UBUCIKO
UBUHLE NEMPILO
UBUCIKO BEZANDLA
AMASIKO NOMLANDO
EZOKUZIJABULISA
IMVELO
UKUDLA NEZIPHUZO
REVERSE ENGINEERING
IZAYENSI
EZEMIDLALO
UBUCHWEPHESHE
IZINTO EZIGQOKWAYO

Fins and the Heat Sink: A Fin That Is Too Long Does Nothing
Every heat exchanger in this batch is limited by its gas side: air takes heat from a surface reluctantly. The answer is more surface — fins on a motorcycle cylinder, on a car radiator's tubes, on an air-conditioner's coil, on the aluminium block clipped to a computer chip.
But a fin is not free surface. Heat has to be conducted out along it, so its tip is cooler than its root, and past a certain length the extra metal does almost nothing. Fin efficiency is the idea that decides what fins are made of and how long they are.
This rung works out fin efficiency for four metals and two air speeds, then measures real heat sinks on a hot power resistor, with and without a fan, in kelvin per watt.
Oqalayo
About 3 hours
Imiyalelo
1
1
Fin efficiency, and where a fin stops helping
Fin efficiency, and where a fin stops helping
Ilayisha incwadi ye-Jupyter…
2
2
Measure thermal resistance in kelvin per watt
Measure thermal resistance in kelvin per watt
Take a 10 W power resistor. Run it from the bench power supply at a known power — for example 5 W: set the voltage to √(5 × R) — and read the current to confirm.
Tape a waterproof temperature probe to the resistor body and log its temperature until it stops rising, for four arrangements:
1. bare, lying on a wooden block;
2. clipped to a small heat sink with a thin layer of thermal paste;
3. on the largest heat sink in the assortment;
4. on the same large sink with a small fan blowing across it.
For each, **thermal resistance = (resistor temperature − air temperature) ÷ power**, in K/W. Expect the bare resistor to be many times worse than the fan-cooled sink. Try the large sink without paste: the rise shows how much a dry contact adds.
Izinto zokwakha zalesi sinyathelo:
Power Resistor Kit - 10W (25 pack)1 iphakethe
Ukukhetha kwama-heat sink (i-aluminium)1 isethi
Iphasti yokushisa (Arctic Silver)1 ucezu
Izintambo Zokuxhuma1 isethiAmathuluzi adingekayo:
Umthombo kagesi we-DC
Temperature Sensor - Waterproof (DS18B20)
Isilinganiso sokushisa sasekhishini
Ifeni yokupholisa (i-PWM)
Iwashi Lokumisa Isikhathi3
3
Read a heat sink
Read a heat sink
Look at the heat sinks you just measured. The fins are short, closely spaced and made of aluminium — exactly what the notebook's tables recommend. Closer spacing adds surface, but in still air the fins' own warm boundary layers merge and choke each other; with a fan they can be closer. That is why sinks designed for fans have many thin fins, and passive sinks have fewer, wider-spaced ones, standing vertically so the warm air can rise out between them.
The thick base spreads the heat from a small hot component across all the fins. Where the source is far from the fins, a heat pipe (the previous rung) carries it there.
4
4
It still runs too hot: find out why
It still runs too hot: find out why
The usual reasons a component on a heat sink overheats, in order.
Flow
Loading...
5
5
Context
Context
A practice rung: extended surfaces appear in this catalogue on the steam engine's cylinder, the Seebeck thermocouple's cold junction and every air-cooled machine. The fin equation used in the notebook is standard heat-transfer theory.
**Honest limits of the numbers.** The convection coefficients are assumed round values; real ones depend on spacing, orientation and air speed, which is why step 2 measures rather than calculates. The fin model assumes a uniform coefficient and an insulated tip, both simplifications.
Izinto
4- Power Resistor Kit - 10W (25 pack)ikhomishini engu-10%1 iphakethe$5.64
- Ukukhetha kwama-heat sink (i-aluminium)ikhomishini engu-10%1 isethiIsibambeli
- Isibambeli
- kusukela ku-$1.60
Amathuluzi Adingekayo
5- Isibambeli
- Temperature Sensor - Waterproof (DS18B20)ikhomishini engu-10%$9.43
- Isibambeli
- Isibambeli
- Isibambeli
Isamba Esilinganiselwe
Lokho umenzi akuthenga. Izinto ezikhonjiswa ngaphandle kwentengo uzithola lapho uzithenga khona.
Ama-blueprint ahlobene
Lama-blueprint abelana ngolwazi — amasu, izinto noma izimiso

The Fire-Tube Boiler: Surface, Not Fire, Makes Steam
ngu-Martin
Ezomshini
12
0
0
0
0
0

The Radiator: Mostly Convection, and Why Temperature Is Everything
ngu-Emma
Ezomshini
5
0
0
0
0
0

The Heat Pipe: Evaporation, Condensation and a Wick That Pumps
ngu-Emma
Ezomshini
13
0
0
0
0
0

Cooling Is a Process Too: Still Air, Insulated, or Quenched
ngu-Penny
Umsebenzi Wensimbi
24
0
0
0
0
0

Seebeck Thermocouple
ngu-Ed
UBUCHWEPHESHE
35
0
0
0
0
0
CC0 Isizinda Somphakathi
Le blueprint ikhishwe ngaphansi kwe-CC0. Ukhululekile ukukopisha, ukuguqula, ukusabalalisa, nokusebenzisa ngaphandle kwemvume.
Sekela uMenzi ngokuthenga imikhiqizo nge-Blueprint yabo IKhomishane Yomenzi kumiswe ngabathengisi, noma dala inguqulo entsha yale Blueprint bese uyifaka njengoxhumaniso ku-Blueprint yakho ukuze wabelane ngemali engenayo.