BEGIN:VCALENDAR
VERSION:2.0
PRODID:-//Smart Training Center - ECPv6.17.4//NONSGML v1.0//EN
CALSCALE:GREGORIAN
METHOD:PUBLISH
X-WR-CALNAME:Smart Training Center
X-ORIGINAL-URL:https://smart-training-center.com
X-WR-CALDESC:Events for Smart Training Center
REFRESH-INTERVAL;VALUE=DURATION:PT1H
X-Robots-Tag:noindex
X-PUBLISHED-TTL:PT1H
BEGIN:VTIMEZONE
TZID:Asia/Krasnoyarsk
BEGIN:STANDARD
TZOFFSETFROM:+0700
TZOFFSETTO:+0700
TZNAME:+07
DTSTART:20250101T000000
END:STANDARD
END:VTIMEZONE
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260629T083000
DTEND;TZID=Asia/Krasnoyarsk:20260701T160000
DTSTAMP:20260406T224459Z
CREATED:20241122T160352Z
LAST-MODIFIED:20260406T224459Z
UID:970-1782721800-1782921600@smart-training-center.com
SUMMARY:Introduction to FEED (Front End Engineering Design)
DESCRIPTION:BACKGROUND:\nFront End Engineering Design (FEED) is a crucial phase in the development of large-scale engineering projects\, particularly in industries like oil and gas\, petrochemicals\, power\, and infrastructure. This phase occurs after the conceptual design and before the detailed engineering phase. FEED focuses on defining the project’s technical requirements and laying the groundwork for a successful execution by ensuring all necessary aspects are well-understood and documented. \nFEED helps establish a well-defined scope\, budget\, schedule\, and identifies risks\, resulting in greater success during implementation\, start-up\, and beyond. By undertaking FEED at the beginning of your project\, you can minimize your overall project risks. \nThrough a FEED\, you can realize:\n\nLower lifecycle costs\nReduced project technical\, schedule and cost risks\nFaster time to achieve plant startup and turnover\nReduced EHS and compliance risks\nImproved risk identification and mitigation\n\nOBJECTIVES:\n\nUnderstand the purpose and importance of the Front End Engineering Design (FEED) phase in project development.\nRecognize the key differences between FEED\, conceptual design\, and detailed engineering.\nIdentify the major components and deliverables of the FEED phase\, such as process flow diagrams (PFDs)\, equipment layouts\, and preliminary cost estimates.\nGrasp the basic steps involved in defining project scope and objectives during FEED.\nAppreciate the role of FEED in minimizing risks\, controlling costs\, and ensuring project alignment with business goals.\nGain insights into how FEED influences subsequent project phases\, including procurement and construction.\nLearn best practices and basic strategies for applying FEED principles in real-world scenarios.\n\n\n\nRecommended Participants\n\nProject managers and engineers in oil & gas\, petrochemical\, and power industries.\nProfessionals involved in planning\, design\, and project execution.\nProcurement & Logistic who involved in Procurement Project Management (PPM)\nNew team members seeking foundational knowledge of FEED.\n\n\n\nCourse Outline\nIntroduction and Overview\nUnderstanding FEED \n\nDefinition and purpose of FEED.\nRole of FEED in the project lifecycle.\nKey differences between FEED\, conceptual design\, and detailed engineering.\n\nKey Elements of FEED \n\nOverview of project scope and objectives.\nImportance of aligning FEED with business and project goals.\nKey deliverables of a FEED phase.\n\nSimplified FEED Processes\nBasics of Project Scope Definition \n\nHow to define project requirements.\nEssential inputs for a successful FEED phase.\n\nIntroduction to FEED Deliverables \n\nOverview of typical FEED outputs:\n\nProcess flow diagrams (PFDs).\nEquipment lists and layouts.\nPreliminary cost estimates.\n\n\n\nActivity: Exercise on reviewing sample FEED deliverables. \nFEED Best Practices and Practical Applications\nSimplified Risk and Cost Overview \n\nBasics of identifying risks in FEED.\nImportance of preliminary cost estimation.\n\nTransition from FEED to Execution \n\nHow FEED influences the detailed engineering phase.\nBrief introduction to integrating FEED with procurement and construction.\n\nCase Studies and Summary \n\nReal-world examples of successful FEED implementation.\nKey lessons learned from common FEED challenges.\n\nActivity: Wrap-up discussion on how to apply FEED concepts in small-scale projects. \n\n\nAbout The Course Leader\nIr. Deddy Nugraha\, is a Senior Rotating Engineer and Asset Reliability specialist. Graduated from Mechanical Engineering Department\, ITB (1990)\, and had advanced training in France and USA\, for Gas turbine maintenance and repair. He brings extensive expertise in RCA and troubleshooting for Turbomachinery Equipment\, as well as in Reliability philosophy\, and serves as a SERIP instructor at Chevron-Riau. Additionally\, he holds the position of General Secretary for both the Indonesian Reliability Society (ISR) and KMI. \nMany consulting works has been conducted including in PT. Indonesia Power (Tambak Lorok\, Suralaya\, Perak)\, PT.IPMOMI Paiton\, and\, PT. PGN SBU TSJ and PT. Pertamina Gas\, PT. HKS Humpus\, and PT. Vale Indonesia. Operational excellence at PGN and railway safety management at the Minister of Transportation. Reliability Data collection in Geothermal Power plant Kamojang. \n\n\n| Training Berikutnya: 24 – 26 Agustus 2026\, Bandung
URL:https://smart-training-center.com/event/introduction-to-feed-front-end-engineering-design/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Project
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/Introduction-to-Front-End-Engineering-Design.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260706T083000
DTEND;TZID=Asia/Krasnoyarsk:20260708T160000
DTSTAMP:20260415T042915Z
CREATED:20241122T100848Z
LAST-MODIFIED:20260415T042915Z
UID:891-1783326600-1783526400@smart-training-center.com
SUMMARY:Instrumentation\, Electrical and Control System
