Ohaus 1450-SD Harvard Trip Balance, 2000 g x 0.1 g

Save $181.25
Authorized Ohaus DistributorSKU: 80000003

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Sale price$398.75 Regular price$580.00

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Description

The Harvard Trip balance is carefully engineered to provide the accuracy necessary in comparative weighing. Balances low price | Data Support Company

Also, Check Out Calibration Kit, Temperature by A&D

Specifications

beams 1 Beam
brand Ohaus
capacity-g 2000
dimensions 6.29 in x 9.44 in x 5.51 in (160 mm x 240 mm x 140 mm)
gtin 00030955170268
linearity 0.1 g
list-price 580.00
Manual 1450-SD_Manual.pdf
manufacturer-part-number 1450-SD
model Harvard Trip
net-weight 1.9 kg
pan-construction Stainless Steel
pan-size 6.2 in (152 mm)
part-number 80000003
power No Power Required
readability-g 0.01
units-of-measure Gram
warranty-covering-parts-and 5 Year
weigh-beam-capacity 10 g

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Net 30 Terms

We offer Net 30 terms for qualified business customers, allowing you to receive your order now and pay within 30 days of the invoice date.

Frequently Asked Questions

The Ohaus 1450-SD Harvard Trip balance has a maximum capacity of 2,000 g with a readability of 0.1 g, allowing users to perform accurate comparative weighing for laboratory, educational, and industrial applications.

The Harvard Trip balance uses a two-pan mechanical beam design based on the Roberval principle, allowing users to compare the mass of two objects directly. Sliding masses on the beam help adjust the measurement until the beam reaches equilibrium, indicating the weight difference.

No. The 1450-SD is a fully mechanical balance that operates without power, making it reliable in environments where electricity is unavailable or where simple, durable weighing equipment is preferred.

The Harvard Trip balance includes magnetic damping, self-aligning beams, floating agate bearings, and built-in sliding masses. These design elements help reduce oscillation, improve stability, and ensure consistent weighing results.

This type of mechanical balance is commonly used in schools, laboratories, research facilities, and quality control environments where comparative weighing or educational demonstrations of mass measurement are required.

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