
ROG THOR 1600W Titanium III (2024)
| Electronic Loads | Chroma 63601-5 x2 Chroma 63600-2 Chroma 63640-80-80 x10 Chroma 63610-80-20 |
| AC Sources | Chroma 6530, APM SP300VAC4000W-P, GW Instek ASR-3500 |
| Power Analyzers | Rohde & Schwarz HMC8015 & NPA701 |
| Oscilloscopes | Picoscope 4444, Siglent SDS2104X PLUS |
| Sound Analyzer | Bruel & Kjaer 2270 G4 |
| Microphone | Bruel & Kjaer Type 4955-A |
| Temperature Logger | Picoscope TC-08 |
| Tachometer | UNI-T UT372 |
| Multimeters | Keysight 34465A |
| EMI Analyzer | TekBox TBMR-110M-EU |
| Isolation Transformer | 4kVA |
| UPS | FSP Champ Tower 3kVA, CyberPower OLS3000E 3kVA |
| Testing Methodology | Cybenetics PSU Test Protocol |
| Voltage | 115V | 230V |
|---|---|---|
| Efficiency (>1450 Load Combinations) | 91.842% | 93.672% |
| Efficiency Graphs | ![]() | ![]() |
| Average PF (>1450 Load Combinations) | 0.991 | 0.949 |
| 12V Step | - | |
| 5V/3.3V Step | - | |
| Standby Power Consumption | 0.0244W | 0.1036W |
| ErP Lot 3/6 Ready | ✓ | |
| (EU) No 617/2013 Compliance | ✓ | |
| Average Efficiency VSB | 80.451% | 78.531% |
| Voltage | 115V | 230V |
|---|---|---|
| Noise Rating (>1450 Load Combinations) | 18.23dBA | 17.89dBA |
| Noise Graphs | ![]() | ![]() |
| Efficiency With 10W (≤500W) or 2% (>500W) Load | 73.424% |
| Hold Up Time | 23.80ms |
| Power OK | 18.70ms |
| Power OK to DC Loss | 5.10ms |
| Test\Rail | +12V | 5V | 3.3V | 5VSB |
| 100ms | 12.071 | 5.078 | 3.233 | 5.074 |
| 10ms | 11.725 | 5.021 | 3.145 | 4.999 |
| 1ms | 11.573 | 4.994 | 3.111 | 4.966 |
| 0.1ms | 11.492 | 4.984 | 3.097 | 4.950 |
| Product Identification Details | |
| Brand | Asus |
| Model | ROG THOR 1600W Titanium III (2024) |
| OEM | Wentai |
| Serial Number | |
| Product Specifications | |
| Manufacturer | |
| Rated Voltage (Vrms) | 100-240 |
| Rated Current (Arms) | 15 |
| Rated Frequency (Hz) | 50/60 |
| Rated Power (W) | 1600 |
| Operating Temperature (Continuous Full Load) (°C) | |
| Type | ATX12V |
| Cable Design | Fully Modular |
| Warranty | |
| Cybenetics | |
| Dimensions (W x H x D) | |
| Weight | |
| Cooling | 135mm Fluid Dynamic Bearing Fan (F1214025BU) |
| Semi-Passive Operation | ✓ (selectable) |
| Cybenetics Testing Information | |
| Lab ID | AS16002523 |
| Date of receipt | Jul 23, 2024 |
| Testing Date | Aug 1, 2024 |
| Report Issued Date | Aug 5, 2024 |
| DUT Notes | Fan speed profile is too loose to achieve LAMBDA-A+. We suggest a more aggressive fan speed profile for increased reliability. We are unsure about this PSU's reliability under tough conditions with the current fan speed profile. |
| Engineer Name | - |
| Authorized By the Laboratory Technical Manager | Aristeidis Bitziopoulos |
| Signature | ![]() |
| Modular Cables | ||||
| Description | Cable Count | Connector Count (Total) | Gauge | In Cable Capacitors |
| ATX connector 20+4 pin (615mm) | 1 | 1 | 18AWG | No |
| 4+4 pin EPS12V (1005mm) | 2 | 2 | 18AWG | No |
| 6+2 pin PCIe (750mm) | 4 | 4 | 18AWG | No |
| 12+4 pin PCIe (750mm) | 2 | 2 | 16-24AWG | No |
| SATA (400mm+120mm+120mm+120mm) | 2 | 6 | 18AWG | No |
| SATA (395mm+115mm+115mm+115mm) | 1 | 3 | 18AWG | No |
| 4-pin Molex (405mm+155mm+155mm) | 3 | 9 | 18AWG | No |
| ARGB Cable (800mm) | 1 | 1 | 22AWG | No |
| Under Voltage Protection | ✓ |
| Over Power Protection | ✓ |
| Over Current (+12V) Protection | ✓ |