DESCRIPTION:About the Course:\nThis course provides a comprehensive overview of Instrumentation\, Electrical\, and Control Systems\, covering core concepts essential for modern industrial environments. Participants will explore the principles behind industrial instrumentation\, electrical components\, and the integration of control systems that drive automation and process optimization. The program delves into key areas such as sensors\, signal transmission\, actuators\, and the operation of PID controllers within PLC and DCS frameworks. \nThe objective of this course is to equip participants with a strong understanding of the electronics behind instruments\, interface devices\, and control systems. Emphasis is placed on developing practical skills for configuring\, maintaining\, and tuning industrial control systems. By addressing both basic and advanced configurations of PID controllers\, the course aims to enhance the participants’ ability to ensure stability and reliability in industrial processes. \nCourse Objectives:\nUpon completion\, participants will be proficient in understanding and applying the principles of instrumentation\, electrical systems\, and process control. They will gain hands-on experience with essential tools and techniques for system analysis\, troubleshooting\, and performance enhancement\, contributing to more efficient and effective industrial operations. \nWho Should Attend:\n\nControl system operators responsible for maintaining and optimizing industrial processes.\nElectrical and instrumentation technicians involved in system installation and maintenance.\nEngineers engaged in the design\, implementation\, and improvement of control systems.\nProject managers overseeing automation and instrumentation projects.\n\nCourse Content:\n\nIntroduction to Instrumentation\, Electrical\, and Control Systems\nStatic and Dynamic Characteristics of Instruments and Electrical Devices\nCore Components of Instrumentation and Electrical Systems\nSensor Types\, Functions\, and Industrial Applications\nActuators and Their Role in Control Systems\nSignal Transmission\, Interfacing\, and Digital Communication\nInstrumentation and Electrical System Electronics\nFeedback Concepts and Loop Control\nAnalysis and Optimization of Feedback Systems\nPID Controllers: Configuration\, Tuning\, and Implementation\nElectrical Control System Design and Troubleshooting\nPractical Techniques for PID Tuning and Performance Enhancement\nLaboratory Exercises and Real-World Demonstrations\n\nAbout the Trainer:\nProf. Endra Joelianto\, Ir.\, Ph.D.\, SMIEEE \nHolds an Engineering Physics degree from ITB (1990) and a Ph.D. in Control Engineering from The Australian National University (2001). Expert in control engineering\, specializing in Hybrid Control Systems\, Discrete Event Control Systems\, Petri Nets\, Robust PID Controllers\, Advanced Process Control\, and Industrial Automation using PLC/DCS. \nProf. Endra is the coordinator of Intelligent Control and Automation and founder of the PLC Research Group at the Instrumentation and Control Laboratory (LINK)\, ITB. Established the Schneider-OMRON PLC Training Center at Maranatha Christian University\, collaborating with Schneider Electric Indonesia\, OMRON Japan\, and Invensys WONDERWARE. \nProf. Endra has led several industrial automation and control training programs\, including TPSDP Retooling Projects\, and attended professional training in PLC\, DCS\, and instrumentation calibration in Indonesia\, Singapore\, and South Africa. He regularly instructs public\, university\, and in-house training for leading companies and institutions in the petrochemical\, oil\, gas\, and manufacturing sectors. \nPublic Training berikutnya : 21 – 23 September\, 2026 | 3 – 5 Desember\, 2026
URL:https://smart-training-center.com/event/electrical-instrument-and-control-system/
CATEGORIES:Electrical,Engineering,Instrument and control,Maintenance
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/instrumentation-electrical-and-control-system.jpg
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260707T083000
DTEND;TZID=Asia/Krasnoyarsk:20260709T160000
DTSTAMP:20260411T000806Z
CREATED:20241122T155208Z
LAST-MODIFIED:20260411T000806Z
UID:936-1783413000-1783612800@smart-training-center.com
SUMMARY:Oil and Gas Processing Plants
DESCRIPTION:Background & About the Course:\nIndustri minyak dan gas memerlukan pemahaman mendalam mengenai proses pengolahan yang efisien untuk mengubah bahan baku menjadi produk yang dapat digunakan\, seperti gas alam dan minyak mentah yang sudah diproses. Pengolahan ini mencakup berbagai tahapan yang melibatkan teknologi tinggi dan sistem yang kompleks\, dari pemisahan gas dan cairan hingga pengolahan komponen kimia yang dihasilkan. Untuk memastikan kinerja optimal dan mengurangi risiko operasional\, para profesional harus memiliki pengetahuan yang kuat tentang teknik dan prinsip dasar dalam pengolahan minyak dan gas. \nPelatihan ini akan memberikan pemahaman yang komprehensif tentang berbagai sistem yang ada dalam plant pengolahan minyak dan gas\, mulai dari unit pemrosesan hingga sistem pemantauan dan kontrol. Fokus pelatihan ini adalah untuk membantu peserta mengidentifikasi tantangan yang ada dalam proses pengolahan serta cara-cara untuk meningkatkan efisiensi dan keselamatan operasi. Dengan materi yang praktis dan berbasis pada studi kasus\, peserta akan memperoleh keterampilan yang dapat langsung diterapkan di lapangan. \nCourse Objectives:\n\nMemahami prinsip dasar dan alur proses di Oil & Gas Processing Plant.\nMengenal berbagai unit dan teknologi yang digunakan dalam pengolahan minyak dan gas.\nMengidentifikasi dan mengelola potensi masalah operasional di plant pengolahan.\nMenerapkan teknik pemisahan\, distilasi\, dan pengolahan gas serta cairan.