Technician License Course Chapter 5 Amateur Radio Equipment

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Technician License Course Chapter 5 Amateur Radio Equipment Lesson Plan Module 12: Power Supplies

Technician License Course Chapter 5 Amateur Radio Equipment Lesson Plan Module 12: Power Supplies and Batteries & RF Interference (RFI)

Power Supplies • Most modern radio equipment runs from 12 volts DC. • Household

Power Supplies • Most modern radio equipment runs from 12 volts DC. • Household current is 120 volts AC. • Power supplies convert 120 volts AC to 12 volts DC. – 13. 8 volts DC is the common voltage you will see. – This is the charging voltage for motorized vehicles.

Types of Power Supplies Linear: – Transformers – Heavy (physically) – Heavy duty current

Types of Power Supplies Linear: – Transformers – Heavy (physically) – Heavy duty current – Expensive Switching: – Electronics instead of transformers – Light weight and small – Not as robust – Less expensive

Power Supply Ratings Voltage and Current • Continuous duty – how much current can

Power Supply Ratings Voltage and Current • Continuous duty – how much current can be supplied over the long term. • Intermittent duty – how much surge current can be supplied over the short term. • Regulation – how well the power supply can handle rapid current changes, and keep the voltage constant.

Mobile Power Wiring Safety • Special requirements for safe car wiring: – Fuse both

Mobile Power Wiring Safety • Special requirements for safe car wiring: – Fuse both positive and negative leads. – Connect radio’s negative lead to where the battery ground connection is made. – Use grommets or protective sleeves to prevent wire chafing. – Don’t assume all metal in the car is grounded; modern cars are as much plastic as metal. – Car batteries hold lots of energy – shorting a battery could cause a fire.

Mobile Power Wiring • Use wiring of sufficient gauge. – Too small wire can

Mobile Power Wiring • Use wiring of sufficient gauge. – Too small wire can lead to excessive voltage drop. • Mobile Noise – Alternator whine – high pitched noise that varies with engine speed. – Ignition noise – raspy or popping noise that also varies with engine speed. – There are filters that can help.

Batteries • Create current through a chemical reaction. – Made up of individual cells

Batteries • Create current through a chemical reaction. – Made up of individual cells (approximately 1. 5 volts per cell) connected in series or parallel. • Battery types. – Disposable. – Rechargeable. – Storage. • Power capabilities rated in Ampere-hours. – Amps X time.

Common Battery Types • Carbon Zinc rechargeable • Alkaline rechargeable • Lithium Coin rechargeable

Common Battery Types • Carbon Zinc rechargeable • Alkaline rechargeable • Lithium Coin rechargeable • Nickel Cadmium • Ni. MH • Lithium Ion • Lead Acid 1. 5 V per cell Non 3. 0 – 3. 3 V Non 1. 2 V per cell 1. 2 v per cell 3. 3 - 3. 6 V 2 V per cell Rechargeable

Battery Charging • Some batteries can be recharged, some cannot. • Use the proper

Battery Charging • Some batteries can be recharged, some cannot. • Use the proper charger for the battery being charged. • Ni. Cad, Ni. MH, L-ion. • Batteries will wear out over time. • Best if batteries are maintained fully charged. – Over-charging will cause heating and could damage the battery.

Storage Batteries • Some batteries (lead-acid) will release toxic fumes during charging so require

Storage Batteries • Some batteries (lead-acid) will release toxic fumes during charging so require ventilation. • Hydrogen gas is explosive • Contain sulfuric acid • Car batteries hold lots of energy – shorting a battery could cause a fire or explosion.

Handheld Transceivers • Battery packs – packages of several individual rechargeable batteries connected together.

Handheld Transceivers • Battery packs – packages of several individual rechargeable batteries connected together. – Ni. Cad (nickel-cadmium) – Ni. MH (nickel-metal hydride) – Li-ion (lithium-ion) • For emergencies, have a battery pack that can use disposable batteries (AA size)

Which is a good reason to use a regulated power supply for communications equipment?

Which is a good reason to use a regulated power supply for communications equipment? (T 4 A 03) • A. It prevents voltage fluctuations from reaching sensitive circuits • B. A regulated power supply has FCC approval • C. A fuse or circuit breaker regulates the power • D. Power consumption is independent of load

Which is a good reason to use a regulated power supply for communications equipment?

