Cooler Master MWE 650 Bronze V2 PSU Review - Too Much Effort For Bronze?
⭐️ Model number: Cooler Master MWE Bronze 650 V2, MPE-6501-ACAAB
⭐️ Differences with V2 – Full Range: MPE-6501-ACAAW. This seems to be the version sold outside of Europe. The main difference I could spot was the different fan speed profiles.
The non-EU version also has a different cable configuration with short ATX and EPS and only a single EPS, while the EU version has two EPS connectors.
⭐️ OEM: Gospower
⭐️ Efficiency: ETA-A- ( %) 80 PLUS Bronze
⭐️ Noise: LAMBDA-Standard ( [A])
⭐️ Modular Cables: No
⭐️ Dimensions: Compact
⭐️ Price: $85
⭐️ Warranty: 5-years
⭐️ Power Specifications: Single 12V rail
⭐️ Power Distribution: 648W & 12V, 120W & Minor rails
⭐️ Cables: 2x EPS (on the same cable though with 18AWG), 4x PCIe, 8x SATA, 4x 4-pin Molex
⭐️ Cable Length and distance between them: Long. 120mm distance between all peripheral connectors
⭐️ In Cable caps: No
⭐️ Internal Design / Build Quality: High-end platform with mainstream FETs, Chinese caps, and decent soldering quality. Half-Bridge and LLC resonant converter on the primary side. Synchronous rectification and DC-DC converters on the secondary side.
Caps and Fan manufacturers: bulk cap: Elite GM at 85C. Hong Hua Fan (FDB) 120mm.
⭐️ Secondary side: Elite 105C caps and CapXon Polymers.
⭐️ Relative Performance: Quite high for the standards of this category.
⭐️ Average Efficiency: % with 115V & % with 230V
⭐️ Efficiency with 2% load: %
⭐️ AVG Efficiency 5VSB: High enough
⭐️ Average Noise: High, aggressive fan speed profile
⭐️ Average Power Factor: Bottom low with both 115V and 230V input
⭐️ Hold Up time: 22.4 ms. Accurate Power Ok Signal
⭐️ Inrush current: 230V: 129A. 115V: 86A. NTC thermistor: 7.8 Ohm.
⭐️ Load Regulation: Loose on all rails, especially at 12V.
⭐️ Ripple suppression: Good on all rails
⭐️ Transient response: Mediocre on all major rails.
⭐️ Protection Features: All basic protection features are present, including OTP. No MOV. It has an NTC thermistor and a bypass relay. OCP needs tuning.
Bottom Line: It is nice to see a high-end platform in a mere Bronze PSU. The price is good also, at 85 bucks. Overall performance is high, going head-to-head with the Corsair CX650 by Great Wall. Efficient platform but noisy. The fan speed profile should be much more relaxed. It needs several improvements to deliver its full potential: Correctly tuned protection OCP and OPP, an MOV in the transient filter, dedicated EPS cables for the pair of corresponding connectors, increased PF, and better transient response. A better bulk cap would be nice, too.
Alternative options besides the Corsair CX650. The new Asus TUF PSUs and XPG Pylon models. All use modern platforms featuring half-bridge topologies, LLC resonant controllers, and DC-DC converters on the secondary side.
Pros 😃
• Modern platform
• Full power at 40 degrees Celsius
• High overall performance (for this category’s standards)
• Satisfactory ripple suppression
• Efficient
• Higher than 70% efficiency with 2% load
• Good fan and decent quality caps on the secondary side.
• Long hold-up time
• NTC thermistor supported by a bypass relay for lower inrush currents (but it doesn’t deliver although it has high enough resistance, close to 8 Ohms)
• Compact dimensions
• 5-year warranty
Cons 😔
• My sample had a small coil whine issue
• Noisy operation
• Low-temperature rating bulk cap
• Loose load regulation
• Mediocre transient response
• Low power factor
• No MOV in the transient filter
• OCP and OPP protection features are not configured correctly
• High Vampire Power (standby Power Consumption) with 230V input
• High inrush currents
Video Chapters
00:00 - Intro
00:25 - Two MWE 650 Bronze versions
01:38 - Differences between the two versions
01:58 - Two EPS on the same cable!
02:30 - Technical specifications
03:31 - Cable configuration
04:44 - Part analysis
07:57 - Test equipment
08:19 - Overall performance charts
08:42 - Average efficiency
09:04 - Efficiency 2% Load
09:26 - 5VSB Average efficiency
09:37 - Average noise output
10:15 - Average PF
10:30 - Hold-up time
10:39 - Inrush current
11:49 - Load regulation
12:07 - Ripple suppression
12:15 - Transient response
13:15 - Bottom line
14:22 - Alternative options
14:50 - Pros
15:31 - Cons
16:53 - Eri’s question
20:04 - Goodbyes
#HWbusters #CoolerMaster #MWE
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