Digital Logic Circuit Trainer

MOD: FT – DIG06L

The Digital Logic Circuit Trainer is a specialized educational tool designed to enhance understanding of digital electronics and logic circuit design.
It provides hands-on experience with essential concepts such as basic logic gates, combinational logic circuits, and sequential logic systems. Students can engage in a variety of experiments that cover topics like arithmetic operations, counters, multiplexers, and oscillators, facilitating practical learning of complex theories.
This trainer is ideal for aspiring engineers, allowing them to explore the principles of logic circuits, improve their troubleshooting skills, and gain insights into real-world applications of digital electronics.

Description

Digital Logic Circuit Trainer

Technical Specification :

Module One: Basic Logic Gates Circuits
Experiment 1: Logic Gates Structure Circuits (DL, RTL, TTL, CMOS)
Input Data Length: 2 bits; Input Data Mode: Dip Switch
Experiment 2: Logic Gates Circuits
Include Logic Gates: AND Gate; NAND Gate; NOT Gate; OR Gate;
NOR Gate; XOR Gate
Experiment 3: Voltage and Current Measurement (TTL, CMOS)
Voltage Measurement: VIH, VIL, VOH, VOL
Current Measurement: IH, IL
Experiment 4: Interface between Logic Gates Circuits (TTL and CMOS
Transform)
TTL to CMOS Transform: Input: 5 V; Output: 12 V; CMOS to TTL
Transform: Input: 12 V; Output: 5 V
Experiment 5: Transmission Delay Measurement (TTL, CMOS)
TTL Transmission Delay: 20.8 nS; CMOS Transmission Delay: 99.1 nS
Module Two: Combinational Logic Circuits
Experiment 1: 4 Bits Comparator Circuit
Input Data Length: 4 bits; Input Data Mode: Dip Switch; Output Data
Length: 3 bits;
Data Display Mode: LED Display
Experiment 2: 9 Bits Parity Generator
Input Data Length: 9 bits; Input Data Mode: Dip Switch; Output Data
Length: 2 bits;
Data Display Mode: LED Display
Experiment 3: Tristate and Schmitt Gate Circuits
Tristate Gate: Data Length: 1 bit; Input Data Mode: Dip Switch; Schmitt
Gate: Measurement VIH, VIL , VOH,VOL
Experiment 4: Half Adder and Full Adder
Half Adder: Input Data Length: 2 bits; Input Data Mode: Dip Switch; Output Data
Length: 2 bits;
Data Display Mode: LED Display
Full Adder: Input Data Length: 3 bits; Input Data Mode: Dip Switch; Output Data
Length: 2 bits;
Data Display Mode: LED Display
Experiment 5: Half Subtractor and Full Subtractor
Half Subtractor: Input Data Length: 2 bits; Input Data Mode: Dip Switch; Output
Data Length: 2 bits;
Data Display Mode: LED Display
Full Subtractor: Input Data Length: 3 bits; Input Data Mode: Dip Switch; Output
Data Length: 2 bits;
Data Display Mode: LED Display
Module Three: Extended Combinational Logic Circuits
Experiment 1: Arithmetic Logic Unit (ALU) Circuit
Input Data Length: 4 bits; Input Data Mode: Dip Switch; Output Data Length: 4 bits;
Data Display Mode: LED Display; Operation Instruction: 16 Types
Experiment 2: Encoder Circuit
Input Data Length: 8 bits; Input Data Mode: Dip Switch; Output Data Length: 3 bits;
Data Display Mode: LED Display
Experiment 3: Decoder Circuit
Input Data Length: 3 bits; Input Data Mode: Dip Switch; Output Data
Length: 8 bits;
Data Display Mode: LED Display
Experiment 4: Multiplexer Circuit
Input Data Length: 4 bits; Input Data Mode: Dip Switch;
Data Display Mode: LED Display
Experiment 5: Demultiplexer Circuit
Input Data Length: 1 bit; Input Data Mode: Dip Switch; Output Data
Length: 4 bits;
Data Display Mode: LED Display
Experiment 6: Digitally Controlled Analog Multiplexer and Demulti-
plexer Circuits
Multiplexer: Input Voltage: 0 – 5 V; Input Quantity: 2; Output Voltage:
0 – 5 V; Output Quantity: 1
Demultiplexer: Input Voltage: 0 – 5 V; Input Quantity: 1; Output
