Long range flir handhelds and thermal IP Network stabilized PTZ cameras
We use only the best electro optical sensors, the finest optical long range lenses and the most rugged / reliable mechanical parts to ensure a system that performs flawlessly and lasts for many years of continuous service.
When you need the advantages of full stabilized long range pan tilt zoom (PTZ) flir (Forward Looking InfraRed) thermal imaging cameras, SPI Corp can custom design/engineer the perfect Dual sensor & Multi Sensor PTZ (Pan Tilt Zoom) FLIR thermal imaging system for you. If you require custom special design and integration at affordable pricing, SPI will cater to your mission requirements.
CLICK ON A LONG RANGE
MWIR/LWIR/SWIR FLIR PTZ
THERMAL CAMERA
SELECTION BELOW;
M7 LWIR UNCOOLED ZOOM PTZ LONG RANGE NETWORK BI-SPECTRUM THERMAL NIGHT VISION FLIR CAMERA FOR VEHICLES, MASTS RADAR AND SPECIAL APPLICATIONS
M9 ULTRA RUGGED IP67 IP ETHERNET NETWORK REMOTE CONTROL RADAR 30 KILOMETER MWIR LONG RANGE 2500MM FLIR THERMAL IR SECURITY CAMERA
M11 MWIR ZOOM 2000MM 20 KILOMETER FLIR PTZ LONG RANGE THERMAL IR NETWORK IP
CAMERA
M1D COMPACT ROOF BOAT VEHICLE MOUNTED LONG FIXED VEHICLE FLIR PTZ LONG RANGE FLIR THERMAL IR IMAGING CAMERA
M2D LONG RANGE GYRO-STABILIZED RETRACTING HIGH SPEED UAS UGV UAS CUAS SUAS MULTI SENSOR LIGHT FLIR EO/IR DRONE GIMBAL THERMAL CAMERA
M5 PTZ LONG RANGE MOBILE, MARINE, BOAT, VEHICLE IP STABILIZED NETWORK FLIR THERMAL CAMERA
HTMI v2.0 Mini long range Thermal Monocular – FLIR LWIR Thermal Scope
The new & improved HTMI v2.0 gives you all of the features the original HTMI mini thermal monocular but has even MORE power in a smaller, more versatile housing. Weighing in at only 8.5 oz, this mini wonder is about half the size of its predecessor but boasts a plethora of new advanced features.
The HTMI V2 is A long range, rugged, all weather high-resolution ultra micro mini credit card sized thermal imaging multipurpose, Multi sensor system which can be hand held, head and helmet mounted and weapons mounted with a plethora of accessories for a wide array of modularity and functionality, A single system can play multiple roles eliminating the need to purchase several bulky thermal imaging systems.
The HTMI v2 is the smallest. Lightest, highest performing, most rugged,
reliable multi purpose SWAP thermal imaging monocular system.
Full IP67, rugged, all weather system.
The new HTMI v2.0 mini thermal monocular picks up where the original HTMI mini scope (AN/PAS-23/MTM) left off with improvements including size, versatility and function. This durable, waterproof IR scope readily meets MIL-STD-810(G) requirements and you’ll be amazed at how small it is yet how powerful it performs; making it the perfect choice for the warfighter in combat operations. The HTMI V2 is the smallest full featured hand held FLIR Thermal imaging monocular pocketscope thats fully ruggedized, offers high resolution, long range with 8x zoom. System features include DMC Digital Magnetic Compass, inclinometer (displays heading and tilt), and a wide array of thermal functions that are easily accessible through the intuative menus inside the V2 FLIR. The System also has weapons mounting capability with sightable crosshairs and selectable reticle patterns as well as head and helmet mounting provisions. An integrated built in visible or IR eye-safe laser enhances the V2 FLIR’s capabilities
HTMI v2.0 Mini Thermal Monocular Features
The HTMI v2.0 is made in the U.S.A. with a FLIR Quark 2 core. It maximizes form and function, making it a unique surveillance scope that fits both in the palm of your hand and in your pocket. It can be equipped with a visible or NIR (near infrared) laser pointer for pontificating targets in combat operations and hastwo integrated rail mounts that allow you to switch the unit from your helmet to your rifle in seconds without having to remove either mount. This mini mounting system is a truly valuable feature, allowing you to affix the HTMI v2.0 mini thermal monocular to head or helmet mounts, DVR systems and rifles using the optional Picatinny quick release rail systems (MIL-STD 1913).