Which is a good reason to use a regulated power supply for communications equipment? (T 4 A 03) • A. It prevents voltage fluctuations from reaching sensitive circuits • B. A regulated power supply has FCC approval • C. A fuse or circuit breaker regulates the power • D. Power consumption is independent of load

What is the source of a high-pitched whine that varies with engine speed in

What is the source of a high-pitched whine that varies with engine speed in a mobile transceiver’s receive audio? (T 4 A 10) • • A. The ignition system B. The alternator C. The electric fuel pump D Anti-lock braking system controllers

What is the source of a high-pitched whine that varies with engine speed in

What is the source of a high-pitched whine that varies with engine speed in a mobile transceiver’s receive audio? (T 4 A 10) • • A. The ignition system B. The alternator C. The electric fuel pump D Anti-lock braking system controllers

Where should a mobile transceiver’s power negative connection be made? (T 4 A 11)

Where should a mobile transceiver’s power negative connection be made? (T 4 A 11) • A. At the battery or engine block ground strap • B. At the antenna mount • C. To any metal part of the vehicle • D. Through the transceiver’s mounting bracket

Where should a mobile transceiver’s power negative connection be made? (T 4 A 11)

Where should a mobile transceiver’s power negative connection be made? (T 4 A 11) • A. At the battery or engine block ground strap • B. At the antenna mount • C. To any metal part of the vehicle • D. Through the transceiver’s mounting bracket

How much voltage does a mobile transceiver usually require? (T 5 A 06) •

How much voltage does a mobile transceiver usually require? (T 5 A 06) • • A. B. C. D. About 12 volts About 30 volts About 120 volts About 240 volts

How much voltage does a mobile transceiver usually require? (T 5 A 06) •

How much voltage does a mobile transceiver usually require? (T 5 A 06) • • A. B. C. D. About 12 volts About 30 volts About 120 volts About 240 volts

What is the nominal voltage of a fully charged nickel-cadmium cell? (T 6 A

What is the nominal voltage of a fully charged nickel-cadmium cell? (T 6 A 10) • • A. B. C. D. 1. 0 volts 1. 2 volts 1. 5 volts 2. 2 volts

What is the nominal voltage of a fully charged nickel-cadmium cell? (T 6 A

What is the nominal voltage of a fully charged nickel-cadmium cell? (T 6 A 10) • • A. B. C. D. 1. 0 volts 1. 2 volts 1. 5 volts 2. 2 volts

Which battery type is not rechargeable? (T 6 A 11) • • A. B.

Which battery type is not rechargeable? (T 6 A 11) • • A. B. C. D. Nickel-cadmium Carbon-zinc Lead-acid Lithium-ion

Which battery type is not rechargeable? (T 6 A 11) • • A. B.

Which battery type is not rechargeable? (T 6 A 11) • • A. B. C. D. Nickel-cadmium Carbon-zinc Lead-acid Lithium-ion

What type of circuit controls the amount of voltage from a power supply? (T

What type of circuit controls the amount of voltage from a power supply? (T 6 D 05) • • A. B. C. D. Regulator Oscillator Filter Phase inverter

What type of circuit controls the amount of voltage from a power supply? (T

What type of circuit controls the amount of voltage from a power supply? (T 6 D 05) • • A. B. C. D. Regulator Oscillator Filter Phase inverter

What could be happening if another operator reports a variable high-pitched whine on the

What could be happening if another operator reports a variable high-pitched whine on the audio from your mobile transmitter? (T 7 B 09) • A. Your microphone is picking up noise from an open window • B. You have the volume on your receiver set too high • C. You need to adjust your squelch control • D. Noise on the vehicle’s electrical system is being transmitted along with your speech audio

What could be happening if another operator reports a variable high-pitched whine on the

What could be happening if another operator reports a variable high-pitched whine on the audio from your mobile transmitter? (T 7 B 09) • A. Your microphone is picking up noise from an open window • B. You have the volume on your receiver set too high • C. You need to adjust your squelch control • D. Noise on the vehicle’s electrical system is being transmitted along with your speech audio

