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Wingflex B777 CDU brings long-haul flight management onto a dedicated physical interface, combining 1:1 full-scale construction with plug-and-play USB connectivity. The illuminated aircraft-style keypad gives route entries, performance calculations and arrival changes a satisfyingly deliberate rhythm, while the slim enclosure avoids swallowing half the desk. Physical captain and first-officer selection adds useful flexibility, and the adjustable stand keeps the screen readable from several seating positions. It is considerably more convincing than wrestling with a tiny pop-out window somewhere between cruise altitude and dinner service.
What Sets the Wingflex B777 CDU apart?
Full-Scale Controls for Proper Boeing Workflows The 1:1 layout preserves the spacing, key placement and proportions expected from a Boeing 777 CDU. That makes frequent tasks such as route entry, performance setup and arrival amendments easier to complete through muscle memory. Independent video coverage also shows the unit functioning as a substantial desktop control rather than a reduced keypad, which should please pilots whose fingers have grown tired of negotiating tiny virtual buttons with a mouse.
Useful Support Beyond the Boeing 777 Despite its B777-specific face and operating style, the unit supports selected PMDG, iFly, Zibo, LevelUp and IXEG aircraft. This includes several 737 variants and the PMDG 747 V2 alongside the supported 777 family. That broader integration gives Boeing-focused pilots more value from one device, although the physical legends and layout naturally remain best matched to the 777 rather than every aircraft in the compatibility list.
One Unit Can Serve Either Cockpit Seat Physical left-and-right selection allows the CDU to represent the captain or first-officer position without requiring a second unit. This is particularly useful for compact home cockpits, shared training stations and desktop layouts where space disappears faster than fuel during a badly planned diversion. The multi-angle stand further improves placement flexibility, letting the display sit below a monitor, beside a throttle quadrant or within a developing cockpit structure.
Desktop-Friendly Construction Without a Wiring Project The USB interface combines the display and physical controls into one self-contained unit, avoiding the separate controller boards, video connections and custom wiring common in more elaborate cockpit components. Its 1.25 kg weight provides enough substance to remain planted during data entry, while the slim housing remains portable. Review footage also demonstrates straightforward stand assembly and operation with Microsoft Flight Simulator, making the unit approachable for pilots who prefer flying to cable archaeology.
Pros and Cons
Pros
Cons
Full-scale keypad supports familiar Boeing flight-management procedures.
Physical layout remains specifically tailored to Boeing aircraft.
Backlit keys improve operation in dark cockpit setups.
Compatibility is restricted to explicitly supported aircraft packages.
Physical switch selects captain or first-officer operation.
Adjustable stand provides several practical viewing positions.
USB connection reduces separate interface hardware requirements.
Specifications
Specification
Value
Product
Wingflex B777 CDU
Aircraft Style
Boeing 777 Control Display Unit
Scale
1:1 full scale
Construction
Aviation-grade materials
Interface
USB
Installation
Plug-and-play design
Keyboard
Aircraft-style internal structure with backlighting
Input Behaviour
Customisable random entry-delay effect
Cockpit Position Selection
Physical switching between left and right seats
Firmware
Supports online firmware upgrades
Stand
Multi-angle adjustable stand
Form Factor
Slim, ultra-thin design
Length
33 cm
Height
24 cm
Width
10 cm
Weight
1.25 kg
Supported Simulator Families
Microsoft Flight Simulator, X-Plane 11/12 and Prepar3D
Wingflex B777 CDU Compatibility
Platform
Compatible Aircraft
Microsoft Flight Simulator
PMDG 737NG 600, 700, 800 and 900; PMDG 777-300ER, 777-200ER and 777-200F; iFly 737 MAX
X-Plane 11/12
Zibo 737NG, LevelUp 737NG and IXEG 737-300 Classic
Prepar3D
PMDG 777, PMDG 737NGXu, PMDG 747 V2, iFly 737NG and iFly 737 MAX
The CDU connects through a USB interface and combines its screen, illuminated keypad and seat-selection controls in one enclosure. Its physical captain and first-officer switching allows one device to serve either CDU position, while the multi-angle desktop stand supports several installation positions. No standard cockpit mounting pattern or direct compatibility with third-party CDU frames is specified, so permanent cockpit installation may require a purpose-made bracket or shelf.
Software integration covers PMDG, iFly, Zibo, LevelUp and IXEG aircraft, including selected 737, 747 and 777 packages. The B777 layout is naturally best suited to PMDG 777 operations, although supported 737 software can also communicate with the unit. Aircraft not included in the published compatibility table, generic FMC implementations and unrelated Airbus packages should not be considered supported merely because they use a superficially similar flight-management interface.
For simulation platforms, the CDU supports Microsoft Flight Simulator on PC, X-Plane 11 and 12 and Prepar3D when used with a listed aircraft package. Independent review footage demonstrates operation in both Microsoft Flight Simulator 2020 and 2024. It is a PC-focused USB peripheral and is not listed for Xbox or PlayStation, so console versions of Microsoft Flight Simulator fall outside its published compatibility.
