Oscillating Digital Ceramic Tower Space Heater For Home Or Office With Remote And Adjustable Thermostat, 2 Quiet Heat Settings, Timer, Widespread Oscillation For Even Warmth, Stay Cozy In Any Room, 1500W Silver Finish
No reviews
Title
Regular price
$169.00
Sale price$290.00you save $121.00
SKU: VXB000TTV2QS
Digital Ceramic Tower Heater with Remote and Timer - 1-Unit
✔️ 1500W ceramic tower heater, 2 quiet modes, auto timer, oscillation
✅ 2 quiet heat settings (high/low) with adjustable thermostat
✅ Widespread oscillation for even heat distribution
✅ Remote control included with back-panel storage
✅ Auto-off timer from 1 to 8 hours for energy savings
✅ ETL-listed safety with overheat protection and cool-touch housing
✅ Fully assembled; 23" tall, 7" wide; weighs 7.29 lb (3.31 kg)
✅ Silver finish and built-in carry handle for easy portability
✔️ 1500W ceramic tower heater, 2 quiet modes, auto timer, oscillation
This digital ceramic tower space heater is designed to heat a single room efficiently. It’s ideal for a home office, bedroom, or small living area where you want fast warmth without heating the whole house. It includes a remote for convenient control and a programmable timer.
✅ 1500W ceramic heating element delivers quick warmth✅ 2 quiet heat settings (high/low) with adjustable thermostat
✅ Widespread oscillation for even heat distribution
✅ Remote control included with back-panel storage
✅ Auto-off timer from 1 to 8 hours for energy savings
✅ ETL-listed safety with overheat protection and cool-touch housing
✅ Fully assembled; 23" tall, 7" wide; weighs 7.29 lb (3.31 kg)
✅ Silver finish and built-in carry handle for easy portability
💡 What is a ceramic tower heater used for in everyday home heating?
It's handy for quickly warming a single room, helping you stay comfy without pumping heat into the whole house.
- Targeted room heating with ceramic element for fast warmth - Handy for a home office, bedroom, or small living area - Remote control and programmable timer for easy comfort - Oscillation helps spread heat evenly across the space
Share