In addition, the rail system is so small that it provides an ergonomic fit within any operator’s hands whether using gloves or not. The unit also comes equipped with an internal digital compass & inclinometer maintaining maximum situational awareness by providing accurate distance measurements & target orientation.
The HTMI v2.0 mini thermal monocular also comes with integrated software that allows the operator to configure the unit to perform to preferred specifications. With the easy press of a button, you can configure the display’s brightness/contrast, change palettes, reticles and color, electronic zoom and manual non-uniformity correction (NUC). Additional settings such as boresighting, rifle caliber profiles, reticles & even factory reset can all be stored & changed within the menu options as well. The unit will also continue to prove its worth even as technologies evolve, thanks to wireless & Bluetooth remote capability, making it an excellent reliable investment to add to your kit.
Less is Definitely MORE! HTMI v2.0 vs the MTM
Functionality matters and so does size. Not only does the HTMI v2.0 have superior functionality to the MTM, it’s also nearly HALF THE SIZE. Take a look at some of the ways the FLIR HTMI v2 long range thermal scope beats the MTM and you’ll see what small can do for your special operations and reconnaissance missions.
MTM AN/PAS-23
HTMI v2.0 FEATURED
A Mini Thermal Monocular for Every Application
- MIL-810G standard (rugged glass fiber reinforced housing, waterproof)
- FLIR Quark core in 640 & 336 available
- 19mm Germanium lens
- 800×600 LED display
- Onscreen menus (drop down & icon)
- Simple, tactile 3 button controls
- Black or white hot polarity switch
- Color & monochrome palettes
- Up to 8x digital zoom
- Wireless/Bluetooth capability
- Integrated laser pointer
- Software enhancement & controls
- Digital inclinometer
HTMI v2.0 Mini Thermal Monocular System Specifications
Refresh Rate | 60 Hz |
FPA | 640×512 LWIR uFPA |
Spectral range |
7-14 microns |
Display | 1280×1024 SXGA OLED |
Power on |
3 seconds |
Video format |
NTSC/PAL |
Lens | Germanium |
FOV | 15 or 32°
x8 Zoom |
Battery type |
CR123 Lithium 3 V (one each) |
Battery life |
> 3 hours (6 hours with 18650) |
Dimensions | 3.93″x2.45″x1.56″ |
Weight | 7.8 oz |
Optional accessories include: 2x A-focal doubler, DVR, extended battery pack, integrated range finder, tactical goggle kit
SPI Long Range thermal imaging camera Modular Open Architecture System design supports both new and legacy platforms and applications;
and provides a seamless upgrade path as requirements and technologies change. Our goal is zero
obsolescence, at a system level, and the lowest cost over the life of the program or platform. We aim to
achieve this goal while providing users with the capability to deploy the latest and best sensor technology
available.
Our modular design concept using true line replaceable units can simplify maintenance and support capability
upgrades in the field. This capability eliminates the need for any special tools or equipment. Our gimbal
systems minimize the use of external cables to simplify system integration and reduce potential failure points.
All of these aspects combined result in a sustainable long term approach to your long Range thermal imaging camera systems.
SPI provides innovative and cost-efficient solutions to support the most complex Long Range electro-optical imaging
applications, utilizing modular system design that is easy to integrate, configure, upgrade, and service. Our
products include the design and manufacturing of high-precision two-axis stabilized gimbals, EO-IR system
integration, COTS EO-IR long range PTZ FLIR thermal imaging mobile force protection, coastal and border solutions, laser range finder LRF systems
fabrication, and full high definition (HD) IR (full HD Visible) EO tracking systems.
When the mission hinges on synchronizing multiple sensor suites tracking multiple targets from a variety of
remote geographical locations, we incorporate an intuitive Command and Control graphical user interface,
high precision mechanical and electronic assemblies, and an open architecture interface to work seamlessly
with existing networks.
The SPI Team is made up of experts in the fields of electrical and mechanical engineering, optical
design and analysis, IR thermography, 3D solid modeling (CAD/CAM), and precision machining and assembly.
SPI’s Long range thermal imaging FLIR PTZ security camera systems are currently utilized by US Customs and Border Patrol, US Marine Corps, US Air Force, US
Navy, US Department of Homeland Security, NASA, the Panama Canal, the South Korean Navy, Saudi Aramco Oil, and MIT Lincoln Labs.
