Catalogue 1465 SHEL LAB Vacuum Oven 120V
www.shellab.com
print switch display
Page / 16
Contact the
Manufacturer
Where to buy
this product ?
Sheldon - 68336, 154246, 160185, 149314, 157669
/ 16
See other catalogues for Sheldon
Text version of the page
Horizontal Air Flow Diagram
A high volume blower system circulates air though stainless steel air ducts, providing horizontal one pass airflow. This horizontal airflow provides superior temperature uniformity and fast heat-up capabilities. The unique air ducts move heated air and direct it to the right side of the chamber. This slightly pressurized air escapes through the small perforations in the chamber wall, flows across each shelf picking up moisture and then this is gently cushioned through large openings on the opposite chamber wall. Our precise horizontal airflow delivers performance even under maximum capacity oven loads.
Gravity Convection Air Flow Diagram
Our gravity ovens rely on the natural thermal properties of heating - warm air rises. We utilize this airflow and combine it with our unique air duct system to allow heated air to move up through these ducts improving uniformity. Gravity ovens are commonly used in applications when natural heating is required without the assistance of fans or blowers. This technology is ideal for applications which include samples that are sensitive to air movement i.e. powders.
SHEL Lab oven Selection Guide
Standard Oven Series
High Performance High Performance
Programmable Forced Air Programmable Forced Air
General Purpose General Purpose
CE Forced Air CE Gravity
Large Reach-In
Forced Air Page 9
Back to Front Forced Air 13.6 and 28.0 cu. ft. 385 & 793 lit.
200°C Microprocessor, Single Setpoint Microprocessor/99hr/59min Adj. Sliding damper Adj. Sliding Damper
Stainless Steel Powder Coat Paint
Floor Models Benchtop Models Page 8 Page 8
Page 6 Page 5
Airflow Horizontal Forced Air Horizontal Forced Air Horizontal Forced Air Gravity Convection
Chamber Size (cu. ft.) 10-30 cu. ft. 4,4 cu. ft. 3.0 & 5.0 cu. ft. 3.4 & 5.4 cu. ft.
(liters) 305-934 lit. 124.6 lit. 85 & 142 lit. 96 & 153 lit.
Maximum Temperature 260°C 300°C 225°C 225°C
Industrial temperature controller Microproprocessor, Microprocessor, Microprocessor, Microprocessor,
Programmable Programmable Single Setpoint Single Setpoint
Timer/Electronic Inclusive/Main Controller Air Intake Capabilities Adjustable
Air Exhaust Capabilities Adjustable
Interior Chamber Finish Stainless Steel
Exterior Chamber Finish Powder Coat Paint
Inclusive/Main Controller Microprocessor/99hr/59min Microprocessor/99hr/59min
Adjustable Not Adjustable Not Adjustable
Adjustable Adj. Sliding Damper Adj. Sliding Damper
Stainless Steel Stainless Steel Stainless Steel
Powder Coat Paint
Powder Coat Paint
Powder Coat Paint
Specialty
Vacuum ovens Class 100
1400 Series CR1-2
Page 10 Page 4
Inert Atmosphere Production Vacuum Humidity Cabinets
HF2-2 VPX9-2 HC Series
Page 4 Page 11 Page 7
Horizontal Forced Air N/A Horizontal Forced Air
4.4 cu. ft. 9.0 cu. ft. 3 sizes-5/10/30 cu. ft.
124.6 lit. 255 lit. 141.5/283.3/850 lit.
300°C 220°C 70°C
Microprocessor, Microprocessor, Microprocessor,
Programmable Programmable Single Setpoint
No Yes No
No No
Yes No
Air Flow Chamber Size (cu. ft.)
N/A Horizontal Forced Air
3 sizes-0.6/1.7/4.5 cu. ft. 3.7 cu. ft.
(liters) 16/47/127.5 lit. 105 lit.
Maximum Temperature 240°C 250°C
Temperature Controller Microprocessor, Microprocessor,
Single Setpoint Programmable
Vacuum Capabilities Yes No
HEPA Filter, Internal No Yes
Inert Gas Capabilities Yes Yes
Humidity control No No No
Interior Chamber Finish Stainless Steel Stainless Steel Stainless Steel
Exterior Chamber Finish Powder Coat Paint Stainless Steel Powder Coat Paint
No Yes
Stainless Steel Stainless Steel
Stainless Steel Powder Coat Paint
3
DirectIndustry's Virtual Technical Library: PDF Catalogue | Technical Documentation | Brochure | Manual | Industrial directory | Specifications | Characteristics
Search Go
page 1 p.1
page 2 p.2
page 3 p.3
page 4 p.4
page 5 p.5
page 6 p.6
page 7 p.7
page 8 p.8
page 9 p.9
page 10 p.10
page 11 p.11
page 12 p.12
page 13 p.13
page 14 p.14
page 15 p.15
page 16 p.16
pdf-page pdf di En 2008-12-49-05