Timbangan Ohaus 1560-SD Harvard Trip Balances
The Timbangan Ohaus 1560-SD Harvard Trip Balances is a designed for accurate mass comparison and analytical weighing applications. With a maximum capacity of 2000 g and readability of 0.1 g, this classic balance provides exceptional accuracy and repeatability, making it ideal for laboratories, educational institutions, and industrial quality-control environments.
Features
The Ohaus 1560-SD features a two-pan design that allows users to perform direct weight comparisons between samples or reference standards. Its two-beam configuration with a dedicated tare beam provides fine adjustment and precise balancing capabilities. This setup makes it ideal for determining differences in mass between two objects without requiring external power or electronic components.
Each pan is made of high-quality stainless steel, offering excellent resistance to corrosion and chemical exposure. The rigid metal base and precision bearings ensure long-term stability and smooth beam movement. Additionally, the magnetic damping system minimizes oscillation, enabling faster readings and improved efficiency during repetitive measurements.
Because it operates entirely mechanically, the Harvard Trip Balance guarantees reliability even in power-restricted or field environments. Its compact and durable design allows easy transport and long-term use across various weighing applications.
Specifications
Model / Part Name: Ohaus 1560-SD Harvard Trip Balance
Maximum Capacity: 2000 g
Readability: 0.1 g
Linearity: ± 0.1 g
Pan Size: 5.9 in (150 mm) diameter
Pan Construction: Stainless Steel
Beams: Dual beams with separate tare beam
Dimensions (L × H × W): 9.44 × 6.29 × 5.51 in (240 × 160 × 140 mm)
Net Weight: 2.7 kg
Power Requirement: None (Mechanical operation)
Units of Measurement: Gram (g)
Applications
The Ohaus 1560-SD Harvard Trip Balance is ideal for mass comparison, sample analysis, and educational experiments. It is commonly used in scientific laboratories, schools, and research facilities to teach weighing principles and to perform precise measurements of solids or powders.
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