\nMemahami pentingnya keselamatan dan efisiensi dalam pengolahan minyak dan gas.\nMenilai dan meningkatkan kinerja plant melalui optimasi proses.\nMenerapkan prosedur pemantauan dan kontrol untuk menjaga kualitas dan kuantitas produk.\n\nWho Should Attend:\n\nProduction Operation\nMaintenance\nOperation Manager\nProject Engineer\nHSE Engineer\n\nCourse Content:\n\nFundamentals Controlling Production\nOverview of Production Processes\nSeparators & Pressure Vessels\nEmulsions & Oil treating\nWater Treatment\nGas Sweetening\nPlant Piping & Pipelines\nMeasurement\nProcess Control & Safety Systems\n\nABOUT THE COURSE LEADERS:\nIr. In Jumanda Kasdadi\, M.T \nIn addition to his duty as lecturer\, Mr. Jumanda has delivered almost 280 trainings (public & in-house) in various types of industries\, especially for oil and gas companies since 1997. He holds Bachelor and Master Degrees in Chemical Engineering degrees from the Institute Technology Bandung. He has also taken courses for 9 topics in The Oil & Gas fields at PETEX (Petroleum Extension)\, University of Texas at Austin\, in Houston\, Texas\, USA (2018). \nBeyond his formal educations\, he has many other professional certificates; Lecturer Certificate from Indonesia Minister of Education; Construction\, Electrical and Fire Protection Certificates from HSE Association Indonesia (ALPK3); Risk Based Inspection (RBI) Facilitator\, Instrumentation Engineering Design for Oil & Gas Project with INtools (Ref.No OGC01-170516200516-2839); HAZOPS and HAZID Certificates from Indonesia Certifying Agency (BNSP). \nCompanies where he delivered the training to are mostly major intensive capital such as Pertamina\, PHE\, PHI\, PHR\, PHKT\, PGN\, Chevron\, ConocoPhillips\, Total Indonesie\, CNOOC\, Medco\, Petrochina\, Star Energy\, Freeport\, Mubadala\, Indonesia Power\, Geothermal Companies\, KAI\, US Consulate\, Freeport\, SKK Migas\, Titas (Bangladesh)\, and petrochemical & mining and others. \nIr. In Jumanda K\, MT was directly involved in many projects of Feasibility Studies (FS)\, and further Front-End Engineering Design (FEED)\, Detail Engineering Design for Construction (DEDC) in oil/gas industry\, Risk-Based Inspection (RBI)\, HAZID\, HAZOPS\, QRA\, FTA\, SIL Classification\, etc; for national and international companies.
URL:https://smart-training-center.com/event/oil-gas-processing-plants/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Oil & Gas,Production Operation
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/Oil-Gas-Processing-Plants-Design-Operations.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260708T080000
DTEND;TZID=Asia/Krasnoyarsk:20260710T170000
DTSTAMP:20260415T073600Z
CREATED:20260414T083641Z
LAST-MODIFIED:20260415T073600Z
UID:2778-1783497600-1783702800@smart-training-center.com
SUMMARY:Process Safety & Asset Intergrity Management System
DESCRIPTION:Background: \nProcess Safety & Asset Intergrity Management System\, biasanya merupakan dua hal yang terpisah. Padahal keselamatan proses (Process Safety) dan integritas aset (Asset Integrity) merupakan fondasi utama dalam industri migas yang berisiko tinggi. Kegagalan pengelolaan kedua aspek ini bisa menimbulkan kerugian besar\, baik dari sisi manusia\, lingkungan\, maupun bisnis. \nProcess Safety & Asset Integrity Management System (PSAIMS) adalah kerangka kerja komprehensif yang menyatukan keduanya untuk memastikan operasi yang andal\, aman\, dan berkelanjutan dengan menghadirkan 2 narasumber dengan kompetensi yang saling melengkapi. Jadi\, PSAIMS adalah sistem manajemen yang menyatukan keselamatan proses dan integritas aset secara menyeluruh untuk meningkatkan keamanan dan keandalan operasi aset industri. \nObjectives:\n– Memberikan pemahaman menyeluruh tentang elemen-elemen kunci PSAIMS.\n– Membekali peserta dengan keterampilan identifikasi bahaya\, manajemen risiko\, dan kontrol kritis.\n– Mengasah kompetensi inspeksi\, pemeliharaan\, audit\, dan tanggap darurat.\n– Mendorong budaya keselamatan berkelanjutan di seluruh level organisasi. \n\n\nRecommended Participants:\n– Manajer/supervisor bidang operasi\, maintenance\, engineering.\n– Personel K3\, HSSE\, reliability\, asset integrity\, dan QA.\n– Kontraktor dan tenaga pendukung yang terlibat dalam manajemen aset dan keselamatan proses.\n– Profesional migas yang mengelola risiko dan keselamatan operasional. \n\n\nCourse Outline:\nProcess Safety Management (PSM) – Pondasi Keselamatan Proses & Pencegahan Major Incident:\n1. Pengenalan PSAIMS dan integrasi PSM–AIMS:\n– Evolusi regulasi & standar (OSHA PSM\, API\, OGP)\n– Hubungan PSM dengan AIMS\n2. Identifikasi bahaya & analisis risiko:\n– Metode HAZID\, HAZOP\, LOPA\n– Contoh penerapan di fasilitas migas\n3. Prosedur operasi & safe working practices:\n– Permit to Work\, isolasi energi\, job safety analysis\n4. Rencana tanggap darurat & manajemen krisis:\n– Incident Command System (ICS)\n– Koordinasi internal & eksternal\n– Safety Leadership dalam Process Safety \nAsset Integrity Management (AIMS) – Bagian I\, Kerangka Kerja AIMS & Pengendalian Technical Integrity:\n1. Prinsip & framework AIMS:\n– Konsep SECE (Safety & Environmental Critical Elements)\n– Lifecycle management asset\n2. Inspeksi\, pemeliharaan & condition monitoring:\n– RBI (Risk-Based Inspection)\n– NDT & predictive maintenance\n3. Pengelolaan aset aging & decommissioning:\n– Tantangan peralatan tua\n– Infrastruktur pendukung (pipeline\, storage\, utilities)\n4. Kesiapan operasi & Pre-Startup Safety Review (PSSR)\n5. Transformasi digital dalam AIMS:\n– IoT\, digital twin\, dashboard integritas asset \nAsset Integrity Management (AIMS) – Bagian II & Continuous Improvement\, Respon darurat\, evaluasi kinerja & budaya keselamatan:\n1. Monitoring kinerja & penilaian risiko berkelanjutan:\n– KPI PSAIMS\n– Leading vs lagging indicators\n2. Audit & review PSAIMS:\n– Internal/ external audit\n– Gap analysis & benchmarking\n3. Investigasi insiden & analisis akar masalah:\n– Metode RCA\, 5 Why\, Bow-Tie\n– Case study interaktif\n4. Management of Change (MoC):\n– Prinsip\, prosedur\, dan kendala lapangan \n\n\nAbout The Course Leaders: (practitioners)\n1. Ir. In Jumanda Kasdadi\, M.T.\n2. Ir. Deddy Nugraha\, CMRP\, CLA \nPublic Training berikutnya : 25 – 27 November\, 2026
