Engineering Masterclass

2.2k Ohm Resistor Color Code — Fast I²C Pull-Up & Red-Band Trap

2.2 kΩ color code (Red-Red-Red-Gold): when 4.7 kΩ is too weak on a capacitive I²C bus, rise-time math, and the 220 Ω vs 2.2 kΩ brown-vs-red decade trap.

How to Read Resistor Color Codes | 4-Band Chart — Band order, multiplier, tolerance — start here if bands are new to you. Open on YouTube
I²C Pull-Up Resistor Calculation — Rise time, bus capacitance, and why 4.7 kΩ is a common starting point. Open on YouTube

2.2 kΩ: the stronger I²C pull-up (three red bands)

Red · Red · Red · Gold → digits 2 · 2, multiplier ×1002.2 kΩ. Three red bands before gold is a distinctive pattern — but easy to confuse with 220 Ω if you misread the multiplier.

4-band: Red · Red · Red · Gold → 22 × 100 = 2,200 Ω = 2.2 kΩ (±5%) · 5-band (±1%): Red · Red · Black · Brown · Brown → 220 × 10 = 2.2 kΩ (±1%)

2.2k ohm 4-band — Red Red Red Gold

This guide is fast-mode I²C pull-up engineering — companion to the 4.7 kΩ I²C page. For GPIO buttons see 10 kΩ; for LEDs see 220 Ω.

When 4.7 kΩ is too weak — use 2.2 kΩ

I²C rise time scales with $R × C$. A capacitive breadboard bus may need half the pull-up resistance:

Pull-up @ 200 pF $C_b$ → $t_r$ (order) Typical fit
4.7 kΩ ~800 ns Short PCB, 100 kHz
2.2 kΩ ~370 ns Fast mode, jumpers, multiple devices
1 kΩ ~170 ns Aggressive — check driver $I_{OL}$

Rounded edges on the scope → lower $R$, not higher. Use our I²C pull-up calculator for your bus.

3.3 V vs 5 V (same color code)

Rail Idle current per line @ 2.2 kΩ Notes
5 V ~2.3 mA Higher power — OK on USB-powered boards
3.3 V ~1.5 mA ESP32 / STM32 modules — same Red-Red-Red-Gold bands

Supply voltage changes power dissipation, not the color code.

220 Ω vs 2.2 kΩ — brown vs red (catastrophic swap)

Value Multiplier band 4-band
220 Ω Brown (×10) Red · Red · Brown · Gold
2.2 kΩ Red (×100) Red · Red · Red · Gold

Plugging 220 Ω on I²C lines over-pulls the bus (~23 mA @ 5 V) and can prevent proper signaling. Always verify red-red parts with a meter — see also 220 Ω LED guide.

vs 4.7 kΩ and 1 kΩ — pick by bus, not habit

Scenario Start here
Battery, slow 100 kHz, short traces 4.7 kΩ guide
Breadboard, 400 kHz, scope shows slow rise 2.2 kΩ (this page)
Many devices, long cable, still failing Try 1 kΩ1 kΩ divider/pull guide

FAQ

What is the 2.2k ohm resistor color code?

4-band (±5%): Red, Red, Red, Gold. 22 × 100 = 2.2 kΩ (±5%). Actual range: 2.09 kΩ – 2.31 kΩ.

What is the 2.2k ohm resistor colour code (5-band)?

Red · Red · Black · Brown · Brown → 220 × 10 = 2.2 kΩ (±1%). Range: 2.178 kΩ – 2.222 kΩ.

How do I read a 2.2k ohm resistor color code?

Read left to right: first bands are digits, then multiplier, then tolerance. For 2.2 kΩ: Red-Red-Red = significant digits & multiplier, Gold = tolerance. Use the color code calculator to verify.

Which end do I start reading a 2.2 kΩ resistor from?

Start from the grouped digit bands (left). The tolerance band (Gold) is on the right — gold and silver are almost always tolerance, not multipliers.

What is the difference between 4-band and 5-band for 2.2 kΩ?

4-band (Red · Red · Red · Gold) gives 22 × 100 = 2.2 kΩ (±5%) with typical ±5% gold tolerance. 5-band (Red · Red · Black · Brown · Brown) adds a third digit for ±1% precision: 220 × 10 = 2.2 kΩ (±1%) (2.178 kΩ – 2.222 kΩ).

2.2k vs 220 ohm color code?

220 Ω uses brown multiplier (×10). 2.2 kΩ uses red (×100).

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