Description: That Circuit is a UHF TV linear amplifier for small TV transmitters with output around 100-200mW. The transistor BGQ136 comes with SOT-122 case has gain of 13dB at 800MHz. So with input 100mW you get 2W output and for 200mW you get 4W. More: Do not exceed that or you will start to get a bad distorted picture! Feed with 25 Volts/3Amps. Use a really big heatsink.
The described circuit is a UHF TV linear amplifier designed specifically for small television transmitters, capable of delivering an output power range of approximately 100 to 200 milliwatts. The core component of this amplifier is the BGQ136 transistor, which is housed in a SOT-122 package. This transistor exhibits a voltage gain of 13 dB at a frequency of 800 MHz, making it suitable for UHF applications.
When the amplifier is supplied with an input power of 100 mW, it is capable of producing an output power of 2 watts. Similarly, with an input of 200 mW, the output power can reach 4 watts. However, it is crucial to adhere to these input power limits; exceeding them can lead to signal distortion, resulting in poor picture quality.
The amplifier requires a power supply of 25 volts and a current rating of 3 amps to operate effectively. This power requirement indicates that the circuit is designed for higher efficiency, allowing it to maintain linearity and minimize distortion during operation.
Thermal management is a significant consideration in the design of this circuit. Due to the power levels involved, it is essential to use a sufficiently large heatsink to dissipate heat generated during operation. Inadequate cooling can lead to thermal runaway conditions, potentially damaging the transistor and degrading performance.
In summary, this UHF TV linear amplifier circuit is tailored for small transmitter applications, featuring the BGQ136 transistor, a specified gain, and strict operational guidelines regarding input power and thermal management. Proper implementation of these specifications will ensure optimal performance and reliability in broadcasting applications.That Circuit is a UHF TV linear amplifier for small TV transmitters with output aroun 100-200mW. The transistor BGQ136 comes with SOT-122 case has gain of 13dB at 800MHz. So with input 100mW you get 2W output and for 200mW you get 4W. Do not exceed that or you will start get bad distorted picture! Feed with 25 Volts/3Amps. Use Really big heatsink.
A 100W full-wave single-junction transistor trigger control circuit designed for constant or variable speed control of a wire feed motor. The input control signal consists of a voltage adjusted by the master potentiometer (RPs) and a feedback voltage from potentiometer...
This circuit diagram represents a low-cost metal detector utilizing a single transistor circuit in conjunction with an old pocket radio. It operates as a Colpitts oscillator functioning within the medium band frequency range, with the radio tuned to the same...
The basic two-transistor flasher has become widely utilized in various applications due to its simplicity and versatility. It has been employed in circuits such as a micropower low battery indicator, a lightning detector, an off-line switching power supply, a micropower...
This page presents several transistor circuits that are not commonly found on other pages due to the absence of a specific topic. These circuits, however, illustrate particular points but lack detailed descriptions. An example of an RF amplifier circuit using...
The project involves adapting a curve tracer schematic, likely based on Metzger's circuit from the early 1970s, to integrate an ADC capture system and output the data to a 320x256 ELD panel. Additionally, a serial output will be included to...
Bipolar junction transistors transfer a current from a lower-resistance emitter to a higher-resistance collector. This property can be utilized to measure inductance.
Bipolar junction transistors (BJTs) are semiconductor devices that play a crucial role in electronic circuits by enabling the control...
The world's first practical crystal amplifying device was introduced in 1948, marking the beginning of commercially available transistor radios in Britain. At that time, an average radio enthusiast or constructor would have been adjusting to new miniature glass valves, exploring...
This is another UHF-TV preamplifier circuit diagram that is simpler than the previous UHF TV preamplifier. This circuit is based on the MPSH10 transistor. Alternatives that can be used to replace the MPSH10 include the BF180 and BCY90. The tuned...
In the never-ending quest for simplicity, even one extra diode is a price I loathe to pay. To avoid using extra components, it struck me that the two diodes in SIMD1 V1 were connected like the two junctions in one...
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