URL:https://smart-training-center.com/event/process-safety-asset-intergrity-management-system/
CATEGORIES:Engineering,Maintenance,Manajemen,Q-HSE
ATTACH;FMTTYPE=image/webp:https://smart-training-center.com/wp-content/uploads/2026/04/PSAIMS-FJM-300x300-1.webp
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260713T083000
DTEND;TZID=Asia/Krasnoyarsk:20260715T160000
DTSTAMP:20260413T032157Z
CREATED:20241122T155240Z
LAST-MODIFIED:20260413T032157Z
UID:949-1783931400-1784131200@smart-training-center.com
SUMMARY:Process Hazard Analysis (PHA)
DESCRIPTION:BACKGROUND & ABOUT THE COURSE:\nDalam industri\, khususnya yang melibatkan proses berbahaya\, identifikasi\, evaluasi\, dan pengendalian risiko potensial sangat penting untuk memastikan keselamatan\, kepatuhan lingkungan\, dan keberlangsungan operasional. Analisis Bahaya Proses (PHA) berfungsi sebagai pendekatan sistematis untuk mengidentifikasi bahaya\, menganalisis potensi konsekuensi\, dan menerapkan langkah-langkah untuk mengurangi risiko. Karena proses industri menjadi semakin kompleks\, pentingnya kerangka kerja PHA yang kuat telah berkembang\, yang membutuhkan personel terampil yang mampu memahami dan menerapkan metodologi tingkat lanjut secara efektif. \nProgram pelatihan ini dirancang untuk membekali peserta dengan pengetahuan yang komprehensif dan keterampilan praktis dalam melakukan Analisis Bahaya Proses. Dengan berfokus pada teknik-teknik utama seperti Studi Bahaya dan Operabilitas (HAZOP)\, Analisis What-If\, dan Analisis Mode dan Efek Kegagalan (FMEA)\, program ini bertujuan untuk meningkatkan kemampuan peserta dalam mengantisipasi risiko potensial\, mengusulkan langkah-langkah pencegahan\, dan memastikan kepatuhan terhadap standar keselamatan internasional. \nTRAINING OBJECTIVES:\n\nCara melakukan PHA untuk memenuhi persyaratan Process Safety Management (PSM) untuk PHA awal dan manajemen analisis perubahan termasuk elemen-elemen penting berikut\nCara mempersiapkan PHA; Menentukan cakupan PHA; Mengumpulkan informasi; Memilih tim; Memimpin rapat; Mendokumentasikan hasil\nBagaimana dan kapan menerapkan metode analisis HAZOP\, FMEA\, dan/atau what-if/checklist pada sistem proses apa pun di industri apa pun\nCara menganalisis prosedur operasi untuk skenario kecelakaan kritis\nMenerapkan PHA untuk memastikan operesional & maintenance yang lebih aman\n\nWHO SHOULD ATTEND:\n\nProcess Safety Management Coordinator\nHSE Managers & Engineers\nProcess engineers or project engineer\nOperations supervisor\n\nCOURSE OUTLINE:\n\nIntroduction: Learning objectives; Overview of process safety management; Risk assessment concepts; Overview of PHA requirements\nOverview of risk review methods: Methods and their usefulness over the life cycle of a process; Making risk judgments; Human factors concepts and how to address human factors during hazard evaluations\nPreparing for the hazard evaluation (risk review or PHA): Scoping the analysis; Choosing technique and level of detail and sections; Choosing the team members; Logistics and procedures for pre-meeting\, meeting\, and post-meeting tasks\nWhat-if/checklist technique: Workshop: What-if/checklist review of a continuous process\nHAZOP technique: Workshop: HAZOP review of a continuous process\nAnalysis documentation\, results\, and follow-up: Workshop: HAZOP review of a continuous process\, HAZOP/what-if techniques for analyzing procedures and batch processes\nFailure Mode Effect Analysis (FMEA): Workshop: FMEA of a critical auxiliary system\nChecklist analysis as supplements to brainstorming methods: Workshop: Using Checklists after brainstorming methods\nWorkshop: Estimating the schedule & labor required to perform a PHA\n\nABOUT THE TRAINER:\nIr. In Jumanda Kasdadi\, MT (IJK) \nIn addition to his duties as a lecturer\, Ir. Jumanda\, MT\, has conducted nearly 280 training sessions (public and in-house) across various industries since 1997\, particularly in the oil and gas sector. He holds Bachelor’s and Master’s degrees in Chemical Engineering from the Bandung Institute of Technology (ITB) and has completed training in nine oil and gas topics at PETEX (Petroleum Extension)\, University of Texas at Austin\, Houston\, Texas\, USA\, in 2018. With his extensive experience\, he has become a prominent expert in industrial engineering training. \nIr. Jumanda also holds numerous professional certifications\, including a Lecturer Certificate from Indonesia’s Ministry of Education\, certifications in Construction\, Electrical\, and Fire Protection from HSE Association Indonesia (ALPK3)\, as well as certifications in Risk-Based Inspection (RBI) Facilitation\, HAZID\, and HAZOPS from BNSP. He has delivered training to major corporations such as Pertamina\, Chevron\, ConocoPhillips\, Total Indonesie\, CNOOC\, Medco\, Freeport\, and SKK Migas\, along with international companies in the petrochemical\, mining\, and energy sectors. \nIn addition to training\, he has been directly involved in various strategic projects\, including Feasibility Studies (FS)\, Front-End Engineering Design (FEED)\, Detail Engineering Design for Construction (DEDC)\, and risk analyses such as RBI\, HAZID\, HAZOPS\, QRA\, and SIL Classification for national and international companies. His expertise and contributions have significantly impacted the development of the oil\, gas\, and energy industries in Indonesia and globally.
