STEP 1 / 6ELECTRONICS

Medium-Power FM Transmitter

At 9V DC, this FM transmitter has a range of about 100 meters. There are three stages in the circuit. The first stage is a BC548 transistor-based microphone preamplifier. The next stage i…

Hand-built medium-power FM transmitter with electret microphone, three transistor stages, two copper RF coils, tuning capacitors and 9V supply under test
PROJECT#012
TRACKElectronics
PARTS23
STAGES06
STEP 1 / 6 · Overview

Know the mission before touching a wire.

Understand what you are making, prepare the right tools, and make the workbench safe.

01

Project details

Medium-Power FM Transmitter is a electronics project. At 9V DC, this FM transmitter has a range of about 100 meters. There are three stages in the circuit. The first stage is a BC548 transistor-based microphone preamplifier. The next stage i…

Source pages
57-58
Named parts
23
Build goal
Working, tested prototype
02

Tools you need

  • Digital multimeter
  • Wire stripper and side cutters
  • Soldering iron with a fine tip
  • Current-limited bench supply

Use eye protection, good lighting, and a clean insulated surface throughout the build.

03

Safety precautions

  • Disconnect every power source before changing a connection.
  • Check component polarity, pinout, and supply voltage twice.
  • Use a current limit for the first power-up.
  • Keep liquids, loose metal, and uninsulated wires away from the bench.
Ready to continue?
STEP 2 / 6 · Circuit-verified parts library

Gather, identify, and understand every part.

Use the standardized inventory, then open What's this? to learn each part's role, advantages, limitations, handling, and specifications.

✓ COMPLETE CIRCUIT BOMAll 23 component references, values, and stage-specific names from the reviewed schematic are included below.
CIRCUIT-VERIFIED PROJECT INVENTORY23 PART LINES
PARTTYPEQTYREADY
MT1 - BC548 NPN condenser-microphone preamplifier transistorMODULE1
What's this?Image, role, pros, cons, handling & specifications
BC548 NPN transistorMODULE LEARNING VIEW

T1 - BC548 NPN condenser-microphone preamplifier transistor

A sensor converts a physical condition into an electrical signal the circuit can measure.

What it does here

It provides project input as an analogue, digital, resistive, frequency, or calibrated signal.

Buy / compare this part

Advantages

  • Adds real-world awareness
  • Can usually be tested independently
  • Often supports calibration

Limitations

  • Readings can drift
  • Placement affects results
  • Some sensors need warm-up or calibration

Handling

  • Protect the sensing surface
  • Observe supply voltage and polarity
  • Keep signal leads away from noisy power wiring

Specifications to verify

  • Use the exact model, value, package, and rating listed for T1 - BC548 NPN condenser-microphone preamplifier transistor; similar-looking parts are not always interchangeable.
  • Confirm supply range, output type, measurement range, accuracy, response time, and pin order.
ST2 - BC548 NPN VHF oscillator transistorSEMICONDUCTOR1
What's this?Image, role, pros, cons, handling & specifications
BC548 NPN transistorSEMICONDUCTOR LEARNING VIEW

T2 - BC548 NPN VHF oscillator transistor

A semiconductor stage performs switching, amplification, regulation, rectification, or logic.

What it does here

It controls current or signal flow at a defined point in the circuit.

Buy / compare this part

Advantages

  • Fast and efficient
  • Compact
  • Can control larger loads from smaller signals

Limitations

  • Pin order varies
  • Sensitive to overvoltage and reverse polarity
  • May need cooling or bias components

Handling

  • Verify the datasheet pinout
  • Avoid static and soldering heat
  • Check notch, stripe, or flat-face orientation

Specifications to verify

  • Use the exact model, value, package, and rating listed for T2 - BC548 NPN VHF oscillator transistor; similar-looking parts are not always interchangeable.
  • Confirm pinout, maximum voltage/current, dissipation, gain or forward voltage, and package.
ST3 - C2570 NPN class-A tuned RF power transistorSEMICONDUCTOR1
What's this?Image, role, pros, cons, handling & specifications
C2570 NPN RF power transistorSEMICONDUCTOR LEARNING VIEW

T3 - C2570 NPN class-A tuned RF power transistor

A semiconductor stage performs switching, amplification, regulation, rectification, or logic.

What it does here

It controls current or signal flow at a defined point in the circuit.

