PEB-A-002 (USB to Ethernet) Hardware Manual

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PEB-A-002 (USB to Ethernet) Hardware Manual Document No.: L-756e_1 SBC Prod. No.: PEB-A-002 SBC PCB. No.: 1345.0 First Edition A product of a PHYTEC Technology Holding company

PEB-A-002 In this manual are descriptions for copyrighted products that are not explicitly indicated as such. The absence of the trademark ( ) and copyright ( ) symbols does not imply that a product is not protected. Additionally, registered patents and trademarks are similarly not expressly indicated in this manual. The information in this document has been carefully checked and is believed to be entirely reliable. However, PHYTEC Messtechnik GmbH assumes no responsibility for any inaccuracies. PHYTEC Messtechnik GmbH neither gives any guarantee nor accepts any liability whatsoever for consequential damages resulting from the use of this manual or its associated product. PHYTEC Messtechnik GmbH reserves the right to alter the information contained herein without prior notification and accepts no responsibility for any damages which might result. Additionally, PHYTEC Messtechnik GmbH offers no guarantee nor accepts any liability for damages arising from the improper usage or improper installation of the hardware or software. PHYTEC Messtechnik GmbH further reserves the right to alter the layout and/or design of the hardware without prior notification and accepts no liability for doing so. Copyright 2011 PHYTEC Messtechnik GmbH, D-55129 Mainz. Rights - including those of translation, reprint, broadcast, photomechanical or similar reproduction and storage or processing in computer systems, in whole or in part - are reserved. No reproduction may occur without the express written consent from PHYTEC Messtechnik GmbH. Address: Ordering Information: Technical Support: EUROPE PHYTEC Technologie Holding AG Robert-Koch-Str. 39 D-55129 Mainz GERMANY +49 (800) 0749832 sales@phytec.de +49 (6131) 9221-31 support@phytec.de NORTH AMERICA PHYTEC America LLC 203 Parfitt Way SW, Suite G100 Bainbridge Island, WA 98110 USA 1 (800) 278-9913 sales@phytec.com 1 (800) 278-9913 support@phytec.com Fax: +49 (6131) 9221-33 1 (206) 780-9135 Web Site: http://www.phytec.de http://www.phytec.com 1 st Edition April 2011 PHYTEC Messtechnik GmbH 2011 L-756e_1

Contents List of Figures...ii List of Tables...ii Conventions, Abbreviations and Acronyms...iii Preface...v 1 Introduction...1 1.1 Block Diagram...3 1.2 View of the PEB-A-002... 4 2 Pin Description...5 2.1 Pinout of the Ethernet Interface (X2)... 5 2.2 Pinout of the Expansion Connector (X1)...6 3 Power... 7 4 Ethernet Interface... 9 4.1 MAC Address...9 5 Technical Specifications...11 6 Component Placement Diagram...13 7 Hints for Integrating and Handling the PHYTEC Extension Board...15 7.1 Integrating the PHYTEC Extension Board...15 7.2 Handling the PHYTEC Extension Board...15 8 The PEB-A-002 on the on the phybase...17 8.1 Overview of the phybase Peripherals...18 8.1.1 Connectors and Pin Header...19 8.1.2 Switches...20 8.1.3 Jumpers...20 8.1.4 LEDs...21 8.2 Functional Components on the phybase Board...22 8.2.1 Power Supply (X28)...22 8.2.2 Expansion connectors (X8A, X9A)...24 8.2.2.1 USB Host Connectivity...25 8.2.3 Ethernet Connectivity (X10)...27 9 Revision History...29 Index...31 PHYTEC Messtechnik GmbH 2011 L-756e_1 i

PEB-A-002 List of Figures Figure 1: Modular Concept of the phycard Development Kit family... 2 Figure 2: Block Diagram PEB-A-002... 3 Figure 3: View of the PEB-A-002... 4 Figure 4: Pin Assignment of the RJ45-Jack X2... 5 Figure 5: Physical Dimensions... 12 Figure 6: PEB-A-002 Component Placement, Top View... 13 Figure 7: phybase Overview of applicable Connectors, LEDs and Buttons... 18 Figure 8: Power adapter... 22 Figure 9: Expansion connector X8A, X9A... 24 Figure 10: Components supporting the USB host interface... 25 Figure 11: Ethernet interface at connector X10... 27 List of Tables Table 1: Abbreviations and Acronyms used in this Manual... iv Table 2: Pinout of the Expansion Connector X1... 6 Table 3: phybase Connectors and Pin Headers related to PEB-A-002... 19 Table 4: phybase push buttons descriptions... 20 Table 5: phybase LEDs descriptions... 21 Table 6: Power state LEDs... 23 Table 7: Distribution of the USB hub's (U4) ports... 26 Table 8: phybase LEDs descriptions... 26 ii PHYTEC Messtechnik GmbH 2011 L-756e_1

