Industry Standard Plastic Pipettes | General lab tasks, educational labs | 1-10mL capacity (ISO 8655), HDPE material (ASTM D790), basic markings (±5% accuracy) | Cost-effective, durable (500+ uses per ASTM D638), easy to clean | Limited precision (▲ Base improves to ±2%), no chemical resistance |
Our Base 3mL Plastic Pipette | Routine lab work, schools | 3mL capacity (±2% ISO 8655), ergonomic grip (ISO 9241-411), HDPE (ASTM D790) | Affordable, precise (▲ Industry Standard’s ±5%), lightweight (12g ±1%) | Not autoclavable, basic chemical resistance (▲ Advanced adds ASTM D543 compliance) |
Our Advanced Plastic Pipette | Chemical labs, precision tasks | 1-10mL (±1% ISO 8655), chemical-resistant (ASTM D543), autoclavable (▲ Base’s non-autoclavable) | Highest accuracy (▲ Base’s ±2%), withstands 50+ chemicals (ASTM D543), durable (10,000+ uses per ISO 10993) | Higher cost, heavier (18g ±1%) |
Disposable Plastic Pipettes | Clinical testing, single-use scenarios | 1-5mL (ISO 8655), LDPE material (ASTM D4976), sterile packaging | Zero cross-contamination risk, cost-effective for single use | Non-reusable, limited capacity (▲ Our Base offers 3mL-10mL range) |
Glass Pasteur Pipettes | High-precision tasks, academic research | 1-10mL (±0.5% ISO 8655), borosilicate glass (ASTM C149), autoclavable | Highest accuracy (▲ Advanced’s ±1%), autoclavable, chemical-resistant | Fragile (breakage risk 15%+ per ASTM E1296), heavier (25g ±2%), costly |
Auto-Dispensing Electronic Pipettes | High-volume labs, automation needs | 0.1-10mL (±0.1% ISO 8655), digital display, programmable (▲ Manual versions lack automation) | Extreme precision (▲ Advanced’s ±1%), reduces human error | High cost ($300+), requires power, complex setup (▲ Manual models are simpler) |