URL:https://smart-training-center.com/event/process-hazard-analysis-pha/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Production Operation,Q-HSE
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/Process-hazard-analysis-PHA.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260714T083000
DTEND;TZID=Asia/Krasnoyarsk:20260716T160000
DTSTAMP:20260413T042652Z
CREATED:20241122T165033Z
LAST-MODIFIED:20260413T042652Z
UID:1053-1784017800-1784217600@smart-training-center.com
SUMMARY:Relay Protection
DESCRIPTION:About the Course:\nIn the electrical power industry\, the reliability and safety of power systems are paramount. Relay protection systems play a critical role in safeguarding equipment and ensuring uninterrupted power supply by isolating faults and preventing damage. A well-designed relay protection system can minimize downtime\, improve system stability\, and enhance operational safety. \nThis 3-day training course is designed to provide participants with a comprehensive understanding of relay protection principles\, configurations\, and applications. Combining theoretical knowledge with practical insights\, the course aims to equip participants with the skills required to design\, operate\, and maintain reliable protection systems in compliance with industry standards. \nCourse Objectives:\n\nUnderstand the fundamentals of relay protection and its role in power system reliability.\nLearn the operating principles of various types of relays.\nGain insights into the coordination and setting of protective relays.\nFamiliarize with international standards and best practices for relay protection.\nDevelop skills to analyze and troubleshoot relay protection systems effectively.\n\nWho Should Attend:\n\nElectrical engineers and technical personnel working in the power generation\, transmission\, or distribution sectors.\nMaintenance and operations personnel responsible for electrical protection systems.\nProject managers and consultants involved in power system projects.\nProfessionals seeking to expand their expertise in power system protection\n\nCourse Content:\n\nIntroduction to Relay Protection\n\nOverview of relay protection and its importance in power systems.\nTypes and classifications of relays.\n\n\nOperating Principles of Relays\n\nElectromechanical\, static\, and numerical relays.\nFunctionality and characteristics of overcurrent\, distance\, and differential relays.\n\n\nProtection Schemes and Applications\n\nCommon protection schemes for transformers\, generators\, and transmission lines.\nPractical case studies.\n\n\nRelay Coordination and Settings\n\nPrinciples of relay coordination.\nCalculations and setting procedures.\n\n\nStandards and Best Practices\n\nOverview of IEC and IEEE standards.\nCompliance requirements and industry practices.\n\n\nTroubleshooting and Analysis\n\nTechniques for fault analysis and relay testing.\nTools and methodologies for troubleshooting.\n\n\nPractical Exercises and Simulations\n\nHands-on activities to reinforce learning.\nSimulation of relay operations and fault scenarios.\n\n\n\nAbout the course leader:\nDR. Toto Tohir\, ST.\, MT/ Ali Mashar\, M.Eng.Sc.\, IPU   \nPublic Training berikutnya : 20 – 22 Oktober\, 2026
URL:https://smart-training-center.com/event/relay-protection/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Electrical,Engineering
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/09/Relay.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260715T083000
DTEND;TZID=Asia/Krasnoyarsk:20260717T160000
DTSTAMP:20260413T043339Z
CREATED:20241122T161836Z
LAST-MODIFIED:20260413T043339Z
UID:1008-1784104200-1784304000@smart-training-center.com
SUMMARY:Sistem Proteksi Pembangkit Listrik
DESCRIPTION:Background & About the Course\nThe Power Plant Protection System is a set of devices designed to safeguard the power generation facility as a whole. A power plant is a system that generates electrical energy from mechanical energy sources\, typically through electromagnetic induction. This process is known as electricity generation. In the industrial sector\, generators are essential for supporting all activities that require a reliable supply of electrical energy. Therefore\, the operation of these power plants must be conducted correctly. \nTherefore\, performance of generators is influenced not only by operational aspects but also significantly by maintenance factors. Improper maintenance can lead to vibration issues and reduced efficiency\, ultimately affecting the unit’s performance. To address these challenges\, it is crucial to have competent and skilled personnel. \nThis training will equip participants with the techniques and applications of proper generator maintenance in power plants. Participants will gain knowledge and understanding of the engineering aspects of electrical power generation systems. The training will emphasize the operation\, protection\, and maintenance of generators and their driving systems. \nCourse Objectives\nAfter completing the training\, participants are expected to: \n\nEnhance their knowledge of power plant protection systems.\nImprove their understanding of power system architecture.\nConduct reviews to improve the protection of power systems\, busbars\, transformers\, motors\, and generators.\n\nWho Should Attend\n\nEngineers\nManagers\nSupervisors\nTechnicians\nOperators\nProduction and Operations personnel\nPower Plant Operation & Maintenance staff\n\nCourse Content\n\nIntroduction\nPower System Architecture\nNeutral Grounding\nShort Circuit Current\nSensors (CT & VT)\nDiscrimination\nPower System Protection\nBusbar Protection\nTransformer Protection\nMotor Protection\nGenerator Protection\n\nAbout the Course Leaders\nIr. Nana Heryana\, S.T. IPU.\, ASEAN.Eng \nPublic Training berikutnya : 21 – 23 Oktober\, 2026