Preface Conventions, Abbreviations and Acronyms This hardware manual describes the PEB-A-002 PHYTEC Extension Board. The manual specifies the extension boards design and function. Precise specifications for the SMCS LAN9500i Ethernet controller can be found in the Data Sheet/User's Manual. Conventions The conventions used in this manual are as follows: Signals that are preceded by a "n", "/", or # character (e.g.: nrd, /RD, or #RD), or that have a dash on top of the signal name (e.g.: RD) are designated as active low signals. That is, their active state is when they are driven low, or are driving low. A "0" indicates a logic zero or low-level signal, while a "1" represents a logic one or high-level signal. Tables which describe jumper settings show the default position in bold, blue text. Text in blue italic indicates a hyperlink within, or external to the document. Click these links to quickly jump to the applicable URL, part, chapter, table, or figure. References made to the expansion connectors always refer to pin header connector X8 and X9 on the phycard Carrier Board. Abbreviations and Acronyms Many acronyms and abbreviations are used throughout this manual. Use the table below to navigate unfamiliar terms used in this document. Abbreviation Definition BSP Board Support Package (Software delivered with the Development Kit including an operating system (Windows, or Linux) preinstalled on the module and Development Tools). CB Carrier Board; used in reference to the phybase Development Kit Carrier Board. PHYTEC Messtechnik GmbH 2011 L-756e_1 iii

PEB-A-002 Abbreviation Definition EMI Electromagnetic Interference. GPI General purpose input. GPIO General purpose input and output. GPO General purpose output. J Solder jumper; these types of jumpers require solder equipment to remove and place. JP Solderless jumper; these types of jumpers can be removed and placed by hand with no special tools. PCB Printed circuit board. PEB PHYTEC Extension Board PDI PHYTEC Display Interface SBC Single Board Computer; used in reference to the PCA-A-xx /phycard-a-xx Single Board Computer SMT Surface mount technology. Sx User button Sx (e.g. S1, S2, etc.) used in reference to the available user buttons, or DIP-Switches Sx_y Switch y of DIP-Switch Sx; used in reference to the DIP-Switches on the display adapter or Carrier Board. Table 1: Abbreviations and Acronyms used in this Manual Note: The BSP delivered with the phycards usually includes drivers and/or software for also controlling the PHYTEC Extension Boards. Therefore programming close to hardware at register level is not necessary in most cases. For this reason, this manual contains no information relevant for software development. Please refer to the Quickstart Manual "OSELAS.BSP()" for phycards and the Ethernet controller's Datasheet if such information is needed. iv PHYTEC Messtechnik GmbH 2011 L-756e_1

Preface Preface As a member of PHYTEC's new phycard product family the PEB-A-002 is one of a series of PHYTEC Extension Boards that provide additional functions and interfaces to the standard phycard Carrier Board. PHYTEC's new phycard Rapid Development Kit family consists of a series of extremely compact embedded control engines featuring various processing performance classes while using the newly developed X-Arc embedded bus standard. The standardized connector footprint and pin assignment of the X-Arc bus makes this new SBC generation extremely scalable and flexible. This also allows to use the same carrier board to create different applications depending on the required processing power. PHYTEC Extensions Boards (PEBs) facilitate adding even more functions and interfaces. With this new SBC concept it is possible to design entire embedded product families around vastly different processor performances while optimizing overall system cost. In addition, future advances in processor technology are already considered with this new embedded bus standard making product upgrades very easy. Another major advantage is the forgone risk of potential system hardware redesign steps caused by processor or other critical component discontinuation. Just use one of PHYTEC's other phycard SBCs thereby ensuring an extended product life cycle of your embedded application. PHYTEC supports a variety of PEBs in two ways: (1) as add-ons for Rapid Development Kits which serve as a reference and evaluation platform (2) as insert-ready, fully functional OEM extension board, which can be embedded directly into the user s peripheral hardware design. Implementation of an OEM-able subassembly as the "core" of a specific function, or interface allows you to focus on the development of customer specific circuitry without expending resources to "reinvent" standard functions and interface circuitry. Furthermore, much PHYTEC Messtechnik GmbH 2011 L-756e_1 v

PEB-A-002 of the value of the PHYTEC Extension Boards lies in its layout and test. Production-ready Board Support Packages (BSPs) and Design Services for our hardware will further reduce your development time and risk and allow you to focus on your product expertise. Take advantage of PHYTEC products to shorten time-to-market, reduce development costs, and avoid substantial design issues and risks. With this new innovative full system solution you will be able to bring your new ideas to market in the most timely and cost-efficient manner. For more information go to: http://www.phytec.com/services/ Ordering Information The part numbering of the PHYTEC Extension Boards has the following structure: PEB-A-xxx Generation A = First generation Model number 1 001 = SPI to CAN 002 = USB to Ethernet 003 = I 2 C, or SPI to GPIO In order to receive product specific information on changes and updates in the best way also in the future, we recommend to register at http://www.phytec.de/de/support/registrierung.html You can also get technical support and additional information concerning your product. 1 : Please also visit our website www.phytec.de for information on additional PEBs vi PHYTEC Messtechnik GmbH 2011 L-756e_1

