This user manual describes the implementation of the EVALSP320SPLC evaluation board
(order code: EVALSP320SPLC). This evaluation board can be used to evaluate the
SPEAr320S microprocessor with a variety of devices and especially its Media Independent
Interface (MII) Automation mode.
The EVALSP320SPLC evaluation kit includes a single application board identified as "MII
mode".
The SPEAr320S microprocessor is mounted on a separate CPU board, which is not
included with the EVALSP320SPLC kit. It must be ordered separately with order code
EVALSP320SCPU.
The EVALSP320SCPU board must be plugged on the MII mode application board.
The MII mode application board is equipped with two Ethernet, three RS-232, one RS-485,
two CAN, SPI, I²C communication interfaces and MicroSD card socket with SDIO interface.
There are also two general-purpose push-buttons, four LEDs, a temperature sensor and a
potentiometer available for the user interface.
The application board also includes digital input/output serial/parallel connectors with a
pinout compatible to many existing evaluation boards from ST:
●Digital input serial: STEVAL-IFP007V1
●Digital input parallel: STEVAL-IFP004V1 and STEVAL-IFP008V1
●Digital output serial: STEVAL-IFP009V1
●Digital output parallel: STEVAL-IFP002V1, STEVAL-IFP001V1 and STEVAL-IFP006V1
The application board can be powered using a standard DC power supply (7 V to 30 V DC)
or directly using a 24
The EVALSP320SPLC evaluation board is shipped in protective anti-static packaging. Do
not submit the board to high electrostatic potentials, and follow good practices for working
with static sensitive devices.
●Wear an anti-static wristband. Wearing a simple anti-static wristband can help
prevent ESD from damaging the board.
●Zero potential. Always touch a grounded conducting material before handling the
board, and periodically while handling it.
●Use an anti-static mat. When configuring the board, place it on and anti-static mat to
reduce the possibility of ESD damage.
●Handle only the edges. Handle the board by its edges only, and avoid touching board
components.
3.2 Connecting
1.Connect a serial cable from the application board (connector CN13: RS232_0/UART0)
to a host PC (see
2. On a host PC running Windows or Linux, start the Terminal program.
3. Connect a power supply to the EVALSP320SPLC evaluation board as described in
Section 4.5: Power supply on page 13.
4. Power on the board. The Terminal program displays a sequence of boot messages
followed by the Linux console prompt.
For more information, refer to user manual UM0844 "Getting started with Linux for SPEAr"
available at www.st.com/spear.
3.3 Booting
The EVALSP320SPLC evaluation board can boot a Linux kernel pre-installed in the serial
NOR Flash.
At power on, the serial port outputs a brief header message with some uBoot information
(uBoot version, SDK version, and some internal hardware information). At this point you can
choose to:
●Stop the system directly in uBoot: Press the spacebar on the host computer
keyboard before the boot delay time expires (default is 3 seconds).
●Boot Linux: The system logs you in automatically as super user and the Linux shell
prompt displays on the screen.
Figure 3: Application board layout).
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4 Configuration
4.1 Ethernet
There are two Ethernet PHYs (U5 and U6) available on the board that are connected
through the media independent interfaces (MII) to the Ethernet MACs on the CPU board
processor.
By default the MII addresses of the Ethernet PHYs are selected as shown in Ta bl e 1.
)
Table 1.MII addresses of the Ethernet PHYs (U5 and U6)
Ethernet PHYMII address
U50x01
U60x02
By default the initial configuration of the Ethernet PHYs is selected as shown in Ta bl e 2.
Table 2.Default configuration of the Ethernet PHYs (U5 and U6)
FunctionDefault configuration
Auto negotiationEnabled
10/100 Mbits100 Mbits selected for auto negotiation advertisement
Half/Full duplexFull duplex selected for auto negotiation advertisement
Internal LoopbackDisabled
Power downDisabled (PHY is not in Power down state)
MII/RMII modeMII selected
There are two LEDs embedded in each RJ-45 connector (CN7 and CN8) that indicate the
status of the line:
●The green LED in the connector is driven on continuously when the Ethernet link is
established with the counterpart.
●The yellow LED in the connector blinks when there is TX or RX activity.
