Ideal for SWAT, law enforcement and border patrol agencies, the Hudson APC offers a reliable and compact solution for secure personnel transport. While the vehicle is easily-transported and maneuvered due to its smaller frame, it is configured to securely and comfortably hold 8 passengers. An auxiliary air conditioning system as well as exhaust fan for quick ventilation and air re-circulation also improves the passengers’ environment – especially in hotter climates. Being based on the reliable and tested Toyota Land Cruiser 79 platform, this APC has great spare parts availability as well as cost-effective maintenance and operating costs as a result making it an ideal choice for larger fleets in remote areas. Moreover, the vehicle is available in both left-hand-drive as well as right-hand-drive configurations ensuring its applicability on global scale.
[embed]https://www.youtube.com/watch?v=5v9pOy20KYY&feature=youtu.be[/embed]
The turbocharged 4.5L V8 diesel engine produces 317 ft. lbs. of torque and 202 horsepower making this both an efficient and agile transport vehicle ready for quick escape when necessary while the reliable powertrain found within the Toyota Land Cruiser 79 platform is legendary for its unbeatable dependability and performance. The skilled engineers at INKAS
® have developed this vehicle with superior attention to detail as it pertains to build quality, mobility in off-road scenarios, passenger comfort and ease of operation. The light-weight armoring materials used within this vehicle weigh half as much as others but meet the same stringent international standards that all INKAS
® strictly adhere to.
When it comes to selecting a quickly-deployable APC unit for use in hotter regions of the world, the Hudson APC is sure to fit the bill with its superior dependability, easily-transportable frame and premium safety and comfort features. The vehicle's easily-customized exterior and interior specifications, technology and capabilities enable this
armored vehicle to be applicable within a vast array of usage scenarios.