Preface The support section of our web site provides product specific information, such as errata sheets, application notes, FAQs, etc. http://www.phytec.de/de/support/faq Declaration of Electro Magnetic Conformity of the PHYTEC PEB-A-002 PHYTEC Single Board Computers (henceforth products) are designed for installation in electrical appliances or as dedicated Evaluation Boards (i.e.: for use as a test and prototype platform for hardware/software development) in laboratory environments. Caution: PHYTEC products lacking protective enclosures are subject to damage by ESD and, hence, may only be unpacked, handled or operated in environments in which sufficient precautionary measures have been taken in respect to ESD-dangers. It is also necessary that only appropriately trained personnel (such as electricians, technicians and engineers) handle and/or operate these products. Moreover, PHYTEC products should not be operated without protection circuitry if connections to the product's pin header rows are longer than 3 m. PHYTEC products fulfill the norms of the European Union s Directive for Electro Magnetic Conformity only in accordance to the descriptions and rules of usage indicated in this hardware manual (particularly in respect to the pin header row connectors, power connector and serial interface to a host-pc). Implementation of PHYTEC products into target devices, as well as user modifications and extensions of PHYTEC products, is subject to renewed establishment of conformity to, and certification of, Electro Magnetic Directives. Users should ensure conformance following any modifications to the products as well as implementation of the products into target systems. * PHYTEC Messtechnik GmbH 2011 L-756e_1 vii

PEB-A-002 viii PHYTEC Messtechnik GmbH 2011 L-756e_1

Introduction 1 Introduction The PHYTEC Extension Board PEB-A-002 belongs to a series of addon modules for PHYTEC s phycard Single Board Computer module family. These add-on modules allow easy development of complex applications with off-the-shelf components. PHYTEC Extension Boards PEB-A-xxx are compatible to the two, identical Extension Connectors X8 and X9 on the phycard Carrier Board PBA-A-01. Thus they are interchangeable and the same phycard / phybase combination might serve for different applications just by changing the extension board and the software. Figure 1 depicts the modular concept of the phycard Development Kit family and the usage of the PHYTEC Extension Boards. All add-on modules are supported within the BSPs 1 available for the different phycard SBCs. The PEB-A-002 is a subminiature (92 x 68 mm) insert-ready interface card populated with the SMCS LAN9500i Ethernet controller. If mounted on the carrier board (phybase) it connects to any phycard populating the phybase via USB interface. It provides a second Ethernet interface in addition to the interface already available on the phybase. Precise specifications for the components populating the board can be found in the applicable User s Manuals or Data Sheets. 1 : To ensure that the PEB of your choice is supported by the BSP use only the latest BSP, or check on the PHYTEC website from which version on the driver is implemented. PHYTEC Messtechnik GmbH 2011 L-756e_1 1

PEB-A-002 PEB-A-xxx Module Connector X8, X9 phycard underneath the PEB Modules Carrier Board PBA-A-01 Figure 1: Modular Concept of the phycard Development Kit family 2 PHYTEC Messtechnik GmbH 2011 L-756e_1

Introduction The PEB-A-002 offers the following features: Subminiature Extension Board (92 x 68 mm) achieved through modern SMD technology Compatible to the phycard Development Kit Carrier Board (phybase) PBA-A-001 Improved interference safety achieved through multi-layer PCB technology and dedicated Ground pins Single supply voltage of 3.3V. Core voltage for Ethernet controller generated on board Expansion connector for phybase connectivity via USB interface Standard 8P8C (RJ45) modular jack SMSC LAN9500i Ethernet controller designed to connect to 10Base-T and 100Base-TX networks. It supports Auto HDX/FDX with HP Auto MDI/MDI-X 1 Status LEDs to monitor the status of the supply voltage and the Ethernet connectivity 1-Wire EEPROM for internal use only Mounting wholes to screw the PEB to the phybase 1.1 Block Diagram Figure 2: Block Diagram PEB-A-002 1 : a complete list of the Ethernet controllers features can be found in the corresponding Datasheet PHYTEC Messtechnik GmbH 2011 L-756e_1 3