The Serial Management Interface (SMI) is part of the MII interface and is used to transfer
management information between the MAC and PHY (access of the PHY registers). There
are two SMI interfaces coming from each Ethernet MAC. It is possible to use only one of
them to control both Ethernet PHYs or each SMI can be used separately for each PHY.
Table 3.SMI interface configuration
FunctionDefault configuration
MII1_MDC, MII1_MDIO used for PHY1 (U5) and
MII2_MDC, MII2_MDIO used for PHY2 (U6)
R93,R94, R95, R96 loaded
R27, R29 not loaded (Default)
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p
(hig
Table 3.SMI interface configuration (continued)
FunctionDefault configuration
MII1_MDC, MII1_MDIO used for both PHYs (U5, U6)
MII2_MDC, MII2_MDIO used for both PHYs (U5, U6)
For the two Ethernet PHYs (U5 and U6 in MII mode) to function correctly, it is necessary to
clock them using a 25-MHz clock. There are two ways to deliver the 25-MHz clock signal to
the devices.
4.2 Digital input / digital output connectors
The digital input and digital output connectors are used to extend the EVALSP320SPLC
board with the industrial input and output cards.
The input sensors (for example, proximity switches) of the controlled industrial process are
normally decoupled and connected by the current limiters based on the CLT and SCLT
devices of the microcontroller. The digital outputs, also electrically decoupled, are based on
high-side drivers which are used in industrial environments to switch industrial loads (valves,
relays, …) and process control. For both the inputs and outputs, we can use either serial
(SPI) or parallel (GPIO) IN/OUT cards.
The EVALSP320SPLC board is compatible with the following cards:
●Digital input serial (CN3): STEVAL-IFP007V1
●Digital output serial (CN4): STEVAL-IFP009V1
●Digital input parallel (CN5): STEVAL-IFP004V1 and STEVAL-IFP008V1
●Digital output parallel (CN6): STEVAL-IFP002V1, STEVAL-IFP001V1 and STEVAL-
IFP006V1
R93, R94, R27, R29 loaded
R95, R96 not loaded
R95, R96, R27, R29 loaded
R93, R94 not loaded
Figure 4.EVALSP320SPLC board with digital input and digital output cards
Controlled
rocess
Digital input
current limiters)
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h side drivers)
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Figure 5.8/16 input channel current limiter based on SCLT3-8, STEVAL-IFP007V1
4.3 Controller–area network bus
The EVALSP320SPLC evaluation board supports two channels of CAN2.0A/B compliant
controller–area network (CAN) bus communication based on a 3.3
speed mode, standby mode and slope control mode are available and can be selected by
setting jumper JP1 for CAN0 and jumper JP4 for CAN1.
Table 4.CAN0 transceiver settings
JumperDescriptionConfiguration
CAN0 transceiver works in Standby mode when JP1 is set.
JP1
JP2
CAN0 transceiver works in High-speed mode when JP1 is set
(Default).
CAN0 transceiver works in Slope control mode when JP1 is
open.
CAN0 terminal 120 Ω resistor is enabled when JP2 is loaded.
Default setting: loaded
V CAN transceiver. High-
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Table 5.CAN1 transceiver settings
JumperDescriptionConfiguration
CAN1 transceiver works in standby mode when JP4 is set.
JP4
(Default).
CAN1 transceiver works in slope control mode when JP4 is
open.
CAN1 transceiver works in high-speed mode when JP4 is set
JP5
CAN1 terminal 120Ω resistor is enabled when JP5 is loaded.
Default setting: loaded
4.4 RS-232 and RS-485 transceivers
There are three RS-232 DB9 plug connectors and one RS-485 DB9 socket connector with a
Profibus DP compliant pinout available on the board.
UART0 features the full modem control signals and fully utilizes U10, U12 and partly U14
RS-232 transceivers. The RS232_0 signals are available through the CN13 connector.
Optionally when the U10 RS-232 transceiver is not soldered on the board, it is possible to
line in RS232_TXD and RS232_RXD signals from the CPU board to the CN13 connector.
UART1 features only RX/TX functionality and is connected to the U14 RS-232 transceiver
which RS232_1 signals are then available from the CN15 connector.