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Wingflex DAP 500 puts dedicated general aviation autopilot controls right where your hand expects them, combining fully customizable controls with plug-and-play USB connectivity for a clean desktop setup. Instead of reaching for on-screen knobs every few minutes, you can adjust heading, altitude and navigation modes through tactile buttons and encoders that feel purposeful. The aluminum stand, automatic aircraft configuration and ambient-light-controlled backlighting make it equally comfortable during a sunny VFR hop or a late-night IFR approach.
What Sets the Wingflex DAP 500 apart?
Designed Specifically for General Aviation While many autopilot panels focus on airliners, the DAP 500 is built around the aircraft most GA pilots actually fly. Its control layout suits piston singles, turboprops and light business aircraft, making routine autopilot adjustments feel intuitive. Pilots who regularly fly aircraft like the C172, TBM, Vision Jet or King Air often appreciate hardware that reflects their everyday flying instead of borrowing layouts from transport-category aircraft.
Flexible Controls That Adapt to Your Flying Style With twelve programmable push buttons, two pushable rotary encoders and an additional scroll-wheel encoder, the panel can be tailored well beyond its default assignments. Community discussions around configurable hardware consistently highlight this flexibility as a major advantage because it allows pilots to create workflows that match their preferred aircraft rather than forcing identical controls across every simulator.
Automatic Aircraft Profiles Reduce Setup Time WingFlex Bridge software automatically configures supported aircraft, helping users spend more time flying and less time assigning controls. Reviewers generally regard automatic profile detection as one of the biggest quality-of-life improvements in modern simulator hardware, particularly for pilots who regularly switch between multiple aircraft during the same week instead of flying a single favourite.
Built to Grow With Future Cockpit Expansions The DAP 500 is designed as part of a broader modular ecosystem, with support planned for additional DAP-series expansion panels. Combined with firmware updates delivered through OTA software, it offers a platform that can continue evolving without replacing the core autopilot unit. That modular philosophy appeals to cockpit builders who prefer expanding their simulator gradually rather than purchasing an entire panel stack in one go.
Pros and Cons
Pros
Cons
Automatic aircraft profiles simplify supported aircraft setup.
Designed primarily for general aviation aircraft.
Extensive programmable controls suit different flying styles.
Requires WingFlex Bridge for automatic configuration features.
Ambient light sensor adjusts backlighting automatically.
Aluminum stand provides stable desktop positioning.
OTA firmware updates add future functionality.
Specifications
Specification
Value
Product
Wingflex DAP 500 Digital Autopilot Panel
Primary Use
General aviation flight simulation
Connection
USB plug-and-play
Push Buttons
12
Pushable Rotary Encoders
2
Scroll-Wheel Encoder
1
Key Assignment
Fully user customizable
Configuration
Automatic via WingFlex Bridge software
Backlighting
Adjustable with ambient light sensor
Firmware
OTA firmware upgrade support
Construction
Aluminum alloy stand
Expandability
Supports future DAP-series auxiliary panels
Wingflex DAP 500 Compatibility
Simulator
Compatible Aircraft
X-Plane
Baron 58, King Air C90B, Citation XLS, Skyhawk G1000, Cirrus SR22, Vision SF50, Lancair Evolution, RV10
Microsoft Flight Simulator 2020
NXCub, XCub, King Air 350, Bonanza G36, C208B Grand Caravan EX, CJ4, C172 G1000, DA40 NG, Pilatus PC-6, TBM 930
Microsoft Flight Simulator 2024
TBM 930, Bonanza G36, King Air 350, C172 G1000, C208B Grand Caravan EX, C400 Corvalis, CJ4, DA62, DA40 NG, Draco X, Vision SF50, Archer, ES30, NXCub, PC-12 NGX, XCub
The DAP 500 connects through USB and uses WingFlex Bridge software to automatically configure supported aircraft profiles. It is designed for general aviation cockpits and works especially well alongside hardware such as G1000 panels, radio stacks, throttle quadrants and yokes. The panel also supports future DAP-series expansion modules, allowing users to gradually build a more complete general aviation cockpit instead of replacing existing hardware.
Compatibility is focused on aircraft equipped with autopilot systems commonly found in general aviation rather than commercial airliners. It supports a broad collection of Asobo, Laminar Research and Microsoft aircraft, including the C172 G1000, King Air, TBM 930, Vision Jet, DA62 and PC-12 NGX. It is not intended for Boeing or Airbus airliner autopilot systems, which use different control layouts and operating logic.
The DAP 500 is compatible with Microsoft Flight Simulator 2020, Microsoft Flight Simulator 2024 and X-Plane on PC. It connects as a USB peripheral and relies on WingFlex Bridge software for supported aircraft integration. It is not compatible with Xbox or PlayStation consoles, as those platforms do not support dedicated desktop flight simulation control panels of this type.
Wingflex A320 Combo Cube places the Airbus glareshield essentials into one tidy desktop system, combining EFIS, FCU and multifunction RMP controls with high-contrast dual-colour displays. The knobs click and turn with enough purpose to make heading changes, radio tuning and barometric adjustments feel far better than poking at a virtual cockpit. USB connectivity keeps installation straightforward, while the 13-degree viewing angle brings the panels naturally into sight. It is compact Airbus hardware for pilots whose desks already resemble a mildly concerned electronics workshop.