PEB-A-002 1.2 View of the PEB-A-002 R19 X2 R18 C17 C20 C24 R15 R16 R14 R1 R13 R17 C23 C22 C21 R5 D1 R3 D2 R4 D3 C10 C12 R9 R12 C11 L3 R10 R11 C14 C16 C15 C3 L1 C1 R7 C2 L2 R6 C4 C19 C9 C8 C6 U1 C13 R2 C18 C5 R8 C7 XT1 U2 X1 Figure 3: View of the PEB-A-002 4 PHYTEC Messtechnik GmbH 2011 L-756e_1

Pin Description 2 Pin Description Please note that all module connections are not to exceed their expressed maximum voltage or current. Maximum signal input values are indicated in the corresponding controller manuals/data sheets. As damage from improper connections varies according to use and application, it is the user's responsibility to take appropriate safety measures to ensure that the module connections are protected from overloading through connected peripherals. As shown in Figure 3 a 2 x 10 connector socket (X1) at the underside of the board connects the PEB-A-002 to the carrier board. The Ethernet interface is available at the RJ45-Jack (X2) on the upper side. 2.1 Pinout of the Ethernet Interface (X2) The Ethernet interface of the phycard is accessible at an RJ45 connector (X2). The LEDs for LINK (green) and SPEED (yellow) indication are integrated in the connector. Pin 1: Pin 2: Pin 3: Pin 6: TX+ TX- RX+ RX- Figure 4: Pin Assignment of the RJ45-Jack X2 PHYTEC Messtechnik GmbH 2011 L-756e_1 5

PEB-A-002 2.2 Pinout of the Expansion Connector (X1) Table 2 provides an overview of the pinout of the expansion connector at X1. The table lists only signals used on the PEB-A-002. Several more signals are available at the expansion connectors X8 and X9 on the phybase. Please refer to the hardware manual of your phycard for a complete pinout. Pin # Signal Name Description 1 N/C not connected 2 N/C not connected 3 VCC3V3 3,3V power supply 4 VCC3V3 3,3V power supply 5 GND Ground 6 GND Ground 7 N/C not connected 8 N/C not connected 9 PHYWIRE Hardware Introspection Interface. For internal use only 10 GND Ground 11 N/C not connected 12 N/C not connected 13 N/C not connected 14 N/C not connected 15 N/C not connected 16 N/C not connected 17 GND Ground 18 GND Ground 19 USBDM USB Data D- 20 USBDP USB Data D+ Table 2: Pinout of the Expansion Connector X1 6 PHYTEC Messtechnik GmbH 2011 L-756e_1

Power Requirements 3 Power The PEB-A-002 operates off of a single supply voltage(+3.3v) which is fed through the expansion connector X1 of the PEB. The +3.3V voltage supplies the Ethernet controller which generates a +1.8V core voltage internally. Two LEDs on the PEB-A-002 show the status of the external supply voltage and the core voltage. D3 indicates the presence of the external +3.3V supply voltage and D1 the correct generation of the +1.8V core voltage. For proper operation the PEB-A-002 must be supplied with a voltage source of 3.3V at the "+3V3" pins on the expansion connector X1. +3V3: X1 3, 4 Connect both VCC input pins and all GND pins to your power supply. Corresponding GND: X1 5, 6, 17, 18 Caution: As a general design rule we recommend connecting all GND pins neighboring signals which are being used in the application circuitry. For maximum EMI performance all GND pins should be connected to a solid ground plane. PHYTEC Messtechnik GmbH 2011 L-756e_1 7

PEB-A-002 8 PHYTEC Messtechnik GmbH 2011 L-756e_1

CAN Interface 4 Ethernet Interface The Ethernet interface on the PEB-A-002 provides connectivity to the world wide web or a local area network (LAN). The PEB-A-002 comes populated with an SMSC LAN9500i Ethernet controller supporting 10/100 Mbps Ethernet connectivity. The LAN9500i supports the HP Auto-MDIX function eliminating the need for consideration of a direct connect LAN cable, or a cross-over patch cable. The LAN9500i detects the TX and RX pins of the connected device and automatically configures the PHY TX and RX pins accordingly. The Ethernet controller also features an Auto-negotiation to automatically determine the best speed and duplex mode 1. Programming of the Ethernet controller is done via USB interface. The USB interface extends from expansion connector X1 to the Ethernet controller (refer to Table 2 for the pinout). The Ethernet interface of the PEB-A-002 is accessible at an RJ45 connector (X2). The LEDs for LINK (green) and SPEED (yellow) indication are integrated in the connector (refer to Figure 4 for the pinout). Additionally LED D2 on the board signals full-duplex mode. 4.1 MAC Address In a computer network such as a local area network (LAN), the MAC (Media Access Control) address is a unique computer hardware number. For a connection to the Internet, a table is used to convert the assigned IP number to the hardware's MAC address. In order to guarantee that the MAC address is unique, all addresses are managed in a central location. PHYTEC has acquired a pool of MAC addresses. The MAC address of the PEB-A-002 is located on the bar code sticker attached to the board. This number is a 12-digit HEX value. 1 : a complete list of the Ethernet controllers features can be found in the corresponding Datasheet PHYTEC Messtechnik GmbH 2011 L-756e_1 9

