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APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Supply Module User’s Manual BDM-610020095 Rev B APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Supply Module User’s Manual RTD Embedded Technologies, Inc. 103 Innovation Blvd. State College, PA 16804-0906 USA Phone: (814) 234-8087 FAX: (814) 234-5218 E-Mail [email protected] [email protected] Website www.rtd.com Revision History 15 Feb 2012 04 Feb 2013 Rev A -- Initial release. Rev B – Changed title of manual too include APWR35110 and APWR25110 versions Published by: RTD Embedded Technologies, Inc. 103 Innovation Blvd. State College, PA 16804-0906 Copyright 2012 by RTD Embedded Technologies, Inc. All rights reserved Printed in U.S.A. The RTD Logo is a registered trademark of RTD Embedded Technologies. cpuModule and utilityModule are trademarks of RTD Embedded Technologies. PhoenixPICO and PheonixPICO BIOS are trademarks of Phoenix Technologies Ltd. PS/2, PC/XT, PC/AT and IBM are trademarks of International Business Machines Inc. MS-DOS, Windows, Windows 95, Windows 98 and Windows NT are trademarks of Microsoft Corp. PCIE/104 is a registered trademark of PCIE/104 Consortium. All other trademarks appearing in this document are the property of their respective owners. User’s Manual Table of Contents CHAPTER 1 INTRODUCTION ..................................................................................... 2 APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Module ....................................................... 2 Features .................................................................................................................................................................... 2 Connectors ............................................................................................................................................................. 3 General Specifications ........................................................................................................................................... 3 CHAPTER 2 INSTALLING THE UTILITYMODULE ..................................................... 4 Recommended Procedure ....................................................................................................................................... 4 CHAPTER 3 CONNECTING THE UTILITYMODULE .................................................. 6 Finding Pin 1 of Connectors .................................................................................................................................. 6 PCIE/104 Bus Connector CN1 and CN2 ............................................................................................................... 7 PCI Bus Connector CN3 ......................................................................................................................................... 8 +16 – 40 VDC Input, TB1 ....................................................................................................................................... 