What Sets the Wingflex A320 Combo Cube apart?
Three Core Panels Without a Full-Size Glareshield The bundle combines an EFIS, FCU and RMP-based multifunction panel in an 80% scale layout, saving roughly eleven centimetres compared with a full-size arrangement. Reviewers have praised that reduction because it preserves practical control spacing while fitting more comfortably beneath ordinary monitors. The result feels substantial enough for deliberate operation without demanding the sort of desk usually reserved for air-traffic control or an exceptionally ambitious accountant.
A Smarter Use of the Right-Hand Position Instead of supplying a second EFIS that a solo pilot may rarely touch, Wingflex fills the right side with a four-in-one panel covering radio management, transponder, TCAS and warning functions. Review feedback identifies this as one of the bundle’s most practical decisions, since it places genuinely useful controls within reach. It sacrifices strict two-seat symmetry, but gains considerably more day-to-day function for single-pilot desktop flying.
Clear Displays and Cohesive Night Lighting Dual-colour screens provide sharp contrast against their dark backgrounds, while synchronized brightness allows the EFIS, FCU and RMP sections to behave like one connected panel. Independent testing found the displays notably crisp and the backlighting pleasant in darker rooms. That matters during evening approaches, when deciphering fuzzy digits is an unnecessary challenge and the weather already has enough creative ways to ruin a carefully prepared arrival.
Simple Assembly With a Stable Optional Console When paired with the Cube Stand, the three modules connect through internal USB-C cables and a built-in hub, leaving a single cable running to the PC. Reviewers found assembly straightforward and noted that the broad base remained firmly planted while pressing buttons and turning encoders. The stand also gives the separate modules a cleaner, unified appearance, although it is an optional bundle choice rather than standard equipment with every configuration.
Pros and Cons
Pros
Cons
Compact layout preserves valuable desktop space.
Reduced scale differs from full-size cockpit dimensions.
Three modules cover major glareshield functions.
Optional console increases the complete setup footprint.
Dual-colour displays remain clear in low light.
RMP module combines four useful control sections.
USB installation requires minimal external interface hardware.
Specifications
Specification
Value
Product
Wingflex A320 Combo Cube
Included Modules
A320 EFIS Cube, A320 FCU Cube and A320 RMP Combo Cube
Scale
80% scale
Interface
USB
Installation
Plug-and-play
Display Type
Dual-colour LCD screens
Viewing Angle
13 degrees
FCU Construction
Aluminium body and knobs
RMP Functions
RMP, ATC, TCAS and side-panel controls
Lighting
Synchronized brightness across compatible Cube modules
Product Dimensions
52.0 × 18.5 × 16.5 cm
Package Dimensions
64.0 × 24.0 × 20.5 cm
Bundle Options
Three-module bundle, or bundle with Cube Stand
Glareshield Housing
Not included with the standard three-module bundle
Wingflex A320 Combo Cube Compatibility
Simulator
Aircraft With Full Bundle Support
Microsoft Flight Simulator
Fenix A3xx, FSLabs A32x, FlyByWire A320, iniBuilds A320, A321, A330 and A340, Aerosoft A340, Headwind A330
X-Plane
ToLiss A319, A320, A330 and A340; Laminar A330
Prepar3D
FSLabs A32x and other listed aircraft where supported through Wingflex Bridge
Aircraft
Compatibility Limitation
FlyByWire A380
EFIS and FCU supported; RMP Combo Cube not supported
iniBuilds A350
EFIS and FCU supported; RMP Combo Cube not supported
The three modules connect through USB and can operate as separate desktop units or within the optional Cube Stand. That stand contains an internal USB hub, allowing its three module connections to exit through one PC cable. The bundle pairs naturally with Airbus throttles, sidesticks, MCDUs and overhead panels, but it does not include a full glareshield enclosure and no standard mounting compatibility with third-party cockpit shells is specified.
Full compatibility depends on all three modules supporting the selected aircraft, because the EFIS and FCU lists are slightly broader than the RMP list. The complete bundle supports Fenix, ToLiss, FlyByWire A320, FSLabs, several iniBuilds aircraft, Aerosoft A340 and Headwind A330. The FlyByWire A380 and iniBuilds A350 are not fully supported because their RMP integration is currently excluded, even though the EFIS and FCU modules list them individually.
For software platforms, the Combo Cube is built for Microsoft Flight Simulator 2020 and 2024, X-Plane 11 and 12 and Prepar3D on Windows PC. It uses Wingflex Bridge for aircraft communication and firmware management. It is not listed as compatible with Xbox or PlayStation, because the required PC-side integration software and dedicated USB panel support are not available on those console platforms.
Wingflex A320 RMP Combo Cube squeezes four useful Airbus control sections into one compact unit, combining RMP, ATC, TCAS and warning-panel functions with high-contrast dual-colour LCD screens. Its physical knobs and illuminated controls give frequency changes and transponder entries a satisfying mechanical rhythm, without consuming the entire desk. The 80% scale and 13-degree tilt keep everything comfortably visible, while USB connectivity makes installation refreshingly direct. Apparently, proper radio management does not require a full cockpit shell and several kilometres of wiring.