PEB-A-002 10 PHYTEC Messtechnik GmbH 2011 L-756e_1

Technical Specifications 5 Technical Specifications The physical dimensions of the PEB-A-002 are represented in Figure 5. The module's profile is ca. 22 mm thick, with a maximum component height of 7 mm on the bottom (connector) side of the PCB and approximately 13 mm on the top (microcontroller) side. The board itself is approximately 1.8 mm thick. Additional specifications: Dimensions: 92 mm x 68 mm Weight: approximately 32 g with all optional components mounted on the circuit board Storage temperature: -40 C to +90 C Operating temperature: standard: 0 C to +70 C extended: -40 C to +85 C Humidity: 95 % r.f. not condensed Operating voltage: VCC 3.3 V 5 %, VCC2 5 V 5 %, VBAT 3 V 20 % Power consumption: TBD These specifications describe the standard configuration of the PEB-A-002 as of the printing of this manual. PHYTEC Messtechnik GmbH 2011 L-756e_1 11

PEB-A-002 4.36mm + - 0mm 3.5mm + - 0mm 68mm + - 0mm 63.64mm + - 0mm 3.64mm + - 0mm X2 U1 88.5mm - + 0mm 92mm - + 0mm XT1 0mm 3.5mm + - X1 U2 3.5mm - + 0mm 3.23mm - + 0mm 4.5mm - + 0mm 8.31mm - + 0mm 4.36mm + - 0mm 63.64mm - + 0mm 68mm - + 0mm 33.5mm - + 0mm 34.77mm - + 0mm 3.64mm - + 0mm 9.37mm - + 0mm 10.64mm - + 0mm Figure 5: Physical Dimensions 12 PHYTEC Messtechnik GmbH 2011 L-756e_1

Component Placement Diagram 6 Component Placement Diagram R19 X2 R18 C17 C20 C24 R15 R16 R14 R1 R13 R17 C23 C22 C21 R5 D1 R3 D2 R4 D3 C9 C8 C6 R10 L1 R9 C1 R12 R7 R11 C2 C10 C14 U1 C3 C11 L3 C15 L2 R6 C4 C13 C12 R2 C16 C19 C18 C5 R8 C7 XT1 U2 X1 Figure 6: PEB-A-002 Component Placement, Top View PHYTEC Messtechnik GmbH 2011 L-756e_1 13

PEB-A-002 14 PHYTEC Messtechnik GmbH 2011 L-756e_1

Hints for Integrating and Handling 7 Hints for Integrating and Handling the PHYTEC Extension Board 7.1 Integrating the PHYTEC Extension Board Besides this hardware manual much information is available to facilitate the integration of the PHYTEC Extension Boards into customer applications, or use them as reference design. 1. many answers to common questions can be found at http://www.phytec.de/de/support/faq, or http://www.phytec.eu/europe/support/faql. 2. different support packages are available to support you in all stages of your embedded development. Please visit http://www.phytec.de/de/support/support-pakete.html, or http://www.phytec.eu/europe/support/support-packages.html, or contact our sales team for more details. 7.2 Handling the PHYTEC Extension Board Modifications on the PHYTEC Extension Board Removal of various components, such as the Ethernet controller is not advisable given the compact nature of the module. Should this nonetheless be necessary, please ensure that the board as well as surrounding components and sockets remain undamaged while desoldering. Overheating the board can cause the solder pads to loosen, rendering the module inoperable. Carefully heat neighboring connections in pairs. After a few alternations, components can be removed with the solder-iron tip. Alternatively, a hot air gun can be used to heat and loosen the bonds. Caution! If any modifications to the module are performed, regardless of their nature, the manufacturer guarantee is voided. PHYTEC Messtechnik GmbH 2011 L-756e_1 15

PEB-A-002 Use of the PHYTEC Extension Board as Reference Design Successful use as reference design for custom applications greatly depends on the adherence to the layout design rules for the GND connections. As a general design rule we recommend connecting all GND pins neighboring signals which are being used in the application circuitry. For maximum EMI performance all GND pins should be connected to a solid ground plane. It is also advisable to follow the application information given in the data sheets of the different components. 16 PHYTEC Messtechnik GmbH 2011 L-756e_1

