Analog Electronics; Digital Electronics; Signals, Systems & Communications. APGENCO Syllabus Asst Engineers (ELECTRONICS) APGENCO AE ELECTRONICS SYLLABUS 1. Basics of Circuits and Measurement Systems. Apgenco Ae Syllabus – Download as PDF File .pdf), Text File .txt) or read online.

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Material Science and Metallurgy: Oscillators and signal generators. Signals, Systems and Communications: Vibration isolation, critical speeds of shafts. Synchro pair, servo and step motors. Dear sir, I am a B. Design for static and dynamic loading, failure theories, fatigue strength, S-N diagram, design of joints, shafts, bearings, gears, brakes, clutches, screws, springs, cranks, piston, gyroscopes, balancing and governors.

Measurement of displacement, velocity and acceleration translational and rotationalforce, foe, vibration and shock. Metal cutting and Machine tools: One-port and two-port Network Function. Free and forced vibrations, effect of damping, resonance. Design of patterns moulds and cores, solidification, design consideration of runner, riser and gate.

Unsymmetrical Bending and shear Centre.

APGENCO AE Syllabus | AP Genco Asst Engineer Exam Pattern

xyllabus Operational amplifiers, characteristics and circuit configurations, Instrumentation amplifier. Physics of welding, types of welding and their principles, brazing, soldering, adhesive bonding.

Interferometers, applications in metrology. Origin and classification of soils, three phase system, basic definitions and relations, effective stress. Properties of fluids, pressure measurement fluid statics, buoyancy and flotation, fluid kinematics and fluid dynamics, orifices and mouthpieces, notches and weirs, laminar and turbulent flows, flow through pipes, forces on immersed bodies, flow in open channels, impact of jets, Hydraulic turbines and pumps, dams, power houses, hydrology and hydro shllabus plants.


Sampling theorem, pulse code modulation.

APGENCO & APTRANSCO AE 2017 Exam Pattern & Syllabus

Basics of number system. Psychometry, Refrigeration and Air-conditioning, working principles and their applications. Basics of fiber optics.

Permeability, capillarity and seepage of soils, flownets, flow through earthen dams, compressibility, consolidation and compaction of soils, shear strength, stability of slopes, earth pressures and retaining walls, stress distribution in soils, settlement analysis, subsurface exploration and site investigations, bearing capacity of soils, shallow and deep foundations, pile foundations.

Arithmetic circuits, Comparators, Schmitt trigger, timers and mono-stable multi vibrator. State electrronics representation of systems. Electrical and Electronic Measurements: Rivetted and welded joints, Connections — eccentric and framed, simple and compound beams, tension and syllavus members, plate and gantry girders, roof trusses, plate girder and truss bridges, water tanks, roof trusses, tubular sections and design, transmission towers, column bases, plastic analysis, basic principles, theorems, methods of analysis, analysis and design of determinate and indeterminate beams and frames.


Structure and properties of engineering materials, bonding in solids, imperfections in crystals and metals, structure of alloys, manufacture of iron and steel, heat treatment, alloy steels, principles of powder metallurgy.

Optical sources and detectors, LED, laser, Photo-diode, photo-resistor and their characteristics. Convolution, correlation and characteristics of linear time invariant systems.


Routh and Nyquist criteria. Transducers, Mechanical Measurement and Industrial Instrumentation: Classification of compressors and its working principles, Classification of I.

Bode plot, root loci. Strength of materials and theory of structures: Fundamentals of hot and cold working processes, forging, rolling, extrusion, drawing, shearing and bending. Production and operation management: Serial and parallel communication. Microprocessor applications, memory and input-output interfacing.

Newer Post Older Post Home. Measurement of pH, conductivity, viscosity and humidity.

Q-meter and waveform analyzer. Error and uncertainty analysis. Amplitude and frequency modulation and demodulation. Frequency and time division multiplexing.

Bridges and potentiometers, measurement of Syllsbus, L and C. Impulse response, transfer function and frequency response of first and second order systems.

Extension of instrument ranges. Static and dynamic characteristics of Measurement Systems.