What Sets the Wingflex A320 RMP Combo Cube apart?
Four Control Sections Earn Their Desk Space Rather than reproducing only the radio management panel, the unit combines RMP, ATC, TCAS and glareshield warning functions behind one compact face. This gives solo pilots considerably more usable control than a single-purpose radio panel. Hands-on coverage particularly values the integrated radio section because it places communication and surveillance controls beside the Airbus autopilot hardware, where they can be reached without returning to the virtual cockpit.
Compact Dimensions Without Tiny Controls The 80% scale reduces the panel’s footprint while retaining physical rotary controls and readable displays. Review coverage of the complete Cube system found the format notably easier to position beneath a conventional monitor than full-width Airbus hardware. The compromise is sensible for desktop pilots: it saves space without shrinking everything into fiddly miniature controls that require the fingertips of a concert pianist and the patience of an air-traffic controller.
Lighting That Behaves as One Cockpit System The RMP Combo Cube can synchronize its brightness with the Wingflex FCU Cube and EFIS Cube, producing consistent illumination across the complete glareshield arrangement. Independent reporting also notes that each module can still operate separately, so the RMP does not require the complete Cube set. That flexibility is useful for gradual cockpit builds, while synchronized backlighting prevents one panel glowing like a supermarket sign beside two carefully dimmed instruments.
Straightforward Setup, With Aircraft-Specific Boundaries User feedback describes the initial setup as notably simple, and the panel operates through a direct USB connection with Wingflex integration software. However, reports also show that behaviour may vary between aircraft and simulator versions, particularly when a specific function has not yet been implemented. It is therefore far less troublesome than custom wiring, but compatibility should still be checked by aircraft rather than assumed from the presence of an Airbus badge.
Pros and Cons
Pros
Cons
Four integrated sections reduce separate hardware requirements.
Reduced scale differs from full-size cockpit dimensions.
Dual-colour displays provide clear frequency information.
Aircraft support varies between simulator platforms.
Synchronized lighting complements other Wingflex Cube modules.
USB connection keeps desktop installation straightforward.
Angled enclosure improves visibility from seated positions.
Specifications
Specification
Value
Product
Wingflex A320 RMP Combo Cube
Scale
80% scale
Integrated Functions
RMP, ATC, TCAS and glareshield warning panel
Display Type
Dual-colour LCD screens
Display Background
Black
Viewing Angle
13 degrees
Connection
USB
Installation
Plug-and-play
Lighting
Synchronized brightness adjustment
Compatible Lighting Modules
Wingflex A320 FCU Cube and A320 EFIS Cube
Primary Use
Airbus flight simulation cockpit control
Wingflex A320 RMP Combo Cube Compatibility
Simulator
Compatible Aircraft
Status
X-Plane
ToLiss A319, A320, A330 and A340; Laminar A330
Supported
Microsoft Flight Simulator
Fenix A3xx; FlyByWire A320; iniBuilds A320, A321, A330 and A340; Aerosoft A340; Headwind A330
Supported
Prepar3D
FSLabs A32x
Supported
Microsoft Flight Simulator
FlyByWire A380
Not supported
Microsoft Flight Simulator
iniBuilds A350
Not supported
The panel connects through a single USB connection and can be used independently as a desktop controller. It also integrates with the Wingflex A320 FCU Cube and Wingflex A320 EFIS Cube, including synchronized brightness across the modules. Within the optional Cube console, the panels can share an internal USB hub and run to the computer through one external cable. No universal mounting compatibility with third-party cockpit frames is specified.
Aircraft support is integration-specific rather than universal. The panel supports ToLiss, Fenix, FSLabs, FlyByWire A320 and several iniBuilds aircraft, alongside the listed Laminar, Aerosoft and Headwind models. The FlyByWire A380 is not supported, and the iniBuilds A350 is not supported. Reports of differing behaviour between Microsoft Flight Simulator and X-Plane also show why pilots should use the published aircraft list instead of assuming every Airbus add-on will communicate correctly.
For gaming platforms, the RMP Combo Cube is intended for Windows PC flight simulation and works with supported aircraft in Microsoft Flight Simulator, X-Plane and Prepar3D. It relies on PC-side USB communication and Wingflex software for integration and firmware management. It is not listed as compatible with Xbox or PlayStation, so console editions of Microsoft Flight Simulator should not be treated as supported platforms.
Wingflex A320 FCU Cube brings Airbus autopilot management into a compact desktop format with full autopilot control functionality and a durable all-aluminum construction. Every heading adjustment, altitude selection and autopilot engagement is handled through tactile knobs and switches that encourage proper cockpit workflows instead of constant mouse clicks. The synchronized dimmer, adjustable backlighting and plug-and-play USB connection make it equally suited to quick evening flights or long IFR sessions, all without demanding the space of a full-size glareshield.
What Sets the Wingflex A320 FCU Cube apart?
