SOLAR ACDB

Crafted from epoxy powder-coated metal casting, the ACDB box embodies durability. Within this structure, three feeders are thoughtfully integrated, each housing an MCB of the necessary capacity. Notably, an Electronic Energy Meter of ISI brand origin is thoughtfully included to gauge power consumption derived from the SPV Power Plant. The ACDB is further enriched with a separate dedicated feeder, connecting the conventional power line to both the PCU and the ACDB. In addition, a changeover switch, suitably rated, is present to effectively disconnect the existing load from the solar system and transition it to the conventional power source (Mains) during emergency situations. Solar AC Distribution Boxes are strategically positioned immediately subsequent to the solar PV Grid-tie inverter.

A pivotal component of the SPV system, the Solar ACDB offers supplemental protection against potential failures on the load side. This assembly, comprising breakers and isolators, prioritizes safeguarding sophisticated electronic equipment. Surge protection features, along with fuses, are incorporated within the ACDB to ensure maximal defense. Correspondingly, the Solar DCDB plays an indispensable role in mitigating risks on the DC side in case of faults. This aspect is crucial for the SPV system’s overall safety. The DCDB encompasses isolators/breakers, facilitating swift shutdown during faults, along with surge protection to counteract surges arising from faults or other phenomena.

The SOLAR ACDB DCDB collectively forms a pivotal facet of solar power plants. When sunlight interacts with solar panels, it generates current and voltage at the solar cell terminals. In the context of a grid-connected solar photovoltaic system, the components encompass Solar Photovoltaic Array, Array Combining Box, DC Cabling, DCDB, Inverter, AC Cabling, and ACDB. In simpler terms, the Solar ACDB functions as an AC Distribution board, while the Solar DCDB operates as DC Distribution Boards.

To address unforeseen emergencies, a dedicated changeover switch with appropriate capacity resides within the ACDB. This switch is designed to disconnect the load from the solar system and transition it to the conventional power source (Mains). Solar AC Distribution Boxes are strategically positioned immediately subsequent to the solar PV Grid-tie inverter.

INTRODUCTION

Solar ACDB

The primary objective of the ACDB is to halt the functioning of the load at the immediate output end of the PCU, while simultaneously allowing for versatile operation of various loads, such as street lights, general home or office lighting, and optional loads that can be toggled on or off.

The ENRICH PV AC/DC distribution box is composed of two key units: the DC distribution unit and the AC distribution unit. The DC distribution unit serves as a hub for collecting DC power from the PV panels and channeling it to the inverter. On the other hand, the AC distribution unit is responsible for providing the AC power converted by the inverter, facilitating the connection to the grid interface.

Designed primarily for use in small and medium-sized PV systems, the ENRICH DBW1.5~20K AC/DC Distribution Box offers a comprehensive solution. This solution is compatible with our range of small and medium power inverters. ENRICH offers a variety of purpose-built ACDBs tailored to specific applications, such as ACDBs for grid-tied inverters and ACDBs for off-grid inverters.

Features

TECHNICAL SPECIFICATIONS

 

ModelGPRO-GD5XGPRO-GD10X
Maximum Voltage in open Circuit500V1000V

Input

No of DC inputs1-61-12
Maximum Input Fuse* Rating, A *6/10/12/15/20/30
Max Input Current in short Circuit 
Max. input current in short circuit at STC 
Maximum string current per fuse holder with all string fuse*Reduction factor 0.55
Conductor Size , Sq.mm4 — 10 Sq.mm

Output

No of DC inputs150 Sq.
Maximum DC Current, A *Upto 32AUpto 32A
Conductor Size, Sq.mm4 — 10 Sq.mm4 — 10 Sq.mm
Cable gland clamping range,mm12-32

Protection

DC inputs overcurrent protectionProtection on both polarities, gPV fuses, size 10 x 38 mm, max. rating 30 A (fuses not provided with product)
Surge Protection Device (SPD)*<=600V DC, Class C/Class B/ Class B+C1000V DC, Class C/Class B/ Class B+C
Electric shock protectionClass II equipment

General

Ingress ProtectionIP66/65
Enclosure TypePS*/PC,
TransparentTop Cover
Wall mountingYes
Bus Bar*Yes
Operating conditions Temp:-20 to +55 Deg. C , RH : 0 — 95% non cond
Type of ProtectionsShort-Circuit,Surge
International standards followedIEC 60364
Design Life25 years +

Solar ACDB 1-5Kw

Color of the lid

Transparent

Brand

ENRICH POWER & WATER TECHNOLOGIES

Material

Polycorbonate

Voltage

220v

Type

3 in 1 out with SPD

Body Material

Steel sheet

Shape

Rectangular

Wall Thickness

0.25-5mm

Frequency

50 HZ

Solar ACDB 5-15Kw

Brand

ENRICH

Part Number

 

Voltage

415

Packaging Type

Box

Colour

Transparent

Ideal For

Solar Power Plant

Size

280x190x130 mm

Usage/Application

Solar

UV Protected

Yes

Material

PC

Dimension

280x190x130

Degree Of Protection

IP 65

Impact Resistance

IK 08

Weight

5 kg

Solar ACDB 30-40Kw

Brand

ENRICH

Voltage

415V

Packaging Type

Box

Power

30-40kw

Type

Solar ACDB

Number Of Core

4C

Conductor Material

Copper

Colour

Transparent

Ideal For

Solar Application

Size

560x380x180

Usage/Application

Solar Power Plant

Temperature Range

40 Degree Celsius

UV Protected

Yes

Material

PC

Dimension

560x380x180

Frequency

50 Hz

Degree Of Protection

IP 65

Flammability Rating

IP 65

Impact Resistance

08

APPLICATIONS

FAQ's

The ACDB receives AC power from solar inverter and directs it to AC loads / LT Panel. ACDB is an important part of SPV system as it provides extra protection to the system in case of failures on load side

When a panel is significantly damaged, it can’t generate as much power, but as long as the cell is not more than 20 percent damaged, it should be able to produce most of its rated voltage. For homeowners who are looking to install solar panels on a budget, cracked or broken solar panels will still produce voltage.

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