| Over Temperature Protection | ✓ |
| Short Circuit Protection | ✓ |
| Surge Protection | ✓ |
| Inrush Current Protection | ✓ |
| General Data | |
| Manufacturer (OEM) | Wentai |
| PCB Type | Double-Sided |
| Primary Side | |
| Transient Filter | 6x Y caps, 3x X caps, 2x CM chokes, 1x MOV, 1x CAP200DG (Discharge IC) |
| Inrush Protection | 1x NTC Thermistor SCK-105 (10 Ohm) & Relay |
| Bridge Rectifier(s) (Standby Mode) | 5x GBJ25JL (600V, 25A @ 115°C) |
| Totem-Pole PFC MODFETs (HEMTs) | 2x Transform TP65H050WS GaN MODFETs (650 V, 25 A @ 100 °C, 0.06 ohm) &1x Champion CM03X (for reduced no-load consumption) |
| Totem-Pole PFC Driver | 2x On Semiconductor NCP81071 & 1x Champion CM03X (Phantom Power Remover) |
| Totem-pole PFC MOSFETs | 2x HCA60R040 (600 V, 68.8 A, 0.04 ohm) |
| Boost Diode(s) | 2x 3Win Tech 3WS10A065N (650V, 10A) |
| Bulk Cap(s) | 2x TK(400V, 820uF each or 1640 both, 2000h @ 105°C, LGW) 1x TK (400V, 470uF , 2000h @ 105°C, LGW) |
| Main Switchers | 4x Alpha & Omega AOTF29S50 (500V, 18A @ 100°C, Rds(on): 0.4Ohm) |
| IC Driver(s) | 2x Texas Instruments UCC21520 |
| Primary DSC | 2x Texas Instruments UCD3138A |
| Topology | Primary side: Digital Totem-Pole Bridgeless PFC, Full-Bridge & LLC converter Secondary side: Synchronous Rectification & Analogue Controlled DC-DC converters |
| Secondary Side | |
| +12V MOSFETs | 12x Toshiba TPH1R005PL (45V, 280A @ 175°C, Rds(on): 1.04mOhm) |
| 5V & 3.3V | DC-DC Converters: 6x Excelliance MOS EMB04N03HR (30V, 45A @ 100°C, Rds(on): 4mOhm) PWM Controller(s): ANPEC APW7159C |
| Filtering Capacitors | Electrolytic: 10x Jamicon TK series (2,000 @ 105°C, LWY) 4x Jamicon TK series (2,000 @ 105°C, LWK) 2x Jamicon TK series (2,000 @ 105°C, LWV) Polymer: 2x Nippon Chemicon (KYA), 74x |
| Supervisor IC | Weltrend WT7502R (OVP, UVP, SCP, PG) |
| Flash Memory | Winbond W25Q16DV |
| Microcontroller | Arery AT32F403A |
| Fan Model | F1214025BU (135mm, 12V, 1.1A, Double Ball Bearing Fan) |
| 5VSB Circuit | |
| Rectifier | 1x PMD04N65M FET (650V, 2.5A @ 100°C, Rds(on): 2.6Ohm) & 1x Taiwan Semiconductor PB1545S (45V, 15A) |
| Standby PWM Controller | Weltrend T7161R |
| Photos | ![]() | ![]() |
| Top side | Power specifications label |
F.1 General Statement
Measurement uncertainty associated with the reported results was evaluated and estimated in accordance with JCGM 100:2008 (Guide to the Expression of Uncertainty in Measurement — GUM) and ISO/IEC 17025:2017, Clauses 7.6 and 7.2.
The uncertainty budget accounts for all significant identified contributors arising from the measurement process, instrumentation, test conditions, and operator interaction.
The reported expanded uncertainty U is obtained by multiplying the combined standard uncertainty uc by a coverage factor k = 2, corresponding to a confidence level of approximately 95 %, assuming a normal probability distribution.
Unless otherwise stated, the reported uncertainty applies only to the specific measurements performed and does not include long-term drift, aging effects, or future environmental changes.
F.2 Expanded Measurement Uncertainty by Measurement Type
| Measurement | Expanded Uncertainty U (k=2, norm) |
| Efficiency | ±0.18% |
| Timings | ±0.48ms |
| Power Excursions (Transient Response) | ±0.1V |
| Conducted EMI Emissions (150 kHz – 30 MHz) | ±2.35 dBμV |
| Noise Output | ±1.23 dB |