Compact Airbus Autopilot Without Sacrificing Core Controls At 80% scale, the FCU Cube preserves the control layout Airbus pilots expect while significantly reducing the space required on a desktop. Independent reviews consistently note that this balance makes it much easier to fit beneath standard monitors than full-size panels, yet the spacing remains comfortable enough for deliberate heading, speed and altitude adjustments during demanding approaches.
Switches That Reward Every Input The AP1, AP2 and A/THR buttons use dedicated axial switches with a 2.5 mm travel, while the remaining controls employ Alps switches with a 2.0 mm stroke. Pilots frequently comment that well-designed tactile controls encourage proper use of the autopilot throughout a flight instead of relying on keyboard shortcuts once the novelty wears off.
Solid Metal Construction Built for Frequent Flying The aluminum housing and matching aluminum control knobs give the FCU Cube a reassuring weight that keeps it planted during repeated adjustments. Reviewers often highlight the rigid construction because it avoids the flex sometimes found in lighter desktop panels, making heading changes and rotary inputs feel consistent throughout longer flying sessions.
Designed to Grow Into a Complete Airbus Cockpit The FCU Cube works well as a standalone autopilot controller, but it is equally at home alongside the Wingflex EFIS Cube and RMP Combo Cube. Shared brightness synchronization creates a unified appearance across the glareshield, allowing cockpit builders to expand their setup gradually instead of replacing hardware every time a new module is added.
Pros and Cons
Pros
Cons
Aluminum housing provides excellent structural rigidity.
Reduced scale differs from full-size Airbus dimensions.
Autopilot switches deliver satisfying tactile feedback.
Designed specifically for Airbus aircraft families.
Plug-and-play USB installation minimizes setup time.
Synchronized lighting complements other Cube modules.
Broad Airbus simulator compatibility across major platforms.
Specifications
Specification
Value
Product
Wingflex A320 FCU Cube
Scale
80% scale
Primary Function
Airbus Flight Control Unit (FCU)
Construction
Aviation-grade aluminum body and knobs
Connection
USB
Installation
Plug-and-play
Autopilot Switches
AP1, AP2 and A/THR axial switches
Autopilot Switch Travel
2.5 mm
Other Button Switches
Japan Alps switches with 2.0 mm travel
Lighting
Adjustable backlighting with synchronized dimmer knob
Primary Use
Airbus flight simulation autopilot control
Wingflex A320 FCU Cube Compatibility
Simulator
Compatible Aircraft
X-Plane
ToLiss A319, A320, A330, A340; Laminar A330
Microsoft Flight Simulator
Fenix A3xx, FlyByWire A320 & A380, iniBuilds A320, A321, A330, A340, A350, Aerosoft A340, Headwind A330
Prepar3D
FSLabs A32x
The FCU Cube connects through USB and operates as either a standalone Airbus autopilot controller or as part of the broader Wingflex Cube ecosystem. It supports brightness synchronization with the Wingflex EFIS Cube and RMP Combo Cube, creating a consistent glareshield appearance. Its compact dimensions also make it easy to integrate into desktop cockpits or modular simulator builds without requiring a full-width Airbus panel.
The published compatibility list covers a broad range of Airbus simulations across the leading platforms. It supports Fenix A3xx, ToLiss Airbus aircraft, FlyByWire A320 and A380, multiple iniBuilds Airbus models, Laminar A330, Aerosoft A340, Headwind A330 and FSLabs A32x. Unlike the RMP Combo Cube, the FCU Cube also supports the FlyByWire A380 and iniBuilds A350, making it one of the most widely compatible Airbus autopilot panels in the Wingflex lineup.
The FCU Cube is designed for Microsoft Flight Simulator, X-Plane and Prepar3D on Windows PCs. It communicates through USB and works with supported Airbus aircraft using Wingflex software integration. It is not compatible with Xbox or PlayStation consoles, as dedicated USB cockpit peripherals of this type require PC-based simulator support.
Wingflex A320 EFIS Cube puts Airbus navigation and display management exactly where your hand expects it, combining full-function EFIS and glareshield controls with high-contrast dual-colour displays in a compact 80% scale design. From adjusting barometric pressure to selecting navigation modes, every rotary movement and button press feels deliberate and satisfying. The synchronized backlighting, integrated stand and simple USB connectivity make it an excellent addition to a desktop Airbus cockpit without demanding the space of a full-size flight deck.
What Sets the Wingflex A320 EFIS Cube apart?
More Than Just an EFIS Panel Unlike many desktop EFIS units that focus solely on navigation display controls, the EFIS Cube also integrates important glareshield functions such as Master Warning, Master Caution and CHRONO controls. Having these frequently used functions within easy reach creates a cleaner cockpit workflow and reduces the need to return to the virtual cockpit during busy phases of flight.
Compact Size Without Sacrificing Functionality The 80% scale design makes the panel much easier to accommodate on a typical desktop while preserving the familiar Airbus control layout. Buttons, rotary selectors and push-pull controls remain comfortably spaced, allowing quick adjustments without making the panel feel cramped. It strikes an effective balance between space efficiency and comfortable day-to-day operation.
Consistent Lighting Across Your Cockpit The synchronized brightness system keeps the displays and backlighting aligned with supported simulator lighting, creating a cohesive appearance throughout the cockpit. Combined with Airbus-style fonts and dual-colour displays, important flight information remains crisp and easy to read whether flying during bright daylight or on a dark nighttime arrival.
