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AM3358BZCZA80

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AM3358BZCZA80
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Texas Instruments

Sitara processor: Arm Cortex-A8, 3D graphics, PRU-ICSS, CAN 324-NFBGA -40 to 105

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(44)
Ethernet Powerlink Development Platform Reference Design
TIDEP0028: The TIDEP0028 Ethernet Powerlink development platform combines the AM335x Sitara processor family from Texas Instruments (TI) and the Powerlink open media access control (MAC) layer into a single system-on-chip (SoC) solution. Targeted for Ethernet Powerlink slave communications, the TIDEP0028 allows designers to implement the real-time Powerlink communication standard for a broad range of industrial automation equipment. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE).
TIDEP0044 Solar Inverter Gateway Development Platform Reference Design | TI.com
TIDEP0044: Solar Inverter Gateways add communication functions to solar energy generation systems to enable system monitoring, real-time feedback, system updates, and more. The TIDEP0044 reference design describes the implementation of a solar inverter gateway using display, Ethernet, USB, and CAN on the TMDXEVM3358 featuring TI's AM335x processor.
Ethernet/IP Communications Development Platform
TIDEP0003: Targeted for Ethernet/IP slave communications, this development platform allows designers to mplement Ethernet/IP communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
TIDEP0032 Multi-Protocol Industrial Ethernet Detection w/PRU-ICSS for Industrial Automation Reference Design | TI.com
TIDEP0032: Industrial Ethernet for Industrial Automation exist in more than 30 industrial standards. Some of the well-established real-time Ethernet protocols, like EtherCAT, EtherNet/IP, PROFINET, Sercos III and PowerLink require dedicated MAC hardware support in terms of FPGA or ASICs. The Programmable Real-time Unit inside the Industrial Communication Subsystem (PRU-ICSS), which exists as HW block inside the Sitara processors family, replaces FPGA or ASICS by a single chip solution. A firmware in the PRU-ICSS allows detecting the type of Industrial Ethernet protocol and loading the appropriate industrial application during run-time into Sitara processor. This TI Design describes the multi-protocol Industrial Ethernet protocol detection firmware for PRU-ICSS.
DLP Near-Infrared Spectrometer for Optical Analysis of Liquids & Solids Reference Design
TIDA-00155: This near-infrared (NIR) spectrometer reference design utilizes Texas Instruments' DLP technology in conjunction with a single-element InGaAs detector to deliver high performance measurements in a portable form factor that is more affordable than expensive InGaAs array detector or fragile rotating grating architectures. NIR spectrometers are commonly used to analyze organic-based liquids and solids for applications including food, agriculture, pharmaceuticals, petrochemicals, and plastics to name a few. Combined with a powerful Sitara embedded Processor and analog signal chain components, developers are now able to bring the power of high-end laboratory spectrometers to the field and manufacturing line.
TIDEP0008 PROFINET Communications Development Platform | TI.com
TIDEP0008: Targeted for PROFINET slave communications, this development platform allows designers to implement PROFINET communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
Data Concentrator Reference Design
TIDEP0006: The data concentrator reference design gives developers the ultimate level of flexibility and scalability with numerous performance, cost and connectivity options for their data concentrator designs. It includes advanced hardware and software that reduce development time by up to nine months while still supporting connectivity to more than 1,000 smart meters. Developers can easily plug in different connectivity modules, including Sub-1GHz (LPRF), general packet radio service (GPRS), near field communication (NFC) and TI's power line communication (PLC) system-on-module robust G3 and PRIME support.
