Duration 3 Days 18 CPD hours This course is intended for This class is designed for experienced administrators and platform developers as well as solution, enterprise, and technical architects responsible for designing or building integration solutions on the Salesforce Platform. It's also designed for project or program managers looking to understand the big picture of integration in order to better manage their projects and programs. Ideally, you hold the Salesforce Administrator, Salesforce App Builder, or Salesforce Platform Developer I credential and/or are knowledgeable about standard and custom objects; how to work with flows and Process Builder; how to navigate Salesforce, Lightning Components, and Schema Builder; and Apex basics such as creating a Class and Anonymous Blocks. This class is recommended for anyone looking to earn their Salesforce Certified Integration Designer credential. Overview When you complete this course, you will be able to: Identify integration requirements by asking relevant integration questions to business stakeholders. Recommend appropriate integration patterns (Remote Process Invocation - Request and Reply, Remote Process Invocation - Fire and Forget, Batch Data Synchronization, Remote Call-In, and UI Update Based on Data Changes, Data Virtualization) to design integration solutions. Recommend appropriate integration capabilities (SOAP, REST, bulk, streaming, Outbound Messaging, Callouts, and Salesforce Connect) to build integration solutions. Explore architectural concepts and the big picture thinking of how to integrate on the Salesforce Platform. In this 3-day class, our Salesforce integration experts will demonstrate how to build solutions that provide a single view of your customers. You?ll learn about integration capabilities and the considerations that should be made when architecting an integration solution. Through a combination of demos, discussions, and hands-on exercises, you?ll design and build secure, scalable, and high-performing integration solutions that seamlessly surface the information that matters most Integration Overview Understand the Importance of Integration Explore Integration Architecture Explore the Meaning of Single View of the Customer Explore the Meaning of System Landscape Understand the Role of Enterprise Service Bus (ESB) and Extract Transform Load (ETL) in System Landscape Integration Capabilities Introduction to Salesforce APIs Create External Applications Using SOAP API Build Mobile Applications Using REST API Work with Large Data Volumes Using BULK API Build Event-Driven Applications Using Streaming API Build Event-Driven Applications Using Platform Events Build Event-Driven Applications Using Change Data Capture Send Data from Salesforce to External Applications Using Outbound Message Call External APIs Programmatically Using Callouts Integrate Data from an External Data Source Using Salesforce Connect Synchronize Data with Heroku Connect Call External APIs Declaratively Using External Services Integration Patterns Understand Use Cases for a Request and Reply Pattern Understand Use Cases for a Fire and Forget Pattern Understand Use Cases for a Batch Data Synchronization Pattern Understand Use Cases for a Remote Call-In Pattern Understand Use Cases for a UI Update Based on Data Changes Pattern Understand Use Cases for a Data Virtualization Pattern Integration Security Explore Two-Way Transport Layer Security (TLS) Understand When to Use Remote Site Settings Understand the Benefits of Using Named Credentials Understand Certificates Encrypt Your Data at Rest Using Salesforce Shield Platform Encryption Advanced Integration Discussions Design Solutions for Performance Design Solutions for Scale Review Integration Regulatory Requirements Review Integration Best Practices Case Study Draw a System Landscape Diagram Evaluate Business Needs Translate Needs to Integration Requirements Design an Integration Solution Build an Integration Solution Maintain an Integration Solution Additional course details: Nexus Humans Salesforce Design and Build Integration Solutions (ARC101) training program is a workshop that presents an invigorating mix of sessions, lessons, and masterclasses meticulously crafted to propel your learning expedition forward. This immersive bootcamp-style experience boasts interactive lectures, hands-on labs, and collaborative hackathons, all strategically designed to fortify fundamental concepts. Guided by seasoned coaches, each session offers priceless insights and practical skills crucial for honing your expertise. Whether you're stepping into the realm of professional skills or a seasoned professional, this comprehensive course ensures you're equipped with the knowledge and prowess necessary for success. While we feel this is the best course for the Salesforce Design and Build Integration Solutions (ARC101) course and one of our Top 10 we encourage you to read the course outline to make sure it is the right content for you. Additionally, private sessions, closed classes or dedicated events are available both live online and at our training centres in Dublin and London, as well as at your offices anywhere in the UK, Ireland or across EMEA.
Face to face One to one.
