AMS1117
Advanced Monolithic Systems1 A LDO
Three-terminal 1 A low-dropout linear voltage regulator, in fixed 1.5 / 1.8 / 2.5 / 2.85 / 3.3 / 5.0 V versions or an adjustable version set by two resistors around a 1.25 V reference. Operates down to 1 V input-to-output differential (1.3 V max dropout at 0.8 A), with on-chip trimming to 1.5 %, internal current limit and thermal shutdown. Pin-compatible with older three-terminal SCSI regulators. Offered in SOT-223, TO-252 (DPAK) and 8-lead SOIC.
Output 1 ADropout 1.3 V maxVIN 15 V max
Versions 6 fixed + ADJPackages SOT-223 · TO-252 · SO-8Pins 3 (8 on SO-8)
At a glance
Output current
1 A
Current limit 1.1 A typ · 900 mA min
Dropout
1.3 V max
1.1 V typ at IOUT = 0.8 A
Fixed outputs
6 versions
1.5 · 1.8 · 2.5 · 2.85 · 3.3 · 5.0 V
Adjustable
1.25 V ref
VOUT = VREF(1 + R2/R1) + IADJR2
Packages
3 options
SOT-223 · TO-252 (DPAK) · 8L SOIC
Junction temp
−40 to +125 °C
Thermal shutdown at 165 °C
Specifications
Output current1 A
Fixed output voltages1.5 / 1.8 / 2.5 / 2.85 / 3.3 / 5.0 V — also available adjustable
Reference voltage1.250 V typ (1.232 – 1.268 V at 25 °C, IOUT = 10 mA)
Dropout voltage1.1 V typ, 1.3 V max at IOUT = 0.8 A
Input voltage15 V absolute maximum
Line regulation0.2 % max
Load regulation0.4 % max
Current limit900 mA min / 1100 mA typ / 1500 mA max at VIN − VOUT = 1.5 V
Quiescent current5 mA typ, 11 mA max
Minimum load current5 mA typ, 10 mA max (adjustable version)
Ripple rejection60 dB min; 75 dB typ adjustable, 72 dB fixed, 68 dB on the 5.0 V version (120 Hz, COUT = 22 µF)
Adjust pin current55 µA typ, 120 µA max
RMS output noise0.003 % of VOUT (10 Hz – 10 kHz)
Long term stability0.3 % typ, 1 % max (1000 h at 125 °C)
ProtectionInternal current limit + thermal shutdown at 165 °C junction
Thermal resistance θJASOT-223 90 °C/W* · TO-252 80 °C/W · SO-8 160 °C/W (*46 °C/W achievable with copper area)
Operating junction temp−40 to +125 °C · storage −65 to +150 °C
Required output cap22 µF solid tantalum — part of the loop compensation, not optional
Symbol & footprint
Schematic symbol — hover a pin for its function
PCB footprint — switch package bottom-right (SOT-223 / TO-252 / SO-8)
Pin map — 3 terminals on SOT-223 / TO-252, 8 leads on SOIC
On both SOT-223 and TO-252 the metal tab is VOUT, internally bonded to pin 2 — it is the heat path, so it must be soldered to a copper pour on the output net, never to ground. Both footprints shipped here carry the tab as pad 2.
SOT-223 & TO-2523 + tab
| 1 | GND/ADJ | Ground on fixed versions; feedback (adjust) node on the adjustable version |
| 2 | VOUT | Regulated output — also the metal tab |
| 3 | VIN | Unregulated input, 15 V max |
| — | TAB | Thermal pad, bonded to pin 2 (VOUT) |
8-lead SOIC8
| 1 | GND/ADJ | Ground on fixed versions; adjust node on the adjustable version |
| 2 | VOUT | Regulated output |
| 3 | VOUT | Regulated output — tie all VOUT leads together |
| 4 | VIN | Unregulated input, 15 V max |
| 5 | N/C | No internal connection |
| 6 | VOUT | Regulated output |
| 7 | VOUT | Regulated output |
| 8 | N/C | No internal connection |
Component variants
All variants are the same AMS1117 silicon. The order code carries two independent choices: the package (a letter pair after the base part) and the output voltage (a suffix). A blank voltage suffix means the adjustable version.
AMS1117CD-3.3
AMS1117
base part — 1 A LDO
CD / CS / blank
CD = TO-252 (DPAK) · CS = 8-lead SOIC · blank = SOT-223
-3.3
fixed output voltage (blank = adjustable)
SOT-223no letter
6.30–6.71 × 3.30–3.71 mm, 1.80 mm max height · 2.30 mm lead pitch · tab = VOUT
Fixed: AMS1117-1.5 -1.8 -2.5 -2.85 -3.3 -5.0
Adjustable: AMS1117
θJA 90 °C/W · 1.2 W max dissipation
TO-252 (DPAK) CD
6.48–6.73 × 5.97–6.22 mm body, 2.21–2.39 mm height · tab = VOUT
Fixed: AMS1117CD-1.5 -1.8 -2.5 -2.85 -3.3 -5.0
Adjustable: AMS1117CD
θJA 80 °C/W · 2.2 W max dissipation — the best thermal option
8-lead SOIC CS
4.80–5.00 × 3.81–3.99 mm body, 1.27 mm pitch · VOUT on four leads
Fixed: AMS1117CS-1.5 -1.8 -2.5 -2.85 -3.3 -5.0
Adjustable: AMS1117CS
θJA 160 °C/W · 780 mW max dissipation — lowest power
Output voltage versions
Every version is available in all three packages. Limits are at TJ = 25 °C; the test VIN is the datasheet condition for each part.