TIDEP0002 PROFIBUS Communications Development Platform | TI.com
TIDEP0002: Targeted for PROFIBUS slave communications, this development platform allows designers to implement PROFIBUS communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
TIDEP0017 PRU Real-Time I/O Evaluation Reference Design | TI.com
TIDEP0017: This reference design is a BeagleBone Black add-on board that allows users get to know TI’s powerful Programmable Real-Time Unit (PRU) core and basic functionality. The PRU is a low-latency microcontroller subsystem integrated in the Sitara AM335x and AM437x family of devices. The PRU core is optimized for deterministic, real-time processing, direct access to I/Os and ultra-low-latency requirements. With LEDs and push buttons for GPIO, audio, a temp sensor, optional character display and more, this add-on board includes schematics, bill of materials (BOM), design files, and design guide to teach the basics of the PRU.
TIDEP0018 Parallel Camera Interface for Sitara Processors | TI.com
TIDEP0018: This camera interface design connects to a 10-bit parallel interface to the AM335x general purpose memory controller (GPMC) 16-bit multiplexed address/data bus. This design consumes roughly 150mW less power than typical USB solutions, and is ideal for applications like portable data terminals, ruggedized handhelds, portable consumer, industrial handhelds and others. The reference design is based on the QuickLogic 3.1 MP Camera Sensor (using an Aptina 3.1 MP sensor) connected to a camera expansion board. Together, they connect to the BeagleBone platform. The BeagleBone and the QuickLogic 3.1 MP camera add-on board are available for purchase. More information on QuickLogic: http://www.quicklogic.com More information about BeagleBone: http://www.ti.com/tool/beaglebn More information about the QuickLogic 3.1 MP camera add-on board for the BeagleBone, including design files and software: http://www.quicklogic.com/solutions/reference-designs/ti-sitara-beaglebone-camera-cape/
PRU Real-Time I/O Evaluation Reference Design
TIDEP0017: This reference design is a BeagleBone Black add-on board that allows users get to know TI’s powerful Programmable Real-Time Unit (PRU) core and basic functionality. The PRU is a low-latency microcontroller subsystem integrated in the Sitara AM335x and AM437x family of devices. The PRU core is optimized for deterministic, real-time processing, direct access to I/Os and ultra-low-latency requirements. With LEDs and push buttons for GPIO, audio, a temp sensor, optional character display and more, this add-on board includes schematics, bill of materials (BOM), design files, and design guide to teach the basics of the PRU.
TIDEP0028 Ethernet Powerlink Development Platform Reference Design | TI.com
TIDEP0028: The TIDEP0028 Ethernet Powerlink development platform combines the AM335x Sitara processor family from Texas Instruments (TI) and the Powerlink open media access control (MAC) layer into a single system-on-chip (SoC) solution. Targeted for Ethernet Powerlink slave communications, the TIDEP0028 allows designers to implement the real-time Powerlink communication standard for a broad range of industrial automation equipment. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE).
TIDEP0084 Sub-1 GHz Sensor to Cloud Industrial IoT Gateway Reference Design | TI.com
TIDEP0084: The TIDEP0084 reference design demonstrates how to connect sensors to the cloud over a long-range Sub-1 GHz wireless network, suitable for industrial settings such as building control and asset tracking. It is powered by a TI Sitara™ AM335x processor and the SimpleLink™ Sub-1 GHz CC1310/CC1350 devices. The reference design pre-integrates the TI 15.4-Stack software development kit (SDK) for Sub-1 GHz star network connectivity and the Linux® TI Processor software development kit (SDK). TI Design Network partner stackArmor supports the cloud application services for cloud connectivity and visualization of the sensor node data.
PROFIBUS Communications Development Platform
TIDEP0002: Targeted for PROFIBUS slave communications, this development platform allows designers to implement PROFIBUS communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
Multi-Protocol Industrial Ethernet Detection w/PRU-ICSS for Industrial Automation Reference Design
TIDEP0032: Industrial Ethernet for Industrial Automation exist in more than 30 industrial standards. Some of the well-established real-time Ethernet protocols, like EtherCAT, EtherNet/IP, PROFINET, Sercos III and PowerLink require dedicated MAC hardware support in terms of FPGA or ASICs. The Programmable Real-time Unit inside the Industrial Communication Subsystem (PRU-ICSS), which exists as HW block inside the Sitara processors family, replaces FPGA or ASICS by a single chip solution. A firmware in the PRU-ICSS allows detecting the type of Industrial Ethernet protocol and loading the appropriate industrial application during run-time into Sitara processor. This TI Design describes the multi-protocol Industrial Ethernet protocol detection firmware for PRU-ICSS.
