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Overview

The Trenz Electronic TEB2000 carrier board provides functionality for development, evaluation and testing purposes of Trenz 4 x 5 cm SoMs (System on Module).

The carrier board is equipped with a broad range of various components and connectors for different configuration setups and needs. On-module functional components and multipurpose I/Os of the SoM's PL and PS logic are connected via board-to-board connectors to the carrier board components and connectors for easy user access.

See page "4 x 5 SoM Carriers" for more information about the SoM's supported by the TE0703 Carrier Board.

Refer to http://trenz.org/teb2000-info (Links is correct, url should be redirect to Resources Page, but is not) for the latest online version of this manual and other available documentation.

Key Features

  • On Board:
    • System Controller (SC) (LCMXO2-1200HC-4TG144I1))
    • Mini USB for JTAG and UART connection (FTDI FT2232H), compatible with AMD and other vendor development tools
    • Mini USB second UART connection (FTDI FT230XQ)
    • SDIO port expander
    • 4 x User LEDs
      • D1 and D2 are connected to the SC, their function depends on the firmware
      • D3 and D4 are connected to the SC and the 4 x 5 SoM and can be directly controlled by it
    • 2 x User push button
      • Connected to the SC, the fuction is firmware depend
      • Currently used for Hard and Soft -Reset
    • 4 User DIP switches
      • Enable/disable update of the SC
      • MIO0 (readable signal by SC and SoM)
      • 2 "mode" bits
  • Interface:
    • Trenz 4 x 5 SoM socket
      • 3 x Samtec LSHM series high-speed connectors
    • Micro SD card connector
    • 2 x VG96 backplane connectors (mounting holes and solder pads)
    • Mini or Normal USB for SoM USB-OTG connection 1)
    • RJ45 GbE connector
  • Power:
    • Overvoltage-, undervoltage- and reversed- supply-voltage-protection
    • Barrel jack for 5V power supply input
  • Dimension:
    • 100 mm x 64.5 mm
  • Notes
    • 1) Depends on assembly variant

Block Diagram

TExxxx block diagram

Main Components

TExxxx main components
  1. System Controller (SC) CPLD, U5
  2. USB-to-JTAG/UART-FTDI, U4, U12
  3. UART LEVEL Shifter, U8
  4. SDIO Port Expander, U2
  5. I²C Repeater, U7
  6. Power Input Protection, U11
  7. DCDC, U3
  8. USB Power Supply Switch, U1
  9. Reset / Push button, S1, S6
  10. 4x Dip Switches, S2
  11. ULED1 D1 (red), D2 (green)
  12. FLED1 con to SC PL9A, D3 (red), D4 (green)
  13. Ethernet jack, J14
  14. Samtec Razor Beam™ LSHM-150/130 B2B connector, JB1, JB2, JB3
  15. Footprint for VG96 Connector / VG96 Connector, J1, J2
  16. +5V power jack, J13
  17. microSD Card Socket, J3
  18. Bank IO Voltages jumper, J5, J8, J9, J10
  19. Mini USB Type B jack, J4 (FT2232H), J21 (FT230XQ)
  20. USB Host Connector, either a USB A jack, J6  or a Micro USB, J12

Initial Delivery State

Storage device name

Content

Notes

EEPROMPreprogrammed with AMD programmer license

Do not overwrite!

System Controller CPLDPreprogrammed
with SC CPLD Firmware
The Firmware sources are available for modification to your needs.
Visit TE0703 Firmware for further information.
Initial delivery state of programmable devices on the module

The carrier is shipped in the following configuration:

  • VCCIO -A/B/C/D voltage selection jumpers are all set to 1.8 V.
  • SD IO Voltage jumper J11 is set to 1.8 V.
  • VBat jumper J7 is set to gnd.
  • Switch S1 configured as reset button in CPLD.
  • The Base Board is shipped with two VG96 backplane connectors, which are not soldered.
  • S2 DIP switches are configured as follows:
    SwitchPositionSignal nameDescription
    S2-1OFFCM1

    PGOOD signal active state set to high.

    S2-2ONCM0

    FPGA access to SoM.

    See TE0703 Firmware section "JTAG" for access options.

    S2-3

    ONJTAGEN
    S2-4ONMIO0Boot source set to SD Card.
    See TE0703 Firmware section "Boot Mode" for access options.