Voltage: 0 – 5 V; Output Quantity: 2
Module Four: Clock Generator Circuit
Experiment 1: Constructing Oscillator Circuit with Basic Logic Gates
and Schmitt Gates
Basic Logic Oscillator: Output Frequency: 3.58 MHz;
Schmitt Gates Oscillator: Output Frequency: 3.58 MHz
Experiment 2: Voltage Controlled Oscillator Circuit (Output Frequency
: 26.8 kHz – 35.5 kHz)
Experiment 3: BJT Astable Multivibrator Oscillator Circuit (Output
Frequency: 160 kHz)
Experiment 4: Operational Amplifier Oscillator Circuit (Output
Frequency: 2.56 kHz)
Experiment 5: 555 Astable Multivibrator and Monostable Multivibrator
Oscillator
Astable Multivibrator: 4.75 Hz; Monostable Multivibrator:
User-Controlled
Module Five: Sequential Logic Circuits
Experiment 1: RS Flip-Flop Circuit
Input Data Length: 2 bits; Input Data Mode: Dip Switch; Output Data
Length: 1 bit;
Data Display Mode: LED Display
Experiment 2: JK Flip-Flop Circuit
Input Data Length: 2 bits; Input Data Mode: Dip Switch; Output Data
Length: 2 bits;
Data Display Mode: LED Display
Experiment 3: D Flip-Flop Circuit
Input Data Length: 1 bit; Input Data Mode: Dip Switch; Output Data
Length: 2 bits;
Data Display Mode: LED Display
Experiment 4: Asynchronous Counter Circuit
Output Data Length: 4 bits; Data Display Mode: LED Display
Experiment 5: Synchronous Counter Circuit
Input Data Mode: Dip Switch; Output Data Length: 5 bits; Data
Display Mode: LED Display
Experiment 6: Presettable Synchronous Counter Circuit
Presettable Data Length: 4 bits; Input Data Mode: Dip Switch; Output
Data Length: 5 bits;
Data Display Mode: LED Display; Count Mode: Up Count or Down
Count
Module Six: Memory Circuits
Experiment 1: Constructing ROM Circuit with Diodes
Store Data Length: 2 bits; Data Display Mode: LED Display
Experiment 2: Constructing RAM Circuit with D Flip-Flop
Input Data Length: 4 bits; Input Data Mode: Dip Switch; Output
Data Length: 4 bits;
Data Display Mode: LED Display
Experiment 3: Programmable ROM Circuit
Experiment 4: 64 Bits RAM Circuit
Input Data Length: 4 bits; Input Data Mode: Dip Switch; Output
Data Length: 4 bits;
Data Display Mode: LED Display
Module Seven: Converter Circuits
Experiment 1: OPA ADC Circuit
Analog Input: 0 – 5 V; Data Display Mode: LED Display; Resolu-
tion: 4 bits
Experiment 2: ADC0804 ADC Circuit
Analog Input: 0 – 5 V; Data Display Mode: LED Display; Resolu-
tion: 8 bits
Experiment 3: 4 Bits R-2R DAC Circuit (Digital Input: 4 bits;
Analog Output: 0V-5V)
Experiment 4: Unipolar DAC0800 DAC Circuit
Digital Input: 8 bits; Input Data Mode: Dip Switch; Analog Output:
0 – 5 V; Step Value: 0.019 V
Experiment 5: Bipolar DAC0800 DAC Circuit
Digital Input: 8 bits; Input Data Mode: Dip Switch; Analog Output:
-5 V – 5 V; Step Value: 0.038 V
Module Eight: Logic Application Circuits
Experiment 1: Electronic Voting Circuit (7408, 7404, 7432, 7486)
Experiment 2: Electronic Wheel-Amusement Circuit (VCC = 12 V;
IC: 555, CD4017B)
Experiment 3: Electronic Competition-Answer Circuit (VCC = 12
V; IC: CD4011 B)
Experiment 4: Traffic Light Circuit (VCC = 12 V; IC: 555,
CD4017B)
Function Generator & DC Power Supply Module:
Power Waveforms: Sine, Triangle, Square, TTL Pulse
Amplitude: Greater than 10 Vpp
Impedance: 50 Ohms Approx.
Duty Control: 30% to 60%
Display: 6-Digit LED Display
Frequency Range: 10Hz to 100kHz (4 Ranges), 100Hz to 1MHz (4
Ranges)
Frequency Control: Separate Coarse and Fine Tuning
Constant Voltage Output: ±5V, ±12V
Variable Voltage Output: 0V to ±15V
Power Source: 220V AC ±10%, 50Hz

Accessories :

Power Cord
User Manual
Standard Accessories

Others :

Parts Origin: China, Taiwan, Japan
Manufacturing: Assemble in Bangladesh
Installation, Training
Warranty: 01 year

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