Buy / compare this part

Advantages

  • Fast and efficient
  • Compact
  • Can control larger loads from smaller signals

Limitations

  • Pin order varies
  • Sensitive to overvoltage and reverse polarity
  • May need cooling or bias components

Handling

  • Verify the datasheet pinout
  • Avoid static and soldering heat
  • Check notch, stripe, or flat-face orientation

Specifications to verify

  • Use the exact model, value, package, and rating listed for T3 - C2570 NPN class-A tuned RF power transistor; similar-looking parts are not always interchangeable.
  • Confirm pinout, maximum voltage/current, dissipation, gain or forward voltage, and package.
MR1 - 10kΩ condenser-microphone bias resistorMODULE1
What's this?Image, role, pros, cons, handling & specifications
10kΩ axial through-hole resistorMODULE LEARNING VIEW

R1 - 10kΩ condenser-microphone bias resistor

A sensor converts a physical condition into an electrical signal the circuit can measure.

What it does here

It provides project input as an analogue, digital, resistive, frequency, or calibrated signal.

Buy / compare this part

Advantages

  • Adds real-world awareness
  • Can usually be tested independently
  • Often supports calibration

Limitations

  • Readings can drift
  • Placement affects results
  • Some sensors need warm-up or calibration

Handling

  • Protect the sensing surface
  • Observe supply voltage and polarity
  • Keep signal leads away from noisy power wiring

Specifications to verify

  • Use the exact model, value, package, and rating listed for R1 - 10kΩ condenser-microphone bias resistor; similar-looking parts are not always interchangeable.
  • Confirm supply range, output type, measurement range, accuracy, response time, and pin order.
MR2 - 1MΩ microphone-signal series resistorMODULE1
What's this?Image, role, pros, cons, handling & specifications
Axial through-hole resistorMODULE LEARNING VIEW

R2 - 1MΩ microphone-signal series resistor

A sensor converts a physical condition into an electrical signal the circuit can measure.

What it does here

It provides project input as an analogue, digital, resistive, frequency, or calibrated signal.

Buy / compare this part

Advantages

  • Adds real-world awareness
  • Can usually be tested independently
  • Often supports calibration

Limitations

  • Readings can drift
  • Placement affects results
  • Some sensors need warm-up or calibration

Handling

  • Protect the sensing surface
  • Observe supply voltage and polarity
  • Keep signal leads away from noisy power wiring

Specifications to verify

  • Use the exact model, value, package, and rating listed for R2 - 1MΩ microphone-signal series resistor; similar-looking parts are not always interchangeable.
  • Confirm supply range, output type, measurement range, accuracy, response time, and pin order.
PR3 - 4.7kΩ T1 base-bias resistorPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
Axial through-hole resistorPASSIVE LEARNING VIEW

R3 - 4.7kΩ T1 base-bias resistor

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for R3 - 4.7kΩ T1 base-bias resistor; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
PR4 and R5 - two 10kΩ T2 base-bias divider resistorsPART2
What's this?Image, role, pros, cons, handling & specifications
10kΩ axial through-hole resistorPART LEARNING VIEW

R4 and R5 - two 10kΩ T2 base-bias divider resistors

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for R4 and R5 - two 10kΩ T2 base-bias divider resistors; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
PR6 - 82Ω T2 emitter resistorPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
Axial through-hole resistorPASSIVE LEARNING VIEW

R6 - 82Ω T2 emitter resistor

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for R6 - 82Ω T2 emitter resistor; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
PR7 - 56kΩ T3 base-bias resistorPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
Axial through-hole resistorPASSIVE LEARNING VIEW

R7 - 56kΩ T3 base-bias resistor

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for R7 - 56kΩ T3 base-bias resistor; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
PC1 and C2 - two 0.1µF non-polarized audio coupling capacitorsPART2
What's this?Image, role, pros, cons, handling & specifications
Ceramic capacitorPART LEARNING VIEW

C1 and C2 - two 0.1µF non-polarized audio coupling capacitors

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for C1 and C2 - two 0.1µF non-polarized audio coupling capacitors; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
PC3 and C4 - two 470pF RF bypass capacitorsPART2
What's this?Image, role, pros, cons, handling & specifications
Hand-built medium-power FM transmitter with electret microphone, three transistor stages, two copper RF coils, tuning capacitors and 9V supply under testPART LEARNING VIEW

C3 and C4 - two 470pF RF bypass capacitors

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for C3 and C4 - two 470pF RF bypass capacitors; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
PC5 and C6 - two 10pF oscillator feedback and RF coupling capacitorsPART2
What's this?Image, role, pros, cons, handling & specifications
Hand-built medium-power FM transmitter with electret microphone, three transistor stages, two copper RF coils, tuning capacitors and 9V supply under testPART LEARNING VIEW

