Equipment Comparison

Sewer Camera Comparison

Comparing 2 Sewer Cameras

Direct side-by-side analysis of verified technical specifications, PipeScope Research Scores, and documented capability metrics.

Sanyipace

Sanyipace 165 ft Self-Leveling Sewer Camera with 512 Hz Sonde (5 mm cable)

77/100
Research Score
Best for: Residential Plumbers (Reference Only)
  • Reach: 100 ft pushrod
  • Head: 23 mm diameter
  • Sonde: 512 Hz
  • Display: 7" IPS
Teslong

Teslong NTS500 50ft / 15m Dual Lens Inspection Camera

72/100
Research Score
Best for: Sidewall & Crack Inspection in Short Runs
  • Reach: 50 ft pushrod
  • Head: 12.5 mm diameter
  • Display: 5" IPS 720P

Full Specification Comparison

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Specification
2 Systems
Sanyipace 165 ft Self-Leveling Sewer Camera with 512 Hz Sonde (5 mm cable) Sanyipace
Teslong NTS500 50ft / 15m Dual Lens Inspection Camera Teslong
Procurement & Pricing Check Price on Amazon Check Price on Amazon
Editorial Analysis & Assessment
Research Score 77 / 100 (Good) 72 / 100 (Good)
Best For Residential Plumbers (Reference Only) Sidewall & Crack Inspection in Short Runs
Editorial Verdict Compact self-leveling head with 512 Hz sonde and 7 in IPS monitor. Dual-lens side-view camera head for thorough 90-degree sidewall inspection in short pipes.
Model / MPN S830-100FT NTS500-15M
Verified Technical Specifications
Push Cable Reach 100 ft (30.5 m) 50 ft (15.2 m)
Camera Head Diameter 23 mm 12.5 mm
Pipe Size Compatibility 2" – 6" 1.25" – 3" internal plumbing
512 Hz Sonde Transmitter 512 Hz Integrated None
Locator Receiver Wand Sold Separately Sold Separately
Self-Leveling Camera Head Fixed Orientation Fixed Orientation
Monitor Screen Size 7" IPS 5" IPS 720P
Distance / Footage Counter Visual Estimation Visual Estimation
DVR Video Recording Live View Only SD Card / USB Included
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Why Trust PipeScope Lab Technical Comparisons

Every specification in this comparison matrix is verified against official engineering manuals, published technical specifications, and manufacturer documentation. PipeScope Lab Research Scores are calculated using standardized rubric benchmarks to provide objective, evidence-based diagnostic equipment ratings.