Customer: -

ACP1000

Report Number: 25PS2883A
Customer ID: 234
Lab ID: AG10002883

Test Report Results

Section A: Testing Equipment

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, Rohde & Schwarz 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

Section B: ETA

Voltage115V230V
Efficiency (>1450 Load Combinations)89.998%91.709%
Efficiency Graphs
Average PF (>1450 Load Combinations)0.9800.946
Standby Power Consumption0.0704W0.1293W
ErP Lot 3/6 Ready
(EU) No 617/2013 Compliance
Average Efficiency VSB81.533%80.281%
Conducted Emissions EN55032 & CISPR 32Passed

Section C: LAMBDA

Voltage115V230V
Noise Rating (>1450 Load Combinations)25.82dBA25.94dBA
Noise Graphs

Section D: ATX

Efficiency With 10W (≤500W) or 2% (>500W) Load79.141
Hold Up Time24.70
Power OK19.90
Power OK to DC Loss4.80

Section E: Information about DUT

Model NameACEGEEK
Lab IDAG10002883
Serial Number-
Date of receiptJun 17, 2025
Testing DateJul 10, 2025
Report Issued DateJul 14, 2025
DUT Notes2883
Engineer Name
Authorized By the Laboratory General ManagerAristeidis Bitziopoulos
Signature

Cables And Connectors

Modular Cables
Description Cable Count Connector Count (Total) Gauge In Cable Capacitors
ATX connector 20+4 pin (610mm) 1 1 18AWG No
4+4 pin EPS12V (700mm) 2 2 18AWG No
6+2 pin PCIe (600mm) 3 3 18AWG No
12+4 pin PCIe (600mm) (600W) 1 1 16-24AWG No
SATA (450mm+120mm+120mm) / 4-pin Molex (+120mm) 3 9 / 3 18AWG No
AC Power Cord (1060mm) - C13 coupler 1 1 18AWG -

Technical Specifications

Manufacturer (OEM)

Andyson

Max. DC Output

1000W

Efficiency (115V) Cybenetics Platinum (89.998%)
Efficiency (230V) Cybenetics Platinum (91.709%)

Noise (115V)

Cybenetics A- (25.82 dB[A])

Noise (230V)

Cybenetics A- (25.94 dB[A])

Modular

✓ (Fully)

Intel C6/C7 Power State Support

Operating Temperature (Continuous Full Load)

0 - 50°C

Over Voltage Protection

Under Voltage Protection

Over Power Protection

Over Current (+12V) Protection

Over Temperature Protection

Short Circuit Protection

Surge Protection

Inrush Current Protection

Fan Failure Protection

No Load Operation

Cooling

120mm Fluid Dynamic Bearing Fan (HA1225H12F-Z)

Semi-Passive Operation

✓ (Selectable)

Dimensions (W x H x D)

150 x 85 x 140mm

Weight

1.70 kg (3.75 lb)

Form Factor

ATX12V v3.1, EPS 2.92

ATX 3.1 & PCIe 5.1 ready
Alternative Low Power Mode (ALPM) compatible

Warranty

No Info

Parts Description

General Data
Manufacturer (OEM) Andyson
PCB Type Double-Sided
Primary Side
Transient Filter 4x Y caps, 2x X caps, 2x CM chokes, 1x MOV
Inrush Protection NTC Thermistor SCK205R0 (5 Ohm @ 25°C) & Relay
Bridge Rectifier(s)
2x HY Electronic GBU1506 (600V, 15A @ 100°C)
APFC MOSFETs
2x Way-On WML53N60C4 (600V, 26A @ 100°C, Rds(on): 0.07Ohm)
APFC Boost Diode
1x Global Power Technology G4S06508AT (650V, 8A @ 153°C)
Bulk Cap(s)
2x Nippon Chemi-con (420V, 470uF each or 940uF combined, 2000h @ 105°C, KMQ)
Main Switchers
4x Way-On WML26N65F2 (650V, 10.5A @ 100°C, Rds(on): 0.21Ohm)

APFC Controller

1x

Resonant Controller
Champion CU6901VPA
Topology Primary side: APFC, Full-Bridge & LLC Resonant Converter
Secondary side: [12V] Synchronous Rectification & [Minor Rails] DC-DC converters
Secondary Side
+12V MOSFETs 8x Infineon BSC014N04LS (40V, 145A @ 100°C, Rds(on): 1.4mOhm)
5V & 3.3V
DC-DC Converters: 6 x Way-On WMB050N03LG4 (30V, 41A @ 100°C, Rds(on): 5.4mOhm)
PWM Controller(s): ANPEC APW7159C
Filtering Capacitors

