Description: The µA2240 consists of four basic circuit elements: (1) a time-base oscillator, (2) an eight-bit counter, (3) a control flip-flop, and (4) a voltage regulator. The basic frequency of the time-base oscillator (TBO) is set by the external time constant determined by the values of R1 and C1 (1R1C1 = 2 kHz). The open-collector output of the TBO is connected to the regulator output via a 20 k ohm pull-up resistor and drives the input to the eight-bit counter. At power-up, a positive trigger pulse is detected across C2, which starts the TBO and sets all counter outputs to a low state. Once the µA2240 is initially triggered, any further trigger inputs are ignored until it is reset. In this astable operation, the µA2240 will free-run from the time it is triggered until it receives an external reset signal. Up to 255 discrete frequencies can be synthesized by connecting different counter outputs.
The µA2240 integrated circuit is designed for applications requiring precise timing and frequency generation. It comprises four essential components: a time-base oscillator (TBO), an eight-bit counter, a control flip-flop, and a voltage regulator, each contributing to the overall functionality of the device.
The time-base oscillator generates a clock signal at a frequency determined by the external resistor (R1) and capacitor (C1) values, with a specific time constant calculated as 1R1C1 = 2 kHz. This oscillator's open-collector output is connected to the input of the eight-bit counter, which counts the pulses generated by the TBO. A 20 k ohm pull-up resistor is employed to ensure proper voltage levels at the counter input, facilitating reliable operation.
Upon power-up, the circuit is initialized by a positive trigger pulse detected across capacitor C2. This pulse activates the TBO, initiating the oscillation process and setting all outputs of the counter to a low state. The µA2240 operates in an astable mode, meaning that once triggered, it will continue to run independently until an external reset signal is received. This behavior allows for continuous frequency generation without the need for constant triggering.
The eight-bit counter can synthesize up to 255 distinct frequencies by selectively connecting various counter outputs. This versatility in frequency generation makes the µA2240 suitable for a wide range of applications, including signal generation, timing applications, and digital clock circuits. The integrated voltage regulator ensures stable operation across varying supply voltages, contributing to the device's reliability and performance in electronic designs.The µA2240 consists of four basic circuit elements: (1) a time-base oscillator, (2) an eight-bit counter, (3) a control flip-flop, and (4) a voltage regulator. The basic frequency of the time-base oscillator (TBO) is set by the external time constant determined by the values of R1 and Cl (1R1C1 = 2 kHz).
The open-collector output of the TBO is connected to the regulator output via a 20 k ohm pull-up resistor, and drives the input to the eight-bit counter. At power-up, a positive trigger pulse is detected across C2 which starts the TBO and sets all counter outputs to a low state.
Once the µ2240 is initially triggered, any further trigger inputs are ignored until it is reset. In this astable operation, the µ2240 will free-run from the time it is triggered until it receives an external reset signal. Up to 255 discrete frequencies can be synthesized by connecting different counter outputs.
This circuit symmetrically divides an input by virtually any odd number. The circuit contains n+l/2 clocks twice to achieve the desired divisor. By selecting the proper n, which is the decoded output of the 74LS161 counter, divisors from 3 to...
This project involves a straightforward and practical 12V power supply circuit utilizing the LM7812 integrated circuit (IC). The LM7812 is a three-terminal fixed voltage regulator IC housed in a TO-220 package. It incorporates several built-in features such as thermal shutdown,...
MC78L15ABPG positive voltage regulator, 100mA, TO-92
The MC78L15ABPG is a low-dropout (LDO) voltage regulator designed to provide a stable output voltage of 15V with a maximum output current of 100mA. This device is packaged in a TO-92 form factor, which is...
The ISL62391 controller generates supply voltage for battery-powered systems. It includes two pulse-width modulation (PWM) controllers, adjustable from 0.6V to 5.5V, and a linear regulator (LDO3) that generates a fixed 3.3V and can deliver up to 100mA. The ISL62391 includes...
LM5576MHX absolute maximum ratings: (1) VIN to GND: 76V; (2) BST to GND: 90V; (3) PRE to GND: 76V; (4) SW to GND (Steady State): -1.5V; (5) BST to VCC: 76V; (6) SD, VCC to GND: 14V; (7) BST to...
This circuit provides an explanation of the Phase-Locked Loop (PLL) controller unit for an FM transmitter. It is crucial for maintaining a digitally controlled and stable transmitter frequency. The core component of this unit is a PIC processor, specifically the...
This is a Phase-Locked Loop (PLL) controller designed to operate with a Voltage-Controlled Oscillator (VCO) and modulator. These two modules should be utilized together to create a complete baseband-capable exciter unit. The PLL controller incorporates a stable crystal-controlled reference and...
An integrated voltage regulator connected in reverse to a mini drill allows for speed adjustment within specific limits, maintaining a constant speed regardless of load. The electronic speed control is achieved through a voltage regulator, which can power motors requiring...
This circuit can be utilized for Touch-Tone decoding as well as for telephone line and wireless control applications using a single audio frequency. The operating center frequency is determined by components H1 and C1. The resistor R1 should be within...
We use cookies to enhance your experience, analyze traffic, and (if you allow) serve personalized ads.
By clicking Accept All, you agree to our use of cookies.
Learn more