Signals, Interfaces and Pins

Connectors

Connector TypeDesignator

ConnectionEndpointInterfaceIO CNTNotes
VG96J1JB1IO

48 SE / 24 DIFF

To SoM via JB1
3x 2.54 mm Pin HeaderJ7JB1Battery Voltage1To SoM via JB1.
1.2 to 1.5 Volt
RJ-45 Ethernet
J14JB1Ethernet8Gbit capable, Phy MDI to SoM, LEDs  to SC
VG96J2JB2IO48 SE / 24 DIFFTo SoM via JB2
VG96J2JB2IO18 SE / 9 DIFFTo SoM via JB2
VG96J1JB3IO36 SE / 18 DIFFTo SoM via JB3
Micro USB
Type A/B
or
USB Type A
Exclusive J6 or J12JB3USB 2.0 OTG3To SoM, Data ± and ID. Only on USB jack possible
VG96J2SCIO18To SC X0 unto X17
B2BJB2SCJTAG4To SC
B2BJB2SCReset, RESIN1To SC
Mini USB Type BJ4SCUSB 2.02To Carrier FTDI
Mini USB Type BJ21SCUSB 2.02To Carrier FTDI
B2BJB1SCUART2UART to SoM for application
B2BJB1SCUART2UART to SoM for HSS/System Boot 
microSD Card socketJ3SC or SoMSD6
VG96J1SoM and SCI²C2To SoM via JB1and SC
Board Connectors


Test Points

Test PointSignalDirection 1)Notes
TP15VININCarrier supply voltage
TP25VININCarrier supply voltage
TP3VININCarrier supply voltage after protection circuit
TP4VININCarrier supply voltage after protection circuit
TP53.3VOUTCarrier generated
TP63.3VOUTCarrier generated
TP7VCCIOAINIO Voltage, generted by SoM
TP8VCCIOAINIO Voltage, generted by SoM
TP9VCCIOBINIO Voltage, generted by SoM
TP10VCCIOBINIO Voltage, generted by SoM
TP11VCCIOCINIO Voltage, generted by SoM
TP12VCCIOCINIO Voltage, generted by SoM
TP13VCCIODINIO Voltage, generted by SoM
TP14VCCIODINIO Voltage, generted by SoM
TP15M1.8VOUTINIO Voltage, generted by SoM
TP16M1.8VOUTINIO Voltage, generted by SoM
TP17M3.3VOUTINIO Voltage, generted by SoM
TP18M3.3VOUTINIO Voltage, generted by SoM
TP19UART_VBUSINCarrier USB Bus Voltage
TP20UART_VBUSINCarrier USB Bus Voltage
TP21VCCJTAGINJTAG Reference Voltage generated, by the SoM
TP22VCCJTAGINJTAG Reference Voltage generated, by the SoM
TP233.3V_SDOUTCarrier microSD card Voltage
TP243.3V_SDOUTCarrier microSD card Voltage
TP25USB-VBUS_ROUTCarrier USB Bus Voltage
TP26USB-VBUS_ROUTCarrier USB Bus Voltage
TP27ETH-VCCIN
TP28ETH-VCCIN
TP29VbusINExternal/FTDI USB Bus Voltage
TP30VbusINExternal/FTDI USB Bus Voltage
TP31CM1IN


DIP Switches

TP32CM0IN
TP33MIO0IN
TP34JTAGENIN

1) Direction:

    • IN: Input from the point of view of this board.
    • OUT: Output from the point of view of this board.
Test Points Information

On-board Peripherals

Chip/InterfaceDesignatorConnected ToNotes

System Controller

U5
  • SoM
  • FTDI
  • JB1 B2B connector
    UART, 6x MIO, 5x Config signals
  • JB2 B2B connector
    JTAG, RESIN and 18 IOs
  • SD Port Expander
    Channel B1, Channel Select, SD Interrupt
  • Push button S1
  • DIP Switch S2
  • All LEDs
The Firmware sources are available for modification to your needs.
Visit TEB2000 CPLD Firmware for further information.

FTDI FT2232H

U4
  • SC
  • J4
UART for Application

EEPROM

U10
  • FTDI

Preprogrammed with AMD programmer license.

Do not overwrite!

FTDI FT230XQ

U12
  • SC
  • J21

UART for HSS/System Boot

Oscillator

U6
  • U4 FTDI

12 MHz

SD IO Port Expander

U2
  • SC
  • Via JB1 B2B connector to SoM
  • microSD Card J3

On board peripherals

Configuration and System Control Signals

Physical defined Signals

Connector.Pin

Signal Name

Endpoint

Direction1)Description
S1.2 / S1.4S1SC.BANK-0.114IN

Reset push button.

Functions are firmware dependant.
Visit TE0703 CPLD - CC703S for further information.

S6.2 / S2.4SRSTJB3.56OUT

Soft reset push button for SoM.