9 +5 VDC Output, TB3............................................................................................................................................. 10 +12 VDC Output, TB4........................................................................................................................................... 10 CHAPTER 4 USING THE UTILITYMODULE ............................................................. 12 CHAPTER 5 SPECIFICATIONS ................................................................................ 14 CHAPTER 6 RETURN POLICY AND WARRANTY ................................................... 17 Return Policy ......................................................................................................................................................... 17 Limited Warranty .................................................................................................................................................. 18 APWR25110HR/35110HR/9104HR-70W 1 RTD Embedded Technologies, Inc. Chapter 1 INTRODUCTION This manual gives information on the APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Module. This manual also covers the APWR35110HR-70W and the APWR25110HR70W. APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Module The APWR25110HR/35110HR/9104HR-70W Filtered Avionics Power Module was designed to power a PCIE/104 system from the typical unregulated, noisy 28 VDC aircraft power. Features The following are major features of the APWR25110HR/35110HR/9104HR-70W powerModule. Input: 16 – 40 VDC +5 VDC at 10 Amps for 50 Watts + 12 VDC at 1.67Amps for 20 Watts Outputs: HighRel: Input voltage: 16 - 40 VDC Reverse polarity and transient protection Isolation voltage 500V 50V for 1 second Uses Mil modules that meet MIL-STD-461C CE03 and meets MIL-STD-461D and C CE102 Mil modules protect against voltage spikes specified in MIL_STD-461C and conducted susceptibility specified in MIL-STD-461C, CS01 and CS02 Mil modules reduce reflected noise of the DC-DC converters to meet MILSTD-461C CE03 and MILSTD-461D CE102 limits Hermetically sealed APWR25110HR/35110HR/9104HR-70W 2 RTD Embedded Technologies, Inc. User’s Manual Connectors Connectors provided are: • • • • • CN1 and CN2 PCIE/104 bus • (populated on APWR25110HR-70W and APWR35110HR-70W) CN3 PCI bus • (populated on APWR35110HR-70W and APWR9104HR-70W) TB1, 16 – 40 VDC input TB3, +5 VDC output TB4, +12 VDC output General Specifications • • • Dimensions: 3.8 x 4.75 x 0.6" (97 x 120 x 16 mm) including connectors Weight (mass): • 0.44 lb, (0.2 Kg) Operating conditions: • Temperature: • -40 to +85 degrees C, operational • Relative humidity: 0 - 95%, non-condensing • Storage temperature: -65 to +150 degrees C APWR25110HR/35110HR/9104HR-70W 3 RTD Embedded Technologies, Inc. Chapter 2 INSTALLING THE UTILITYMODULE Recommended Procedure We recommend you follow the procedure below to ensure that stacking of the modules does not damage connectors or electronics. Turn off power to the PCIE/104 system