td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Tipo de potencia
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Three phase in and three phase
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Capacidad
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>45KVA
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Modo circuito
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>IGBT/SPWM
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” rowspan=”3″>Entrada CA
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Número de fase
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Trifásico de cuatro hilos + hilo de tierra
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Rango de tensión de entrada(Vac)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>380V±15%
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Gama de frecuencias de entrada (Hz)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>30-70
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” rowspan=”15″>Salida CA
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Número de fase
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Trifásico de cuatro hilos + hilo de tierra
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Forma de onda
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Onda sinusoidal pura
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” rowspan=”2″>Tensión de salida (V)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Bajo: 0-150 V
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >High 0-300V
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Bajo: 0-260 V
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Máximo: 0-520 V
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Precisión de la tensión de salida (V)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>≤1%
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Gama de frecuencias de salida (Hz)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>45-65
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Precisión de la frecuencia de salida (Hz)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>≤0.01%
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” rowspan=”2″>Corriente nominal de salida (A)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>Low 125A
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>High 62.5A
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >THD
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>≤3%
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Tiempo de respuesta dinámica
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>2ms
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Factor de potencia (FP)
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>0.8
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >Capacidad de sobrecarga
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” colspan=”2″>
th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Personalización:’, ‘Disponible’]
th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Output Type:’, ‘Triple’]
th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Garantía:’, ‘1 Año’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power type’, ‘Three phase in and three phase out’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Capacity’, ’10KVA’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Circuit mode’, ‘IGBT/SPWM’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Input’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input voltage range(Vac)’, ‘380V±15%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input frequency range(Hz)’, ’30-70′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave form’, ‘Pure sine wave’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage(V)’, ‘Low 0-150V’, ‘High 0-300V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Low 0-260V’, ‘High 0-520V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage Accuracy(V)’, ‘≤1%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency range(Hz)’, ’45-65′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Frequency Accuracy(Hz)’, ‘≤0.01%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current(A)’, ‘Low 27.8A’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD’, ‘≤3%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Dynamic response time’, ‘2ms’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor(PF)’, ‘0.8’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘110%,10min;200%,10s’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Peak Coefficient(CF)’, ‘3:1’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Efficiency’, ‘≥90%(Resistive load 80%)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Display’, ‘Type’, ‘LED/Touch Screen’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication’, ‘RS485/RS232/WIFI/GPRS’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Environment’, ‘Insulation strength’, ‘1500VAC,1min’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1 m)’, ‘≤55dB’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0-90%(No condensation)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude(m)’, ‘≤2000m’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Indicator light’, ‘Electricity, Inverter (Power Supply, Overvoltage, Undervoltage, Overcurrent, Overheat, LED Model Configuration)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Protection’, ‘Input connection, input under voltage, output over voltage , output over current , output overload , output short circuit , overheat’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Cooling mode’, ‘Fan’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power type’, ‘Three phase in and three phase out’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Capacity’, ’30KVA’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Circuit mode’, ‘IGBT/SPWM’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Input’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input voltage range(Vac)’, ‘380V±15%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input frequency range(Hz)’, ’30-70′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave form’, ‘Pure sine wave’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage(V)’, ‘Low 0-150V’, ‘High 0-300V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Low 0-260V’, ‘High 0-520V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage Accuracy(V)’, ‘≤1%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency range(Hz)’, ’45-65′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Frequency Accuracy(Hz)’, ‘≤0.01%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current(A)’, ‘Low 83.4A’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD’, ‘≤3%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Dynamic response time’, ‘2ms’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor(PF)’, ‘0.8’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘110%,10min;200%,10s’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Peak Coefficient(CF)’, ‘3:1’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Efficiency’, ‘≥90%(Resistive load 80%)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Display’, ‘Type’, ‘LED/Touch Screen’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication’, ‘RS485/RS232/WIFI/GPRS’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Environment’, ‘Insulation strength’, ‘1500VAC,1min’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1 m)’, ‘≤55dB’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0-90%(No condensation)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude(m)’, ‘≤2000m’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Indicator light’, ‘Electricity, Inverter (Power Supply, Overvoltage, Undervoltage, Overcurrent, Overheat, LED Model