Electrolytic:
7x Nippon Chemi-con (2-5,000h @105°C, KZE)
2x Nippon Chemi-con (4-10,000h @105°C, KY)
1x Nippon Chemi-con (10,000h @105°C, LE)
1x Rubycon (6-10,000h @105°C, ZLH)
2x Rubycon (4-10,000h @105°C, YXJ)
1x Teapo (3,000h @105°C, SC)
Polymer: 
5x FPCAP, 14x Polycap, 11x no info

Supervisor IC Weltrand WT7527RA (OVD, UVD, OCD, PGO)
MCU / Fan Controller Weltrend WT51F104
Fan Model Hong Hua HA1225M12F-Z (120mm, 12V, 0.45A, Fluid Dynamic Bearing Fan)
5VSB Circuit
Rectifier
1x Infineon BSC027N04LS (40V, 88A @ 100°C, Rds(on): 2.7mOhm)
Standby PWM Controller
Excelliance MOS EMB8569C

DUT Specifications

Rated Voltage (Vrms)100-240
Rated Current (Arms)6-12
Rated Frequency (Hz)50-60
Rated Power (W)1000
TypeATX12V
Dimensions (W x H x D)
Cooling120mm Fluid Dynamic Bearing Fan (HA1225H12F-Z)
Semi-Passive Operation✓ (selectable)
Cable DesignFully Modular

Section F: Deviation Additions, deviations, and exceptions to the method table

Efficiency Uncertainty Estimation

The Efficiency Measurement’s Uncertainty is ±0.15%

The reported expanded uncertainty (U) was derived as the product of the combined standard uncertainty (u) and the coverage factor k = 2, corresponding to a confidence interval of approximately 95%. Measurement uncertainty was determined in accordance with JCGM Guide 100:2008, "Guide to the Expression of Uncertainty in Measurements". The estimate of the reported uncertainty pertains to values obtained during the measurements and does not account for possible long-term changes.

Efficiency Measurement Uncertainty Budget

Source of Uncertainty Standard Uncertainty, u(xi) Relative Standard Uncertainty, u(xi)/xi
Intralab Reproducibility 0.0310 0.00031
Electronic loads Calibration 0.0500 0.00050
Power Analyzer Calibration 0.0250 0.00025
Operator and Test Fixture 0.0350 0.00035
Relative Combined Standard Uncertainty (RSS): 0.00073
% Expanded Uncertainty U (k=2, norm): 0.15
Noise Output  Uncertainty Estimation

The Noise Measurement’s Uncertainty is ±1.23 dBA

The reported expanded uncertainty (U) was derived as the product of the combined standard uncertainty (u) and the coverage factor k = 2, corresponding to a confidence interval of approximately 95%. Measurement uncertainty was determined in accordance with JCGM Guide 100:2008, "Guide to the Expression of Uncertainty in Measurements". The estimate of the reported uncertainty pertains to values obtained during the measurements and does not account for possible long-term changes.

Noise Output Measurement Uncertainty Budget
Source of Uncertainty

Standard Uncertainty, u(xi)/xi

(dBA)
Intralab Reproducibility 0.031
Mic Calibrator 4231 calibration 0.200
Microphone frequency response 0.577
Temperature 0.12
 Position error  0.058
Relative Combined Standard Uncertainty (RSS): 0.61
Expanded Uncertainty U (k=2, norm): 1.23
Conducted Electromagnetic Interference (EMI) Emissions Uncertainty Estimation

The Conducted EMI Emissions Measurement’s Uncertainty is ±1.75 dB

The reported expanded uncertainty (U) was derived as the product of the combined standard uncertainty (u) and the coverage factor k = 2, corresponding to a confidence interval of approximately 95%. Measurement uncertainty was determined in accordance with JCGM Guide 100:2008, "Guide to the Expression of Uncertainty in Measurements". The estimate of the reported uncertainty pertains to values obtained during the measurements and does not account for possible long-term changes.

Conducted EMI Measurement Uncertainty Budget
Source of Uncertainty

Standard Uncertainty, u(xi)/xi

(dB)
Spectrum Analyzer total measurement uncertainty 0.250
Spectrum Analyzer calibration 0.500
Noise and Signal Quality 0.577
Bandwidth and Resolution Bandwidth (RBW) 0.289
Measurement time and Averaging  0.115
Environmental Factors 0.115
Relative Combined Standard Uncertainty (RSS): 0.87
Expanded Uncertainty U (k=2, norm): 1.75