or stack. Select and install standoffs to properly position the utilityModule on the PCIE/104 stack. Touch a grounded metal part of the stack to discharge any buildup of static electricity. Remove the utilityModule from its anti-static bag. Check that the PCIE/104 bus connector is properly positioned. Gently and evenly press the utilityModule onto the PCIE/104 stack. CAUTION: Do not force the module onto the stack! Wiggling the module or applying too much force may damage it. If the module does not readily press into place, remove it, check for bent pins and try again. APWR25110HR/35110HR/9104HR-70W 4 RTD Embedded Technologies, Inc. User’s Manual APWR25110HR/35110HR/9104HR-70W 5 RTD Embedded Technologies, Inc. Chapter 3 CONNECTING THE UTILITYMODULE The following sections describe connectors of the utilityModule. Finding Pin 1 of Connectors Pin 1 of connectors is indicated by a square solder pad visible on the bottom of the PC board. Component Locations(APWR9104HR shown) The figure below shows locations of major components, including connectors. Connector CN1 and CN2 CN3 TB1 TB3 TB4 X1 X2 APWR25110HR/35110HR/9104HR-70W Function XT PCIE/104 bus PCI bus 16-50 VDC Input +5 VDC Output -12 VDC Output Digital ON/OFF* Switch ON*/OFF 6 Dimension 156 pin 120 pin 2 terminal 2 terminal 2 terminal 0.1” jumper 0.1” jumper Default N/A N/A N/A N/A N/A installed open RTD Embedded Technologies, Inc. APWR25110HR/35110HR/9104HR-70W 7 2 0 0 0 4 8 7 1 1 1 0 0 0 4 8 7 1 1 Names) Pin (Peripheral Bottom for Connector 2 Type Express PCI Names) Pin (Peripheral Top for Connector 2 Type Express PCI ASP-129646-03 ASP-129637-03 USB1p CPU_DIR CPU_DIR USB1p 6 6 USB0n USB0n 8 8 SS_Tin1_P SS_Tin1_P USB_OC# 7 8 1 5 USB1n 7 USB_OC# 1 7 USB0p USB0p 8 2 2 7 5 PE_RST# PE_RST# USB1n 4 5 4 5 WAKE#/Type2#(GND) SS_Tin1_N SS_Tin1_N WAKE#/Type2#(GND) SS_Rout1_N 6 3 PWRGD PWRGOOD 1 4 1 9 3 1 1 4 1 9 3 1 SS_Rout1_N 6 4 4 SS_Rout1_P SS_Rout1_P PWRGOOD 5 9 8 9 8 3 5 PWRGD PS_ON# PSON# PSON# PS_ON# 2 5 2 5 SS_Tin0_P SS_Tin0_P 8 8 8 8 SMB_Data SS_Tin0_N SS_Tin0_N SMB_Data 7 4 0 9 0 9 7 4 SMB_Clock SS_Rout0_P SS_Rout0_P SMB_Clock 9 4 0 4 1 0 4 1 9 4 SMB_Alert# SS_Rout0_N SS_Rout0_N SMB_Alert# 1 5 2 4 1 2 4 1 1 5 (Open) Stack_Error1# (Open) Stack_Error1# 4 5 4 5 (Open) Stack_Error0 (Open) Stack_Error0 4 5 1 4 5 1 5 VBAT VBAT 0 1 5 0 1 SATA_DET#1 SATA_DET#1 9 9 9 9 SATA_PWR_EN#1 SATA_PWR_EN#1 1 0 1 1 0 1 Reserved SATA_Tin1_P SATA_Tin1_P Reserved 4 9 1 8 1 8 4 9 Reserved SATA_Tin1_N SATA_Tin1_N Reserved 6 9 3 8 3 8 6 9 Reserved SATA_Rout1_P SATA_Rout1_P Reserved 3 9 3 3 1 3 3 1 3 9 Reserved SATA_Rout1_N SATA_Rout1_N Reserved 5 9 5 3 1 5 3 1 5 9 SATA_DET#0 SATA_DET#0 0 0 1 0 0 1 SATA_PWR_EN#0 SATA_PWR_EN#0 2 0 1 2 0 1 SATA_Tin0_P SATA_Tin0_P 2 8 2 8 SATA_Tin0_N SATA_Tin0_N 4 8 4 8 SATA_Rout0_P SATA_Rout0_P 4 3 1 4 3 1 SATA_Rout0_N SATA_Rout0_N 6 3 1 6 3 1 LPC_DRQ# LPC_DRQ# 6 4 1 6 4 1 LPC_SERIRQ PEx4_1Tin(3)P PEx4_1Tin(3)P LPC_SERIRQ 8 4 1 5 7 5 7 8 4 1 PEx4_1Tin(3)N PEx4_1Tin(3)N 7 7 7 7 LPC_AD0 PEx4_1Tin(2)P PEx4_1Tin(2)P LPC_AD0 5 4 1 