The PEB-A-002 on the phybase 8 The PEB-A-002 on the on the phybase The phybase Carrier Board provides a flexible development platform enabling quick and easy start-up and subsequent programming of the PHYTEC Extension Boards. The Carrier Board design allows easy connection of up to two extension boards featuring various functions that support fast and convenient prototyping and software evaluation. The Carrier Board is compatible with all phycards and PEBs. The following sections contain specific information relevant to the operation of the PEB-A-002 mounted on the phybase Carrier Board. Note: Only features of the phybase which are needed to support the functioning of the PEB-A-002 are described. Jumper settings and configurations which are not relevant for the use of the PEB-A-002 are not described in the following chapters. PHYTEC Messtechnik GmbH 2011 L-756e_1 17

PEB-A-002 8.1 Overview of the phybase Peripherals The phybase is depicted in Figure 7. Peripherals required to use the PHYTEC Extension Board PEB-A-002 are highlighted. Additionally all necessary components and peripherals are listed in Table 3 and Table 4. For a more detailed description of each peripheral refer to the appropriate chapter listed in the applicable table. USB OTG X27 D40 PWR D38 phycard Connector LVDS X29 Ethernet U26 D37 JP2 U24 X32 D46 X7 P1 U30 X1 D41 JP1 X10 U15 U18 X2 X3 X5 U8 USB Host U9 U12 U21 RS232 AUDIO X33 U2 CAM U6 U13 J1 U27 X6 U19 U22 USB Host U33 U43 U1 U14 X4 X28 U23 Front 9.4mm D45 X8 U11 U10 X9 D39 Expansion 2 Expansion 1 U31 U32 U16 U17 D30 U4 U3 BAT1 U29 XT1 X34 U25 D29 D22 D28 D21 D27 D20 D19 D25 D18 D24 D17 D23 D26 D16 S3 J2 U7 MIC OUT IN U20 U28 J3 ON / OFF S2 Reset S1 U5 X26 MMC / SD card Figure 7: phybase Overview of applicable Connectors, LEDs and Buttons 18 PHYTEC Messtechnik GmbH 2011 L-756e_1

8.1.1 Connectors and Pin Header The PEB-A-002 on the phybase Table 3 lists all applicable connectors on the phybase. Figure 7 highlights the location of each connector for easy identification. Reference See Description Designator Section X8A Expansion connector 0 8.2.1 X9A Expansion connector 1 8.2.1 X28 Wall adapter input power jack to supply main board power (+9 - +36 V) Table 3: phybase Connectors and Pin Headers related to PEB-A-002 Note: The signal levels of the I 2 C and SPI interface are shifted to VCC3V3 (3.3 V) by level shifters on the phycard Carrier Board. Ensure that all module connections are not to exceed their expressed maximum voltage or current. Maximum signal input values are indicated in the corresponding controller User's Manual/Data Sheets. As damage from improper connections varies according to use and application, it is the user s responsibility to take appropriate safety measures to ensure that the module connections are protected from overloading through connected peripherals. PHYTEC Messtechnik GmbH 2011 L-756e_1 19

PEB-A-002 8.1.2 Switches The phybase is populated with some switches which are essential for the operation of the phycard module and in further consequence of the PEB on the Carrier Board. Figure 7 shows the location of the switches and push buttons. Button S1 S2 Table 4: Description System Reset Button system reset signal generation Power Button powering on and off main supply voltages of the Carrier Board phybase push buttons descriptions Please refer to the hardware manual of your phycard for further information on the functioning of these push buttons. Additionally a DIP-Switch is available at S3. The configuration of this DIP-Switch does not affect the functioning of the PEB-A-002. 8.1.3 Jumpers Various jumpers on the phybase allow the user flexibility of configuring a limited number of features for development constraint purposes. However none of the jumpers is relevant for the PHYTEC Extension Board's correct functioning. 20 PHYTEC Messtechnik GmbH 2011 L-756e_1

The PEB-A-002 on the phybase 8.1.4 LEDs The phybase is populated with numerous LEDs to indicate the status of the various USB-Host interfaces, as well as the different supply voltages. Some of them are also important in the use of the PHYTEC Extension Boards. Figure 7 shows the location of these LEDs. Their function is listed in the table below: LED Color Description D18 D19 yellow USB3 at X8A amber led yellow USB4 at X9A amber led D25 green USB3 at X8A green led D26 green USB4 at X9A green led D30 red USB HUB global led D37 D39 green green 5V supply voltage for peripherals on the phybase 3V3 supply voltage for peripherals on the phybase See Section 8.2.2.1 8.2.1 Table 5: phybase LEDs descriptions PHYTEC Messtechnik GmbH 2011 L-756e_1 21