UART2 features only RX/TX functionality and uses U13 RS232 transceiver which RS232_2
signals are available from the CN14 connector. Optionally by setting jumpers JP12 and
JP13, the UART2 RX/TX lines can be connected to the RS-485 transceiver U11 whose
outputs are then available from connectors CN11 and CN12. The RS-485 transceiver U11
can be controlled through GPIO pins PL_GPIO77 (receiver enable, R70 - pull up) and
PL_GPIO78 (driver output enable, R73 pull down). Check the ST3485 datasheet for further
details about all possible transceiver configurations.
Table 6.UART2 RS-232/RS-485 configuration
JumperDescriptionConfiguration
Connects +5.0 V to the RS-485 (R71, R72 and R74)
termination network.
JP11
Connects +3.3 V to the RS-485 (R71, R72 and R74)
termination network (Default).
UART2_TX line is connected to the RS-485 transceiver U11.
JP12
(SMD
resistor)
(1)
UART2_TX line is connected to the RS-232 transceiver U13
(Default).
UART2_RX line is connected to the RS-485 transceiver U11.
JP13
(SMD
resistor)
(1)
UART2_RX line is connected to the RS-232 transceiver U13
(Default).
1. The configuration of this JP is done loading a 0 ohm resistance between two different positions.
Table 7.UART0/RS-232 transceiver signals from the CPU board
JumperDescription
JP17
JP18
Connects the RS232_TXD signal of the CPU board RS-232 transceiver to CN13
(UART0) Default setting: Not loaded
Connects the RS232_RXD signal of the CPU board RS-232 transceiver to CN13
(UART0) Default setting: Not loaded
Caution:Do not fit the jumpers when the U10 RS-232 transceiver is soldered on the evaluation
board.
4.5 Power supply
There are two options to supply the EVALSP320SPLC evaluation board:
1.Connecting the +5 V voltage adapter (delivered in the EVALSP320SPLC package) to
the J11 power voltage connector on the CPU board.
2. Connecting a 7 V to 30 V DC power source (not included in the EVALSP320SPLC
package) to either connectors CN17 or CN18 on the application board.
The input voltage is connected to the DC/DC converter U16 (L7986A or optionally L5973A).
The board is protected against overvoltages by the D4 transil diode (SM6T33A) and against
possible reverse polarity voltage from an incorrect power plug-in by the D3 Schottky diode
(STPS3L40U).
Warning:Do not use both Power supply options at the same time.
Doing this may destroy the boards.
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1 2 3
1 2 3
1 2 3
Table 8.U16 DC/DC converter jumpers
JumperDescriptionConfiguration
JP14
Can be used to disconnect the +5 V delivered from the DC/DC
converter U16 (Default - loaded).
For L7986A the jumper must be set (Default).
JP15
(SMD
resistor)
(1)
Optional when L5973A would be assembled, the jumper must
be set as shown at right.
For L7986A the jumper must be set as shown at right. (Default)
JP16
(SMD
resistor)
(1)
Optional when L5973A would be assembled, the jumper must
be set as shown at right.
1. The configuration of this JP is done loading a 0 ohm resistance between two different positions.
4.6 Temperature sensor
There is an analog temperature sensor (STLM20) available on the board that is connected
to the analog input AIN0 of the CPU board. It is possible to disconnect it by removing jumper
JP10. The jumper is loaded by default.
4.7 Potentiometer
There is a 10 kΩ potentiometer available on the board connected to the analog input AIN1
of the CPU board. It is possible to disconnect it by removing jumper JP9. The jumper is
loaded by default.
4.8 General-purpose ADC connector
Eight analog input lines are available on connector CN9. Inside the connector it is also
possible to determine the range of the conversion by setting the conversion limits on the pin
CN9-19 (lower limit) and CN9-1 (upper limit) via jumpers JP7 and JP8.
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Table 9.ADC conversion settings
JumperDescriptionConfiguration
Connects the +2.5 V ADC evaluation board ADC supply
voltage to the ADC_VREFP pin of the CPU board (Default).
JP7
Connects the external ADC application supply voltage to the
ADC_VREFP pin of the CPU board.
Connects the evaluation board GND of the ADC supply voltage
domain to the ADC_VREFN pin of the CPU board (Default).
JP8
Connects the external ADC application GND (lower limit)
supply voltage to the ADC_VREFN pin of the CPU board.