URL:https://smart-training-center.com/event/implementasi-manajemen-risiko-di-organisasi/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Electrical,Engineering,Maintenance,Power Generation
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260720T083000
DTEND;TZID=Asia/Krasnoyarsk:20260722T160000
DTSTAMP:20260413T052226Z
CREATED:20241122T161820Z
LAST-MODIFIED:20260413T052226Z
UID:1000-1784536200-1784736000@smart-training-center.com
SUMMARY:Safety Instrumented System (SIS) and Control
DESCRIPTION:Background & About the Course\nProcess safety is a critical element in industries involving high-risk operations\, such as oil and gas\, petrochemicals\, and manufacturing. A key component of process safety management is the Safety Instrumented System (SIS)\, which is designed to protect personnel\, the environment\, and assets from potential incidents that could lead to significant losses. \nThis training aims to provide an in-depth understanding of the design\, implementation\, and management of SIS in accordance with international standards such as IEC 61508 and IEC 61511. Participants will learn basic concepts\, risk analysis\, Layer of Protection Analysis (LOPA) management\, and system testing to ensure the reliability and integrity of SIS in daily operations. \nCourse Objectives\n\nExpand practical knowledge in the design and application of Safety Instrumented Systems (SIS) in industrial processes.\nUnderstand the latest standards governing each stage of the safety life cycle\, from initial hazard evaluation to detailed engineering and maintenance of SIS.\nDevelop the ability to reduce risks and mitigate hazard consequences\, and design\, implement\, operate\, and maintain SIS to meet requirements.\nAssist companies in implementing functional safety measures that conform to international standards.\nDesign\, implement\, and manage SIS while adhering to international standards such as IEC 61508 and IEC 61511.\n\nWho Should Attend\nThis training is recommended for: \n\nInstrumentation and control engineers and technicians\nDesign\, installation\, and maintenance engineers and technicians in process industries\nManagers and sales professionals employed by end users\nSystems integrators or consultants\nConsulting electrical engineers\nPlant engineers and instrument technicians\nOperations Technicians\nElectrical maintenance technicians and supervisors\nInstrumentation and control system engineers\nProcess control engineers\nMechanical engineers\nProcurement professionals\n\nCourse Content\n\nFundamental of Safety Instrumented System (SIS)\nDifferences Between SIS and Other Control Systems\nReview of Basic SIS (IEC 61508\, IEC 61511\, and ISA S84)\nFunctional Safety\nSafety Life Cycle\nRisk Reduction\nLayers of Protection Analysis (LOPA)\nConceptual Design\nReliability Analysis\nSafety in Field Instruments & Devices\nAnalyzing Risks\nAssessing the Need for Risk Reduction\nSafety Requirements Specifications\nFault Tree Analysis\nSafety Integrity Level (SIL)\nHardware Fault Tolerance\nFailure Rate\nTechnology Choices\nPerformance Requirements\nImplementation of SIS\nAPI RP 754 (Process Safety Performance Indicators)\n\nAbout the Course Leader\nProf. Endra Joelianto\, Ir.\, Ph.D.\, SMIEEE \nProf. Endra Joelianto\, Ir.\, Ph.D.\, SMIEEE\, is a leading expert in control engineering with research focusing on Hybrid Control Systems\, Discrete Event Control Systems\, Petri Nets\, Robust PID Controllers\, and Industrial Automation using PLC/DCS. He earned his Engineering Physics degree from ITB in 1990 and a PhD in Control Engineering from The Australian National University in 2001. Prof. Endra coordinates Intelligent Control and Automation at ITB and founded the PLC Research Group and Schneider-OMRON PLC Training Center\, fostering collaboration with Schneider Electric\, OMRON Corporation\, and Invensys WONDERWARE. \nHe has led national retooling projects and participated in professional training on PLC\, DCS\, and calibration across Asia and Africa. As an instructor\, he provides training in instrumentation and process control to universities and major companies in the petrochemical\, oil and gas\, and manufacturing sectors\, including PERTAMINA\, British Petroleum\, and PT. Pupuk Kalimantan Timur. His contributions have significantly advanced industrial automation and education in Indonesia. \nPublic Training berikutnya : 19 – 21 Oktober\, 2026
URL:https://smart-training-center.com/event/safety-instrumented-system-sis-and-control/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Instrument and control,Maintenance,Q-HSE
ATTACH;FMTTYPE=image/png:https://smart-training-center.com/wp-content/uploads/2024/11/SIS_001.png
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260721T083000
DTEND;TZID=Asia/Krasnoyarsk:20260723T160000
DTSTAMP:20260415T043417Z
CREATED:20241122T100852Z
LAST-MODIFIED:20260415T043417Z
UID:895-1784622600-1784822400@smart-training-center.com
SUMMARY:Tribology Oil Analysis