WHY THE SPI LONG RANGE THERMAL IMAGING PTZ FLIR CAMERA SYSTEMS ARE THE BEST CHOICE FOR LONG RANGE CAMERA PROJECT
Modular Open Architecture System objectives
• Support both new and legacy platforms and applications
• Provide a seamless upgrade path as requirements and technologies change
• Our goal is zero obsolescence, at a system level, and the lowest cost over the life of the program or
platform
• We aim to achieve this goal while providing users with the capability to deploy the latest and best
sensor technology available.
• Design system modules as true line replaceable units to simplify maintenance and support capability
upgrades in the field.
• Eliminate the need for any special tools or equipment
• Eliminate or reduce the need for sensor alignment after replacement
• Maximize the use of captive fasteners for all LRUs to support installation in extreme and challenging
environments
• Minimize the use of external cables to simplify system integration and reduce potential failure points
Lowest Cost Over the Life of the Program
• Zero system level obsolescence moving forward based on the ability to integrate new sensor
technology as it is released
• Allows engagement of Legacy and New Sensors: Reverse Compatible to legacy sensors, or a
combination of long range thermal imaging EOIR new sensors and legacy sensors as spares
• Forward compatible from SD to full HD, as new sensors are introduced
• No wear components
• EOIR long range thermal imaging Sensors and Gimbals sealed within Aluminum Weldments or Carbon Fiber sealed IP 68 plus enclosures which are full immersion tested.
• Very High industry leading MTBF
• Uses standard Ethernet or Serial C2 connections
• Code for new sensors upload-able remotely into the on-board FPGA from system Ethernet connection
• Rapid upgrades saves time and material costs
• Rapid Sensor changes reduce labor and down time
• Streamlined integration effort minimizes schedule and technical risk
• This approach drives the cost down for each platform over the life of the Program while at the same
time still remaining competitive at initial purchase cost for each system.
KEY CONSIDERATIONS
• DIRECT DRIVE SERVO MOTORS AND ENCODERS DIRECTLY CONNECTED TO THE AZIMUTH AND
ELEVATION DRIVE SHAFTS SUPPORT THE FULL RESOLUTION OF THE 19 BIT ABSOLUTE ENCODERS WITH
NO HYSTERESIS
• BRUSHLESS MOTORS AND OVERSIZE BEARINGS PROVIDE HIGH RELIABILITY, EXCELLENT ALIGNMENT
RETENTION AND SIGNIFICANT STRUCTURAL MARGIN
• THERE ARE NO WEAR OR LIMITED LIFE COMPONENTS IN THE SYSTEM THAT REQUIRE SERVICE OR
MAINTENANCE
• SUPERIOR DESIGN & LONG TERM RELIABILITY
OUR HARDWARE PROPOSAL
PROPOSAL FOR EO / IR, VISUAL & THERMAL CAMERA COMBO GIMBAL SYSTEM
The M9 LONG RANGE PTZ THERMAL IMAGING FLIR CAMERA SYSTEM
The M9 is a Long Range high-performance, high-definition pan and tilt system that is ideal for day/night
surveillance over long ranges in the harshest of conditions. The M9 Long Range thermal imaging ptz system was designed with the specific
intent to support the highest performance sensors available. HD video data is transmitted with a high-speed
fiber optic connection, with no compression or data loss. In addition to the standard suite of high
performance imaging sensors, the M9’s HD’s gimbal can accommodate additional optional sensors,
including laser rangefinder, laser pointer/designator, laser zoom imaging illuminator, and many other devices.