The following relation between the pins should be guaranteed in the application:
0 V≤CN9-1 ≤ CN9-3 - CN9-17 ≤CN9-19≤+2.5 V
GND≤ADC_VREFN≤AIN0 -AIN7≤ADC_VREFP≤+2.5 V ADC
4.9 General-purpose buttons (B1 and B2)
There are two general-purpose buttons (B1 and B2) available on the top side of the board.
Button B1 can be disconnected from the input CPU board by soldering out resistor R56 and
button B2 by soldering out resistor R61.
4.10 LEDs
There are 4 general-purpose LEDs (LD1-LD4) available on the top side of the board. All
LEDs are driven on when the related GPIO pin is driven high.
Table 10.General-purpose LED configuration
GPIO pinLED
PL_GPIO47LD1
PL_GPIO49LD2
PL_GPIO58LD3
PL_GPIO64LD4
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4.11 Reset button
A manual reset button (B3) is available on the board's top side. It resets the microprocessor
on the core board. It can be disconnected from the input reset signal of the core board by
soldering out resistor R65. In order to perform a hardware reset of the first Ethernet PHY U5
(ETH1), it is necessary to drive low pin PL_GPIO66 of the microprocessor. In order to
perform a hardware reset of the second Ethernet PHY U6 (ETH2), it is necessary to drive
low pin PL_GPIO76 of the microprocessor.
4.12 MicroSD card
The MicroSD card connector connected to the SDIO interface of the EVALSP320SPLC is
available on the board. MicroSD card detection is managed by the standard SDIO signal
SDCD when the card is inserted. In order to power-up the MicroSD card properly, it is
necessary to detect the card insertion and then to enable the single channel power switch
U15 by means of PL_GPIO61 (active low).
Using the thermal and short-circuit protection of the power switch, it is possible to detect
overcurrent conditions (> 500
is connected to the overcurrent pin of U15. By default the U15 power output is disabled by
the R83 pull-up resistor connected to the Enable pin of the power switch.
mA) on the MicroSD card connector by pin PL_GPIO57 which
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46810
11 13 15 17 19
12 14 16 18 20
5 Connectors
5.1 CAN DB9 plug connectors (CN1 and CN2)
Figure 6.CAN DB9 plug connectors pinout
Table 11.CAN DB9 plug connectors description
Pin Description Pin Description
1, 4, 8NC7CANH
2CANL3, 6GND
5Chassis9Optional supply voltage (+3.3 V or +5.0 V)
5.2 Digital input serial connector (CN3)
This connector enables connection of industrial output card STEVAL-IFP007V1.
Figure 7.Digital input serial connector pinout
Table 12.Digital input serial connector description
PinSignalPinSignalPinSignalPinSignal
1NC6NC11
2NC7NC12
3NC8NC13
4NC9NC14
5 NC10NC15NC20GND
SSP_MOSI
(PL_GPIO9)
SSP_CLK
(PL_GPIO8)
SSP_SS0
(PL_GPIO7)
SSP_MISO
(PL_GPIO6)
16NC
17+3.3 V
18GND
19+3.3 V
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5.3 Digital output serial connector (CN4)
This connector enables connection of industrial output card STEVAL-IFP009V1.
Figure 8.Digital output serial connector pinout
Table 13.Digital output serial connector description
PinSignalPinSignalPinSignalPinSignal
1NC6NC11NC16NC
2NC7NC12
3NC8NC13
4NC9
SSP_CLK
(PL_GPIO8)
14
5NC10PL_GPIO5615NC20GND
5.4 Digital input parallel connector (CN5)
This connector enables connection of industrial input cards based on CLT, PCLT devices STEVAL-IFP004V1 and STEVAL-IFP008V1.
By using this Demonstration Product, You are agreeing to be bound by the terms and conditions of this agreement.
Do not use this Demonstration Product until You have read and agreed to the following terms and conditions. The
use of the Demonstration Product implies automatically the acceptance of the following terms and conditions.