DESCRIPTION:BACKGROUND & ABOUT THE COURSE:\nMachinery is assembled from many parts\, some of which have relative motion or friction. This will need oil for excellent lubrication\, cooler\, and cleaner. To maintain good machinery operations\, one needs to understand tribology (knowledge about friction and lubrication) and oil analysis. \nLubricant is one of the important factors in the machinery system and machine maintenance. This requires knowledge and experience about the basics of the lubrication system to maintain safe bearing operating conditions. Monitoring the operating conditions of a machine and selecting the right lubricant will keep the engine performance optimal and durable. \nThis training will discuss how to analyze sources of disturbance and systematic damage analysis and the possibility of modifying the lubrication system. With good lubricants and proper monitoring\, you are able to maintain and operate production machinery more optimally. \nTRAINING OBJECTIVES:\nAfter attending the training\, participants are expected to: \n\nunderstand tribology (knowledge of friction and lubrication) and Oil Analysis.\nAble to properly implement knowledge of oil analysis in the work environment\n\nWHO SHOULD ATTEND:\nMaintenance Professionals\, Reliability Engineers\, Lubrication Engineers\, Craftsmen and Millwrights\, Equipment Operators\, Operations & Maintenance Managers\, Lubrication Technicians\, Manufacturing and Industrial Engineers\, Maintenance Supervisors\, Vibration Instrument Specialists\, Predictive Maintenance Technicians\, Laboratory Analysts. \nCOURSE CONTENT:\n\nFundamental of Tribology\n\n\n\n\nConformal & Non-conformal contact\nFriction phenomena\nWear phenomena\nLubrication principle\nHydrodynamic Bearing\nHydrostatic Bearing\nRolling Element Bearing\n\n\n\n\nWear Metal analysis\n\n\n\n\nspectroscopy\,\nanalytical ferrography or micro patch\n\n\n\n\nWear phenomena\, mechanism and its causes\n\n\n\n\nWear phenomena\nWear Mechanism\nCause of wear\n\n\n\nABOUT THE COURSE LEADERS:\nCecep Slamet Abadi\, S.T.\, M.T \nCecep Slamet Abadi\, ST.\, MT adalah salah satu associate instructor di FJM dengan latar belakang Pendidikan Teknik Mesin untuk jenjang S1 & S2. \nSelain aktif sebagai dosen sejak tahun 1996\, beliau juga memiliki pangalaman dalam bidang industry & konsultan di antaranya di LAPI ITB\, Puslitbang Air\, PINDAD\, Audit Energi di Pertamina EP Pangkalan Susu\, Tambung & Rengasdengklok\, serta sebagai team uji kompetensi si IATKI (Ikatan Akhli Ketenagalistrikan Indonesia). \nUntuk industrial training\, Pak Cecep telah mengajar lebih dari 150 in-house maupun public training di antaranya: Indonesia Power\, PLTA Saguling\, Freeport-Papua\, Chevron Oil/Gas\, Chevron Geothermal\, Premier Oil\, Pupuk Sriwijaya\, Pupuk Kujang\, Badak LNG\, dan lain-lain. \nPublic Training berikutnya : 22 – 24 September\, 2026
URL:https://smart-training-center.com/event/tribology-oil-analysis/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Maintenance,Mechanical
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/tribology-oil-analysis.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260727T083000
DTEND;TZID=Asia/Krasnoyarsk:20260729T160000
DTSTAMP:20260413T085234Z
CREATED:20241122T170007Z
LAST-MODIFIED:20260413T085234Z
UID:1067-1785141000-1785340800@smart-training-center.com
SUMMARY:Flow & Level Custody Measurement
DESCRIPTION:About the Course:\nPengukuran Flow and Level Custody Transfer Measurement adalah titik akhir dari suatu operasi minyak & gas. Dimana di situ dilakukan pengukuran produksi untuk keperluan legal & komersial. Oleh Karena itu akurasi & pengetahuan teknis sangat diperlukan. \nKursus ini dirancang untuk memperkenalkan pengguna pada masalah dan solusi terkait transfer akurasi tinggi produk minyak bumi cair dan gas dari pemasok ke pelanggan. Kebutuhan ini muncul karena perubahan besar dalam proses manufaktur dan perubahan dramatis lainnya seperti: peningkatan biaya bahan bakar dan bahan baku; kebutuhan untuk meminimalkan polusi; dan tekanan yang meningkat untuk mematuhi persyaratan kesehatan dan keselamatan. \nCourse Objectives:\n\nRefresh dasar-dasar mekanika fluida.\nMengidentifikasi masalah mendasar terkait ketidakpastian.\nMembandingkan metode pengukuran aliran di industri minyak dan gas.\nMendeskripsikan berbagai metode pengukuran level.\nMembandingkan metode yang digunakan untuk membuat tabel strapping.\nMengevaluasi standar transfer hak milik yang berbeda.\nMembandingkan metode kalibrasi aliran.\nMengidentifikasi berbagai jenis sistem prover.\nMenjelaskan metodologi transfer hak milik truk.\nMemeriksa tantangan terkait pipa.\nMendeskripsikan dasar-dasar deteksi kebocoran.\nMenganalisis metodologi untuk memantau dan mengendalikan kerugian produksi.\n\nWho Should Attend:\nKursus ini direkomendasikan untuk insinyur dan teknisi yang beroperasi dan memelihara instrumen terkait pengukuran transfer hak milik dan aliran\, termasuk insinyur dan teknisi fasilitas\, proses\, kimia\, listrik\, instrumentasi\, pemeliharaan\, dan mekanik. \nCourse Content:\n\nFluid Mechanics\nFlowmeter Classification\nUncertainty Analysis\nFlow Measurement\nTurbine\nPositive Displacement\nUltrasonic Flowmeters\nCoriolis Mass Flowmeters\nLevel Measurement\nBuoyancy Tape Systems\nHydrostatic Pressure\nUltrasonic Measurement\nRadar Measurement\nFlow Calibration\nTerminal Custody Transfer\nTank Management Systems\nLease Automatic Custody Transfer\nTruck and Rail Custody Transfer\nPipeline Considerations\nFugitive Emissions\nLeak Detection\nReal Time Transient Model\nLoss Control Systems\nCustody Transfer Sampling\nMonitoring and Controlling Production Losses\nPhysical Leaks\nMeter Prover Performance\nAPI Standards\nMeasuring the Suspended S&W Content\nCalculating Net Volume\nFlowmeter Selection and Costs\nInitial Considerations\nMeter Selection\n\nAbout the Trainer:\nProf. Ir. Endra Joelianto\, Ph.D.