Brady 504-NITT Holder
Brady Badge Holder Holder Model Overview
Frequently Asked Questions
What industries is the Honeywell CW45 designed for?
The CW45 Rugged Wearable Computer is engineered for frontline mobile workers across warehouse, retail, logistics, and manufacturing industries. Its low-profile design and HD display provide instant access to workflow information at the point of activity, making it ideal for operations requiring real-time data capture and mobility.
How long does the Honeywell CW45 battery last on a single charge?
The CW45 offers up to 12 hours of operation with the extended battery option (7000 mAh). The device also features a hot-swap battery capability, allowing you to swap batteries in under a minute for uninterrupted use throughout your shift.
What connectivity options does the CW45 provide?
The CW45 includes Wi-Fi 6 technology for enhanced data throughput and improved communication quality, along with Bluetooth V5.1 and an integrated NFC reader. These wireless connectivity options ensure reliable performance and secure connectivity across your enterprise network.
Is the Honeywell CW45 suitable for harsh warehouse environments?
Yes, the CW45 meets IP65 and IP67 standards for durability and resistance to moisture and particles, making it suitable for demanding warehouse and logistics environments. It operates across a temperature range of -20°C to +50°C (-4°F to +122°F), providing enterprise-grade ruggedness for outdoor and indoor operations.
What processor and memory specifications does the CW45 have?
The CW45 is powered by a Qualcomm QCS4290/QCM4290 octa-core processor running at 2.0GHz, with 6 GB DDR4X RAM and 64 GB UFS Flash storage. This configuration ensures reliable performance and simplified deployment on Honeywell's Mobility Edge platform.
What is the display size and resolution of the CW45?
The CW45 features a 4.7-inch HD multi-touch capacitive display with 1280 x 720 resolution. This large, responsive display provides clear visibility for workflow information and supports intuitive touch-based interactions in the field.