INSTALLATION

BUILT–IN CONSTRUCTION DETAILS

Access Drawers

Cutout dimensions

Access Doors - Cutout dimensions

Vent*

Vent*

FIG. 06

NOTE: The cutout of each corner should be 90ºangle in order for the access drawers to fit properly.

*Island installation to use minimum of 3 vents, 10 square inches per vent (typical).

**For proper support and drawer operation, insure that support boards are installed per Installation Guide instructions.

MODEL NUMBER

A

B

C

 

(+0,-1/8)

(+1/8,-0)

 

ADR48

46”

20”

24-1/2”

ADR36

34”

20”

(Min,

ADR30

28”

20”

All

ADR24

22”

20”

Models)

A

B Vent*

90º

Cutout for Access Doors

FIG. 07

NOTE: The cutout of each corner should be 90ºangle in order for the access doors to fit properly.

*Island installation to use minimum of 3 vents, 10 square inches per vent (typical).

MODEL NUMBER

A

B

 

(+0,-1/8)

(+1/8,-0)

 

ADN 20x48

46”

20”

ADN 20x36

34”

20”

ADN 20x30

28”

20”

 

ADN 20x24

22”

20”

11

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Image 13
DCS BGB48-BQAR, BGB48-BQR manual Access Drawers Cutout dimensions

BGB48-BQAR, BGB48-BQR specifications

The DCS BGB48-BQR and BGB48-BQAR are cutting-edge battery systems designed for a range of applications, primarily focusing on delivering reliable energy storage solutions. These models are part of a contemporary line of products that exemplify advanced technologies in battery management and energy efficiency.

One of the key features of the BGB48-BQR and BGB48-BQAR is their high energy density, which maximizes the usable energy within a compact form factor. This is particularly beneficial for applications that require a substantial amount of energy but have limited space for battery installation. The sleek design not only enhances the aesthetics of installations but also allows for flexible integration into existing systems.

The technology utilized in these batteries includes lithium-ion cells, which are renowned for their longevity and performance. With a cycle life that often surpasses 3,000 cycles, users can expect these batteries to maintain their capacity over extended periods, reducing the need for frequent replacements. This durability translates into lower operational costs and less environmental impact.

Another standout characteristic is the sophisticated Battery Management System (BMS) integrated into both models. The BMS continuously monitors the health of each battery cell, ensuring optimal performance and safety. It balances charging and discharging processes, mitigates risks of overcharging or overheating, and extends the overall lifespan of the battery. Additionally, the BMS provides real-time data to users, facilitating informed decision-making regarding energy consumption and battery usage.

Safety is a paramount consideration in the design of the DCS BGB48-BQR and BGB48-BQAR systems. These batteries incorporate multiple layers of protection, including thermal management that prevents overheating, as well as protective circuits that safeguard against short circuits and electrical surges.

Furthermore, both models support various communication protocols, enabling seamless integration with smart energy systems. This feature allows them to interact with solar panels, inverters, and grid systems, making them suitable for renewable energy applications and storage.

In summary, the DCS BGB48-BQR and BGB48-BQAR represent the forefront of battery technology with their high energy density, advanced BMS, robust safety features, and adaptability for a diverse range of applications. These characteristics make them an ideal choice for businesses and individuals seeking efficient, reliable, and sustainable energy storage solutions.