SYSTEM FEATURES & BENEFITS:
360° azimuth, continuous rotation
Direct drive servo motors
Superior HD image processing
Extreme zoom range with HD resolution
HD resolution imaging in extreme environments
Remote updating, GPS-referencing, dual HD-SDI outputs
Optional gyro stabilization for tower, mast, marine vessel & vehicle applications
HD Long Range thermal flir imaging & EO CCTV video tracking options
Integrated system controller: controls all motion & sensors via a single Ethernet connection (this allows
for changing sensor types without re-coding the user C2 interface)
Rugged design thrives in the harshest of environments
HD LONG RANGE THERMAL MWIR CAMERA FEATURES:
Auto focus & fine focus
Electronic image stabilization
Turbulence mitigation
HD resolution, 1280 x 1024 Pixels, 15μm pitch
Edge enhancement & contrast enhancement
200-1,200 mm Coated Hardened Continuous Optical Zoom Germanium Lenses
LASER POINTER FEATURES:
Eye safe at the aperture
15km range
4Hz flashing mode and 30Hz continuous mode
LASER RANGE FINDER FEATURES:
20km Long range LRF
Eye safe at the aperture
Solid state design for long life
LONBG RANGE HD DAYLIGHT CAMERA
ASSEMBLY FEATURES
• 0.009 lux ½” HD CMOS 2.2 MP
• High speed auto focus
• Heat haze/wave removal &
image stabilization
• Black glass (low pass filter) for NIR Imaging
LENS OPTIONS
• 16.7-2000mm zoom Long Range Visible HD camera with optical
stabilized lens
• 16.7-2000mm zoom Long Range Visible HDTV camera
M11 MODULAR LONG RANGE THERMAL IR IMAGING FLIR PTZ EOIR CAMERA SYSTEM
The M11 Is A Long Range Modular Gimbal System which is an agile system for medium
payloads — a yoke-style gimbal design for today’s challenging tracking applications. Because the payload is
supported over the azimuth axis, the result is both faster response and greater accuracy. This integrated
sensor system combines our industry-leading gimbal with cutting edge Long Range Thermal infrared and HD visible sensors. These
systems can accommodate a wide range of laser pointers, Custom Long Range NIR, SWIR Optics, LRF laser range finders and laser illuminators.
SYSTEM FEATURES:
• 360° azimuth, continuous rotation
• Direct drive servo motors for maximum accuracy (within 0.0006°)
• Over-the-azimuth payload design provides low inertia for high speed tracking capability
• Blind mate connectors provide rapid installation or re-configuration in the field
• High resolution imaging achieved in extreme environmental conditions with heat haze & fog mitigation
• Fully network enabled for integration into existing IP surveillance networks
• Optional gyro stabilization for tower, mast, marine vessel and vehicle applications
• Proprietary design provides the lowest operational cost over the life of the system
• Image stabilization
• Rugged design thrives in the harshest of environments
For the single payload day camera gimbal we recommend 3 pcs of the following:
Long Range MWIR / LWIR uncooled/Cooled IR Camera with an Ultra Long range EO payload.
The Visual EO camera payload would be as follows:
HD DAYLIGHT CAMERA
ASSEMBLY FEATURES
• 0.009 lux ½” HD CMOS 2.2 MP
• High speed auto focus
• Heat haze/wave removal & electronic
• Image stabilization
• Black glass (low pass filter) for NIR Imaging
• Turbulence, Haze, Clutter and fog Mitigation
• LENS OPTIONS
• 16.7-2000mm zoom Long Range Visible HD camera with optical
• stabilized lens
Overview
Lowest Cost Over the Life of the Program
• Zero system level obsolescence moving forward based on the ability to integrate new sensor
technology as it is released
• Allows engagement of Legacy and New Sensors: Reverse Compatible to legacy sensors, or a
combination of new sensors and legacy sensors as spares
• Forward compatible from SD to full HD, as new sensors are introduced
• No wear components
• Long Range Sensors and Gimbals sealed within Aluminum Weldments or Carbon Fiber sealed IP 68 plus enclosures
which are full immersion tested
• Very High industry leading MTBF
• Uses standard Ethernet or Serial C2 connections
• Code for new sensors upload-able remotely into the on-board FPGA from system Ethernet connection
• Rapid upgrades saves time and material costs
• Rapid Sensor changes reduce labor and down time
• Streamlined integration effort minimizes schedule and technical risk
• This approach drives the cost down for each platform over the life of the Program while at the same
time still remaining competitive at initial purchase cost for each system.
KEY CONSIDERATIONS
• DIRECT DRIVE SERVO MOTORS AND ENCODERS DIRECTLY CONNECTED TO THE AZIMUTH AND
ELEVATION DRIVE SHAFTS SUPPORT THE FULL RESOLUTION OF THE 19 BIT ABSOLUTE ENCODERS WITH
NO HYSTERESIS
• BRUSHLESS MOTORS AND OVERSIZE BEARINGS PROVIDE HIGH RELIABILITY, EXCELLENT ALIGNMENT
RETENTION AND SIGNIFICANT STRUCTURAL MARGIN
• THERE ARE NO WEAR OR LIMITED LIFE COMPONENTS IN THE SYSTEM THAT REQUIRE SERVICE OR MAINTENANCE