Common Components
Showing 145–192 of 346 results
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ICs
74HC595 74HC595D Shift Register
74HC595 8-BIT SERIAL-IN SERIAL OR PARALLEL-OUT SHIFT REGISTER contain an 8-bit serial-in, parallel-out shift register that feeds an 8-bit D-type storage register. The storage register has parallel 3-state outputs. Separate clocks are provided for both the shift and storage register. The shift register has a direct overriding clear (SRCLR) input, serial (SER) input, and serial outputs for cascading. When the output-enable (OE) input is high, the outputs are in the high-impedance state.
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ICs
74LS32 (or 7432) IC-OR Gate-Quad-2 Input 74-LS32
- Dual Input IC with 4 OR Gates with an operating voltage range from 3V to 18V
- Fully Static and Medium Speed Operation: with tPHL, tPLH = 60ns (typ) at 10V
- DC input current: 10mA
- High-Voltage Type (20V Rating)
- Power Dissipation: 500mW
- Maximum propagation delay is 250ns.
- Standard symmetric output
- Minimum logic Low and High voltage @+5V is1.5V and 3.5V
- Maximum Transition Time is 200ns
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Voltage Regulators
7809 Voltage Regulator
- 9V Positive Voltage Regulator
- Minimum Input Voltage is 11V
- Maximum Input Voltage is 35V
- Output Current: 1.5 A
- PSRR / Ripple Rejection: 55 dB
- Output Type: Fixed
- Internal Thermal Overload and Short circuit current limiting protection is available.
- Junction Temperature maximum of 125 degree Celsius
- Available in TO-220, TO-3 and KTE package
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Voltage Regulators
7812 Voltage Regulator
7812 is a 12V Voltage Regulator that restricts the voltage output to 12V and draws 12V regulated power supply. The 7812 is the most common, as its regulated 12-volt supply provides a convenient power source for most TTL components. Output Voltage:12V. Output Current:1A. Input Voltage: 14.6 – 35VDC.
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Voltage Regulators
7815 Voltage Regulator
- 15V Positive Voltage Regulator
- Minimum Input Voltage is 17V
- Maximum Input Voltage is 35V
- Output Current: 1.5 A
- Internal Thermal Overload and Short circuit current limiting protection is available.
- Junction Temperature maximum of 125 degree Celsius
- Available in TO-220, TO-3 and KTE package
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Voltage Regulators
7818 Voltage Regulator
- Output voltage tolerances of ±2% at Tj = 25˚C and ±4% over the temperature range (LM340A)
- Line regulation of 0.01% of VOUT/V of ∆VIN at 1A load (LM340A)
- Load regulation of 0.3% of VOUT/A (LM340A)
- Internal thermal overload protection
- Internal short-circuit current limit
- Output transistor safe area protection
- P+ Product Enhancement tested
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Voltage Regulators
7824 Voltage Regulator
- 24V Positive Voltage Regulator
- Minimum Input Voltage is 33V
- Maximum Input Voltage is 40V
- Output Current: 1.5 A
- Internal Thermal Overload and Short circuit current limiting protections are available.
- Junction Temperature maximum of 125 degree Celsius
- Available in TO-220, TO-3 and KTE package
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Voltage Regulators
7905 Voltage Regulator
- 5V Negative Voltage Regulator
- Output Voltage: -5V
- Output Current: 1.5A
- Minimum Input Voltage is 7V
- Maximum Input Voltage is 25V
- Operating current(IQ) is 5mA
- Internal Thermal Overload and Short circuit current limiting protection is available.
- Junction Temperature maximum 125 degree Celsius
- Available in TO-220 and KTE package
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Voltage Regulators
7912 Voltage Regulator
- 12V Negative Voltage Regulator
- Minimum Input Voltage is -14.5V
- Maximum Input Voltage is -27V
- Peak Output Current is 2.2A
- Average Output Current is upto 1A
- Internal Thermal Overload and Short circuit current limiting protection is available.
- Available in TO-220 package only.
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Crystals and Oscillators
8 MHz Crystal Oscillator
A crystal oscillator is an electronic oscillator circuit that uses the mechanical resonance of a vibrating crystal of piezoelectric material to create an electrical signal with a precise frequency. This frequency is often used to keep track of time, as in quartz wristwatches, to provide a stable clock signal for digital integrated circuits, and to stabilize frequencies for radio transmitters and receivers. The most common type of piezoelectric resonator used is the quartz crystal, so oscillator circuits incorporating them became known as crystal oscillators, but other piezoelectric materials including polycrystalline ceramics are used in similar circuits.
