Bryant 355CAV installation instructions Altitude Derate Multiplier for USA, Burner Flame

Models: 355CAV

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355CAV

!CAUTION

UNIT DAMAGE HAZARD

Failure to follow this caution may result in component damage.

DO NOT redrill orifices. Improper drilling (burrs, out-of-round holes, etc.) can cause excessive burner noise and misdirection of burner flames. (See Fig. 61.)

h.Jumper R to W/W1.

i.Let furnace run for 3 minutes in medium-heat operation.

j.Measure time (in sec) for gas meter to complete 1 revolu- tion. Note reading.

k.Refer to Table 12 for cubic ft. of gas per hr.

l.Multiply gas rate cu ft/hr by heating value (Btu/cu ft).

m.Move setup switch SW4-2 to OFF position and jumper R and W/W1 and W2 thermostat connections. (See Fig. 33.) This keeps furnace locked in high-heat operation. Repeat items i through l for high-heat operation.

EXAMPLE: High-heat operation at 0 - 2000 ft. (0-609.6M) altitude

Furnace input from rating plate is 80,000 Btuh Btuh heating input = Btuh/cu ft. X cu ft/hr Heating value of gas = 975 Btuh/cu ft.

Time for 1 revolution of 2-cu ft. dial = 88 sec Gas rate = 82 cu ft/hr (from Table 12)

Btuh heating input = 103 X 975 = 79,950 Btuh

In this example, the orifice size and manifold pressure adjustment is within +/- 2 percent of the furnace input rate.

n. Remove jumper across R, W/W1, and W2 thermostat connections to terminate call for heat.

o.Wait for blower off-delay to finish then reset 115-v power to furnace.

p.Wait for blower off-delay to finish then reset 115-v power to furnace.

q.Jumper R and W/W1 thermostat connections on control to start furnace.

r.Wait for the blower to turn ON then repeat items i through l for low-heat operation. This setting should not require adjustment but if it does you will only have 15 minutes to make the adjustment. If you need more time then move setup switch SW1-2 on control center to ON position (See Fig. 33).

NOTE: Measured gas inputs (high heat, medium heat, and low heat) must be within +/-2 percent of that stated on furnace rating plate when installed at sea level or derated as stated above when installed at higher altitudes.

Table 11 – Altitude Derate Multiplier for USA

ALTITUDE

% OF

DERATE MULTIPLIER

FT (M)

DERATE

FACTOR FOR USA.*

0—2000 (0—610)

0

1.00

2001—3000

4—6

0.95

(610—914)

 

 

 

 

 

3001—4000

6—8

0.93

(914—1219)

 

 

 

 

 

4001—5000

8—10

0.91

(1219—1524)

 

 

 

 

 

5001—6000

10—12

0.89

(1524—1829)

 

 

6001—7000

12—14

0.87

(1829—2134)

 

 

 

 

 

7001—8000

14—16

0.85

(2134—2438)

 

 

 

 

 

8001—9000

16—18

0.83

(2438—2743)

 

 

 

 

 

9001—10,000

18—20

0.81

(2743—3048)

 

 

*Derate multiplier factor is based on midpoint altitude for altitude range.

BURNER FLAME

BURNER

MANIFOLD

A89020

Fig. 62 - Burner Flame

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Bryant 355CAV installation instructions Altitude Derate Multiplier for USA, Burner Flame

355CAV specifications

The Bryant 355CAV is a state-of-the-art automated vertical machining center designed to enhance precision and efficiency in the manufacturing sector. Renowned for its robust construction, this machine is engineered to handle a broad spectrum of machining tasks, making it suitable for both small and large-scale production environments.

One of the standout features of the Bryant 355CAV is its advanced CNC control system, which provides users with exceptional ease of use. The intuitive user interface allows operators to program complex machining operations with minimal effort, significantly reducing setup times. The machine's high-speed spindle achieves impressive rotational speeds, which allows for quick material removal, ultimately optimizing productivity and throughput.

The Bryant 355CAV exhibits superior rigidity and stability due to its solid cast iron frame and carefully designed structural components. This construction minimizes vibrations during machining, ensuring that even the most intricate parts are produced with high accuracy. The machine's precision ground linear guideways further enhance its performance by providing smooth motion and high load capacity.

Equipped with a large work envelope, the Bryant 355CAV enables manufacturers to accommodate various part sizes and geometries. Additionally, its automatic tool changers can hold a variety of tools, thus facilitating quick transitions between different machining operations without requiring manual intervention. This flexibility is essential for meeting the diverse needs of modern manufacturing.

Another notable characteristic of the Bryant 355CAV is its energy-efficient design. It integrates modern technologies aimed at reducing power consumption while maintaining optimum performance. This environmentally conscious approach not only cuts operational costs but also aligns with the growing demand for sustainable manufacturing practices.

Moreover, the Bryant 355CAV features advanced monitoring capabilities, allowing operators to track machine performance in real time. Data analytics from these systems can be utilized to improve operational efficiency, reduce downtime, and enhance predictive maintenance protocols.

In summary, the Bryant 355CAV is a versatile, high-performance machining center that showcases cutting-edge features and technologies. Its combination of user-friendly controls, sturdy construction, energy efficiency, and advanced monitoring positions it as a vital asset for manufacturers aiming to elevate their productivity and precision in an increasingly competitive landscape.