LTE Architecture and Protocols course description This course provides a comprehensive tour of the LTE architecture along with services provided and the protocols used. What will you learn Describe the overall architecture of LTE. Explain the information flows through LTE. Describe the LTE security. Describe LTE mobility management. Recognise the next steps for LTE. LTE Architecture and Protocols course details Who will benefit: Anyone working with LTE. Prerequisites: Mobile communications demystified Duration 3 days LTE Architecture and Protocols course contents Introduction History, LTE key features. The 4G ITU process. The LTE 3GPP specifications. Specifications. System Architecture LTE hardware architecture. UE architecture and capabilities. E-UTRAN and eNB. EPC, MME functions, SGW, PGW and PCRF. System interfaces and protocol stacks. Example information flows. Dedicated and default bearers. EMM, ECM, RRC state diagrams. Radio transmission and reception OFDMA, SC-FDMA, MIMO antennas. Air interface protocol stack. Logical, transport and physical channels. Frame and slot structure, the resource grid. Resource element mapping of the physical channels and signals. Cell acquisition, data transmission and random access. MAC, RLC, PDCP protocols. LTE spectrum allocation. Power-on procedures Network and cell selection. RRC connection establishment. Attach procedure, including IP address allocation and default bearer activation. LTE detach procedure. Security in LTE networks LTE security features, identity confidentiality, ciphering and integrity protection. Architecture of network access security in LTE. Secure key hierarchy. Authentication and key agreement procedure. Security mode command procedure. Network domain security architecture. Security associations using IKE and IPSec. Mobility management RRC_IDLE, RRC_CONNECTED. Cell reselection, tracking area updates. Measurement reporting. X2 and S1 based handovers. Interoperation with UMTS, GSM and non-3GPP technologies such as cdma2000. QoS, policy control and charging QoS in LTE, EPS bearers, service data flows and packet flows. The architecture and signalling procedures for policy and charging control. Data transport using GPRS, differentiated services and MPLS. Offline and online charging in LTE. Delivery of voice and text messages over LTE Difficulties and solutions for Voice over LTE. Architecture and call setup procedures for circuit switched fallback. Architecture, protocols and call setup procedures in IP multimedia subsystem. Enhancements in release 9 LTE location services. Multimedia broadcast / multicast service and MBSFN. Cell selection, commercial mobile alert service. LTE Advanced and release 10 Impact of carrier aggregation on LTE air interface. Enhanced MIMO processing on uplink and downlink. Relaying. Release 11 and beyond. OAM and self organising networks Operation, administration, maintenance and provisioning for LTE. Self-configuration of base station parameters. Fractional frequency re-use, inter-cell interference co-ordination. Self-optimisation of base station procedures. Self-healing to detect and recover from faults.
SAFe® for Architects: In-House Training Enable continuous value flow by aligning technical strategy with business goals, communicating that strategy to development teams, and applying Agile architecture practices. Attendees can improve collaboration and alignment in a SAFe® Lean-Agile enterprise when they become a SAFe® 5 Architect. The SAFe® for Architects course prepares System, Solution, and Enterprise Architects to engage across the organization as effective leaders and change agents who collaboratively deliver architectural solutions. During this course, attendees will explore the roles, responsibilities, and mindset of Agile Architects, and appreciate how to align architecture with business value and drive continuous flow to large systems of systems while supporting SAFe® program execution. What you will Learn To perform the role of a SAFe® Architect, you should be able to: Architect using SAFe® principles Align architecture with business value Develop and communicate architecture vision and intent Plan architectural runway to enable delivery success Architect for continuous delivery and Release on Demand Lead and coach architects and team members during Program Increment (PI) Planning and execution Provide leadership during a Lean-Agile transformation Exemplifying Lean-Agile architecture Architecting for DevOps and Release on Demand Aligning architecture with business value Developing Solution Vision, Solution Intent, and Roadmaps Preparing architecture for Program Increment (PI) Planning Coordinating architecture throughout PI Planning Supporting Continuous Delivery during PI execution Supporting new Strategic Themes and Value Streams Leading as an architect during a Lean-Agile transformation
SAFe® for Architects: Virtual In-House Training Enable continuous value flow by aligning technical strategy with business goals, communicating that strategy to development teams, and applying Agile architecture practices. Attendees can improve collaboration and alignment in a SAFe® Lean-Agile enterprise when they become a SAFe® 5 Architect. The SAFe® for Architects course prepares System, Solution, and Enterprise Architects to engage across the organization as effective leaders and change agents who collaboratively deliver architectural solutions. During this course, attendees will explore the roles, responsibilities, and mindset of Agile Architects, and appreciate how to align architecture with business value and drive continuous flow to large systems of systems while supporting SAFe® program execution. What you will Learn To perform the role of a SAFe® Architect, you should be able to: Architect using SAFe® principles Align architecture with business value Develop and communicate architecture vision and intent Plan architectural runway to enable delivery success Architect for continuous delivery and Release on Demand Lead and coach architects and team members during Program Increment (PI) Planning and execution Provide leadership during a Lean-Agile transformation Exemplifying Lean-Agile architecture Architecting for DevOps and Release on Demand Aligning architecture with business value Developing Solution Vision, Solution Intent, and Roadmaps Preparing architecture for Program Increment (PI) Planning Coordinating architecture throughout PI Planning Supporting Continuous Delivery during PI execution Supporting new Strategic Themes and Value Streams Leading as an architect during a Lean-Agile transformation