Built for Modular Cockpit Expansion The EFIS Cube performs perfectly as a standalone controller but is equally suited to growing cockpit projects. It integrates neatly alongside the Wingflex FCU Cube and RMP Combo Cube, allowing sim pilots to expand their Airbus setup gradually while maintaining a consistent appearance, matching lighting and a tidy desktop footprint.
Pros and Cons
Pros
Cons
Integrated glareshield controls reduce additional hardware.
Reduced scale differs from full-size Airbus dimensions.
Dual-colour displays remain easy to read.
Designed specifically for Airbus aircraft.
Synchronized lighting creates consistent cockpit appearance.
Plug-and-play USB connection simplifies installation.
Compact footprint fits comfortably beneath most monitors.
Specifications
Specification
Value
Product
Wingflex A320 EFIS Cube
Scale
80% scale
Primary Function
Airbus Electronic Flight Instrument System control panel
Integrated Functions
EFIS controls and glareshield controls
Display Type
High-contrast dual-colour LCD displays
Display Fonts
Airbus-style fonts
Controls
Buttons, rotary knobs and switches
Lighting
Fully synchronized adjustable backlighting
Connection
USB
Installation
Plug-and-play
Stand
Integrated low-profile desktop stand
Primary Use
Airbus flight simulation
Wingflex A320 EFIS Cube Compatibility
Simulator
Compatible Aircraft
X-Plane
ToLiss A319, A320, A330, A340; Laminar A330
Microsoft Flight Simulator
Fenix A3xx, FlyByWire A320 & A380, iniBuilds A320, A321, A330, A340, A350, Aerosoft A340, Headwind A330
Prepar3D
FSLabs A32x
The Wingflex A320 EFIS Cube connects through USB and can be used either as a standalone Airbus EFIS controller or alongside the Wingflex FCU Cube and Wingflex RMP Combo Cube. Its synchronized brightness allows all compatible Cube modules to maintain a consistent appearance, while the integrated stand provides a comfortable operating angle for desktop cockpits.
The published compatibility list covers a wide selection of Airbus aircraft across the major PC flight simulators. It supports Fenix A3xx, ToLiss Airbus aircraft, FlyByWire A320 and A380, multiple iniBuilds Airbus models, Laminar A330, Aerosoft A340, Headwind A330 and FSLabs A32x. The panel is designed specifically for Airbus aircraft and is not intended for Boeing flight decks or other aircraft with different EFIS layouts.
The EFIS Cube is compatible with Microsoft Flight Simulator 2020 and 2024, X-Plane 11 and 12 and Prepar3D on Windows PCs. It uses a USB connection with plug-and-play operation and is not compatible with Xbox or PlayStation consoles, as dedicated cockpit hardware requires PC-based simulator support.
La MOZA AY90 Force Feedback Yoke Base está diseñada para pilotos que quieren sentir cada ascenso, cada recogida y cada ráfaga directamente en las manos, en lugar de dejar que esas sensaciones desaparezcan dentro de un muelle. Con 4,2 Nm de par de alabeo y 90 N de Force Feedback push-pull, junto con un eje de alabeo de 180° con un recorrido de ±90°, ofrece fuerzas de control convincentes sin dejar de ser lo bastante compacta para instalaciones de escritorio o cockpit. Añade interruptores configurables, una llamativa iluminación RGB y una resistente carcasa de material compuesto, y tendrás una base para yoke preparada tanto para practicar circuitos de tráfico como para realizar largos vuelos de travesía.
¿Qué diferencia a la MOZA AY90 Force Feedback Yoke Base?
Force Feedback que cambia la forma de volar Muchos sistemas de yoke de este rango de precio siguen dependiendo de muelles o correas, pero la AY90 ofrece Force Feedback accionado por motores que permite al piloto sentir los cambios de carga del avión durante todo el vuelo. Desde las vibraciones de la pista y los ajustes de trimado hasta la resistencia aerodinámica en virajes pronunciados, los mandos comunican constantemente lo que está haciendo la aeronave, haciendo que el vuelo manual resulte mucho más participativo e informativo.
Tamaño compacto sin transmitir sensación de compromiso A pesar de ofrecer una fuerza considerable, la AY90 mantiene unas dimensiones compactas que funcionan igual de bien sobre un escritorio que en un cockpit dedicado. Muchos usuarios valoran que evite el volumen excesivo asociado habitualmente al hardware con Force Feedback, lo que facilita la instalación sin renunciar a un recorrido generoso de los controles ni a una sensación sólida y tranquilizadora durante maniobras exigentes.
Controles de cockpit integrados en la propia base En lugar de tratar el yoke únicamente como un eje de control, MOZA integra interruptores basculantes, deslizadores, mandos giratorios y un hat switch de cinco direcciones directamente en la base. Estas entradas adicionales reducen la dependencia del teclado y mantienen al alcance de la mano las funciones del avión más utilizadas, algo especialmente práctico al volar aeronaves de aviación general que requieren ajustes frecuentes de trimado, iluminación y aviónica.