Parallel Camera Interface for Sitara Processors
TIDEP0018: This camera interface design connects to a 10-bit parallel interface to the AM335x general purpose memory controller (GPMC) 16-bit multiplexed address/data bus. This design consumes roughly 150mW less power than typical USB solutions, and is ideal for applications like portable data terminals, ruggedized handhelds, portable consumer, industrial handhelds and others. The reference design is based on the QuickLogic 3.1 MP Camera Sensor (using an Aptina 3.1 MP sensor) connected to a camera expansion board. Together, they connect to the BeagleBone platform. The BeagleBone and the QuickLogic 3.1 MP camera add-on board are available for purchase. More information on QuickLogic: http://www.quicklogic.com More information about BeagleBone: http://www.ti.com/tool/beaglebn More information about the QuickLogic 3.1 MP camera add-on board for the BeagleBone, including design files and software: http://www.quicklogic.com/solutions/reference-designs/ti-sitara-beaglebone-camera-cape/
CC2531EM-IOT-LIGHTING-GATEWAY-RD Residential Lighting Gateway for IoT Applications Reference Design | TI.com
CC2531EM-IOT-LIGHTING-GATEWAY-RD: This design provides a reference ZigBee® gateway for IoT lighting applications. Feature-rich, Linux-based Network & GUI applications powered by Sitara™ AM335x processor can control and monitor ZigBee lighting nodes using the SimpleLink™ ZigBee CC2531 wireless MCU. This design includes example applications for local and remote control of ZigBee nodes, including Android (phones/tablets/set top boxes), Java-script for cloud connectivity agents and C-clients.
TIDEP0006 Data Concentrator Reference Design | TI.com
TIDEP0006: The data concentrator reference design gives developers the ultimate level of flexibility and scalability with numerous performance, cost and connectivity options for their data concentrator designs. It includes advanced hardware and software that reduce development time by up to nine months while still supporting connectivity to more than 1,000 smart meters. Developers can easily plug in different connectivity modules, including Sub-1GHz (LPRF), general packet radio service (GPRS), near field communication (NFC) and TI's power line communication (PLC) system-on-module robust G3 and PRIME support.
CC2531EM-IOT-HOME-GATEWAY-RD ZigBee Home Automation Gateway reference design | TI.com
CC2531EM-IOT-HOME-GATEWAY-RD: A gateway is a bridge that connects wireless devices to the Internet. This Linux-based Home Automation Gateway enables remote monitoring and control of ZigBee® powered nodes and devices inside the home. This gateway reference design includes ZigBee Home Automation (HA 1.2) certified software stack and tens of APIs that simplify ZigBee integration and application development in a Linux system.
TIDEP0073 Simple PID Control Reference Design With PRU(R)-ICSS Through Web Interface | TI.com
TIDEP0073: The TIDEP0073 reference design demonstrates simple motor control with a PID feedback loop using the Programmable Real Time Unit Subsystem and Industrial Communication Subsystem (PRU®-ICSS). A web interface is provided by the ARM® Cortex-A8® in the system for user control and interaction. This design provides a blueprint for task offloading and inter-processor communication that may be used when low latency and determinism are required.
ARM MPU with Integrated BiSS C Master Interface Reference Design
TIDEP0022: Impelementation of BiSS C Master protocol on Industrial Communication Sub-System (PRU-ICSS). The design provides full documentation and source code for Programmable Realtime Unit (PRU).
