Pin
Designator Schematic
U?? Pin
B2B ConnectorNotes

...

anchorTable_OBP_RTC
titleI2C interface MIOs and pins
J6B230_TX3_PJ1
J9B230_RX3_NJ1
J10B230_RX3_PJ1
J11B230_TX3_PJ1
J12B505_TX0_NJ2
J13B5050TX0_PJ2
J14B505_RX0_NJ2
J15B505_RX0_PJ2


XMOD JTAG

JTAG access to the TEBT080X  is available through B2B connector JB2 using XMOD adapter TE0790.

...

Designator
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titleI2C Address for RTCJTAG Pins Connection

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JTAG Signal

B2B Connector

MIO PinI2C Address

Notes

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scrolltitle
TMS
J2-
126
anchorTable_OBP_EEP
titleI2C EEPROM interface MIOs and pins
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MIO PinSchematicU?? PinNotes

TDIJ2- 122
TDOJ2- 124
TCKJ2- 120


The voltages 3.3V (VCC) and VIO (variable SC CPLD I/O-voltage) on TE0790 can be configured by the DIP-switch S2 which must be set as following. 

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title Xmod Adapter DIP-Switch Setting Description
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titleI2C address for EEPROM

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MIO PinI2C AddressDesignatorNotes

LEDs

DIP Switch,S2DefaultDescription
1ONUpdate Mode JTAG access to SC CPLD only
2OFFMust be always in OFF state.
3OFFVIO is supplied from Module
4OFF3.3V is supplied by the carrier TEBT0808


PJTAG

PJTAG access to the TEBT0808  is available through B2B connector JB3.

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titleOn-board LEDsPJTAG Pins Connection

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Schematic

JTAG Signal

ColorConnected toActive LevelNote

DDR3 SDRAM

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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

B2B Connector

Notes
PJTAG_TMSJ3- 94
PJTAG_TDIJ3- 90
PJTAG_TDOJ3- 92
PJTAG_TCKJ3- 88
PJTAG_SRSTJ2- 96Connected to SRST_B


Pin header

The I2C signals can be accessed through pin header J5.

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titleEthernet PHY to Zynq SoC connectionsI2C Connections

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Bank

Signals

Signal NameETH1ETH2Signal Description

...

B2B Connector

Pin HeaderNotes
PLL_SCLJ2- 90J5- 3
PLL_SDAJ2- 92J5- 7


Test Points

U?? Pin
Scroll Title
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titleCAN Tranciever interface MIOsTest Points Information

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Bank

Test Point

Schematic
Signals

B2B Connector

Notes
D-TxDriver InputR-RxReciever Output

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anchorTable_OBP_CLK
titleOsillators

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Power and Power-On Sequence

...

hiddentrue
idComments

In 'Power and Power-on Sequence' section there are three important digrams which must be drawn:

  • Power on-sequence
  • Power distribution
  • Voltage monitoring circuit
Note

For more information regarding how to draw diagram, Please refer to "Diagram Drawing Guidline" .