Diseñada para crecer junto a tu cockpit El mecanismo Quick Release de aluminio y los puntos de montaje para ampliaciones hacen que la AY90 sea mucho más flexible que los sistemas de yoke con empuñadura fija. Permite cambiar rápidamente de yoke y deja espacio para instrumentos personalizados, pantallas y accesorios mediante adaptadores de terceros. Para quienes disfrutan mejorando gradualmente su cockpit, esta flexibilidad facilita considerablemente futuras actualizaciones sin necesidad de sustituir toda la base.
Ventajas y desventajas
Ventajas
Desventajas
El Force Feedback añade fuerzas de control convincentes durante todo el vuelo.
Compatible únicamente con PC.
La carcasa compacta se adapta a instalaciones de escritorio y cockpit.
Requiere una fuente de alimentación externa.
Los interruptores integrados reducen la dependencia del teclado.
El Quick Release admite futuras actualizaciones del yoke.
Especificaciones
Especificación
Valor
Producto
MOZA AY90 Force Feedback Yoke Base
Dimensiones
325 × 252 × 111 mm
Peso
4,5 kg
Material de la carcasa
Material compuesto reforzado con fibra de carbono
Material del Quick Release
Aleación de aluminio
Material de las tapas de los botones
ABS
Recorrido del eje de alabeo
±90° (180° en total)
Par de alabeo
4,2 Nm
Fuerza de cabeceo
90 N push-pull
Recorrido de cabeceo
95 mm
Encoder del motor
Encoder magnético de 15 bits
Hat switch de cinco direcciones
1
Interruptores basculantes
4
Interruptores deslizantes
2
Entrada de alimentación
12 V 6 A
Opciones de montaje
Abrazadera de escritorio, raíl de perfil y perfil de aluminio 80/20
Software de configuración
MOZA Cockpit
Accesorios incluidos
Adaptador de corriente, cable USB, manual de usuario y pegatina
Compatibilidad de la MOZA AY90 Force Feedback Yoke Base
Categoría
Compatibilidad
Plataforma
PC
Montaje
Abrazaderas de escritorio, raíles de perfil y perfiles de aluminio 80/20
Software de configuración
MOZA Cockpit
Conexión del yoke
Sistema Quick Release de aluminio de MOZA
Ampliación de accesorios
Admite instrumentos personalizados, pantallas y accesorios de terceros
La AY90 está diseñada para integrarse de forma ordenada en una amplia variedad de configuraciones de simulación de vuelo. Admite montaje sobre escritorio con las abrazaderas incluidas, cockpits construidos con perfiles de aluminio tipo 80/20 y el sistema Quick Release de aluminio de MOZA, que permite cambiar de yoke rápidamente y sin herramientas. Los puntos de expansión situados en la parte superior de la base también permiten añadir instrumentos, pantallas y accesorios personalizados a medida que crece el cockpit. No está diseñada para sistemas de simulación de vuelo en consola.
La configuración se gestiona mediante el software MOZA Cockpit, donde es posible personalizar cada interruptor, mando giratorio y función de iluminación. Las entradas programables facilitan la adaptación de la base tanto a pequeñas aeronaves de aviación general como a turbohélices de mayor tamaño. Como todos los controles pueden reasignarse libremente, la AY90 se integra cómodamente en configuraciones compactas de escritorio y en cockpits domésticos más elaborados.
La MOZA AY90 Force Feedback Yoke Base es un dispositivo exclusivo para PC compatible con Microsoft Flight Simulator, Microsoft Flight Simulator 2024, X-Plane, DCS World, War Thunder y otros simuladores de vuelo importantes para PC que admitan hardware con Force Feedback. No es compatible con consolas PlayStation ni Xbox, por lo que está especialmente indicada para entornos dedicados de simulación de vuelo basados en PC.
MOZA MFY Pro Yoke lleva al cockpit una geometría de control inspirada en los aviones comerciales, con un agarre amplio y seguro y suficientes entradas físicas para mantener las manos alejadas del teclado. Su pantalla táctil integrada de 4,3 pulgadas muestra datos de vuelo, listas de comprobación, información de tiempo y posiciones de los ejes, mientras que 26 señales de salida programables ofrecen espacio de sobra para perfiles de control específicos de cada aeronave. El material compuesto reforzado con fibra de carbono mantiene la estructura ligera pero resistente, y los thumbsticks con efecto Hall ofrecen un movimiento suave y deliberado, en lugar de sentirse como pequeños controles de gamepad añadidos a última hora.
¿Qué distingue al MOZA MFY Pro Yoke?
Una pantalla táctil que se gana su espacio en el cockpit La pantalla táctil de 4,3 pulgadas y 480 × 800 es mucho más que un simple toque de color decorativo en el centro del yoke. Puede mostrar datos de vuelo esenciales, listas de comprobación, un reloj de vuelo y lecturas de los ejes en tiempo real sin obligar al piloto a mirar entre varios monitores. Esto mantiene la información útil cerca de las manos y hace que el yoke resulte especialmente práctico en configuraciones compactas donde cada centímetro del panel de instrumentos ya ha presentado una queja formal.
