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BSNL JE TTA Syllabus and Exam Pattern 2016

BSNL JE TTA Syllabus and Exam Pattern 2016

BSNL JE Syllabus and Exam Pattern 2016

As you already know Bharat Sanchar Nigam Limited BSNL has invites application for the various post. If you have applied for BSNL JE examination and waiting for the exam that is going to be held on 25-09-2016, then you are at the right place.

Today we are going to provide you BSNL JE Syllabus and Exam Pattern for BSNL Junior Engineer Exam which is going to be held on 25 Sep 2016. The BSNL Junior Engineer Admit Card Date will be updated soon on our blog.

BSNL JE TTA Syllabus and Exam Pattern 2016

The standard of Paper in General ability test will be such as may be expected of an Engineering Diploma holder. The standard of papers in other subjects will approximately be that of Diploma level of an Indian Polytechnic. There shall be a single multiple choice objective type paper of 3 hrs. duration as per details are given below:


Note - Minimum Qualify marks are required in each part.

Detailed Syllabus for BSNL JE TTA Exam


The candidate's comprehension and understanding of General English shall be tested through simple exercise such as the provision of antonyms and synonyms, fill in the blanks and multiple-choice exercise etc. This shall also include questions on current events, general knowledge and such matters of everyday observation and experiences as may be expected of Diploma holder.


1. Applied mathematics: Co.ordinate Geometry,Vector Algebra, Matrix and Determinant, Differential Calculus, Integral Calculus, Differential equation of second order Fourier series, Laplace Transform, Complex Number, Differentiation.

2. Applied Physics

3. Basic Electricity : Coulomb's law, concept of potential difference, concept of capacitance and capacitors, Ohm's law, Kirchoff, voltage, current laws and their applications In simple DC circuits, Basic Magnetism, Electro Magnetism, Electromagnetic Induction, Concept of alternating voltage & current, Cells and Batteries, Voltage and Current Sources, Thevenfn's theorem, Norton's theorem and their applications.

4. Electronics Devices and Circuits : Classification of materials into conductor, semi conductor, insulator etc, electrical properties, magnetic materials, various types of relays. switches and connectors, Conventional representation of and electronic circuits elements, Active and passive components; semiconductor Physics, Semiconductor Diode, Bipolar transistor & their circuits, Transistor Biasing Stabilization of operating point, Single stage transistor amplifier, field effect transistor, Mosfet circuits applications. Multistage Transistor Amplifier, Transistor Audio Power Amplifiers, Feedback In Amplifier, Sinusoidal Oscillators, Tuned Voltage Opto Electronics Devices and their applications, Operational Amplifier.

5. Digital Techniques : Applications and advantages of digital systems, number system (binary and hexadecimal), Logic Gates; Logic Simplification, Arithmetic Circuits, Decoders, Display Devices and Associated Circuits, Multiplexers and Demultiplexers, Latches and Flip-Flops, Counters, Shift Registers, Memories, A/D and D/A converters.


1. Electrical: 3 phases vs. single-phase Supply, Star Delta connections, relation between phase & line voltage, power factor and their measurements, construction and principles of working of various types of electrical measuring instruments. All types of motor and generator, AC & DC transformers, starters, rectifiers, Inverters, battery charges, batteries, servo and stepper motors, contactor control circuits, swItchgear, relays, protection devices & schemes, protective relaying, circuits breaker, generator protection, transformer protection, feeder & lightening protection, feeder & bus bar protection, lightening arrestor, earthing, voltage stabilizer & regulators, power control devices circuits, phase con rolled rectifiers, inverters, choppers dual converters, cyclo converters: power electronics application in control of drivers, refrigeration & air-conditioning.

2. Communication: Modulation and demodulation - principles and operation of various types of AM, FM and PM modulators/demodulators; pulse modulation — TDM, PAM, PPM, PWM, Multiplexing, Principles and applications of PCM.introductionn of Basic block diagram of digital and data communication systems, Coding error detection and correction tecnniques, Digital Modulation Techniques — ASK, ICW, FSK, PSK, Characteristics/working of data transmission circuits; UART, USART; Modems, Protocols and their functions, brief Idea of ISDN interfaces, local areas Network; Carrier Telephony — Features of carrier telephone system. Microwave Engineering; Microwave Devices; Waveguides, Microwave Compile, Microwave Antennas, Microwave Communication Systems- Block diagram 8 working principals of microwave communication link.

3. Network Filters and Transmission Lines: Two port network, Attenuators, Filters, Transmission Lines and their applications, characteristic impedance of line, concept of reflection and standing waves on a transmission line, Transmission line equation, Principles of impedance matching, Bandwidth consideration of a transmission line. 

4. Instruments and Measurements: Specification of instruments — accuracy, precision, sensitivity, resolution range, Errors in measurements and loading effect, principles of voltage, current and resistance measurements, Transducers, measurement of displacement & strain, forces 8. torque measuring devices, pressure measuring devices, flow measuring devices, power control, devices & circuits. Types of AC millivoltmeters. Amplifier rectifier and. rectifier amplifier; Block diagram explanation of a basic CRO and a triggered sweep oscilloscope, front panel controls; impedance Bridges and Q- Meters. Principles of working and specifications of logic probes, signature analyzer and logic analyzer, signal generator. distortion factor meter, spectrum analyzer. 

5. Control Systems: Basic elements of control system, open and closed loop system, concept of feedback Block diagram of control system. Time lag, hysteresis, linearity concepts. Self-regulating and non-self-regulating control systems. Transfer function of simple control components, single feedback configuration. Time response of systems Stability Analysis Characteristics equation, Routh's table, Nyquist criterion, Relative stability, phase margin and gain margin. Routh-Hurwitz criterion, root locus techniques, Pae plot, Power Plot. Gain margin and phase margin. 

6. Microprocessors: Typical organization of a microcomputer system & functions of its various blocks, Architecture of a Microprocessors, Memories and WO Interfacing, Brief Idea of WC assembly languages, Machines & Mnemonic codes, instruction format and Addressing mode, concept of Instruction set, programming exercises In assembly language, concept of Interrupt, Data transfer techniques — sync data transfer, Interrupt driven data transfer. DMA. serial output data. serial input data. 

7. Computer: Computer and its working, types of computers. familiarization with DOS and Windows, concept of file, directory. folder, Number Systems, Data representation, Programming —Elements of a high-level programming,  language, PASCAL, C:Use of basic data structures, Fundamentals of computer architecture, Processor design, Control unit design; memory organization. I/O system organization. Microprocessors- microprocessor architecture, instruction set and simple assembly level programming, Microprocessors based system, design: typical examples. Personal computers and their typical uses, data communication principles, types and working principles of modems, Network principles, OSI model, functions of data link layer and network layer, Database Management System — Basic concepts, entity relationship model, r model, DBMS based on relational model.


BSNL JE TTA Study Material

#BSNL JE TTA Syllabus and Exam Pattern 2016 
#bsnl tta je syllabus


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