Epever Tracer2606BP 빠른 시작 매뉴얼 - 페이지 2

{카테고리_이름} Epever Tracer2606BP에 대한 빠른 시작 매뉴얼을 온라인으로 검색하거나 PDF를 다운로드하세요. Epever Tracer2606BP 2 페이지. Solar charge controller
Epever Tracer2606BP에 대해서도 마찬가지입니다: 매뉴얼 (2 페이지), 매뉴얼 (2 페이지)

Epever Tracer2606BP 빠른 시작 매뉴얼
HUIZHOU EPEVER TECHNOLOGY CO., LTD.
8. Protection
 PV Over Current
The controller will limit the battery charging current to the Maximum Battery Current
rating. Therefore an oversized solar array will not operate at peak power.
 PV Short Circuit
When PV short circuit is powered on or the PV input is a short circuit on low-power,
the controller will stop charging. Clear it to resume regular operation.
The controller may be damaged when the PV input is a short circuit
on a high-power.
WARNING
 PV Reverse Polarity
The PV can be reversely connected with a controller when:
Only the PV is connected with the controller;
The battery is positively connected, and the PV's open-circuit voltage is lower
than 85V(This requirement is only for Tracer26/39/5210BP).
The controller will be damaged when the PV array straight polarity
and the PV array's actual operating power is 1.5 times greater than
WARNING
the rated charge power!
 Battery Reverse Polarity
When the PV is not connecting or connecting reversed, complete protection against
reverse battery polarity, correct the wire connection to resume regular operation.
The controller will be damaged when the PV connection is correct,
and the battery connection reversed!
WARNING
 Battery Over Voltage
When the battery voltage reaches the set point of Over Voltage Disconnect Voltage,
the controller will stop charging the battery to protect the battery from being
overcharged to break down.
 Battery Over Discharge
When the battery voltage reaches the Low Voltage Disconnect Voltage, the controller
will stop discharging the battery to protect the battery from being over-discharged to
break down.
 Battery Overheating
The controller detects the environment temperature through the external temperature
sensor. If the environment temperature exceeds 65 º C, the controller will automatically
start the overheating protection to stop working and recover below 55 º C.
 Lithium battery Low Temperature
The temperature sensor is less than the low-temperature value, and the Lithium
battery stops charging/discharging. It is higher than the low-temperature value, and
the Lithium battery starts charging/discharging.
 Load Overload
If the load current exceeds the maximum load current rating 1.05 times, the controller
9. Technical Specifications
Item
Model
Tracer2606BP
Nominal system voltage
Battery input voltage range
Rated charge/discharge current
Rated charge power
Max. PV open circuit voltage
MPP Voltage range
Battery Type
Equalize Charging Voltage
Boost Charging Voltage
Float Charging Voltage
Low Voltage Reconnect
Voltage
Low Voltage
Disconnect Voltage
Boost Charging Voltage
Low Voltage
Reconnect Voltage
Low Voltage
Disconnect Voltage
Self-consumption
Temperature compensation
coefficient
Communication
Environment Temperature
Enclosure
Overall dimension
124×89×30mm
Mounting hole size
Mounting dimension
Power cable
Net weight
Tracer3906BP
12/24VDC Auto( Lithium battery cannot automatically identify system voltage)
10A
15A
130W/12V;
200W/12V;
260W/24V
400W/24V
60V( at minimum operating environment temperature )
46V( at 25℃ environment temperature )
( Battery voltage+2V)~36V
Lead-acid battery: Sealed(Default) / Gel / Flooded/User; Lithium battery:LiFePO4/ Li-NiCoMn/User
-3mV/℃/2V( Lithium battery don't have temperature compensation coefficient)
150×93.5×32.7mm
88×76mm
120×83mm
2
14AWG(2.5mm
)
0.54kg
0.74kg
3
Tel:+86-10-82894896/82894112/+86-752-3889706
will disconnect the load. Overloading must be cleared up by reducing the load
and restarting the controller.
 Load Short Circuit
The load will be switched off when the load short circuit (≥4 times rated current)
happens.