What is one way to recharge a 12 -volt leadacid station battery if the

What is one way to recharge a 12 -volt leadacid station battery if the commercial power is out? (T 0 A 08) • A. Cool the battery in ice for several hours • B. Add acid to the battery • C. Connect the battery to a car’s battery and run the engine • D. All of these choices are correct

What is one way to recharge a 12 -volt leadacid station battery if the

What is one way to recharge a 12 -volt leadacid station battery if the commercial power is out? (T 0 A 08) • A. Cool the battery in ice for several hours • B. Add acid to the battery • C. Connect the battery to a car’s battery and run the engine • D. All of these choices are correct

What kind of hazard is presented by a conventional 12 -volt storage battery? (T

What kind of hazard is presented by a conventional 12 -volt storage battery? (T 0 A 09) • A. It emits ozone which can be harmful to the atmosphere • B. Shock hazard due to high voltage • C. Explosive gas can collect if not properly vented • D. All of these choices are correct

What kind of hazard is presented by a conventional 12 -volt storage battery? (T

What kind of hazard is presented by a conventional 12 -volt storage battery? (T 0 A 09) • A. It emits ozone which can be harmful to the atmosphere • B. Shock hazard due to high voltage • C. Explosive gas can collect if not properly vented • D. All of these choices are correct

What can happen if a lead-acid storage battery is charged or discharged too quickly?

What can happen if a lead-acid storage battery is charged or discharged too quickly? (T 0 A 10) • A. The battery could overheat and give off flammable gas or explode • B. The voltage can become reversed • C. The “memory effect” will reduce the capacity of the battery • D. All of these choices are correct

What can happen if a lead-acid storage battery is charged or discharged too quickly?

What can happen if a lead-acid storage battery is charged or discharged too quickly? (T 0 A 10) • A. The battery could overheat and give off flammable gas or explode • B. The voltage can become reversed • C. The “memory effect” will reduce the capacity of the battery • D. All of these choices are correct

Radio Frequency Interference (RFI) • Unwanted, unintentional signals from some electronic device that interferes

Radio Frequency Interference (RFI) • Unwanted, unintentional signals from some electronic device that interferes with radio wave reception. • You can help prevent creating RFI by operating your transmitting equipment properly.

RFI Mitigation • Filters – Filters attenuate (reduce) interfering signals – but do not

RFI Mitigation • Filters – Filters attenuate (reduce) interfering signals – but do not totally eliminate them. • High-pass – generally on the receive side. • Passes higher frequencies, reduces lower frequencies. • Low-pass – generally on the transmit side. • Passes lower frequencies, reduces higher frequencies.

RFI Mitigation • Filters • Band-pass – used within most radio equipment. • Passes

RFI Mitigation • Filters • Band-pass – used within most radio equipment. • Passes a specific range of frequencies, and rejects all others. • Band-reject – notches out a range of frequencies, and passes others. • Ferrite chokes can block unwanted RF.

Types of RFI • Direct Detection – offending signals get into the electronics circuits

Types of RFI • Direct Detection – offending signals get into the electronics circuits to cause interference. • Fundamental Overload – a strong signal that overwhelms the weaker, wanted signal. • Harmonics – even number multiples of the wanted signal that cause interference. • Spurious Emissions – unwanted emissions from a radio or electronic equipment.

Cable TV Interference • Usually the result of broken shielding somewhere in the cable.

Cable TV Interference • Usually the result of broken shielding somewhere in the cable. – Loose connections. – Broken connections. – Corroded connections. • Usually solved by proper cable maintenance by cable supplier. – If the subscriber is a legitimate subscriber.

Noise Sources • Electrical arcs (motors, thermostats, electric fences, neon signs). • Power lines.

Noise Sources • Electrical arcs (motors, thermostats, electric fences, neon signs). • Power lines. • Motor vehicle ignitions or alternators. • Switching power supplies. • Computers, networks, and TV sets.

Dealing with RFI • Make sure you operate your equipment properly. • Eliminate interference

Dealing with RFI • Make sure you operate your equipment properly. • Eliminate interference in your own home first.