C5 and C6 - two 10pF oscillator feedback and RF coupling capacitors

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for C5 and C6 - two 10pF oscillator feedback and RF coupling capacitors; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
PC7 - 0.01µF switched-rail RF bypass capacitorPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
Ceramic capacitorPASSIVE LEARNING VIEW

C7 - 0.01µF switched-rail RF bypass capacitor

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for C7 - 0.01µF switched-rail RF bypass capacitor; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
PC8 - 0.1µF RF output-rail bypass capacitorPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
Ceramic capacitorPASSIVE LEARNING VIEW

C8 - 0.1µF RF output-rail bypass capacitor

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for C8 - 0.1µF RF output-rail bypass capacitor; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
PVC1 - 22pF variable capacitor for the L1 oscillator tankPASSIVE1
What's this?Image, role, pros, cons, handling & specifications
22pF RF trimmer capacitorPASSIVE LEARNING VIEW

VC1 - 22pF variable capacitor for the L1 oscillator tank

A passive component sets current, voltage, timing, filtering, or signal behaviour without adding gain.

What it does here

Its exact value and tolerance determine how the surrounding stage behaves.

Buy / compare this part

Advantages

  • Simple and dependable
  • Low cost
  • Easy to measure before installation

Limitations

  • A wrong value can stop or damage the circuit
  • Ratings must not be exceeded
  • Polarized parts require correct orientation

Handling

  • Measure unclear values
  • Observe capacitor polarity
  • Avoid overheating leads while soldering

Specifications to verify

  • Use the exact model, value, package, and rating listed for VC1 - 22pF variable capacitor for the L1 oscillator tank; similar-looking parts are not always interchangeable.
  • Confirm value, tolerance, power or voltage rating, polarity, and package size.
BVC2 and VC3 - two 22pF variable capacitors for output tuning and antenna couplingBUILD2
What's this?Image, role, pros, cons, handling & specifications
22pF RF trimmer capacitorBUILD LEARNING VIEW

VC2 and VC3 - two 22pF variable capacitors for output tuning and antenna coupling

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for VC2 and VC3 - two 22pF variable capacitors for output tuning and antenna coupling; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
BL1 - four turns of 20SWG enamelled copper wire on a 4mm air core, 1.5cm longBUILD1
What's this?Image, role, pros, cons, handling & specifications
Tuned air-core VHF coilBUILD LEARNING VIEW

L1 - four turns of 20SWG enamelled copper wire on a 4mm air core, 1.5cm long

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for L1 - four turns of 20SWG enamelled copper wire on a 4mm air core, 1.5cm long; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
BL2 - six turns of 20SWG enamelled copper wire on a 4mm air coreBUILD1
What's this?Image, role, pros, cons, handling & specifications
Tuned air-core VHF coilBUILD LEARNING VIEW

L2 - six turns of 20SWG enamelled copper wire on a 4mm air core

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for L2 - six turns of 20SWG enamelled copper wire on a 4mm air core; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
MMIC1 - two-terminal electret condenser microphone capsuleMODULE1
What's this?Image, role, pros, cons, handling & specifications
Electret condenser microphone capsuleMODULE LEARNING VIEW

MIC1 - two-terminal electret condenser microphone capsule

A sensor converts a physical condition into an electrical signal the circuit can measure.

What it does here

It provides project input as an analogue, digital, resistive, frequency, or calibrated signal.

Buy / compare this part

Advantages

  • Adds real-world awareness
  • Can usually be tested independently
  • Often supports calibration

Limitations

  • Readings can drift
  • Placement affects results
  • Some sensors need warm-up or calibration

Handling

  • Protect the sensing surface
  • Observe supply voltage and polarity
  • Keep signal leads away from noisy power wiring

Specifications to verify

  • Use the exact model, value, package, and rating listed for MIC1 - two-terminal electret condenser microphone capsule; similar-looking parts are not always interchangeable.
  • Confirm supply range, output type, measurement range, accuracy, response time, and pin order.
PS1 - SPST on/off switch in the 9V positive leadPART1
What's this?Image, role, pros, cons, handling & specifications
On/off slide switchPART LEARNING VIEW

S1 - SPST on/off switch in the 9V positive lead

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for S1 - SPST on/off switch in the 9V positive lead; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
PBAT1 - 9V PP3 battery with polarized snap connectorPOWER1
What's this?Image, role, pros, cons, handling & specifications
9V PP3 batteryPOWER LEARNING VIEW

BAT1 - 9V PP3 battery with polarized snap connector

A power component supplies, converts, stores, or regulates energy for the project.

