Tablettose® 70
Premium agglomerated alpha-lactose monohydrate – Ph. Eur., USP-NF, JP, ChP
Agglomerated lactose, such as MEGGLE’s Tablettose®, offers significant advantages in pharmaceutical applications. Produced through a continuous spray agglomeration process, it combines the excellent flowability of coarse lactose with the good compactibility of fine milled lactose, making it ideal for direct compression tableting. This process results in a stable, non-hygroscopic, pure alpha-lactose monohydrate powder. Additionally, agglomerated lactose exhibits high solubility and low hygroscopicity, enhancing its stability and performance in various formulations.

Tablettose® 70 is an agglomerated alpha-lactose monohydrate designed for direct compression applications. It features a narrow particle size distribution with reduced fines and no particles larger than 500 µm, resulting in excellent flowability and minimal dust generation. These properties make it ideal for formulations requiring uniform particle size and dust-free production.
Benefits
- Low hygroscopicity
- Excellent stability
- Superior blending characteristics
- Good flowability
- Good compactibility
- Low moisture content
- Fast disintegration times
Areas of Application
- Direct compression
- Continuous applications
- Capsule and sachet filling
- Effervescent tablets
- Artificial sweetener tablets
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- Direct compression
- Continuous processing
- Agglomerated Lactose
- Oral Solid Dose
- Effervescent tablet
- Artificial sweetner tablet
- Orally disintegrating tablet (ODT)
- Placebo tablet
- Low dose DC formulation
- Capsule
- Tablet
- Sachet
20kg – Paper bag with PE-EVOH-PE inliner
36 months
Wasserburg am Inn, Germany
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Typical particle size distribution
Typical Product Data
- x10: 90 µm, x50: 183 µm, x90: 313 µm
- Span [(x90-x10)/x50]: 1.22
- Density bulk: 0.540 g/ml
- Density tapped: 0.649 g/ml
- Hausner Ratio: 1.20
- Carr’s Index: 17 %
Specified Product Data
Particle size distribution
Sieve Method: Mechanical sieve shaker
- <63 µm: NMT 6%
- <200 µm: 30-70%
- <500 µm: NLT 98%
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