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APS™ Edge Inserting System
The APS™ Edge incorporates a series of innovations that increase throughput, mailpiece integrity and system reliability. As a 100% servo-powered inserter, the APS Edge system delivers up to 98% uptime, consistent performance and superior material handling.
Today's APS Edge can handle higher page counts and process more mail per shift to meet and exceed your SLAs - and lower your cost per mailpiece. |
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Input solutions designed for maximum performance
Pitney Bowes offers two input solutions to meet your specific business needs. The Advanced Productivity Input (API) solution is designed for flexibility in processing lower page count applications. The High Productivity Input (HPI) is a servo-powered solution to process high page count applications at high speeds.
Both the API and HPI inputs offer:
- Flexibility to process roll, fan-fold and cut sheet applications
- Capability to merge multiple print streams for maximum productivity
APS™ Edge is the right system solution for maximum operational efficiency.
- Less systems, faster processing:
replace up to six legacy systems with a single APS Edge
- Less footprint: reallocate
valuable space
- Less labour: fewer operators per
shift
- Less material waste: servo
technology drives maximum uptime
- Less expense: drive cost savings
through system reliability
The APS Edge is a "green" system.
The inserter is RoHS compliant, free of hazardous
substances and equipped for immediate disposal without
any negative impact on the environment.
View APS™
Edge Brochure
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APS™ Edge System Specifications* |
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Cycling Speed |
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Up to 22,000 Cycles per hour |
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Power Requirements |
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3 Phase, 215V, 50A |
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Number of Insert Stations |
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From 3 to 21 stations |
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Maximum Collation Thickness |
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8mm |
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Envelope Size |
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Depth
Width |
Min: 98mm / Max: 162mm
Min: 178mm / Max: 292mm |
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Insert Materials |
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Depth
Width |
Min: 89mm / Max: 158mm
Min: 140mm / Max: 250mm |
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Air |
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Air Pressure
Air Flow |
70 PSI / 4.85 Bar
3.5 SCFM (min) |
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*Specifications are subject to change
without notice. Performance may vary depending on the exact
job configuration, materials and environmental conditions. |
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