LICENSE. STMicroelectronics ("ST") grants You the right to use the enclosed demonstration board offering limited features
only to evaluate and test ST products, including any incorporated and/or accompanying demo software, components and
documentation identified with the order code "EVALSP320SPLC" (collectively, the "Demo Product") solely only for your
evaluation and testing purposes. The Demo Product shall not be, in any case, directly or indirectly assembled as a part in
any production of Yours as it is solely developed to serve demonstration purposes and has no direct function and is not a
finished product. Certain demo software included with the Demo Product may be covered under a separate accompanying
end user license agreement, in which case the terms and conditions of such end user license agreement shall apply to that
demonstration software.
DEMO PRODUCT STATUS. The Demo Product is offering limited features allowing You only to evaluate and test the ST
products. You are not authorized to use the Demo Product in any production system, and may not be offered for sale or
lease, or sold, leased or otherwise distributed. If the Demo Product is incorporated in a demonstration system, the
demonstration system may be used by You solely for your evaluation and testing purposes. Such demonstration system
may not be offered for sale or lease or sold, leased or otherwise distributed and must be accompanied by a conspicuous
notice as follows: "This device is not, and may not be, offered for sale or lease, or sold or leased or otherwise distributed".
OWNERSHIP AND COPYRIGHT. Title to the Demo Product, demo software, related documentation and all copies thereof
remain with ST and/or its licensors. You may not remove the copyrights notices from the Demo Product. You may make one
(1) copy of the software for back-up or archival purposes provided that You reproduce and apply to such copy any copyright
or other proprietary rights notices included on or embedded in the demonstration software. You agree to prevent any
unauthorized copying of the Demo Product, demonstration software and related documentation.
RESTRICTIONS. You may not sell, assign, sublicense, lease, rent or otherwise distribute the Demo Product for commercial
purposes (unless you are an authorized ST distributor provided that all the other clauses of this DEMO PRODUCT LICENSE
AGREEMENT shall apply entirely), in whole or in part, or use Demo Product in production system. Except as provided in
this Agreement or in the Demo Product's documentation, You may not reproduce the demonstration software or related
documentation, or modify, reverse engineer, de-compile or disassemble the demonstration software, in whole or in part.
You warrant to ST that the Demo Product will be used and managed solely and exclusively in a laboratory by skilled
professional employees of Yours with proven expertise in the use and management of such products and that the
Demo Product shall be used and managed according to the terms and conditions set forth in the related
documentation provided with the Demo Product.
According to European Semiconductor Industry Association (ESIA) letter, "ESIA Response on WEEE Review (May
2008) of the Directive 2002/96/EC on Waste Electrical and Electronic Equipment (WEEE)"; Semiconductor products
and evaluation & demonstration boards are not in the scope of the Directive 2002/96/EC of the European Parliament
and of the Council on waste electrical and electronic equipment (WEEE). Consequently aforementioned products
do not have to be registered nor are they subject to the subsequent obligations.
NO WARRANTY. The Demo Product is provided "as is" and "with all faults" without warranty of any kind expressed or
implied. ST and its licensors expressly disclaim all warranties, expressed, implied or otherwise, including without limitation,
warranties of merchantability, fitness for a particular purpose and non-infringement of intellectual property rights. ST does
not warrant that the use in whole or in part of the Demo Product will be interrupted or error free, will meet your requirements,
or will operate with the combination of hardware and software selected by You. You are responsible for determining whether
the Demo Product will be suitable for your intended use or application or will achieve your intended results.
ST shall not have any liability in case of damages, losses, claims or actions anyhow caused from combination of the Demo
Product with another product, board, software or device.
ST has not authorized anyone to make any representation or warranty for the Demo Product, and any technical, applications
or design information or advice, quality characterization, reliability data or other services provided by ST shall not constitute
any representation or warranty by ST or alter this disclaimer or warranty, and in no additional obligations or liabilities shall
arise from ST's providing such information or services. ST does not assume or authorize any other person to assume for it
any other liability in connection with its Demo Products.
All other warranties, conditions or other terms implied by law are excluded to the fullest extent permitted by law.
LIMITATION OF LIABILITIES. In no event ST or its licensors shall be liable to You or any third party for any indirect, special,
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like) whether based on contract, tort, or any other legal theory, relating to or in connection with the Demo Product, the
documentation or this Agreement, even if ST has been advised of the possibility of such damages. In no event shall ST's
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aggregate liability to You or any third party under this agreement for any cause action, whether based on contract, tort, or
any other legal theory, relating to or in connection with the Demo Product, the documentation or this agreement shall exceed
the purchase price paid for the Demo Product if any.