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IC Base, ICs
8 Pin – DIP IC Socket/Base
IC sockets are generally for preventing damage to IC’s from soldering and while testing multiple circuits. These are made from Black Thermoplastic and tin-plated alloy contacts. One end is notched to aid in identification. They can be mounted end to end to suit longer IC’s.
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Resistors
8 Pin SIP Resistor 10K
SIP Resistor Arrays (Single Inline Package) is an efficient way to pack several of the same value resistors into a convenient 0.1 spaced package. Available in different resistance values and number of pins. Pin 1 is identified with a dot above the pin also known as Resistor Networks.
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Resistors
8.2 Ohm 1/4Watt Resistor (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistor’s resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and can’t generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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Resistors
8.2K Ohm Resistor 1/4 Watt (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistor’s resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and can’t generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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ICs
8051 Atmel AT89C51 Microcontroller 8-bit
- Compatible with MCS-51 Products
- 4K Bytes of In-System Reprogrammable Flash Memory
- Endurance: 1,000 Write/Erase Cycles
- Fully Static Operation: 0 Hz to 24 MHz
- Three-Level Program Memory Lock
- 128 x 8-Bit Internal RAM
- 32 Programmable I/O Lines
- Two 16-Bit Timer/Counters
- Six Interrupt Sources
- Programmable Serial Channel
- Low Power Idle and Power Down Modes
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ICs
8051 Microcontroller
8051 is an 8-bit family of microcontrollers developed by Intel. This microcontroller was also referred as a system on a chip because it has 128 bytes of RAM, 4K bytes of ROM, 2 Timers, 1 Serial port, and four ports on a single chip. The CPU can work for only 8 bits of data at a time because 8051 is an 8-bit processor. In case the data is larger than 8 bits then it has to be broken into parts so that the CPU can process conveniently.
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Resistors
82 Ohm 1/4Watt Resistor (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistor’s resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and can’t generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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Resistors
820 Ohm Resistor 1/4 Watt (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistor’s resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and can’t generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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Resistors
820K Ohm Resistor 1/4 Watt (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistors resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and cant generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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Resistors
82K Ohm Resistor 1/4 Watt (5% tolerance)
Resistors are electronic components which have a specific, never-changing electrical resistance. The resistors resistance limits the flow of electrons through a circuit. They are passive components, meaning they only consume power (and cant generate it). Resistors are usually added to circuits where they complement active components like op-amps, microcontrollers, and other integrated circuits. Commonly resistors are used to limit current, divide voltages, and pull-up I/O lines.
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Transistors & Mosfet
8N60 N-Channel Power Mosfet Transistor
- 8N60 N-Channel Power Mosfet Transistor
- Ultra low gate charge ( typical 28 nC )
- Low reverse transfer capacitance ( Crss= typical 12.0 pF )
- Fast switching capability
- Avalanche energy specified
- Improved dv/dt capability, high ruggedness
- Drain Current: ID= 7.5A at TC= 25
- Drain Source Voltage: VDSS= 600V
- Static Drain-Source On-Resistance: RDS(on)< 1.2
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Transistors & Mosfet
A1015 PNP Transistor
The main use is for audio frequency amplifier applications. It can also be used for the switching purpose just like other PNP transistors. When use as an Audio frequency general purpose amplifier, can be operated in the active region. This transistor is further divided into four groups according to the DC current gain, O, Y, G, and L and has 140, 240, 400 and 700 hfe DC current gain respectively.
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ICs
AD7528 DAC IC
The AD7528 is a monolithic dual 8-bit digital/analog converter featuring excellent DAC-to-DAC matching. It is available in skinny 0.3″ wide 20-lead DIPs and in 20-lead surface mount packages. Separate on-chip latches are provided for each DAC to allow easy microprocessor interface.
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ICs
ATMEGA 328P ATMEGA328P-PU MICROCONTROLLER
The ATMEGA328P-PU is a low-power CMOS 8-bit microcontroller based on the AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle, the ATmega328P-PU achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed.
The AVR core combines a rich instruction set with 32 general purpose working registers. All the 32 registers are directly connected to the Arithmetic Logic Unit (ALU),allowing two independent registers to be accessed in one single instruction executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs up to ten times faster than conventional CISC microcontrollers.The ATmega328P-PU AVR is supported with a full suite of program and system development tools including: C Compilers, Macro Assemblers, Program Debugger/Simulators, In-Circuit Emulators, and Evaluation kits.