TP 1DDR_1V2J2-135
TP 2PG_PSGTJ2-82
TP 3ERR_STATUSJ2-86
TP 4PLL_FDECJ2-94
TP 5EN_LPDJ2-108
TP 6EN_DDRJ2-112
TP 7PG_PLJ2-104
TP 8PG_PLL_1V8J2-80
TP 9N_PSGTJ2-84
TP 10ERR_OUTJ2-88
TP 11EN_FPDJ2-102
TP 12LP_GOODJ2-106
TP 13PG_FPDJ2-110
TP 14PG_DDRJ2-114
TP 15EN_PLL_PWRJ2-77
TP 16PLL_FINCJ2-81
TP 17PG_GT_RJ2-91
TP 18EN_GT_RJ2-95
TP 19EN_PLJ2-101
TP 20EN_GT_LJ2-79
TP 21PLL_SEL0J2-93
TP 22PG_GT_LJ2-97
TP 23INIT_BJ2-98
TP 24IN1_PJ2-4
TP 25PLL_SEL1J2-87
TP 26PLL_LOLNJ2-85
TP 27PLL_RSTJ2-89
TP 28DX_PJ2-119
TP 29DX_NJ2-121
TP 30IN1_NJ2-6
TP 31B505_CLK0_PJ2-10
TP 32B505_CLK0_NJ2-12
TP 33B505_CLK1_PJ2-16
TP 34B505_CLK1_NJ2-18
TP 35B128_CLK1_PJ2-22
TP 36B128_CLK1_NJ2-24
TP 37CLK0_NJ2-1
TP 38CLK0_PJ2-3
TP 39CLK8_PJ2-7
TP 40CLK8_NJ2-9
TP 41CLK7_PJ2-13
TP 42CLK7_NJ2-15
TP 43IN2_PJ3-66
TP 44IN2_NJ3-68
TP 45B230_CLK1_NJ3-59
TP 46B230_CLK1_PJ3-61
TP 47B229_CLK0_NJ3-65
TP 48B229_CLK0_PJ3-67
TP 49PLL_3V3J3-152
TP 50GNDJ3-155
TP 51PL_1V8J1-121
TP 52PS_1V8J3-147
TP 53SI_PLL_1V8J3-151
TP 54PROG_BJ2-100
TP 55...56GND-


On-board Peripherals

Power Supply

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

Power Consumption

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anchorTable_PWR_PC
titlePower Consumption

...

* TBD - To Be Determined

Power Distribution Dependencies

...

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titlePower Distribution
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Power-On Sequence

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anchorFigure_PWR_PS
titlePower Sequency
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Voltage Monitor Circuit

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titleVoltage Monitor Circuit
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Power Rails

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anchorTable_PWR_PR
titleModule power rails.

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B2B Connector

JM1 Pin

...

B2B Connector

JM2 Pin

...

B2B Connector

JM3 Pin

...

Bank Voltages

...

anchorTable_PWR_BV
titleZynq SoC bank voltages.

...

Bank          

...

Voltage

...

  • 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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    Include Page
    PD:6 x 6 SoM LSHM B2B ConnectorsPD:6 x 6 SoM LSHM B2B Connectors

    ? 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

    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


    Scroll Title
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    titleOn Board Peripherals
    Scroll Title
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    titlePS absolute maximum ratings

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    Symbols
    Chip/Interface
    Description
    Designator
    Min
    Notes
    MaxUnitVVVVVVVV

    Recommended Operating Conditions

    ...

    DIP SwitchS1...3
    LEDsD2...4Red LEDs
    OscillatorU2125.00 MHz


    DIP Switch

    There are three DIP Switches, S1, S2, S3.

    The Boot Mode can be set through DIP Switch S1, refer to BootMode table.

    Scroll Title
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    titleDIP Switch S1

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    DIP Switch S1Signals

    B2B

    Notes
    S1AMODE0J2-109
    S1BMODE1J2-107
    S1CMODE2J2-105
    S1DMODE3J2-103


    Control signals must be set using DIP Switch S2, S3.

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    titleDIP Switch S2

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    DIP Switch S2SignalsB2BNotes
    S2AEN_PSGTJ2-84Position OFF enables power rail
    S2BEN_GT_RJ2-95Position OFF enables power rail
    S2CEN_GT_LJ2-97Position OFF enables power rail
    S2DEN_PLL_PWRJ2-77Position OFF enables power rail, connected to PG_PL



    Scroll Title
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    titleDIP Switch S3

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    DIP Switch S3SignalsB2BS3 switchNotes
    S3AEN_DDRJ2-112S3APosition OFF enables power rail
    S3BEN_LPDJ2-108S3BPosition OFF enables power rail
    S3CEN_PLJ2-101S3CPosition OFF enables power rail
    S3DEN_FPDJ2-102S3DPosition OFF enables power rail


    LEDs

    Scroll Title
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    titleOn-board LEDs

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    DesignatorColorConnected toActive LevelNote
    D2RedDONEActive HighNon User LED
    D3RedERR_STATUSActive HighNon User LED
    D4RedERR_OUTActive HighNon User LED


    Clock Sources

    Scroll Title
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    titleOsillators

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    DesignatorDescriptionFrequencyNote
    U2MEMS Oscillator125.00 MHz


    Power and Power-On Sequence

    Page properties
    hiddentrue
    idComments

    In 'Power and Power-on Sequence' section there are three important digrams which must be drawn:

    • Power on-sequence
    • Power distribution
    • Voltage monitoring circuit


    Note

    For more information regarding how to draw diagram, Please refer to "Diagram Drawing Guidline" .