TERMINATION. ST may terminate this license at any time if You are in breach of any of its terms and conditions. Upon
termination, You will immediately destroy or return all copies of the demo software and documentation to ST.
APPLICABLE LAW AND JURISDICTION. In case of dispute and in the absence of an amicable settlement, the only
competent jurisdiction shall be the Courts of Geneva, Switzerland. The applicable law shall be the law of Switzerland. The
UN Convention on contracts for the International Sales of Goods shall not apply to these General Terms and Conditions of
Sale.
SEVERABILITY. If any provision of this agreement is or becomes, at any time or for any reason, unenforceable or invalid,
no other provision of this agreement shall be affected thereby, and the remaining provisions of this agreement shall continue
with the same force and effect as if such unenforceable or invalid provisions had not been inserted in this Agreement.
WAIVER. The waiver by either party of any breach of any provisions of this Agreement shall not operate or be construed as
a waiver of any other or a subsequent breach of the same or a different provision.
RELATIONSHIP OF THE PARTIES. Nothing in this Agreement shall create, or be deemed to create, a partnership or the
relationship of principal and agent or employer and employee between the Parties. Neither Party has the authority or power
to bind, to contract in the name of or to create a liability for the other in any way or for any purpose.
RECYCLING. The Demo Product is not to be disposed as an urban waste. At the end of its life cycle, differentiated
waste collection must be followed, as stated in the directive 2002/96/EC.
In all the countries belonging to the European Union (EU Dir. 2002/96/EC) and those following differentiated recycling, the
Demo Product is subject to differentiated recycling at the end of its life cycle, therefore:
It is forbidden to dispose the Demo Product as an undifferentiated waste or with other domestic wastes. Consult the local
authorities for more information on the proper disposal channels.
It is mandatory to sort the demo product and deliver it to the appropriate collection centers, or, when possible, return the
demo product to the seller.
An incorrect Demo Product disposal may cause damage to the environment and is punished by the law.
10-Nov-2008
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License agreementsUM1509
SOFTWARE LICENSE AGREEMENT
This Software License Agreement ("Agreement") is displayed for You to read prior to downloading and using the
Licensed Software. If you choose not to agree with these provisions, do not download or install the enclosed
Licensed Software and the related documentation and design tools. By using the Licensed Software, You are
agreeing to be bound by the terms and conditions of this Agreement. Do not use the Licensed Software until You
have read and agreed to the following terms and conditions. The use of the Licensed Software implies
automatically the acceptance of the following terms and conditions.
DEFINITIONS
Licensed Software: means the enclosed demonstration software and all the related documentation and design tools
licensed in the form of object and/or source code as the case maybe.
Product: means a product or a system that includes or incorporates solely and exclusively an executable version of the
Licensed Software and provided further that such Licensed
Software executes solely and exclusively on ST products.
LICENSE
STMicroelectronics ("ST") grants You a non-exclusive, worldwide, non-transferable (whether by assignment, law,
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(i) make copies, prepare derivatives works, display internally and use internally the source code version of the Licensed
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You may make one (1) copy of the Licensed Software for back-up or archival purposes provided that You reproduce and
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Unless otherwise explicitly stated in this Agreement, You may not sell, assign, sublicense, lease, rent or otherwise distribute
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You acknowledge and agrees that the protection of the source code of the Licensed Software warrants the imposition of
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You will not under any circumstances permit the source code of the Licensed Software in any form or medium (including,
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You will inform all Your employees who are given access to the source code of the Licensed Software of the foregoing
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Geneva, Switzerland. The applicable law shall be the law of Switzerland.
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SEVERABILITY
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WAIVER
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RELATIONSHIP OF THE PARTIES
Nothing in this Agreement shall create, or be deemed to create, a partnership or the relationship of principal and agent or
employer and employee between the Parties. Neither Party has the authority or power to bind, to contract in the name of or
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UM1509Revision history
Revision history
Table 30.Document revision history
DateRevisionChanges
01-Mar-20121Initial release.
21-Mar-20122
Modified introduction to indicate that the CPU board is ordered
separately and removed CPU board hardware description sections.
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