PEB-A-002 8.2 Functional Components on the phybase Board This section describes the functional components of the phybase Carrier Board supporting the PEB-A-002 Each subsection details a particular connector/interface and associated jumpers for configuring that interface. 8.2.1 Power Supply (X28) MIC OUT IN X3 X2 X1 U1 AUDIO J1 X4 U13 X5 CAM D45 U2 U22 RS232 U6 P1 X33 U27 USB Host 9.4mm Front X7 USB Host U14 X29 USB OTG U12 X10 Ethernet X28 PWR D38 U8 U28 U5 U20 ON / OFF S2 Reset S1 J3 X26 U16 Expansion 2 BAT1 S3 X9 U17 D29 D22 D28 D21 D27 D20 D19 D25 D18 D24 D17 D23 D26 D16 U10 U31 U32 D30 U11 XT1 X34 U4 Expansion 1 X8 D41 U3 U29 U15 U18 U19 U25 U30 U21 U33 J2 U43 phycard Connector U26 X27 D37 D40 U24 LVDS U9 D39 U23 MMC / SD card U7 D46 X32 JP2 JP1 X6 Figure 8: Power adapter The supply voltage for the PHYTEC Extension Board is derived from the main power supply connected to connector X28 on the phybase. It is available at the expansion connectors X8 and X9 as soon, as the phybase enters RUN state. The PEBs are powered up only during RUN state of the Carrier Board. 22 PHYTEC Messtechnik GmbH 2011 L-756e_1

The PEB-A-002 on the phybase Caution: Do not use a laboratory adapter to supply power to the Carrier Board! Power spikes during power-on could destroy the phycard module and the PEB mounted on the Carrier Board! Do not change modules or jumper settings while the Carrier Board is supplied with power! Permissible input voltage at X28: +9 - +36 V DC unregulated. No jumper configuration is required in order to supply power to the PHYTEC Extension Boards! The phybase is assembled with a few power LEDs whose functions are described in the following table: An LED indicates the availability of the supply voltage at expansion connectors X8 and X9. LEDs Color Description D39 green VCC3V3-3V3 supply voltage for peripherals on the phybase Table 6: Power state LEDs Please refer to the corresponding section in your phycard Hardware Manual for detailed information on suitable power supplies and the different power states. PHYTEC Messtechnik GmbH 2011 L-756e_1 23

PEB-A-002 8.2.2 Expansion connectors (X8A, X9A) MIC OUT IN X3 X2 X1 U1 AUDIO J1 X4 U13 X5 CAM D45 U2 U22 RS232 U6 P1 X33 U27 USB Host 9.4mm Front X7 USB Host U14 X29 USB OTG U12 X10 Ethernet X28 PWR D38 U8 U28 U5 U20 ON / OFF S2 Reset S1 J3 X26 U16 Expansion 2 BAT1 S3 X9 U17 D29 D22 D28 D21 D27 D20 D19 D25 D18 D24 D17 D23 D26 D16 U10 U31 U32 D30 U11 XT1 X34 U4 Expansion 1 X8 D41 U3 U29 U15 U18 U19 U25 U30 U21 U33 J2 U43 phycard Connector U26 X27 D37 D40 U24 LVDS U9 D39 U23 MMC / SD card U7 D46 X32 JP2 JP1 X6 Figure 9: Expansion connector X8A, X9A The expansion connectors X8A and X9A provide an easy way to connect the PHYTEC Extension Boards to the phybase and therefore add other functions and features to it. As can be seen in Figure 9 the location of the connectors allows to expand the functionality without expanding the physical dimensions. Mounting wholes can be used to screw the PEBs to the phybase. Various standard interfaces such as USB, SPI and I 2 C as well as different supply voltages and one GPIO are available at the pin header rows. Usage of the PEB-A-002 requires the USB interface and a +3.3V supply voltage. A pinout showing all signals which extend on the PEB-A-002 is shown in Table 2. 24 PHYTEC Messtechnik GmbH 2011 L-756e_1

The PEB-A-002 on the phybase 8.2.2.1 USB Host Connectivity MIC OUT IN X3 X2 X1 U1 AUDIO J1 X4 U13 X5 CAM D45 U2 U22 RS232 U6 P1 X33 U27 USB Host 9.4mm Front X7 USB Host U14 X29 USB OTG U12 X10 Ethernet X28 PWR D38 U8 U28 U5 U20 ON / OFF S2 Reset S1 J3 X26 U16 Expansion 2 BAT1 S3 X9 U17 D29 D22 D28 D21 D27 D20 D19 D25 D18 D24 D17 D23 D26 D16 U10 U31 U32 D30 U11 XT1 X34 U4 Expansion 1 X8 D41 U3 U29 U15 U18 U19 U25 U30 U21 U33 J2 U43 phycard Connector U26 X27 D37 D40 U24 LVDS U9 D39 U23 MMC / SD card U7 D46 X32 JP2 JP1 X6 Figure 10: Components supporting the USB host interface Programming of the Ethernet controller on the PEB-A-002 is done via the phycard's USB interface. A USB hub controller at U4 on the Carrier Board expands the phycard's USB interface into seven downstream facing ports. Two of them (USB3 and USB4) are available at expansion connectors X8A and X9A. The USB interface extends from the expansion connector X1 on the PEB-A-002 to the Ethernet controller (refer to Table 2 for the pinout). Note: The USB interfaces at expansion connectors X8A and X9A provide only the data lines D+ and D-. They do not feature a supply line Vbus. PHYTEC Messtechnik GmbH 2011 L-756e_1 25