9 6 9 6 5 4 1 LPC_AD1 PEx4_1Tin(2)N PEx4_1Tin(2)N LPC_AD1 7 4 1 1 7 1 7 7 4 1 LPC_AD2 PEx4_1Tin(1)P PEx4_1Tin(1)P LPC_AD2 1 5 1 3 6 3 6 1 5 1 LPC_AD3 PEx4_1Tin(1)N PEx4_1Tin(1)N LPC_AD3 3 5 1 5 6 5 6 3 5 1 LPC_FRAME# PEx4_1Tin(0)P PEx4_1Tin(0)P LPC_FRAME# D N G D N G 2 5 1 7 5 7 5 2 5 1 LPC_CLK PEx4_1Tin(0)N PEx4_1Tin(0)N LPC_CLK 6 0 1 9 5 9 5 6 0 1 D 6 5 D N G PEx4_1Rout(3)N PEx4_1Rout(3)N D N G N 1 7 2 1 7 2 1 6 5 1 G PEx4_1Rout(3)P PEx4_1Rout(3)P D N G 5 5 1 9 2 1 9 2 1 5 5 1 D N G PEx4_1Rout(2)P PEx4_1Rout(2)P D N G 0 5 1 1 2 1 1 2 1 0 5 1 D N G PEx4_1Rout(2)N PEx4_1Rout(2)N D N G 9 4 1 3 2 1 3 2 1 9 4 1 D N G PEx4_1Rout(1)P PEx4_1Rout(1)P D N G 4 4 1 5 1 1 5 1 1 4 4 1 D N G PEx4_1Rout(1)N PEx4_1Rout(1)N D N G 3 4 1 7 1 1 7 1 1 3 4 1 D N G PEx4_1Rout(0)P PEx4_1Rout(0)P D N G 8 3 1 9 0 1 9 0 1 8 3 1 D N G PEx4_1Rout(0)N PEx4_1Rout(0)N D N G 7 3 1 1 1 1 1 1 1 7 3 1 D N G D N G 2 3 1 2 3 1 D N G PEx4_0Tin(3)P PEx4_0Tin(3)P D N G 1 3 1 6 7 6 7 1 3 1 D N G PEx4_0Tin(3)N PEx4_0Tin(3)N D N G 6 2 1 8 7 8 7 6 2 1 D N G PEx4_0Tin(2)P PEx4_0Tin(2)P D N G 5 2 1 0 7 0 7 5 2 1 D N G PEx4_0Tin(2)N PEx4_0Tin(2)N D N G 0 2 1 2 7 2 7 0 2 1 D N G PEx4_0Tin(1)P PEx4_0Tin(1)P D N G 9 1 1 4 6 4 6 9 1 1 D N G PEx4_0Tin(1)N PEx4_0Tin(1)N D N G 4 1 1 6 6 6 6 4 1 1 D N G PEx4_0Tin(0)P PEx4_0Tin(0)P D N G 3 1 1 8 5 8 5 3 1 1 D N G PEx4_0Tin(0)N PEx4_0Tin(0)N D N G 8 0 1 0 6 0 6 8 0 1 D N G D N G 7 0 1 7 0 1 D N G PEx4_0Rout(3)P PEx4_0Rout(3)P D N G 4 0 1 8 2 1 8 2 1 4 0 1 D N G PEx4_0Rout(3)N PEx4_0Rout(3)N D N G 3 0 1 0 3 1 0 3 1 3 0 1 D N G PEx4_0Rout(2)P PEx4_0Rout(2)P D N G 8 9 2 2 1 2 2 1 8 9 D N G PEx4_0Rout(2)N PEx4_0Rout(2)N D N G 7 9 4 2 1 4 2 1 7 9 D N G PEx4_0Rout(1)P PEx4_0Rout(1)P D N G 2 9 6 1 1 6 1 1 2 9 D N G PEx4_0Rout(1)N PEx4_0Rout(1)N D N G 1 9 8 1 1 8 1 1 1 9 D N G PEx4_0Rout(0)P PEx4_0Rout(0)P D N G 6 8 0 1 1 0 1 1 6 8 D N G PEx4_0Rout(0)N PEx4_0Rout(0)N D N G 5 8 2 1 1 2 1 1 5 8 D N G D N G 0 8 0 8 D N G PEx4_ClkP PEx4_ClkP D N G 9 7 8 4 8 4 9 7 D N G PEx4_ClkN PEx4_ClkN D N G 4 7 0 5 0 5 4 7 D N G D N G 3 7 3 7 D N G D N G 8 6 8 6 D N G PEx1_3TinP PEx1_3TinP D N G 7 6 8 1 8 1 7 6 D N G PEx1_3TinN PEx1_3TinN D N G 2 6 0 2 0 2 2 6 D N G PEx1_3RoutP PEx1_3RoutP D N G 1 6 0 3 0 3 1 6 D N G PEx1_3RoutN PEx1_3RoutN D N G 6 5 2 3 2 3 6 5 D N G PEx1_3ClkP PEx1_3ClkP D N G 5 5 2 4 2 4 5 5 D N G PEx1_3ClkN PEx1_3ClkN D N G 4 3 4 4 4 4 4 3 D N G D N G 3 3 3 3 D N G PEx1_2TinP PEx1_2TinP D N G 8 2 7 1 7 1 8 2 D N G PEx1_2TinN PEx1_2TinN D N G 7 2 9 1 9 1 7 2 D N G PEx1_2RoutP PEx1_2RoutP D N G 2 2 9 2 9 2 2 2 D N G PEx1_2RoutN PEx1_2RoutN D N G 1 2 1 3 1 3 1 2 D N G PEx1_2ClkP PEx1_2ClkP D N G 6 1 1 4 1 4 6 1 D N G PEx1_2ClkN PEx1_2ClkN D N G 5 1 3 4 3 4 5 1 D N G D N G 0 1 0 1 D N G PEx1_1TinP PEx1_1TinP D N G 9 1 1 1 1 9 PEx1_1TinN PEx1_1TinN 3 1 3 1 +5V_Always PEx1_1RoutP PEx1_1RoutP +5V_Always 0 4 3 2 3 2 0 4 +5V_Always PEx1_1RoutN PEx1_1RoutN +5V_Always 9 3 5 2 5 2 9 3 PEx1_1ClkP PEx1_1ClkP +5V 5 3 5 3 +5V +3.3V PEx1_1ClkN PEx1_1ClkN +3.3V 4 7 3 7 3 4 +3.3V +3.3V 3 3 PEx1_0TinP PEx1_0TinP +3.3V 2 1 2 1 +3.3V +12V PEx1_0TinN PEx1_0TinN +12V 3 C 4 1 4 1 3 C PEx1_0RoutP PEx1_0RoutP +12V 4 2 4 2 +12V +5V PEx1_0RoutN PEx1_0RoutN +5V 2 C 6 2 6 2 2 C +5V PEx1_0ClkP PEx1_0ClkP +5V 1 C 6 3 6 3 1 C PEx1_0ClkN PEx1_0ClkN +5V 8 3 8 3 +5V CN2 CN1 User’s Manual PCIE/104 Bus Connector CN1 and CN2 The following pictures or tables list the connector pinouts: Complies with PCIe/104 Specification Version 2.01 RTD Embedded Technologies, Inc. PCI Bus Connector CN3 The following picture shows the PCI connector: Complies with PCIe/104 Specification Version 2.01 APWR25110HR/35110HR/9104HR-70W 8 RTD Embedded Technologies, Inc. User’s Manual CN1 pin one is at the bottom left of the above screen image as viewed from the top of the board by the LEDs. The odd numbered pins run along the bottom of the image and the even pins run along the top. Low order pin numbers are to the left and high order pin numbers are to the right. The three blades in the center of the connector are, from left to right, +5V, +5V, and +12V. CN2 pin one is at the bottom right of the above screen image as viewed from the bottom of the board. The odd numbered pins run along the bottom of the image and the even pins run along the top. Low order pin numbers are to the right and high order pin numbers are to the left. The three blades in the center of the connector are, from left to right, +12V, +5V, and +5V. +16 – 40 VDC Input, TB1 Terminal block TB1 is the input power connection for the APWR25110HR/35110HR/9104HR70W. The input range is 16 - 40 VDC. Fully loaded this input can require 4 amps, therefore 22 gauge wire or larger is recommended. Keep in mind that wire has both resistance and inductance associated with it. Pin 1 2 Signal Vin + Vin - APWR25110HR/35110HR/9104HR-70W Function +16 – 40 VDC input Ground input 9 in/out in in RTD Embedded Technologies, Inc. +5 VDC Output, TB3 The +5 VDC output is supplied to the +5 V pins on the PCIE/104 bus and to terminal block TB2. This supply is capable of providing 10 amps total that is shared by the PCIE/104 bus devices and any devices connected to TB3. Pin 1 2 Signal +5 VDC Ground Function Regulated +5 VDC Output Ground in/out out out +12 VDC Output, TB4 The +12 VDC output of the APWR25110HR/35110HR/9104HR-70W-50W is supplied to the +12 V pins on the PCIE/104 bus and to terminal block TB4. This supply is capable of providing 1.67 amps total that is shared by the PCIE/104 bus devices and any devices connected to TB4. Note that the total power drawn from the +12 VDC cannot exceed 20 watts. Pin 1 2 Signal +12 VDC Ground APWR25110HR/35110HR/9104HR-70W Function in/out Regulated +12 VDC Output out Ground out 10 RTD Embedded Technologies, Inc. User’s Manual APWR25110HR/35110HR/9104HR-70W 11 RTD Embedded Technologies, Inc. Chapter 4 USING THE UTILITYMODULE Using the utilityModule is straightforward. Connect the input to TB1 using good wiring practices keeping the wires as short and as heavy as possible. Make sure the wires are twisted to reduce inductance. The +5 VDC is provided. Below is