S2.1CM1SC.BANK-1.75IN


S2.2CM0SC.BANK-1.76IN


S2.3JTAGENSC.BANK-0.120IN


S2.4MIO0JB1.88IN


J5.2VCCIOAJB1.10 / JB1.12 / J1B.VCCIOAINOUT
J8.2VCCIOBJB2.2 / JB2.4 / J1B.VCCIOBINOUT
J9.2VCCIOCJB2.6 / J2B.VCCIOCINOUT
J10.2VCCIODJB2.8 / JB2.10 / J2B.VCCIODINOUT

J3.9

SD_CDSC.Bank-1.93INSD Card socket Interrupt Signal
Software defined Signals

Connector.Pin

Signal Name

Endpoint

Direction1)Description
JB3.54VBUS_V_ENU1.4INEnable from SoM
JB3.56USB-VBUSU1.8 → R5 (12K) → JB3.56OUTSignal to SoM
U1.5USB_OCSC.BANK-1.73INSignal to SC
JB2.17RESINSC.BANK-0.119INOUTBetween SoM and SC
JB1.27EN1SC.BANK-1.81INOUTBetween SoM and SC
JB1.29PGOODSC.BANK-1.82INOUTBetween SoM and SC
JB1.31MODESC.BANK-1.83INOUTBetween SoM and SC
JB1.8NOSEQSC.BANK-1.78INOUTBetween SoM and SC
JB1.90PROGMODESC.BANK-1.104INOUTBetween SoM and SC
JB1.91 / JB1.86MIO14 / MIO15To SC.Bank-1.105 / SC.Bank-1.95INOUTUART to SoM 
JB1.100 / 98MIO12 / MIO13To SC.Bank-1.100 / SC.Bank-1.99INOUTSecond UART to SoM 
J1A.MIO10-SCL / J1A.MIO11-SDAMIO10-SCL / MIO10
MIO10-SDA / MIO11

JB1.96 / SC.Bank-1.MIO10
JB1.94 / SC.Bank-1.MIO11

INOUTI2C with 5.1 kOhm pull-up resistors.
To SoM and SC

1) Direction:

    • IN: Input from the point of view of this board.
    • OUT: Output from the point of view of this board.
Controller signal.

Power and Power-On Sequence


Power Rails

Power Rail Name/ Schematic NameConnector + PinDirection1)Notes
5VIN J13.1IN
5VIN J2A.5VIN OUT
3.3VJ1C.3.3V / J2C.3.3V /
JB1.2 /  JB1.4/  JB1.6/  JB1.14/  JB1.16 /
JB2.1 / JB2.3 / JB2.5 / JB2.7
OUT
USB-VBUSJ6.1 / J12.1 / JB3.56OUT




M1.8VOUT

JB1.40 / J11.1INFrom SoM

M1.8VOUT

J5.3 / J8.3 / J9.3 / J10.3 /
J11.1
OUT

M3.3VOUT

JB2.9 / JB2.11INFrom SoM

M3.3VOUT

J5.1 / J8.1 / J9.1 / J10.1 /
J1C.M3.3VOUT / J2C.M3.3VOUT;
OUT

VCCJTAG

JB2.92INFrom SoM

ETH-VCC

JB1.13INFrom SoM
VCCIOAJB1.10 / JB1.12INAMD SoM abhängig
VCCIOAJ5.2 / J1B.VCCIOAOUTUse jumper J5  to select between M1.8VOUT or M3.3VOUT.
VCCIOBJB2.2 / JB2.4INAMD SoM abhängig
VCCIOBJ8.2 / J1B.VCCIOBOUTUse jumper J8  to select between M1.8VOUT or M3.3VOUT.
VCCIOCJB2.6INAMD SoM abhängig
VCCIOCJ9.2 / J2.VCCIOCOUTUse jumper J9  to select between M1.8VOUT or M3.3VOUT.
VCCIODJB2.8 / JB2.10INAMD SoM abhängig
VCCIODJ10.2 /  J2.VCCIODOUTUse jumper J10  to select between M1.8VOUT or M3.3VOUT.

1) Direction:

    • IN: Input from the point of view of this board.
    • OUT: Output from the point of view of this board.
Module power rails.

Recommended Power up Sequencing


SequenceNet nameRecommended Voltage RangePull-up/down

Description

Notes
0---Configuration signal setup.See Configuration and System Control Signals.
15VIN5V (± 5 %)-Main Power supply via J13 Barrel Plug 2.1 mm.

Carrier and SoM power supply.
Minimal 1 A, maximal 4A. 

Power consumption depends mainly on design and cooling solution.

2M3.3VOUT
(JB2, 9, 11)
3.3 V (± 3 %) Schematic-

SoM generated voltage, 
which signals operational readyness of the SoM.


