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High Reliability 350A TLC Telecom Rectifier

TIANJIN ESTEL ELECTRONIC SCIENCE AND TECHNOLOGY CO., LTD

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Address: 3A-8, No. 111, Taizi Road, Shuiwan Community, Zhaoshang Street, Nanshan District, Shenzhen, Guangdong, China

Contact name:Fiona Liang

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High Reliability 350A TLC Telecom Rectifier

Country/Region china
City & Province shenzhen guangdong
Categories Switching Power Supply
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Product Details

 

High Capacity High Reliability 350A Rack Mount Telecom Rectifier Embedded Power System For Outdoor Communication Cabinet

 

 

1. Application

 

(1) Small scale program controlled exchangers

(2) Access network

(3) Transmission equipment

(4) Mobile communication

(5) Satellite communication ground station

(6) Microwave communication

 

2. Feature

 

(1) Adoption of active power factor compensation technology with factor >0.98

(2) Wide operating range of AC input voltage: 90~290Vac

(3) Operating temperature range: -25°C~+55°C

(4) Zero current/voltage switching tech with high efficiency ≥91%

(5) Lifecycle of battery prolonged by perfect battery management, including electrical charge/discharge management, battery temperature compensation, battery capacity test, reversal connection proof protection, low voltage protection etc.

(6) Hot-swappable

(7) Input over/under voltage protection

(8) Output over voltage protection

(9) Output over current protection

(10) Output short circuit protection

(11) Auto current sharing, parallel output

(12) Embedded mounting

3. System Configuration

 

The system consists of power distribution unit, rectifier module (from 1 set, up to 7 sets) and 1 monitoring module. The configuration is optional, as following table:

 

ConfigurationRectifier ModuleMonitoring ModulePower Distribution
StandardGPR4850DGPM48P (With Ethernet Port)

AC power distribution: single phase input, AC breaker @ general line (100A/2P);

DC power distribution: battery 100A*4(fuse);

LVLD: 63A×3 32A×5 16A×4 (MCB capacity optional)

LVBD: 32A×3 16A×4(MCB capacity optional)

 

4. Operating Principle

 

AC power is first input AC-INPUT MCB and then feed into the rectifier module after lightning proof and filtering. AC-INPUT acts as protection to over load and short circuit to AC power. The user’s battery is connected to the DC output side through MCB BAT and KM2, and the circuit breaker provides disconnection control, over-load and short-circuit protection to the battery.

Under normal conditions, every parameter of rectifier modules and power distribution unit are all under control of the monitoring module, operating according to the pre-set parameter or user’s commands. If AC mains faults, the battery will power to the system. With the battery discharge, the terminal voltage of the battery starts to descend. When battery voltage is under -47V±0.5V, the monitoring module sends DC under voltage alarm signal and when battery voltage is under -46.0V±0.5V (adjustable), the KM1cuts off non-priority loads and retaining power to priority loads. If battery voltage drops to -43.0V±0.5V (adjustable), the KM2 will cut off output of priority loads and then the power system will stop working. If the external AC mains recovers, the system will normally work again. (All above monitoring data are system default values and can be reset by user).
Except for battery over-discharge protection, battery or load over-temperature protection is prohibitive under default, users can send command to activate or inactivate according to the demanding.

5. System Properties

 

Environment
ItemMin.TypicalMax.UnitRemark
Operating temperature-25 55°CWhen ≥55°C, decreased power output
Storage temperature-40 80°C 
Humidity10 90%Relative humidity without condensing
Atmospheric pressure70 106KPa 
Altitude0 3000m 
CoolingForced cooling with fan

 

Input
ItemMin.TypicalMax.UnitRemark
Input voltage range90220290Vac 
Input frequency455065Hz 
Max. Input current  40A 
Power factor0.98   Rated load
Input over voltage protection point300  VacAutomatically recoverable
Input over voltage recovery point290  VacReturn difference ≥5V
Input under voltage protection point  85VacAutomatically recoverable
Input under voltage recovery point  90VacReturn difference ≥5V
Input over current protection    MCB in AC Input supply protection

 

Output (Table 1)
ItemMin.TypicalMax.UnitRemark
Output voltage4253.558VdcAdjustable by monitor, tested in no load
Output power 18725 W18725W output when input voltage is 176~290VAC (rated power includes battery charging power plus load power)
 9350 W90~175VAC input
Output over voltage protection point58.5 60.5VdcLock up
Output current limiting protection point    Output current limiting protection
Output short circuit protection    Long-term short circuit protection, automatically recoverable
Over temperature protection    Automatically recoverable in ambient temperature lower than 65°C
Battery power-down protection    Battery power-down protection
Battery polarities reversal connection protection    No damage on battery and power system
Voltage regulation accuracy  ±1% 

 

Output (Table 2)
ItemMin.TypicalMax.UnitRemark
Temperature coefficient  ±0.2‰/℃ 
Current sharing unbalance  ±5%Within 50~100% load range
Start-up/shut-down overshoot range  ±5%Any module is removed when operating, (the load current should be less than total output current of working rectifier modules), the system output voltage fluctuates
Dynamic response recovery time  200uS

25%~50%~25% load variation

50%~75%~50% load variation

Dynamic response overshoot  ±5%Rated output voltage, rated load current
Efficiency9192 %220Vac input, rated output voltage, rated load current
83  %110Vac input, rated output voltage, rated load current
Start-up time3 8Spre-current limiting is fitted with start-up output between rated start up input voltage and rated output voltage established period
Pressure drop  500mV 
Peak-peak noise voltage  200mV 
Psophometrically weighted noise voltage  2mV 

 

6. Mechanical Properties

 

Mechanical specifications
Dimensions (Overall)as the following diagram
Weight(kg)(Overall)

≤43.5kg (Inclusive of module)

≤25kg (Frame + Distribution, exclusive of module)

 

7. Electrical Connection

Chassis connects with external electric through system interface board. As shown in figure below:

 

 

MCB descriptions:

 

1. Single-phase AC input MCB and rail type connector;

2. AC SPD;

3. LOAD (-): system load- (7 MCBs,LVBD);

4. LOAD (+): system load+ and BAT (+): battery+ (copper bar at front of system)

5. LOAD (-): system load- (12 MCBs,LVLD);

6. BAT (-): battery- (fuse)

 

 

 

8. Product Pictures

 

 

 

 

 

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