the block diagram: System Buses APWR25110HR/35110HR/9104HR-70W 12 RTD Embedded Technologies, Inc. User’s Manual APWR25110HR/35110HR/9104HR-70W 13 RTD Embedded Technologies, Inc. Chapter 5 SPECIFICATIONS (All measurements taken at 25C) Input Voltage Range: 16V to 40V DC Max Input Current: 4 Amps Output Voltages: +5V and +12V Output Currents: 5V output: 10 amps 12V output: 1.67 Amps Overall Efficiency at full load: 82.9% at 24V DC input voltage 78.3% at 16V DC input voltage 83.8% at 40V DC input voltage 5V full load efficiency 83.7% at 24V DC input voltage 12V full load efficiency 74.96% at 24V DC input voltage Maximum Overall Dissipation at full load: 19.27 Watts 5V full load dissipation at 24V DC input voltage 9.657 Watts 12V full load dissipation at 24V DC input voltage 6.689 Watts Derating: (controlled by 4 Amp input current limit) Minimum input voltage for 70 Watt output load. 21V DC Maximum 12V load at 16VDC input voltage and 5V full load 240mA Maximum 5V load at 16V DC input voltage given a 12V full load 6.178 Amps Max Voltage drop to 5V and 12V converters at 4 Amps input current. 0.93V APWR25110HR/35110HR/9104HR-70W 14 RTD Embedded Technologies, Inc. User’s Manual Operating Temperature Range: -40C to 85C Maximum case temperature of any module. 125C Derating of Modules with no heat sink: Derate linearly to zero at 125C case temperature The above graph is at 16.93V DC input voltage. It shows the maximum loading of the 5V and 12V supplies. APWR25110HR/35110HR/9104HR-70W 15 RTD Embedded Technologies, Inc. 5V efficiency cure with dissipation curve with 24V DC input voltage 12V efficiency cure with dissipation curve with 24V DC input voltage APWR25110HR/35110HR/9104HR-70W 16 RTD Embedded Technologies, Inc. User’s Manual Chapter 6 RETURN POLICY AND WARRANTY Return Policy If the utilityModule requires repair, you may return it to us by following the procedure listed below: Caution: Failure to follow this return procedure will almost always delay repair! Please help us expedite your repair by following this procedure. 1) Read the limited warranty which follows. 2) Contact the factory and request a Returned Merchandise Authorization (RMA) number. 3) On a sheet of paper, write the name, phone number, and fax number of a technically-competent person who can answer questions about the problem. 4) On the paper, write a detailed description of the problem with the product. Answer the following questions: • Did the product ever work in your application? • What other devices were connected to the product? • How was power supplied to the product? • What features did and did not work? • What was being done when the product failed? • What were environmental conditions when the product failed? 5) Indicate the method we should use to ship the product back to you. • • • We will return warranty repairs by UPS Ground at our expense. Warranty repairs may be returned by a faster service at your expense. Non-warranty repairs will be returned by UPS Ground or the method you select, and will be billed to you. 6) Clearly specify the address to which we should return the product when repaired. 