Dealing with RFI • Take interference complaints seriously. • Make sure that you’re really

Dealing with RFI • Take interference complaints seriously. • Make sure that you’re really not the cause (demonstrate that you don’t interfere within your own home). • Offer to help eliminate the RFI, even if you are not at fault. • Consult ARRL RFI Resources for help and assistance.

What the Rules Say • RFI from and to unlicensed devices is the responsibility

What the Rules Say • RFI from and to unlicensed devices is the responsibility of the users of such devices • Bottom line – If your station is operating properly, you are protected against interference complaints • BUT – Be a good neighbor because they may (probably) not be familiar with Part 15 rules and regulations

Where must a filter be installed to reduce harmonic emissions? (T 4 A 04)

Where must a filter be installed to reduce harmonic emissions? (T 4 A 04) • A. Between the transmitter and the antenna • B. Between the receiver and the transmitter • C. At the station power supply • D. At the microphone

Where must a filter be installed to reduce harmonic emissions? (T 4 A 04)

Where must a filter be installed to reduce harmonic emissions? (T 4 A 04) • A. Between the transmitter and the antenna • B. Between the receiver and the transmitter • C. At the station power supply • D. At the microphone

What type of filter should be connected to a TV receiver as the first

What type of filter should be connected to a TV receiver as the first step in trying to prevent RF overload from a nearby 2 meter transmitter? (T 4 A 05) • • A. B. C. D. Low-pass filter High-pass filter Band-reject filter

What type of filter should be connected to a TV receiver as the first

What type of filter should be connected to a TV receiver as the first step in trying to prevent RF overload from a nearby 2 meter transmitter? (T 4 A 05) • • A. B. C. D. Low-pass filter High-pass filter Band-reject filter

Which would you use to reduce RF current flowing on the shield of an

Which would you use to reduce RF current flowing on the shield of an audio cable? (T 4 A 09) • • A. B. C. D. Band-pass filter Low-pass filter Preamplifier Ferrite choke

Which would you use to reduce RF current flowing on the shield of an

Which would you use to reduce RF current flowing on the shield of an audio cable? (T 4 A 09) • • A. B. C. D. Band-pass filter Low-pass filter Preamplifier Ferrite choke

What is meant by fundamental overload in reference to a receiver? (T 7 B

What is meant by fundamental overload in reference to a receiver? (T 7 B 02) • • A. To much voltage from the power supply B. Too much current from the power supply C. Interference caused by very strong signals D. Interference caused by turning the volume up too high

What is meant by fundamental overload in reference to a receiver? (T 7 B

What is meant by fundamental overload in reference to a receiver? (T 7 B 02) • A. To much voltage from the power supply • B. Too much current from the power supply • C. Interference caused by very strong signals • D. Interference caused by turning the volume up too high

Which of the following may be a cause of radio frequency interference? (T 7

Which of the following may be a cause of radio frequency interference? (T 7 B 03) • • A. B. C. D. Fundamental overload Harmonics Spurious emissions All of these choices are correct

Which of the following may be a cause of radio frequency interference? (T 7

Which of the following may be a cause of radio frequency interference? (T 7 B 03) • • A. B. C. D. Fundamental overload Harmonics Spurious emissions All of these choices are correct

What is the most likely cause of interference to a non-cordless telephone from a

What is the most likely cause of interference to a non-cordless telephone from a nearby transmitter? (T 7 B 04) • A. Harmonics from the transmitter • B. The telephone is inadvertently acting as a radio receiver • C. Poor station grounding • D. Improper transmitter adjustment

What is the most likely cause of interference to a non-cordless telephone from a

What is the most likely cause of interference to a non-cordless telephone from a nearby transmitter? (T 7 B 04) • A. Harmonics from the transmitter • B. The telephone is inadvertently acting as a radio receiver • C. Poor station grounding • D. Improper transmitter adjustment

What is a logical first step when attempting to cure a radio frequency interference

What is a logical first step when attempting to cure a radio frequency interference problem in a nearby telephone? (T 7 B 05) • A. Install a low-pass filter at the transmitter • B. Install a high-pass filter at the transmitter • C. Install an RF filter at the telephone • D. Improve station grounding

What is a logical first step when attempting to cure a radio frequency interference

