4. Explanation of Operating Logic ........4.1 Explanation of UPS Mode Control Logic 4.2 Explanation of Energy Saving Mode Control Logic ....5. Initial Setup of TN/TS-1500 ..............................5.1 Initial State ........5.2 Initial Set Point for Transition Voltages 5.3 Procedure of Setting Operating Mode, Output Voltage,...
UPS and Energy saving modes. (Descriptions which are high lighted represents functions only for the TN-1500 series) ‧TS-1500 series only possess the inverter function. It uses batteries as the input source and converts the energy into AC output. ‧TN-1500 is capable of drawing energy from solar panel thus provide uninterrupted power (UPS mode).
‧With pure sine wave output, TN/TS-1500 can provide 1500W continuously, 1750W for 3 minutes, or 20~40A of peak current for all kinds of load such as inductive, capacitive, or resistive.
System Block Diagram TN-1500 Inverter filter Input Controller Display AC charger Circuit Fuse Solar charger Breaker 120V/230V 200V /400V 50Hz/60Hz Fuse Battery Polarity DC/DC DC/AC LOAD 12V/24V/48V detect Converter Inverter Output Solar Panel Figure 2.1 System Block Diagram 3.User interface Front Panel POWER on/off switch: The inverter will turn OFF if the switch is in the OFF position.
AC OUT PUT SOLAR CHARGE AC CHARGE Setting BATTERY LOAD OF F 1 00 INVERTER Bat Low AC IN BY PASS Saving Remote port Figure 3.1: Front Panel (TN-1500) LED Indicator on Front Panel Battery Capacity Indicator: represents the remaining capacity of external batteries.
Rear Panel Battery input (+), (-). Utility / AC inlet (IEC320). Solar panel input terminal. Frame ground (FG). AC INPUT Solar Input (30A max) Reverse Polarity Will Damage The Unit. Chassis Ground Cat.No .(1GG1HS-212) Wire Range(10-4 AWG Str INPUT Cu Sol der ed Wires) Torque (17.7-26.5 in lb) Fig 3.2: Rear Panel (TN-1500) 4.Explanation of Operating Logic...
4.1 Explanation of UPS Mode Control Logic Utility Power Power-On Re-power-on By pass mode Inverter Mode 28.5V 28.5V 28.5V 28.5V 25.4V 26.5V 22.5V 26.5V 26.5V (Alarm) Battery voltage 21V(Shut-down) 29.0V Solar charger state AC charger state t8 t9 Figure 4.1: Diagram of UPS Mode Control Logic t1: To ensure the battery is at full capacity, when the TN-1500 is turned on, the CPU will execute the "Bypass Mode"...
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t3: At this time period, TN-1500 is still in the Bypass mode. The battery voltage level will decrease gradually due to standby power dissipation. When the batteries are consumed to around 75% of their capacity (battery voltage around 26.5V) the CPU will restart the charger. The CPU will use charging current of 3A as a guide point.
4.2 Explanation of Energy Saving Mode Control Logic Utility Power Power-On Bypass mode Inverter mode 28.5V 28.5V 28.5V 28.5V 26.5V 22.5V 26.5V 26.5V (Alarm) 22.5V (Alarm) Battery voltage 21.0V (Shut-down) Solar charger state AC charger state t6 t7 Figure 4.2 Diagram of Energy Saving Mode Control Logic t1 : When the TN-1500 is turned on, CPU will execute the "Bypass Mode"...
Saving Mode) 5.1 Initial State The initial state of TN/TS-1500 is set to 120Vac/60Hz or 230Vac/50Hz, "UPS mode" and disabled "Saving Mode" is activated. If the users need to revise it for certain application, it can be done through the setting button on the front panel (Please refer to section 5.3).
5.3 Procedure of Setting Operating Mode, Output Voltage, Frequency, and Saving Mode Note: TS-1500 does not have Step 3~5. STEP 1: The inverter should be turned off while resetting. Input batteries should be connected, AC main can either be connected or disconnected, and the loads should be removed.
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Table 5.2 : LED Indication of Output Voltage / Frequency Combination Output 100Vac 110Vac 115Vac 120Vac Voltage (200Vac) (220Vac) (230Vac) (240Vac) Frequency ● ● ● ● ● Light Bat Low ○ ○ ● ● 50Hz ○ Dark Saving ○ ● ○...
WARNING: Please choose suitable batteries that is within the rated input DC voltage of TN/TS-1500 (refer to the SPEC). If the input DC voltage is too low (ex. using 12Vdc battery bank for 24Vdc input models), TN/TS- 1500 can't be started up properly. If the input DC voltage is too high (ex.
6.2 Output Protection (A)Bypass Mode: Uses "No Fuse Breaker" as automatic over current protection. When over current occurs, the button of the circuit breaker on the front panel will pop up and the inverter will shut down. At this time, users should remove the loads, restart the inverter and press down on the button of the circuit breaker and the AC output can now be provided normally.
80A ~ 100A Models using 24V batteries 100A ~ 125A Models using 12V ≧125A batteries (B)Suggested Battery Type and Capacity TN/TS-1500 Battery Type Lead-acid Battery 12V / 120Ah ~ 24V / 60Ah ~ 48V / 30Ah ~ Capacity 12V / 400Ah...
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>15cm Inverter Figure 7.1: Example of Installation (D)Example of System Diagram As short as possible Larger than AC O/P 15cm LOAD TN/TS-1500 Larger Solar Panel Inverter than 15cm Battery Solar I/P AC I/P DC I/P Chassis Should less than 1.5m...
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Figure 7.2: Output Derating Curve Figure 7.3: Input Derating Curve Notes on Output Loads: TN/TS-1500 Ser ies can power most of equipments that need an AC source of 1500W. But for certain specific type of load, the unit may n ot work properly.
9.Warranty Three years of global warranty is provided for TN/TS-1500 under normal operating conditions. Please do not change components or modify the unit by yourself or MEAN WELL may reserve the right not to provide the complete warranty.
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N o . 2 8 , W u q u a n 3 r d R d . , Wu g u D i s t . , N e w Ta i p e i C i t y 2 4 8 , Ta i w a n...
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