What it does here

It must provide the documented voltage, polarity, isolation, and sufficient current safely.

Buy / compare this part

Advantages

  • Stable power improves reliability
  • Current limiting protects first tests
  • Regulation reduces resets and noise

Limitations

  • Wrong polarity can cause immediate damage
  • Underrated parts overheat
  • Mains circuits require qualified supervision

Handling

  • Measure output before connection
  • Use a fuse or current limit
  • Insulate exposed conductors

Specifications to verify

  • Use the exact model, value, package, and rating listed for BAT1 - 9V PP3 battery with polarized snap connector; similar-looking parts are not always interchangeable.
  • Confirm input/output voltage, current, polarity, connector, isolation, and thermal rating.
BANT1 - 75cm insulated wire antennaBUILD1
What's this?Image, role, pros, cons, handling & specifications
Hand-built medium-power FM transmitter with electret microphone, three transistor stages, two copper RF coils, tuning capacitors and 9V supply under testBUILD LEARNING VIEW

ANT1 - 75cm insulated wire antenna

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for ANT1 - 75cm insulated wire antenna; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
BPCB1 - project PCB and short RF hook-up wireBUILD1
What's this?Image, role, pros, cons, handling & specifications
Hand-built medium-power FM transmitter with electret microphone, three transistor stages, two copper RF coils, tuning capacitors and 9V supply under testBUILD LEARNING VIEW

PCB1 - project PCB and short RF hook-up wire

A named project component whose exact role is defined by the source circuit and build guide.

What it does here

It performs a documented electrical, control, interface, or construction function in this project.

Buy / compare this part

Advantages

  • Selected for this project
  • Can be checked independently
  • Supports modular troubleshooting

Limitations

  • Substitutes may differ
  • Generic names can hide variants
  • Pinouts and ratings vary

Handling

  • Compare the received part with the source
  • Keep it labelled
  • Do not force connectors or adjusters

Specifications to verify

  • Use the exact model, value, package, and rating listed for PCB1 - project PCB and short RF hook-up wire; similar-looking parts are not always interchangeable.
  • Confirm dimensions, ratings, connection method, polarity, and environmental limits.
Ready to continue?
STEP 4 / 6 · Source code

Confirm the hardware-only control path.

This project does not include firmware in the source. The circuit itself provides the required behaviour.

01

How to connect

  1. Match every controller label to the circuit view and source pin map.
  2. Join grounds before signal wires when separate low-voltage supplies are used.
  3. Keep motors, relays, pumps, and other loads on a suitable driver and external supply.

Common mistakes

Reversed VCC/GND, board-label versus GPIO-number confusion, missing common ground, and charge-only USB cables.

Troubleshoot

Disconnect loads, continuity-test one path at a time, then test with a current limit.

02

Software preparation

No IDE, board package, library, or firmware upload is required for this project.

If you add a programmable controller as an extension, document its pin map separately.

03

How to upload code

The original design is implemented entirely in hardware, so proceed after verifying the circuit and supply.

Ready to continue?
STEP 5 / 6 · Build

Assemble, deploy, test, and troubleshoot.

Use the complete source notes in build order, then pass the final checks before calling the project finished.

ASSEMBLY

Build in functional stages

  • Power and regulation
  • Controller or processing stage
  • Inputs and sensors
  • Outputs and loads
  • Enclosure and strain relief
TEST

Power up safely

  • Inspect unpowered continuity first
  • Apply the lowest safe current limit
  • Measure supply rails before signals
  • Add one load at a time
  • Record expected and actual results
TROUBLESHOOT

Work from simple to complex

  • Confirm power, ground, polarity, and orientation
  • Compare each pin with the source
  • Test inputs separately from outputs
  • Replace only one variable at a time
  • Power off before every correction
PROJECT-SPECIFIC BUILD NOTES

Follow the documented instructions.

These notes come from this project's source and remain in their original order.

01

Project overview

Project build note

At 9V DC, this FM transmitter has a range of about 100 meters.

There are three stages in the circuit. The first stage is a BC548 transistor-based microphone preamplifier. The next stage is a second BC548 VHF oscillator. Its signal is amplified by a C2570 class-A tuned RF output stage. L1 is four turns of 20SWG enamelled copper wire on a 4mm air core about 1.5cm long. L2 is six turns of the same wire on a 4mm air core.

Ready to continue?
PROJECT ACHIEVED

You built Medium-Power FM Transmitter.

You followed the full workflow from understanding the mission to testing the finished project. That is a real engineering achievement - well done.

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