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ICs
Atmega8 Microcontrollers IC 8Kbytes
The Atmel AVR ATmega8 is a low-power CMOS 8-bit microcontroller based on the AVR RISC architecture. By executing powerful instructions in a single clock cycle, the ATmega8 achieves throughputs approaching 1MIPS per MHz, allowing the system designer to optimize power consumption versus processing speed.
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ICs
Atmel Attiny85 Attiny-85 ATtiny85-20PU
Features of ATtiny85 Microcontroller:-
- Flash (Kbytes): 8 Kbytes
- Pin Count: 8
- Max. Operating Freq. (MHz): 20 MHz
- CPU: 8-bit AVR
- Number of Touch Channels: 3
- Hardware QTouch Acquisition: No
- Max I/O Pins: 6
- Ext Interrupts: 6
- USB Interface:No
- Package – SMD
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Transistors & Mosfet
BC108
- Bi-Polar NPN Transistor
- DC Current Gain (hFE) is 900 maximum
- Continuous Collector current (IC) is 200mA
- Emitter Base Voltage (VBE) is 5V
- Base Current(IB) is 10mA maximum
- Available in TO-18 Metal Can Package
- Maximum Collector-Base Voltage |Vcb|: 30 V’
- Collector Dissipation: 0.3 W
- Transition Frequency:150 MHz
- Operating Junction Temperature Max (Tj): 175 °C
- Noise Figure – 2 dB
- Operating and Storage Junction Temperature Range -65 to +175 °C
- Collector Capacitance 5pF
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Common Components, ICs
BC547-B166 NPN Transistor 50V/ 0.3A
Overall, the BC547 NPN transistor is a versatile and reliable transistor that is suitable for a wide range of applications. NPN Transistor BC547 is a popular choice for electronic hobbyists and engineers because it is inexpensive and easy to use. here are the specifications of the BC547-B166 NPN transistor:
- Collector current (maximum): 300mA
- Collector-emitter voltage (maximum): 65V
- Base current (maximum): 5mA
- Current gain (hFE): 110 to 800
- Package: TO-92
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Transistors & Mosfet
BC557
- Package Type: TO-92
- Transistor Type: PNP
- Max Collector Current(IC): -100mA
- Max Collector-Emitter Voltage (VCE): -45V
- Max Collector-Base Voltage (VCB): -50V
- Max Emitter-Base Voltage (VBE): -5V
- Max Collector Dissipation (Pc): 500 Milliwatt
- Max Transition Frequency (fT): 100 MHz
- Minimum & Maximum DC Current Gain (hFE): 125 to 800
- Max Storage & Operating temperature Should be: -65 to +150Centigrade
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Transistors & Mosfet
BD139 – NPN TRANSISTOR
- Plastic casing NPN Transistor
- Continuous Collector current (IC) is 1.5A
- Collector-Emitter voltage (VCE) is 80 V
- Collector-Base voltage (VCB) is 80V
- Base Current (Ib) is 0.5A
- Emitter Base Breakdown Voltage (VBE) is 5V
- DC current gain (hfe) is 40 to 160
- Available in To-225 package
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Transistors & Mosfet
BD140 General Purpose PNP Epitaxial Silicon Transistor
- Bi-Polar PNP Transistor
- Continuous Collector current (IC) is -1.5A
- Collector-Emitter voltage (VCE) is- 80 V
- Collector-Base voltage (VCB) is- 80V
- Base Current (Ib) is -0.5A
- Emitter Base Breakdown Voltage (VBE) is -5V
- DC current gain (hfe) is 40 to 160
- Available in To-225 and SOT-32 Package
- Collector Dissipation: 12.5 W
- Operating Junction Temperature Max (Tj): 150°C
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Transistors & Mosfet
BF495
- Package Type: TO-92
- Transistor Type: NPN
- Max Collector Current(IC): 30mA
- Max Collector-Emitter Voltage (VCE): 20V
- Max Collector-Base Voltage (VCB): 30V
- Max Emitter-Base Voltage (VBE): 5V
- Max Collector Dissipation (Pc): 300 Milliwatt
- Max Transition Frequency (fT): 120 MHz
- Minimum & Maximum DC Current Gain (hFE): 35 to 125
- Max Storage, Operating & Junction temperature range: -65 to +150 Centigrade
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74LS158 Multiplexer IC
BF495
7815 Voltage Regulator
74LS123 Dual Retriggerable Monostable Multivibrator IC 





