Geometría de avión comercial con una estructura sólida y ligera La forma toma como referencia los aviones comerciales en lugar de los controles compactos de aviación general, proporcionando a ambas manos una posición de trabajo amplia y natural durante ascensos, aproximaciones y ajustes prolongados en crucero. Su construcción de material compuesto reforzado con fibra de carbono mantiene el peso en 1,2 kg y soporta cargas de hasta 30 kg. El resultado es un yoke que transmite solidez durante movimientos firmes sin añadir una tensión innecesaria a la base o a la estructura de montaje.
Más control sin recurrir al teclado Dos hat switches de ocho direcciones, dos thumbsticks con efecto Hall, bumpers y gatillos multifunción generan 26 señales de salida configurables directamente en el yoke. Los gatillos y thumbsticks pueden funcionar como ejes o botones a través de MOZA Cockpit, permitiendo controlar el timón, el movimiento de la cámara, el push-to-talk, el trim u otras funciones de la aeronave. Los distintos perfiles también hacen que cambiar entre aviones comerciales y aeronaves ligeras resulte mucho menos tedioso que reasignar todos los controles antes de cada vuelo.
Cambios rápidos sin holgura mecánica El Quick Release de aleación de aluminio permite desmontar o cambiar el yoke sin herramientas, manteniendo al mismo tiempo una conexión firme con una base MOZA compatible. Esto resulta especialmente útil para pilotos que alternan entre configuraciones de aviones comerciales, aviación general y controles especializados. Un Quick Release solo es útil cuando no introduce movimiento en el punto de conexión, y su diseño rígido está pensado para mantenerse estable durante correcciones fuertes de alabeo y bajo las cargas del Force Feedback.
Ventajas y desventajas
Ventajas
Desventajas
La pantalla táctil integrada mantiene la información de vuelo directamente a la vista.
Las funciones de la pantalla táctil dependen de la compatibilidad del software y del firmware.
Las 26 señales programables permiten crear perfiles de control complejos para distintas aeronaves.
La forma de avión comercial es menos adecuada para aeronaves tradicionales de aviación general.
Los thumbsticks con efecto Hall proporcionan una entrada de eje suave y sin contacto.
La ligera carcasa de material compuesto soporta cargas de control considerables.
Especificaciones
Especificación
Valor
Nombre del producto
MOZA MFY Pro Flight Yoke
Dimensiones
142,5 × 202 × 313 mm
Peso
1,2 kg
Material de la carcasa
Material compuesto reforzado con fibra de carbono
Material del Quick Release
Aleación de aluminio
Material de las tapas de los botones
ABS
Carga máxima soportada
Hasta 30 kg
Tamaño de la pantalla
4,3 pulgadas
Resolución de la pantalla
480 × 800
Total de señales de salida
26
Hat switches de 8 direcciones
2
Thumbsticks con efecto Hall
2
Bumpers
2
Gatillos
2
Iluminación
Iluminación RGB personalizable con 16 millones de colores
Software de configuración
MOZA Cockpit
Accesorios incluidos
Manual de usuario
Compatibilidad del MOZA MFY Pro Yoke
Categoría
Compatibilidad
Conexión a la base del yoke
Sistema Quick Release MOZA de aleación de aluminio
Software de configuración
MOZA Cockpit
Controles asignables
Botones, ejes, gatillos, thumbsticks y asignaciones de perfiles
Funciones de la pantalla
Información PFD, listas de comprobación, reloj de vuelo y lecturas de los ejes
Perfiles de control
Varios perfiles de asignación específicos para distintas aeronaves
El MFY Pro está diseñado para conectarse mediante el sistema Quick Release MOZA de aleación de aluminio, lo que permite una instalación sin herramientas en una base de yoke MOZA compatible. Su forma inspirada en aeronaves comerciales se adapta especialmente bien a configuraciones de aviones de pasajeros y transporte, mientras que las 26 señales de salida programables también pueden configurarse para aviones turbohélice y aeronaves de aviación general. No funciona como un controlador independiente y, por tanto, necesita una base compatible para proporcionar el movimiento de alabeo y cabeceo.
Las funciones adicionales se configuran mediante el software MOZA Cockpit, incluidas las asignaciones de botones, el comportamiento de los ejes, la iluminación RGB, las vistas de la pantalla táctil y los distintos perfiles de asignación. Los dos thumbsticks con efecto Hall y los gatillos multifunción pueden configurarse como ejes o botones, por lo que resultan adecuados para controlar el timón, mover la cámara, ajustar el trim, gestionar las comunicaciones o accionar funciones de aviónica. El yoke no utiliza una conexión mecánica universal y no está diseñado para instalarse directamente en bases de yoke de otros fabricantes.
El MFY Pro forma parte de un sistema de control para simulación de vuelo basado en PC y depende de la base MOZA conectada y del software MOZA Cockpit para su configuración. Sus controles programables pueden asignarse en simuladores de vuelo para PC que admitan la configuración convencional de botones y ejes. No está diseñado como controlador para PlayStation o Xbox, y las funciones de la pantalla integrada requieren software compatible para PC en lugar de funcionar de forma independiente del simulador.