TIDA-00155 DLP Near-Infrared Spectrometer for Optical Analysis of Liquids & Solids Reference Design | TI.com
TIDA-00155: This near-infrared (NIR) spectrometer reference design utilizes Texas Instruments' DLP technology in conjunction with a single-element InGaAs detector to deliver high performance measurements in a portable form factor that is more affordable than expensive InGaAs array detector or fragile rotating grating architectures. NIR spectrometers are commonly used to analyze organic-based liquids and solids for applications including food, agriculture, pharmaceuticals, petrochemicals, and plastics to name a few. Combined with a powerful Sitara embedded Processor and analog signal chain components, developers are now able to bring the power of high-end laboratory spectrometers to the field and manufacturing line.
TIDEP0043 Acontis EtherCAT Master Stack Reference Design | TI.com
TIDEP0043: The acontis EC-Master EtherCAT Master stack is a highly portable software stack that can be used on various embedded platforms. The EC-Master supports the high performance TI Sitara MPUs, it provides a sophisticated EtherCAT Master solution which customers can use to implement EtherCAT communication interface boards, EtherCAT based PLC or motion control applications. The EC-Master architectural design does not require additional tasks to be scheduled, thus the full stack functionality is available even on an OS less platform such as TI Starterware suported on AM335x. Due to this architecture combined with the high speed Ethernet driver it is possible to implement EtherCAT master based applications on the Sitara platform with short cycle times of 100 microseconds or even below.
Solar Inverter Gateway Development Platform Reference Design
TIDEP0044: Solar Inverter Gateways add communication functions to solar energy generation systems to enable system monitoring, real-time feedback, system updates, and more. The TIDEP0044 reference design describes the implementation of a solar inverter gateway using display, Ethernet, USB, and CAN on the TMDXEVM3358 featuring TI's AM335x processor.
IEC 61850 Demonstration of Substation Bay Controller on Beaglebone Cape and Starter Kit
TIDEP0019: A low cost, simplified implementation of an IEC 61850 Substation Bay Controller is demonstrated by running the Triangle MicroWorks IEC 61850 stack efficiently on the TI AM335X platform with a Linux target layer definition. Many different substation automation applications can be built on top of the AM335X platform and 61850 stack demonstration.
EtherCAT Communications Development Platform
TIDEP0001: Targeted for EtherCAT slave communications, this development platform allows designers to implement real-time EtherCAT communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
PROFINET Communications Development Platform
TIDEP0008: Targeted for PROFINET slave communications, this development platform allows designers to implement PROFINET communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
Residential Lighting Gateway for IoT Applications Reference Design
CC2531EM-IOT-LIGHTING-GATEWAY-RD: This design provides a reference ZigBee® gateway for IoT lighting applications. Feature-rich, Linux-based Network & GUI applications powered by Sitara™ AM335x processor can control and monitor ZigBee lighting nodes using the SimpleLink™ ZigBee CC2531 wireless MCU. This design includes example applications for local and remote control of ZigBee nodes, including Android (phones/tablets/set top boxes), Java-script for cloud connectivity agents and C-clients.
TIDEP0010 Sercos III Communications Development Platform | TI.com
TIDEP0010: The TIDEP0010 Sercos III communication development platform combines the AM335x Sitara processor family from Texas Instruments (TI) and the Sercos III media access control (MAC) layer into a single system-on-chip (SoC) solution. Targeted for Sercos III slave communications, the TIDEP0010 allows designers to implement the real-time Sercos III communication standard for a broad range of industrial automation equipment. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE).
