FAQ
Ideally, TSP® should be attached/installed at control panel, MCC(Motor
Control Center) or inside of switch board or in the leading-in power terminal
of the automated equipment. If there is not enough space, it can be attached in
the outside, upper side of the equipment or other convenient location. In this
case, it must be noted that the connection terminal has to be exposed. It needs
to be installed with 4 screws and connected with a ground stud.
Even though TSP® had taken the soak test in the temperature of 50°C for
100 hours, its allowed outdoor temperature is between 0°C and 40°C. When the
temperature exceeds the allowed limit, a special enclosure with cooling
function should be installed. Environment with corrosive chemicals or excessive
humidity, TSP® needs a hermetic seal or other proper enclosure which satisfies
the NEMA-standard requirements is required. This can be supplied upon the order
of clients.
TSP® automatically switches into bypass mode when it has an internal
fault or external influence(overload, over-current etc.), and the users can
manually change its mode for 3-phase TSP®.
Also, there is an alarm function that announces the irregularities.
In the event of failure, if you let us know the failure symptoms or
event logs(verifiable in the product – history DB, Log Data, Sag Event and
etc.), we will inform you how to cope with the failure or a professional
technician will be dispatched to deal with the matter.
For the application area that was monitored by the power supplier or
the consulting company or the area that we are very familiar because our
experience in the past or the area that is already sufficiently investigated,
we recommend you purchase the TEST TSP® with Money-back Guarantee, which will
completely satisfy your needs. In the application area where
TSP® has never been tried, you can run TEST TSP® free of charge for a
certain period of time.
There are many reasons.
1. When voltage
sag occurs, the loads will drop with the Off-Line UPS with smaller capacity
because Off-Line UPS cannot switch-over fast enough. Ultra-fast switch-over is
needed for many sensitive equipment because they start causing problems in a
very short period of time, 1/4 Cycle(4ms). TSP® can switch
over within 1/8 Cycle (2ms).
2. Many other USPs cannot operate under inductive load or low power
factor in switchboard.
3. Due to inrush current which is highly related to current Relays,
Contactors or Starter, users need to choose oversize UPS to bear this inrush
current. For this purpose, Static Switch of TSP® is overrated about 8-10 times
in the aspect of voltage and current, thus the users don’t need to select
oversize unit and select the size of the unit by the continuous VA rating.
4. Precise control is possible because the functions such as adjustable
timer and variable transfer level are already included in each unit. Thus, no
further purchase or installation of additional functions are needed unlike the case
of UPS. USP provides the power current for an unlimited time because it doesn’t
have timing device, and it is very dangerous in any case.
5. There are battery-related problems. Maintenance, replacement and
hazardous waste processing and etc.
Per VA price is lower than UPS because even TSP® with minimum standard
has unique features as stated below.
1. TSP® uses standby structure, super high-speed transfer time of 2mS,
which is highly reliable.
2. TSP® doesn’t need maintenance because it has no additional cooling
fan with Off-Line compensation method.
3. TSP® is very cost-efficient because it doesn’t need additional
maintenance by using low-voltage Ultra-Capacitor with no battery which can last
over 10 years.
4. TSP® includes adjustable Ride-Through Timer and Variable Transfer
Level.
5. TSP® uses Overrated Static Switch which doesn’t need over-sizing
according to changing loads.
6. TSP®’s Housing is more suitable for the harsh industrial
environment.
7. Long-term maintenance cost is negligible because TSP® doesn’t need
regular maintenance.
Even though the initial installation cost is somewhat higher, in the
long term, TSP® is more efficient because it doesn’t need a battery and there
is no regular repair or further replacement cost.
TSP® has Surge Protection function in its internal system and passed
Surge Test, CE certification test.
Also, for the surge protection of client company, users can install
additional Surge Protector.
Maximum resonance frequency can occur in the maximum reactive load. In this case, the calculated frequencies are as follows: in 500VA unit, fr = 4.75 Hz and in 3kVA unit, fr = 5.5Hz. In our calculation, there is a possibility of some kind of oscillation only when the resonance frequency is higher than the system frequency of 60Hz, but it never actually happened.
Under Full Bridge structure with Free-Wheeling Diodes, reactive energy
returns every half-cycle after it is perfectly controlled. Self-oscillation
doesn’t occur through bridge.
As of April 27, 2018, TSP® has 4 patents as stated below.
Emergency Transport Switch – NO. 10-1246036, Mar/15/2013
voltage sag management system - NO. 10-1140177, Apr/12/2012
Dynamic voltage restorer and method thereof – NO. 10-0974079, Jul/29/2010
CIRCUIT FOR COMPENSATION INTERRUPTION OF ELECTRIC POWER A MOMENT OF ELEVATOR - NO. 10-0897833, May/8/2009