7) Enclose the paper with the product being returned. 8) Carefully package the product to be returned using anti-static packaging! We will not be responsible for products damaged in transit for repair. 7) Write the RMA number on the outside of the package. 8) Ship the package to: RTD Embedded Technologies, Inc. 103 Innovation Blvd. State College PA 16804-0906 USA APWR25110HR/35110HR/9104HR-70W 17 RTD Embedded Technologies, Inc. Limited Warranty RTD EMBEDDED TECHNOLOGIES, INC. WARRANTS THE HARDWARE AND SOFTWARE PRODUCTS IT MANUFACTURES AND PRODUCES TO BE FREE FROM DEFECTS IN MATERIALS AND WORKMANSHIP FOR ONE YEAR FOLLOWING THE DATE OF SHIPMENT FROM RTD EMBEDDED TECHNOLOGIES. THIS WARRANTY IS LIMITED TO THE ORIGINAL PURCHASER OF PRODUCT AND IS NOT TRANSFERABLE. DURING THE ONE-YEAR WARRANTY PERIOD, RTD EMBEDDED TECHNOLOGIES WILL REPAIR OR REPLACE, AT ITS OPTION, ANY DEFECTIVE PRODUCTS OR PARTS AT NO ADDITIONAL CHARGE, PROVIDED THAT THE PRODUCT IS RETURNED, SHIPPING PREPAID, TO RTD EMBEDDED TECHNOLOGIES. ALL REPLACED PARTS AND PRODUCTS BECOME THE PROPERTY OF RTD EMBEDDED TECHNOLOGIES. BEFORE RETURNING ANY PRODUCT FOR REPAIR, CUSTOMERS ARE REQUIRED TO CONTACT THE FACTORY FOR AN RMA NUMBER. THIS LIMITED WARRANTY DOES NOT EXTEND TO ANY PRODUCTS WHICH HAVE BEEN DAMAGED AS A RESULT OF ACCIDENT, MISUSE, ABUSE (SUCH AS: USE OF INCORRECT INPUT VOLTAGES, IMPROPER OR INSUFFICIENT VENTILATION, FAILURE TO FOLLOW THE OPERATING INSTRUCTIONS THAT ARE PROVIDED BY RTD EMBEDDED TECHNOLOGIES, "ACTS OF GOD" OR OTHER CONTINGENCIES BEYOND THE CONTROL OF RTD EMBEDDED TECHNOLOGIES), OR AS A RESULT OF SERVICE OR MODIFICATION BY ANYONE OTHER THAN RTD EMBEDDED TECHNOLOGIES. EXCEPT AS EXPRESSLY SET FORTH ABOVE, NO OTHER WARRANTIES ARE EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, ANY IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, AND RTD EMBEDDED TECHNOLOGIES EXPRESSLY DISCLAIMS ALL WARRANTIES NOT STATED HEREIN. ALL IMPLIED WARRANTIES, INCLUDING IMPLIED WARRANTIES FOR MECHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, ARE LIMITED TO THE DURATION OF THIS WARRANTY. IN THE EVENT THE PRODUCT IS NOT FREE FROM DEFECTS AS WARRANTED ABOVE, THE PURCHASER'S SOLE REMEDY SHALL BE REPAIR OR REPLACEMENT AS PROVIDED ABOVE. UNDER NO CIRCUMSTANCES WILL RTD EMBEDDED TECHNOLOGIES BE LIABLE TO THE PURCHASER OR ANY USER FOR ANY DAMAGES, INCLUDING ANY INCIDENTAL OR CONSEQUENTIAL DAMAGES, EXPENSES, LOST PROFITS, LOST SAVINGS, OR OTHER DAMAGES ARISING OUT OF THE USE OR INABILITY TO USE THE PRODUCT. SOME STATES DO NOT ALLOW THE EXCLUSION OR LIMITATION OF INCIDENTAL OR CONSEQUENTIAL DAMAGES FOR CONSUMER PRODUCTS, AND SOME STATES DO NOT ALLOW LIMITATIONS ON HOW LONG AN IMPLIED WARRANTY LASTS, SO THE ABOVE LIMITATIONS OR EXCLUSIONS MAY NOT APPLY TO YOU. THIS WARRANTY GIVES YOU SPECIFIC LEGAL RIGHTS, AND YOU MAY ALSO HAVE OTHER RIGHTS WHICH VARY FROM STATE TO STATE. APWR25110HR/35110HR/9104HR-70W 18 RTD Embedded Technologies, Inc.