Configuration)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Protection’, ‘Input connection, input under voltage, output over voltage , output over current , output overload , output short circuit , overheat’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Cooling mode’, ‘Fan’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power type’, ‘Three phase in and three phase’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Capacity’, ’45KVA’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Circuit mode’, ‘IGBT/SPWM’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Input’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input voltage range(Vac)’, ‘380V±15%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input frequency range(Hz)’, ’30-70′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave form’, ‘Pure sine wave’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage(V)’, ‘Low 0-150V’, ‘High 0-300V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Low 0-260V’, ‘High 0-520V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage Accuracy(V)’, ‘≤1%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency range(Hz)’, ’45-65′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Frequency Accuracy(Hz)’, ‘≤0.01%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current(A)’, ‘Low 125A’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD’, ‘≤3%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Dynamic response time’, ‘2ms’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor(PF)’, ‘0.8’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘110%,10min;200%,10s’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Peak Coefficient(CF)’, ‘3:1’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Efficiency’, ‘≥90%(Resistive load 80%)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Display’, ‘Type’, ‘LED/Touch Screen’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication’, ‘RS485/RS232/WIFI/GPRS’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Environment’, ‘Insulation strength’, ‘1500VAC,1min’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1 m)’, ‘≤55dB’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0-90%(No condensation)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude(m)’, ‘≤2000m’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Indicator light’, ‘Electricity, Inverter (Power Supply, Overvoltage, Undervoltage, Overcurrent, Overheat, LED Model Configuration)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Protection’, ‘Input connection, input under voltage, output over voltage , output over current , output overload , output short circuit , overheat’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Cooling mode’, ‘Fan’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power type’, ‘Three phase in and three phase out’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Capacity’, ’75KVA’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Circuit mode’, ‘IGBT/SPWM’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Input’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input voltage range(Vac)’, ‘380V±15%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input frequency range(Hz)’, ’30-70′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave form’, ‘Pure sine wave’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage(V)’, ‘Low 0-150V’, ‘High 0-300V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Low 0-260V’, ‘High 0-520V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage Accuracy(V)’, ‘≤1%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency range(Hz)’, ’45-65′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Frequency Accuracy(Hz)’, ‘≤0.01%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current(A)’, ‘Low 208.2A’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD’, ‘≤3%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Dynamic response time’, ‘2ms’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor(PF)’, ‘0.8’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘110%,10min;200%,10s’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Peak Coefficient(CF)’, ‘3:1’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Efficiency’, ‘≥90%(Resistive load 80%)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Display’, ‘Type’, ‘LED/Touch Screen’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication’, ‘RS485/RS232/WIFI/GPRS’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Environment’, ‘Insulation strength’, ‘1500VAC,1min’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1 m)’, ‘≤55dB’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0-90%(No condensation)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude(m)’, ‘≤2000m’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Indicator light’, ‘Electricity, Inverter (Power Supply, Overvoltage, Undervoltage, Overcurrent, Overheat, LED Model Configuration))’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Protection’, ‘Input connection, input under voltage, output over voltage , output over current , output overload , output short circuit , overheat’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Cooling mode’, ‘Fan’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power type’, ‘Three phase in and three phase out’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Capacity’, ‘100KVA’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Circuit mode’, ‘IGBT/SPWM’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Input’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input voltage range(Vac)’, ‘380V±15%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input frequency range(Hz)’, ’30-70′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Phase number’, ‘Three-phase four-wire + ground wire’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave form’, ‘Pure sine wave’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage(V)’, ‘Low 0-150V’, ‘High 0-300V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Low 0-260V’, ‘High 0-520V’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Voltage Accuracy(V)’, ‘≤1%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency range(Hz)’, ’45-65′]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output Frequency Accuracy(Hz)’, ‘≤0.01%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current(A)’, ‘Low 277.6A’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD’, ‘≤3%’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Dynamic response time’, ‘2ms’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor(PF)’, ‘0.8’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘110%,10min;200%,10s’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Peak Coefficient(CF)’, ‘3:1’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Efficiency’, ‘≥90%(Resistive load 80%)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Display’, ‘Type’, ‘LED/Touch Screen’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication’, ‘RS485/RS232/WIFI/GPRS’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Environment’, ‘Insulation strength’, ‘1500VAC,1min’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1 m)’, ‘≤55dB’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0-90%(No condensation)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude(m)’, ‘≤2000m’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Indicator light’, ‘Electricity, Inverter (Power Supply, Overvoltage, Undervoltage, Overcurrent, Overheat, LED Model Configuration)’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Protection’, ‘Input connection, input under voltage, output over voltage , output over current , output overload , output short circuit , overheat’]
td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Cooling mode’, ‘Fan’]