The controller will automatically attempt to reconnect the load 5 times. Suppose short
circuit protection still exists after the controller's 5 times attempts. In that case, the
user has to clear the short circuit, restart the controller or wait for one night-day cycle
(night time>3 hours).
 Temperature sensor break down
Suppose the temperature sensor is short-circuited or damaged. In that case, the
controller shall be charging or discharging at the default temperature of 25 º C to
prevent the battery damaged from overcharging or over-discharged.
 High Voltage Transients
The controller is protected against small high voltage transients. In lightning-prone
areas, additional external suppression is recommended.
10. Troubleshooting
Faults
LED Charging indicator
turn off during daytime
when sunshine falls on
PV modules properly
No LED indicator
Battery LED indicator
green fast Flashing
Battery LED indicator
red
Battery LED indicator
red flashing
Load is not output
①When it is overload or short circuit, the load has 5 times auto-recovery output
function, which each time delay respectively 5s, 10s, 15s, 20s, 25s.
11. Disclaimer
This warranty does not apply under the following conditions:
 Damage from improper use or use in an unsuitable environment.
 PV or load current, voltage, or power exceeds the rated value of the controller.
 The controller's working temperature exceeds the limit working environment
temperature.
 User disassembly or attempted to repair the controller without permission.
 The controller is damaged due to natural elements such as lighting.
 The controller is damaged during transportation and shipment.
Tracer5206BP
Tracer2610BP
8.5~32VDC
20A
10A
260W/12V;
130W/12V;
520W/24V
260W/24V
100V( at minimum operating environment temperature )
Sealed :14.6V, Gel:No, Flooded:14.8V, User:9-17V (×2/24V)
Sealed :14.4V, Gel:14.2V, Flooded:14.6V, User:9-17V (×2/24V)
Sealed/Gel/Flooded:13.8V, User:9-17V (×2/24V)
Sealed/Gel/Flooded:12.6V, User:9-17V (×2/24V)
Sealed/Gel/Flooded:11.1V, User:9-17V (×2/24V)
LiFePO4:14.5V, Li-NiCoMn:12.5V, User:9-17V (×2/24V)
LiFePO4:12.8V, Li-NiCoMn:10.5V, User:9-17V (×2/24V)
LiFePO4:11.1V, Li-NiCoMn:9.3V, User:9-17V (×2/24V)
≤13mA/12V; ≤11.5mA/24V
RS485
-40℃~+60℃
IP68
153×105×52.1mm
124×89×30mm
Φ3.5mm
120×94mm
88×76mm
2
12AWG(4mm
)
14AWG(2.5mm
1.20kg
0.54kg
Website:www.epever.com
Possible
Troubleshooting
reasons
PV
Confirm that PV and battery wire
array
connections are correct and tight
disconnection
Battery voltage
Measure battery voltage with the
may be less
multi-meter. Min.8.5V can start up
than 8.5V
the controller
Battery over
Check if the battery voltage is higher
voltage
than OVD, and disconnect the PV
When the battery voltage is restored
Battery
to or above the LVR point (low
over-discharge
voltage reconnect voltage), the load
d
will recover
The controller will automatically turn
Battery
the system off. But while the
Overheating
temperature decline to be below 50
º C, the controller will resume.
①Please reduce the number of
electric equipment.
Load Overload
②Restart the controller.
③wait for one night-day cycle (night
time>3 hours).
①Check carefully loads connection,
clear the fault.
Load
Short
②Restart the controller.
Circuit
③wait for one night-day cycle (night
time>3 hours).
Tracer3910BP
Tracer5210BP
15A
20A
200W/12V;
260W/12V;
400W/24V
520W/24V
92V( at 25℃ environment temperature )
( Battery voltage+2V)~72V
150×93.5×32.7mm
153×105×52.1mm 153.3×105×52.1mm
120×83mm
120×94mm
2
)
12AWG(4mm
0.74kg
1.20kg
Any changes without prior notice! Version number:V3.4
4
Tracer7810BP
30A
390W/12V;
780W/24V
-40℃~+50℃
2
2
)
10AWG(6mm
)
1.26kg