HPU-5B680 represents the new ultra-efficient (85%) power solutions of the Type M Series with the well-known HIPER Mesh-Design in an environmental-friendly packaging
| Product Description | Hiper Type-R II 680 watt power supply unit (blue) |
| Device Type | Power Supply |
| Form Factor | ATX 12V 2.2, EPS 12V 2.91 |
| Power Provided | 690 Watts |
| Efficiency | Average 85% |
| Bearing Type | Sleeve Bearing |
| PFC | Active |
| Chassis | Thickness - 1.0 mm |
| Dimensions (WxDxH) | 180 x 150 x 86 mm |
| Weight | 2.4 kg |
- 8 x USB port + 1 x portable device charger port
- Ultra-efficiency at 85%
- New PCI-E 8 pin available
- NVIDIA SLI™ - Ready Certified up to Dual GeForce 8800 GTS, GeForce 8800 GT, or Dual GeForce 7950 GX2
- Extender
- 4 x independent 12V rails
- Mesh body construction allows immediate heat dissipation and extends the life of the unit
- Complies with latest ATX12V v2.2 / EPS12V v2.91 form factors
- Fully compatible with AMD 64 bit and Intel LGA processors
- Active PFC
- Gold plated connectors for minimum power loss and optimal conductivity
- PCI-E 6 pin, PCI-E 8 pin, SATA, Molex with EZ-Grip, floppy, P8 & P4 connectors
- Modular power cord (European model only)
- 20 dB(A) under normal load
| Switch Type | Manual | Rocker |
| Auto Standby | ATX Logic |
| Fan (Intake) | 135 x 1 35 x25 ~ R.P.M. | 1000 ~ 1800 rpm |
| Bearing Type | Sleeve Bearing |
| Input Parameter | Voltage Range | 100 ~ 240 V |
| Current | 12 ~ 5 A |
| Frequency Range | 47 ~ 63 Hz |
| Output Parameter | +5V (± 5%) | 2 ~ 28 A |
| +12V 1 (± 5%) | 1 ~ 18 A |
| -+12V 2 (± 5%) | 1 ~ 18 A |
| +12V 3 (± 5%) | 1 ~ 18 A |
| +12V 4 (± 5%) | 1 ~ 18 A |
| -12V (± 10%) | 0 ~ 0.8 A |
| +5VSB (± 5%) | 0 ~ 3 A |
| +3.3V (± 5%) | 0.5 ~ 30 A |
| Output Load Regulation | 12V1 & 12V2&12V3 &12V4 | < 624 W |
| +3.3V & +5V | < 180 W |
| +3.3V, +5V & +12V | < 660 W |
| Output Voltage Protection | +3.3V | < 4.5V |
| +5V | < 7V |
| +12V | < 15.6V |
| Power Good Signal | Rise Time | < 20 ms |
| Signal On | 100 - 500 ms |
| Signal Off | < 1 ms min |
| Power Hold | 14 ms min |