TIDC-WL1837MOD-AUDIO-MULTIROOM-CAPE TI WiLink™8 Wi-Fi®/Bluetooth®/Bluetooth Smart audio multi-room cape reference design | TI.com
TIDC-WL1837MOD-AUDIO-MULTIROOM-CAPE: The TI WiLink™ 8 WL1837MOD ( http://www.ti.com/product/wl1837mod ) audio cape is wireless multi-room audio reference design used with BeagleBone Black (http://www.ti.com/tool/beaglebk featuring TI Sitara™ AM335x). The WiLink 8 device's WLAN capability to capture and register precise arrival time of the connected AP’s beacon is used to achieve ultra-precise synchronization between multiple connected audio devices. The WiLink 8 module (WL1837MOD) offers integrated Wi-Fi®/Bluetooth® /Bluetooth Smart solution featuring 2.4 GHz MIMO and antenna diversity on 5 GHz band. It offers best in class audio solution featuring multi-room, Airplay® receiver, full audio stack streaming, support for online music services and much more. This TI Design will enable customers to design their own audio boards with Wi-Fi/Bluetooth /Bluetooth Smart connectivity from our WiLink 8 module (WL1837MOD) and evaluate audio multi-room software on it. The BeagleBone Wi-Fi Audio Cape extends a standard TI Sitara processor-based BeagleBone Black with WiLink 8 Wi-Fi /Bluetooth /Bluetooth Smart connectivity and an audio subsystem. The cape and relevant SDK are available at an additional cost from StreamUnlimited.
TIDEP0001 EtherCAT Communications Development Platform | TI.com
TIDEP0001: Targeted for EtherCAT slave communications, this development platform allows designers to implement real-time EtherCAT communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
TIDA-00942 12-bit, 20-MSPS Data Acquisition Reference Design for Digitizer | TI.com
TIDA-00942: This reference design enables a cost-effective and low-power data acquisition system that provides an alternative to FPGA-based systems. It features a single-ended, high-impedance input that can be used in a wide number of applications, including portable instrumentation and digitizers. The reference design utilizes the ADS4122 analog-to-digital converter (ADC), along the with the OPA656 and THS4541 operational amplifiers (op amps) to develop a 12-bit, 20-MSPS digitizer for the BeagleBone Cape form factor. The expansion board devleoped in this reference design interfaces with the BeagleBone Black development platform, which is a low-cost, open-source, community-supported environment based on the ARM Cortex-A8 processor.
TIDEP0007 Internet Enabled 3D Printer Motion Controller Reference Design | TI.com
TIDEP0007: This open source 3D printer motion controller design connects your BeagleBone Black to a 3D printer enabling your 3D printer to become an internet enabled device capable of super high speed printing. With this design you no longer need to have a dedicated computer connected to your 3D printer. Load your 3D printer files onto your BeagleBone Black and the 3D printer design will communicate with the 3D printer. This design is based on the Replicape 3D printer BeagleBone Black add-on board. All design files and software are open source, licensed under GPL. More information about BeagleBone Black: http://www.ti.com/tool/beaglebk More information about Replicape, including design files and software: http://www.thing-printer.com/product/replicape/
TIDEP0003 Ethernet/IP Communications Development Platform | TI.com
TIDEP0003: Targeted for Ethernet/IP slave communications, this development platform allows designers to mplement Ethernet/IP communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.
Internet Enabled 3D Printer Motion Controller Reference Design
TIDEP0007: This open source 3D printer motion controller design connects your BeagleBone Black to a 3D printer enabling your 3D printer to become an internet enabled device capable of super high speed printing. With this design you no longer need to have a dedicated computer connected to your 3D printer. Load your 3D printer files onto your BeagleBone Black and the 3D printer design will communicate with the 3D printer. This design is based on the Replicape 3D printer BeagleBone Black add-on board. All design files and software are open source, licensed under GPL. More information about BeagleBone Black: http://www.ti.com/tool/beaglebk More information about Replicape, including design files and software: http://www.thing-printer.com/product/replicape/
G3 Power Line Communications Data Concentrator on BeagleBone Black Platform
TIDEP0023: This Power Line Communications (PLC) Data Concentrator design offers a simplified approach for evaluating G3-PLC utilizing Beagle Bone Black powered by the Sitara AM335x processor. Users can establish a G3-PLC network with one service node. Single phase coupling is supported.