    Power Supply

    Scroll Title
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    titlePower Consumption

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    2,0mm MC LB2Note
    J73.3V direct modules power supply
    J8GND


    Power Consumption

    Minimum current depends mainly on design and cooling solution. Use Xilinx Power Estimator and/or Your Vivado Project to estimate min current. Minimum of 3A are recommanded for basic functionality.

    Scroll Title
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    titlePower Consumption

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    Power Input PinTypical Current
    3.3VTBD*


    * TBD - To Be Determined

    Power Distribution Dependencies

    Input oower sourced directly the module, Only one Diode D1 is used for inverse polarity protection.

    Scroll Title
    anchorFigure_PWR_PD
    titlePower Distribution


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    Power Rails

    Scroll Title
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    titleModule power rails.

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    Power Rail Name

    B2B J1 PinsB2B J2 PinsB2B J3 Pins

    Directions

    Note
    PL_DCIN151, 153, 155, 157, 159--Output-
    DCDCIN

    -

    154, 156, 158, 160,
    153, 155, 157, 159

    -Output-
    LP_DCDC-138, 140, 142, 144-Output-
    PS_BATT-125-Output-
    GT_DCDC--157, 158, 159, 160Output-
    PLL_3V3--152Output-
    SI_PLL_1V8--151Input-
    PS_1V8-99147, 148Input-
    PL_1V891, 121--Input-
    DDR_1V2-135-Input-


    Board to Board Connectors

    Page properties
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    • 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

      Include Page
      6 x 6 SoM LSHM B2B Connectors
      6 x 6 SoM LSHM B2B Connectors

    Include Page
    5.2 x 7.6 UltraSoM+ ST5 and SS5 B2B Connectors
    5.2 x 7.6 UltraSoM+ ST5 and SS5 B2B Connectors

    Technical Specifications

    Absolute Maximum Ratings

    Scroll Title
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    titlePS absolute maximum ratings

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    SymbolsMinMaxUnitNote
    VIN-0.34V

    VIN is connected directly to module

    Storage Temperatur-40+85°CSee DIP Switch, CHS-04TA datasheet


    Recommended Operating Conditions

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

    Scroll Title
    anchorTable_TS_ROC
    titleRecommended operating conditions.

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    SymbolsMinMaxUnitNote
    VIN3,143.47VCheck also TRM of the connected module
    Operating Temperatur-40+85°C


    Physical Dimensions

    • Module size: 90 mm × 90 mm.  Please download the assembly diagram for exact numbers.

    • Mating height with standard connectors: 3.5 mm.

    PCB thickness: 1.6 mm.

    Page properties
    hiddentrue
    idComments

    In 'Physical Dimension' section, top and button view of moduloe must be insterted, information regarding physical dimention can be obtained through webpage for product in Shop.Trenz, (Download> Documents> Assembly part)for every SoM.

    For Example: for Module TE0728, Physical Dimension information can be captured by snipping tools from the link below:

    https://www.trenz-electronic.de/fileadmin/docs/Trenz_Electronic/Modules_and_Module_Carriers/5.2x7.6/TE0745/REV02/Documents/AD-TE0745-02-30-1I.PDF

    Note

    For more information regarding how to draw diagram, Please refer to "Diagram Drawing Guidline" .



    Scroll Title
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    titleRecommended operating conditions.Physical Dimension


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    ParameterMinMaxUnitsReference Document
    VSee ???? datasheets.VSee Xilinx ???? datasheet.VSee Xilinx ???? datasheet.VSee Xilinx ???? datasheet.VSee Xilinx ???? datasheet.VSee Xilinx ???? datasheet.VSee Xilinx ???? datasheet.°CSee Xilinx ???? datasheet.°CSee Xilinx ???? datasheet.