PEB-A-002 Table 7 shows the distribution of the two downstream facing ports to the expansion connectors. USB hub port # Connector Connector Type USB3 X8A 20 pin header row (pins 19 (D-) and 20 (D+)) USB4 X9A 20 pin header row (pins 19 (D-) and 20 (D+)) Table 7: Distribution of the USB hub's (U4) ports LEDs D18, D19 and D25, D26 as well as LED D30 signal correct functioning and use of the USB host interfaces. Table 8 shows the assignment of the LEDs to the different USB ports. LED Color Description D18 yellow USB3 at X8A amber led D19 yellow USB4 at X9A amber led D25 green USB3 at X8A green led D26 green USB4 at X9A green led D30 red USB HUB global led Table 8: phybase LEDs descriptions Appropriate drivers are available within the BSPs 1 provided with the different phycard SBCs (please refer to the Quickstart Manual "OSELAS.BSP()"). 1 : To ensure that the PEB of your choice is supported by the BSP use only the latest BSP, or check on the PHYTEC website from which version on the driver is implemented. 26 PHYTEC Messtechnik GmbH 2011 L-756e_1

The PEB-A-002 on the phybase 8.2.3 Ethernet Connectivity (X10) MIC OUT IN X3 X2 X1 U1 AUDIO J1 X4 U13 X5 CAM D45 U2 U22 RS232 U6 P1 X33 U27 USB Host 9.4mm Front X7 USB Host U14 X29 USB OTG U12 X10 Ethernet X28 PWR D38 U8 U28 U5 U20 ON / OFF S2 Reset S1 J3 X26 U16 Expansion 2 BAT1 S3 X9 U17 D29 D22 D28 D21 D27 D20 D19 D25 D18 D24 D17 D23 D26 D16 U10 U31 U32 D30 U11 XT1 X34 U4 Expansion 1 X8 D41 U3 U29 U15 U18 U19 U25 U30 U21 U33 J2 U43 phycard Connector U26 X27 D37 D40 U24 LVDS U9 D39 U23 MMC / SD card U7 D46 X32 JP2 JP1 X6 Figure 11: Ethernet interface at connector X10 The Ethernet interface of the phycard is accessible at an RJ45 connector (X10) on the Carrier Board. It is independent of the Ethernet interface on the PEB-A-002. Both can be used at the same time. PHYTEC Messtechnik GmbH 2011 L-756e_1 27

PEB-A-002 28 PHYTEC Messtechnik GmbH 2011 L-756e_1

Revision History 9 Revision History Date Version numbers Changes in this manual 20-Apr-2011 Manual L-756e_1 First edition PHYTEC Messtechnik GmbH 2011 L-756e_1 29

PEB-A-002 30 PHYTEC Messtechnik GmbH 2011 L-756e_1

Index Index 1 100Base-TX... 3 10Base-T... 3 B Block Diagram... 3 BSP... 1, 26 D D1... 7 D2... 9 D3... 7 Dimensions... 11 Drivers... 1, 26 E EMC...vii Ethernet Interface... 5, 9 Expansion Connector... 6 F Features... 3 G GND Connection... 16 H Humidity... 11 L LAN... 9 LINK LED... 5, 9 M MAC... 9 MAC Address... 9 O Operating Temperature...11 Operating Voltage...11 P phybase Connectors...19 Peripherals...18 Pin Header...19 Switches...20 X10...27 X28...22 X8...25 X9...25 Physical Dimensions...11 Pin Description...5 Pinout...6 Power Consumption...11 S Software...1, 26 SPEED LED...5, 9 Storage Temperature...11 Supply Voltage...7 T Technical Specifications...11, 13 W Weight...11 X X1...5 X2...5 PHYTEC Messtechnik GmbH 2011 L-756e_1 31

PEB-A-002 32 PHYTEC Messtechnik GmbH 2011 L-756e_1

Suggestions for Improvement Document: PEB-A-002 Hardware Manual Document number: L-756e_1, March 2011 How would you improve this manual? Did you find any mistakes in this manual? page Submitted by: Customer number: Name: Company: Address: Return to: PHYTEC Technologie Holding AG Postfach 100403 D-55135 Mainz, Germany Fax : +49 (6131) 9221-33 PHYTEC MeßtechnikGmbH 2011 L-756e_1

Published by PHYTEC Meßtechnik GmbH 2011 Ordering No. L-756e_1 Printed in Germany