Capacitor Charge Calculator
Ing kasus iki, ikatan antarané elektron lan proton bakal dibentuk kanthi cara sing padha karo ikatan antarané proton lan neutron.
Hasilne bakal dioptimalake nalika sampeyan ngetik.
Ngenai kalkulator iki
Capacitor charge is the electric charge a capacitor holds in the field between its plates, Q = C × V in coulombs, and the energy stored is E = ½ × C × V² in joules, so doubling the voltage quadruples the stored energy. When you charge a capacitor through a series resistor, the voltage does not jump instantly — it rises along the curve V(t) = V × (1 − e^(−t/τ)); discharging, it falls along V(t) = V × e^(−t/τ). Both are governed by the time constant τ = R × C, the natural timescale of the RC circuit.
After one time constant the capacitor reaches about 63% of the supply voltage when charging (or falls to 37% when discharging); after 5τ it is within 1% of its final value and is treated as fully charged or discharged. For example, a 1,000 µF capacitor charged through a 1 kΩ resistor has τ = 1,000 × 10⁻⁶ × 1,000 = 1 second, so it is 63% charged after 1 s and essentially full after 5 s. At 5 V that same capacitor stores Q = 0.001 × 5 = 0.005 C and E = ½ × 0.001 × 25 = 0.0125 J.
Enter the supply voltage, capacitance and series resistance and the calculator returns the full charge, the stored energy, the time constant, the settling time (5τ), the voltage at a chosen instant, and the whole charge or discharge curve. These numbers are the everyday basis for RC timing circuits, power-supply smoothing, debounce delays, flash-photography energy storage and the turn-on delays in analogue electronics.
Takon-takon kang kerep diajukake
Apa sing dadi konstanta wektu saka sirkuit RC?
Konstan wektu τ = R × C iku wektu kanggo ngetung nganti 63% saka voltase pasokan. Sawisé 5τ kondensor dianggep wis diisi manèh (>99%).
Energi apa sing dibutuhake kanggo ngembangake sistem?
Saben 1000 mA, 1000 mF = 1000 joule, 1 joule = 1000 mA, 1 joule = 1000 mA, 1 joule = 1000 mA.
Apa bedane antarane ngecas lan ngeculake?
Muatan naék ka arah suplai salaku V(1 − e^(−t/τ)); discharging turun ti tegangan awal salaku V·e^(−t/τ). Kaduana ngahontal ~99% tina parobahan saatos 5 konstanta waktu.
Berapa banyak biaya yang dibutuhkan untuk membuat sebuah cetakan?
Muatan listrik Q = C × V dina coulomb.A 1000 µF kondensator dina 5 V ngawengku 0.001 × 5 = 0.005 C. Kapasitas langkung ageung atanapi voltase langkung luhur, boh nyimpen langkung muatan, dina proporsi langsung.
Apa sing bakal kedadeyan yen aku ora bisa ngisi daya?
Dina praktekna, sanggeus lima konstanta waktu (5τ = 5RC) éta aya dina sakitar 1% tina pasokan sareng ditangani salaku pinuh. kalayan 1 kΩ resistor sareng 1,000 µF kapasitor τ nyaéta 1 s, janten éta sacara esensial diisi deui saatos sakitar 5 detik.
Persentase apa sing dicapai sawise saben wektu konstan?
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Mengapa menambahkan resistor seri pada semua?
Resistor ngawatesan laju ngecas. Tanpana, laju arus nalika disambungkeun ngan dibatasi ku resistor anu teu aya, sarta bisa jadi gede; resistor ngajadikeun waktuna bisa diprediksi, anu pasti anu RC timer, filter, sarta sirkuit debounce merlukeun.
API — gunakake kalkulator iki saka kode
Ngadongékeun kalkulator ieu minangka titik akhir JSON bébas — teu peryogi kunci. Kirim nilai medan di handapeun minangka parameter pitakonan atawa JSON. Anything you omit uses the same default this page is pre-filled with; an unknown parameter is a 400, never a silent zero. Waca dokumen lengkap API →
Tampilan
GET https://calculator.free/api/v1/capacitor-charge/
curl
curl "https://calculator.free/api/v1/capacitor-charge/?mode=charge&voltage=5&capacitance=1000&resistance=1000"
JavaScript fetch()
const r = await fetch(
"https://calculator.free/api/v1/capacitor-charge/?" + new URLSearchParams({
"mode": "charge",
"voltage": "5",
"capacitance": "1000",
"resistance": "1000"
}));
const data = await r.json();
console.log(data.results);
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