| Applications: ComputersWork StationComputer Center Lan File ServerATM/ADM Medical Instrument Security Monitoring PC or Sever Telecommunication Equipments Any Equipments which requires High Stability Power Protection |
| Introduction System Block Diagram |
Microprocessor Control:
By means of innovative software control programs, the complicated hardware circuitry is inlaid in the powerful microprocessor. Apart from reduced size, it also lowers the defective rate of UPS.
Communication Ports:
Offering three different communication ports for user selection: RS-232, SNMP slot and AS-400 slot. Through either one of them, the user can control and monitor UPS status easily
Extended Backup Time:
Long Backup Models are allowed to connect external batteries to get
prolonged backup time. It is particularly suitable for use in areas where power supply is consistently in shortage.
Cold Start Function:
The unique Cold Start Function elaborates the emergency standby capability of UPS to a sufficient extent.
TWO-step Charging System:
Two steps external charger boards are applying to the IDEAL 6-10KVA. The
intelligent two-step charger will help to reduce the charging time than the cheaper constant voltage charger.
Tower And Rack Mount Available:
The tower-designed models occupy the minimum footprint. And the rack mount models are ideal for rack-optimized servers.
Modular Design:
IDEAL 1-3KVA is the modular design UPS. There are many small modular boards on the power Board. They are Fan module, Charger module, Power Supply module, DC-DC module, PFC module and PWM Driver module etc. The modular design would help technicians easily to maintain and repair the UPS and the product quality will be more reliable.
Auto Self-Testing System:
When the UPS is powered on, it immediately performs an inspection of the components such as the inverter and the battery as well as the load, so as to detect any problem in time to avoid causing any negligence or loss.
DSP Technology:
IDEAL 6K-10K adopts DSP technology. DSP is applied to replace bulky transformers, relays and mechanical bypass switches with smaller, more intelligent functional equivalents. DSP implementations also facilitate other design benefits, including increased power efficiency and increased power density-smaller produce footprint with less weight.