    Physical Dimensions

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

    • Mating height with standard connectors: ? mm.

    ...

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    Image Added


    Currently Offered Variants 

    For more information regarding how to draw diagram, Please refer to "Diagram Drawing Guidline" .
    Page properties
    hiddentrue
    idComments

    Set correct link to the shop page overview table of the product on English and German.

    Example for TE0728:

    ENG Page: https://shop.trenz-electronic.de/en/Products/Trenz-Electronic/TE07XX-Zynq-SoC/TE0728-Zynq-SoC/

    DEU Page: https://shop.trenz-electronic.de/de/Produkte/Trenz-Electronic/TE07XX-Zynq-SoC/TE0728-Zynq-SoC/

    if not available, set.

    In 'Physical Dimension' section, top and button view of moduloe must be insterted, information regarding physical dimention can be obtained through webpage for product in Shop.Trenz, (Download> Documents> Assembly part)for every SoM.

    For Example: for Module TE0728, Physical Dimension information can be captured by snipping tools from the link below:

    https://wwwfileadmindocs_Modules_and_Module_Carriers/5.2x7.6/TE0745/REV02/Documents/AD-TE0745-02-30-1I.PDF
    Note


    Scroll Title
    anchorFigureTable_TSVCP_PDSO
    titlePhysical DimensionTrenz Electronic Shop Overview

    scroll-

    ignore

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

    Scroll Only
    scroll-pdftrue
    scroll-officetrue
    scroll-chmtrue
    scroll-docbooktrue
    scroll-eclipsehelptrue
    scroll-epubtrue
    scroll-htmltrue

    image link to the generate DrawIO PNG file of this page. This is a workaround until scroll pdf export bug is fixed

    Currently Offered Variants 

    ...

    hiddentrue
    idComments

    Set correct link to the shop page overview table of the product on English and German.

    Example for TE0728:

    ENG Page: https://shop.trenz-electronic.de/en/Products/Trenz-Electronic/TE07XX-Zynq-SoC/TE0728-Zynq-SoC/

    DEU Page: https://shop.trenz-electronic.de/de/Produkte/Trenz-Electronic/TE07XX-Zynq-SoC/TE0728-Zynq-SoC/

    if not available, set.

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    sortByColumn1
    sortEnabledfalse
    cellHighlightingtrue

    Trenz shop TEBT0808 overview page
    English pageGerman page


    Revision History

    Hardware Revision History

    Scroll Title
    anchorTable_RH_HRH
    titleHardware Revision History

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    DateRevisionChangesDocumentation Link
    2016-05-3001Initial ReleaseREV01


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

    ...

    https://shop.trenz-electronic.de/de/Produkte/Trenz-Electronic/

    ...

    Scroll Title
    anchorTableFigure_VCPRV_SOHRN
    titleTrenz Electronic Shop Overview Board hardware revision number.


    scroll-
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    repeatTableHeadersdefault
    style
    ignore
    draw.io Diagram
    border
    widthssortByColumn1sortEnabled
    false
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    Trenz shop TE0728 overview pageEnglish pageGerman page

    Revision History

    Hardware Revision History

    -
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    revision1
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    Scroll Only
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    Image Added

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    DateRevisionNotePCN
    -


    Document Change History

    Page properties
    hiddentrue
    idComments
    • 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

    ...

    Scroll Title
    anchorTable_RH_DCH
    titleDocument change history.

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    DateRevisionContributorDescription

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    typeFlat

    Page info
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    typeFlat
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    Page info
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    typeFlat
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    change list

    • Updated block diagram
    2020-05-11v.54John Hartfiel
    • add notes to DIP section

    • Correction on configuration signal section
    2020-01-24v.49Pedram Babakhani
    • Initial Release

    --

    all

    Edit

    Page info
    infoTypeModified users
    typeFlat
    showVersionsfalse

    • --


    Disclaimer

    Include Page
    IN:Legal Notices
    IN:Legal Notices

    ...