| Version | VOUT typ | Min – max | Test VIN | Load reg. typ / max | Ripple rej. typ |
| AMS1117-1.5 | 1.500 V | 1.478 – 1.522 V | 3.0 V | 3 / 10 mV | 72 dB |
| AMS1117-1.8 | 1.800 V | 1.773 – 1.827 V | 3.3 V | 3 / 10 mV | 72 dB |
| AMS1117-2.5 | 2.500 V | 2.463 – 2.537 V | 4.0 V | 3 / 12 mV | 72 dB |
| AMS1117-2.85 | 2.850 V | 2.808 – 2.892 V | 4.35 V | 3 / 12 mV | 72 dB |
| AMS1117-3.3 | 3.300 V | 3.251 – 3.349 V | 4.8 V | 3 / 15 mV | 72 dB |
| AMS1117-5.0 | 5.000 V | 4.925 – 5.075 V | 6.5 V | 5 / 20 mV | 68 dB |
| AMS1117 (ADJ) | 1.250 V ref | 1.232 – 1.268 V | — | 0.1 / 0.3 % | 75 dB |
Assets
KiCad symbol, all three footprints and matching 3D models, plus the canonical adom-lbr JSON the rest is generated from.
Implementation
- AMS1117-3.3 Molecule — a 5 V → 3.3 V regulator brick: AMS1117-3.3 in SOT-223 with 10 µF input and 22 µF output decoupling on a machine-pin carrier.
- Large Automotive Eth Switch Molecule — an AMS1117-1.2 supplies the KSZ9131 gigabit PHY 1.2 V core rail (U902) from the board's 3.3 V rail.
Per-voltage pages: adom/ams1117-3-3 · adom/ams1117-1-2 (a 1.2 V variant sourced from second-source vendors; not one of the six voltages in the AMS datasheet).
Application notes
- The 22 µF output capacitor is compensation, not decoupling. The AMS1117 loop depends on it; a solid tantalum 22 µF guarantees stability across all operating conditions. Bypassing the adjust pin raises the requirement further.
- No protection diodes needed. Unlike older regulators, internal resistors limit the adjust-pin current paths, so no diode from ADJ to output or input is required. A diode from output to input is only recommended when COUT is very large (1000–5000 µF) and the input can be shorted.
- Kelvin the divider, not the load. On the adjustable version, connect the top of R1 to the regulator case rather than the load, so parasitic line resistance is not multiplied by the divider ratio. Fixed versions Kelvin the top of R1 internally, so the ground pin can do negative-side sensing.
- Copper is the heat sink. θJA falls from 90 to about 55 °C/W with 2500 mm² of copper on both sides. The spreading copper does not have to be electrically connected to the tab to work.
- Adjustable output: VOUT = VREF(1 + R2/R1) + IADJR2, with VREF = 1.25 V and IADJ ≈ 55 µA. The IADJ term is small and constant and can usually be ignored.
Datasheet
Download the full datasheet (PDF) · Advanced Monolithic Systems, AMS1117 1 A Low Dropout Voltage Regulator · advanced-monolithic.com
Provenance
- Every electrical number on this page is read from the Advanced Monolithic Systems AMS1117 datasheet embedded above — features and ordering from page 1, limits from the Electrical Characteristics tables on pages 2–3, application guidance from pages 4–5, package dimensions from pages 7–8.
- Symbols: generated with
adom-symbol to the datasheet pin connections (3-pin fixed/adjustable version, and the 8-lead SOIC pinout).
- Footprints: the KiCad 10 official library land patterns, renamed —
SOT-223-3_TabPin2, TO-252-3_TabPin2 and SOIC-8_3.9x4.9mm_P1.27mm. The TabPin2 variants are the correct choice here because the AMS1117 tab is VOUT, which is pin 2.
- 3D models: the matching KiCad 10 official STEP models (
SOT-223.step, TO-252-3_TabPin2.step, SOIC-8_3.9x4.9mm_P1.27mm.step), converted to GLB with step2glb.
- Canonical JSON:
ams1117.adom-lbr.json, imported from the KiCad symbol + SOT-223 footprint with adom-lbr import-kicad.
- Fusion and Altium libraries are deliberately absent. They are generated rather than hand-verified, and the generated Altium symbol encoding has produced wrong geometry before, so nothing is shipped here until it can be checked in the tool itself.