What is a logical first step when attempting to cure a radio frequency interference problem in a nearby telephone? (T 7 B 05) • A. Install a low-pass filter at the transmitter • B. Install a high-pass filter at the transmitter • C. Install an RF filter at the telephone • D. Improve station grounding

What should you do first if someone tells you that your station’s transmissions are

What should you do first if someone tells you that your station’s transmissions are interfering with their radio or TV reception? (T 7 B 06) • A. Make sure that your station is functioning properly and that it does not cause interference to your own television • B. Immediately turn off your transmitter and contact the nearest FCC office for assistance • C. Tell them that your license gives you the right to transmit and nothing can be done to reduce the interference • D. Continue operating normally because your equipment cannot possibly cause any interference

What should you do first if someone tells you that your station’s transmissions are

What should you do first if someone tells you that your station’s transmissions are interfering with their radio or TV reception? (T 7 B 06) • A. Make sure that your station is functioning properly and that it does not cause interference to your own television • B. Immediately turn off your transmitter and contact the nearest FCC office for assistance • C. Tell them that your license gives you the right to transmit and nothing can be done to reduce the interference • D. Continue operating normally because your equipment cannot possibly cause any interference

Which of the following may be useful in correcting a radio frequency interference problem?

Which of the following may be useful in correcting a radio frequency interference problem? (T 7 B 07) • • A. B. C. D. Snap-on ferrite chokes Low-pass and high-pass filters Band-reject and band-pass filters All of these choices are correct

Which of the following may be useful in correcting a radio frequency interference problem?

Which of the following may be useful in correcting a radio frequency interference problem? (T 7 B 07) • • A. B. C. D. Snap-on ferrite chokes Low-pass and high-pass filters Band-reject and band-pass filters All of these choices are correct

What should you do if a “Part 15” device in your neighbor’s home is

What should you do if a “Part 15” device in your neighbor’s home is causing harmful interference to your amateur station? (T 7 B 08) • A. Work with you neighbor to identify the offending device • B. Politely inform your neighbor about the rules that require him to stop using the device if it causes interference • C. Check your station and make sure it meets the standards of good amateur practice • D. All of these choices are correct

What should you do if a “Part 15” device in your neighbor’s home is

What should you do if a “Part 15” device in your neighbor’s home is causing harmful interference to your amateur station? (T 7 B 08) • A. Work with you neighbor to identify the offending device • B. Politely inform your neighbor about the rules that require him to stop using the device if it causes interference • C. Check your station and make sure it meets the standards of good amateur practice • D. All of these choices are correct

Electrical Grounding and Circuit Protection (in the home) • Make sure your home is

Electrical Grounding and Circuit Protection (in the home) • Make sure your home is “up to code. ” • Most ham equipment does not require special wiring or circuits. – Use 3 -wire power cords. – Use circuit breakers, circuit breaker outlets, or Ground Fault Interrupter (GFI) circuit breakers. – Use proper fuse or circuit breaker size. – Don’t overload single outlets.

What is a symptom of RF feedback in a transmitter or transceiver? (T 7

What is a symptom of RF feedback in a transmitter or transceiver? (T 7 B 11) • A. Excessive SWR at the antenna connection • B. The transmitter will not stay on the desired frequency • C. Reports of garbled, distorted, or unintelligible transmissions • D. Frequent blowing of power supply fuses

What is a symptom of RF feedback in a transmitter or transceiver? (T 7

What is a symptom of RF feedback in a transmitter or transceiver? (T 7 B 11) • A. Excessive SWR at the antenna connection • B. The transmitter will not stay on the desired frequency • C. Reports of garbled, distorted, or unintelligible transmissions • D. Frequent blowing of power supply fuses

What type of conductor is best to use for RF grounding? (T 4 A

What type of conductor is best to use for RF grounding? (T 4 A 08) • • A. B. C. D. Round stranded wire Round copper-clad steel wire Twisted-pair cable Flat strap

What type of conductor is best to use for RF grounding? (T 4 A

What type of conductor is best to use for RF grounding? (T 4 A 08) • • A. B. C. D. Round stranded wire Round copper-clad steel wire Twisted-pair cable Flat strap