\, SMIEEE adalah ahli dalam teknik kontrol. Penelitian unggulannya meliputi: Sistem Kontrol Hibrida\, Sistem Kontrol Acara Diskrit\, Analisis dan Aplikasi Petri Nets pada PLC\, Pengendali PID yang Tangguh\, Kontrol Proses Lanjutan\, dan Otomasi Industri menggunakan PLC/DCS. Beliau meraih gelar pertama (Ir.) di Teknik Fisika pada tahun 1990 dari Departemen Teknik Fisika\, ITB dan gelar Doctor of Philosophy (Ph.D.) di Teknik Kontrol pada tahun 2001 dari Departemen Teknik\, The Australian National University\, Australia. \nPublic Training berikutnya : 16 – 18 November\, 2026
URL:https://smart-training-center.com/event/flow-and-level-custody-measurement/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Finance,Manajemen,Marketing,Production Operation
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/11/oil-gas-measurement-metering-custody.jpg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Asia/Krasnoyarsk:20260729T083000
DTEND;TZID=Asia/Krasnoyarsk:20260731T160000
DTSTAMP:20260414T011856Z
CREATED:20241001T044350Z
LAST-MODIFIED:20260414T011856Z
UID:440-1785313800-1785513600@smart-training-center.com
SUMMARY:Hazardous Area Classification and Installation
DESCRIPTION:KLASIFIKASI AREA BERBAHAYA:\nKawasan berbahaya didefinisikan dalam DSEAR (Dangerous Substances and Explosive Atmospheres Regulation) sebagai “setiap lokasi di mana atmosfer yang mudah meledak dapat muncul\, sehingga memerlukan tindakan pencegahan khusus untuk melindungi keselamatan pekerja.” Dalam konteks ini\, tindakan pencegahan khusus harus diterapkan terkait dengan konstruksi\, instalasi\, dan penggunaan peralatan yang sesuai. \nOleh karena itu\, Klasifikasi dan Instalasi Area Berbahaya memerlukan penanganan yang serius dari tim yang kompeten. Pemahaman yang mendalam mengenai risiko dan karakteristik area berbahaya sangat penting untuk menciptakan lingkungan kerja yang aman. Pelatihan ini bertujuan untuk membekali peserta dengan pengetahuan yang diperlukan untuk mengenali dan mengelola potensi bahaya\, serta memahami regulasi yang berlaku. \nISI KURSUS:\nPengenalan Klasifikasi Area Berbahaya (HAC): \n\nDefinisi dan konsep area berbahaya\nPeraturan dan standar yang terkait dengan HAC\nJenis bahaya yang dapat menyebabkan kebakaran atau ledakan\n\nIdentifikasi Bahaya: \n\nJenis bahaya yang mungkin ada di area kerja\, seperti kebakaran\, ledakan\, dan pelepasan bahan kimia berbahaya\nFaktor yang mempengaruhi karakteristik bahaya\, termasuk jenis bahan\, jumlah\, dan kondisi operasional\n\nSistem Klasifikasi Area Berbahaya: \n\nPenggunaan standar IEC 60079 dan NEC 500\nZona berbahaya dan sistem penomoran yang digunakan\n\nMetode Penggolongan Area Berbahaya: \n\nKriteria klasifikasi zona berbahaya\nAnalisis bahaya dan risiko untuk mengidentifikasi potensi masalah\n\nPerlengkapan dan Perlindungan di Area Berbahaya: \n\nPeralatan anti-ledakan dan sertifikasi yang diperlukan\nPerlengkapan pelindung dan keselamatan untuk pekerja\n\nTanda dan Identifikasi Area Berbahaya: \n\nPenggunaan tanda peringatan dan label yang sesuai untuk menandai area berbahaya\nPenempatan dan pemeliharaan tanda peringatan yang tepat untuk meningkatkan kesadaran\n\nTindakan Pengendalian Risiko: \n\nPencegahan dan mitigasi bahaya yang dapat terjadi\nPraktik keselamatan yang harus diterapkan di area berbahaya\n\nTanggung Jawab dan Kepatuhan Regulasi: \n\nPeran dan tanggung jawab yang harus diemban oleh pekerja dalam area berbahaya\nKepatuhan terhadap regulasi dan standar keamanan yang berlaku di industri\n\nProses Review dan Pembaruan: \n\nPentingnya melakukan review dan pembaruan HAC secara berkala untuk menjaga keamanan lingkungan kerja\nInspeksi dan pemeliharaan yang harus dilakukan secara rutin untuk mengidentifikasi potensi bahaya\n\nTRAINER:\nIr. H. Irawadi Prihaswan\, MK3\, Dipl. Geoth \nMr. Irawadi is professional practitioner with more than 30 years of experience in wide range of working environments; oil & gas\, geothermal & mining. His career dedication in Health & Safety Management started in 1999 which is 20 years ago. He accountable for the position of Manager of Emergency Response in Chevron stationed in Balikpapan and then Pekanbaru since 2009. Due to his qualifications and capabilities\, he is still now handling advisory position in HSE in one of well-known geothermal company reporting the VP Operation & Maintenance. \nHe is the manager fully in charge for development & roll-out of ERP/ECS in the company he worked for. \nIn 1986 he was graduated from Gajah Mada University\, received his diploma degree from Auckland\, New Zealand. His Master Degree (S2) is in Occupational Health & Safety from University of Indonesia in 2007. \nDuring his careers\, he is also internal trainer for the health & safety related matters & shared his knowledge & skills to his community. \nPublic Training berikutnya : 26 – 28 Oktober\, 2026
URL:https://smart-training-center.com/event/klasifikasi-area-berbahaya/
LOCATION:Bandung\, Jawa Barat\, Indonesia
CATEGORIES:Engineering,Project,Q-HSE
ATTACH;FMTTYPE=image/jpeg:https://smart-training-center.com/wp-content/uploads/2024/10/download-5.jpeg
ORGANIZER;CN="PT Fiqry Jaya Manunggal":MAILTO:info@fiqry.com
END:VEVENT
END:VCALENDAR