3---Apply voltages to Carrier powered external IO 
when voltages under point 2 are present.

Baseboard Design Hints

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 *)

Power Rail / Schematic NameDescriptionMinMaxUnitNotes
5VIN

Carrier supply voltage rail before the input voltage protection activates.

0

12

VVoltages in the range 4.06 to 5.58 V will trigger the input protection.
VCCIOA

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

--VVoltage intended to be supplied by either M1.8VOUT or M3.3VOUT.
VCCIOB

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

--VVoltage intended to be supplied by either M1.8VOUT or M3.3VOUT.
VCCIOC

Supplies SC IO Bank 2. Connects the external VG96 IO to the SoM and the Carrier SC.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

-0.53.75V

Limited by Absolute Maximum Values of the Sc.

VCCIOD

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

--VVoltage intended to be supplied by either M1.8VOUT or M3.3VOUT.
M1.8VOUT

SoM supplied voltage.

Range based on Carrier (± 3 %). Consult SoM requirements.


-0.3M3.3VOUT +0.3 VV

Voltage limited by Q1/MP5077GG-Z Enabled Pin.

 –0.3V to Vcc +0.3 V
(M3.3VOUT-max = 4.6)

Connected SD cards might be destroyed above 1.95 V.

M3.3VOUT

SoM supplied voltage.

Range based on Carrier (± 3 %). Consult SoM requirements.

-0.54.6V

Limited by U2/TXS02612RTWR.

Connected SD cards might be destroyed above 3.6 V.

VCCJTAG

Supplies SC IO Bank 3.

JTAG Reference Voltage from SoM. Consult SoM documentation.

-0.53.75V
ETH-VCCETH Bias Voltage from SoM.
Consult SoM documentation.
--V
Absolute maximum ratings

*) Stresses beyond those listed under TEB2000 TRM - New Carrier-Board 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 TEB2000 TRM - New Carrier-Board. Exposure to absolute-maximum rated conditions for extended periods may affect device reliability.

Recommended Operating Conditions

Temperature Range:

This carrier board is capable to be operated at industrial grade temperatures.

  • Modules with industrial temperature grade are equipped with components that cover at least the range of -40°C to 85°C

Please check the operating temperature range of the mounted SoM and peripheral devices, which determines the operating temperature range of the overall system.

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

Voltage Rails:


Power Rail / Schematic NameDescriptionMinMaxUnitNotes
5VIN

Carrier supply voltage rail before the input voltage protection activates.

4.755.25VTolerance is ±5 %.
VCCIOA

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

1.75

3.4

V

Voltage intended to be supplied by either M1.8VOUT or M3.3VOUT.

VCCIOB

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

1.753.4V

Voltage intended to be supplied by either M1.8VOUT or M3.3VOUT.

VCCIOC

Supplies SC IO Bank 2. Connects the external VG96 IO to the SoM and the Carrier SC.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

1.2

3.4

V

Voltage intended to be supplied by either M1.8VOUT or M3.3VOUT.

VCCIOD

Intended as Supply Voltage for a SoM IO Bank. Connects the external VG96 IO to the SoM.

Dependent on Carrier and SoM combination, their settings and your external IO devices connected to VG96.

1.753.4V

Voltage intended to be supplied by either M1.8VOUT or M3.3VOUT.

M1.8VOUT

SoM supplied voltage.
Range based on Carrier (± 3 %). Consult SoM requirements.


1.751.85V

Tolerance is ±3 %.

M3.3VOUT

SoM supplied voltage.

Range based on Carrier. Consult SoM requirements.

3.23.4VTolerance is ±3 %.


VCCJTAG

Supplies SC IO Bank 3.

JTAG Reference Voltage from SoM. Consult SoM documentation.

1.23.3VValues from Schematic.
ETH-VCCETH Bias Voltage from SoM.
Consult SoM documentation.
--V
Recommended operating conditions.


Physical Dimensions

  • Carrier size: 100 mm x 64.5 mm. 
    Note that few parts are slightly hanging over the PCB edge. Please download the assembly diagram for exact numbers.

  • Mating height with standard connectors: 8 mm. 

    PCB thickness: 1.64  mm ± 10 %.

Physical Dimension

Currently Offered Variants 

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

Revision History

Hardware Revision History

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

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

Board hardware revision number.


DateRevisionChangesPCN LinkDocumentation Link
2023-10-01Initial Revision


Hardware Revision History

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

Document Change History

DateRevisionContributorDescription

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  • <add TRM change list here>


01



--

all

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  • --
Document change history.

Disclaimer

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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.

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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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