High Performance Pulse Train Output (PTO) with PRU-ICSS for Industrial Applications Reference Design
TIDEP0027: The TIDEP0027 High Performance Pulse Train Output (PTO) with PRU-ICSS for Industrial Application combines the AM335x Sitara processor family from Texas Instruments (TI) and the PTO module into a single system-on-chip (SoC) solution. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE) but can be also used with other PRU-ICSS capable development boards.
TIDEP0019 IEC 61850 Demonstration of Substation Bay Controller on Beaglebone Cape and Starter Kit | TI.com
TIDEP0019: A low cost, simplified implementation of an IEC 61850 Substation Bay Controller is demonstrated by running the Triangle MicroWorks IEC 61850 stack efficiently on the TI AM335X platform with a Linux target layer definition. Many different substation automation applications can be built on top of the AM335X platform and 61850 stack demonstration.
TIDEP0022 ARM MPU with Integrated BiSS C Master Interface Reference Design | TI.com
TIDEP0022: Impelementation of BiSS C Master protocol on Industrial Communication Sub-System (PRU-ICSS). The design provides full documentation and source code for Programmable Realtime Unit (PRU).
Sercos III Communications Development Platform
TIDEP0010: The TIDEP0010 Sercos III communication development platform combines the AM335x Sitara processor family from Texas Instruments (TI) and the Sercos III media access control (MAC) layer into a single system-on-chip (SoC) solution. Targeted for Sercos III slave communications, the TIDEP0010 allows designers to implement the real-time Sercos III communication standard for a broad range of industrial automation equipment. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE).
ZigBee Home Automation Gateway reference design
CC2531EM-IOT-HOME-GATEWAY-RD: A gateway is a bridge that connects wireless devices to the Internet. This Linux-based Home Automation Gateway enables remote monitoring and control of ZigBee® powered nodes and devices inside the home. This gateway reference design includes ZigBee Home Automation (HA 1.2) certified software stack and tens of APIs that simplify ZigBee integration and application development in a Linux system.
Acontis EtherCAT Master Stack Reference Design
TIDEP0043: The acontis EC-Master EtherCAT Master stack is a highly portable software stack that can be used on various embedded platforms. The EC-Master supports the high performane TI Sitara MPUs, it provides a sophisticated EtherCAT Master solution which customers can use to implement EtherCAT communication interface boards, EtherCAT based PLC or motion control applications. The EC-Master architectural design does not require additional tasks to be scheduled, thus the full stack functionality is available even on an OS less platform such as TI Starterware suported on AM335x. Due to this architecture combined with the high speed Ethernet driver it is possible to implement EtherCAT master based applications on the Sitara platform with short cycle times of 100 microseconds or even below.
TIDEP0056 Thermal Printing with the PRU-ICSS on the BeagleBone Black Reference Design | TI.com
TIDEP0056: The Programmable Realtime Unit – Industrial Communications Sub-System (PRU-ICSS) is a versatile component of the AM335x SoC that enables real-time, deterministic, fast GPIO control, even when running a non-deterministic operating system. This reference design provides a concrete use case and implementation of the PRU-ICSS to directly control a thermal printer module. Included are C code examples for ARM to PRU communications, real-time GPIO pin control to drive the thermal print head elements and stepper motors, and pinmux configuration.
TIDEP0027 High Performance Pulse Train Output (PTO) with PRU-ICSS for Industrial Applications Reference Design | TI.com
TIDEP0027: The TIDEP0027 High Performance Pulse Train Output (PTO) with PRU-ICSS for Industrial Application combines the AM335x Sitara processor family from Texas Instruments (TI) and the PTO module into a single system-on-chip (SoC) solution. The design is based on the TMDSICE3359 Industrial Communications Engine (ICE) but can be also used with other PRU-ICSS capable development boards.
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