Data Sheet for Joysticks Series TRY100 Finger Joystick Good cost/performance ratio Shallow installation depth < 26 mm Service-friendly due to connectors Optional with redundant Hall sensors Available interfaces include USB, CAN-bus J1939 and CANopen Ideally suited for applications in CCTV, robotics, medical technology and audio/video productions The TRY100 is the all-rounder in the field of finger joysticks because of the extensive selection of handles, limiters and output options. It offers conventional handle designs as well as modern look & feel variants, in addition analogue outputs and digital interfaces. Thus the joysticks can be optimized for almost all possible applications. Technical Data Sensor technology Supply Voltage Voltage in Center Position* Return to Center Accuracy* Hall Effect Analogue versions: 5.0 ± 0.5 VDC, transient free Versions with voltage regulator: 8 to 35 VDC (unipolar) / 11 to 35 VDC (bipolar) USB versions: 5.00 VDC (via bus) CAN versions: 7 to 35 VDC 2.5 V ±200 mV (valid for output voltage span of 0 to 5 V without load) Output Linearity* Output Impedance* Load Resistance* Expected Mechanical Life** Output Voltages* Supply Current Angle of Movement X-, Y-Axis / Z-Axis 2 Ohm Min. 1 kOhm, recommended > 100 kOhm 5 million cycles** 0 to 5 V / 0.5 to 4.5 V / 0.25 to 4.75 V / for others see description on page 2 typ. 40 mA / max. 50 mA (3 axes) 36° (±18° from center) / 60° (±30° from center) Operating Force X-Y-Axis Handles 4, 6, 9, A, 7, 1, 3, 5: typ. 2.8 N / break out force 1.3 N / max. applied: 200 N Handles B, C, D, E: typ. 5 N / break out force 4 N / max. applied: 200 N 0.12 Nm / break out torque 0.09 Nm / max. applied: 2.5 Nm 200 N -40°C to +85°C / -40°C to +85°C Up to IP67 (depending on handle type) 1.17 to 3.17 mm (max. 1.6 mm for rear mount option) EN61000-4-3, level 4 (30 V/m, 80 MHz ~ 2 GHz swept freq., 80% AM @1 kHz) EN61000-6-3:2001 EN61000-4-2, level 3 (±6 kV contact, ±8 kV aerial discharge) Operating Torque Z-Axis Max. vertical Load to Mechanism Operating / Storage Temperature Above Panel Sealing Panel Thickness EMC Immunity Level (V/M) EMC Emissions Level ESD *Valid only for analogue voltage output. Only valid for the standard variants with analogue output. The output voltage is ratiometric to the input voltage. We therefore recommend using low-noise, stabilized voltage sources. **Valid only for versions without z-axis and without pushbuttons Material Information Shaft Material Stainless steel Rubber Boot Material: Handle Materials Glass filled nylon (depends on handle variant) Housing Material Glass filled nylon MEGATRON Elektronik GmbH & Co. KG ▪ Hermann-Oberth-Strasse 7 ▪ 85640 Putzbrunn / Munich Tel.: +49 89 46094-0 ▪ www.megatron.de ▪ [email protected] Specifications are subject to change without notice
Open the catalog to page 1Data Sheet for Joysticks Series TRY100 Finger Joystick Please contact us for information regarding stock articles, delivery times and minimum order quantities. Order Description / Options Description Series Axis: 2 Axes, with pushbutton in handle 3 Axes 3 Axes, with pushbutton(s) in handle 2 Axes 1 Axis 1 Axis with pushbutton in handle Rubber boot Return Mechanism: Spring return Handle 4, for 1-2 axis, 1 pushbutton, IP55 Handle 6, for 3 axes, low profile, w/o pushbutton, IP55 Handle 9, for 3 axes, 1 pushbutton, IP55 Handle A, for 3 axes, 2 pushbuttons, IP55 Handle E, for 3 axes, 2 pushbuttons,...
Open the catalog to page 2Data Sheet for Joysticks Series TRY100 Finger Joystick For higher quantities or on-going demand, additional options are available Redundant output signals (inverted or parallel) Increased return-to-center spring tension Voltage regulator Customer-specific cables Limiters Square Square “guided feel“ (1) Round “guided feel“ (1) “guided feel“ still allows the joystick handle to be deflected omni-directionally, but as the operation force needed for the main axes is slightly below the force needed for diagonal deflection the resulting impression is that of a „guided movement“. (1) Connection description...
Open the catalog to page 3Data Sheet for Joysticks Series TRY100 Finger Joystick USB specifications (output options 5-6) Supply voltage Max. current consumption: 70 mA USB version: Operating systems: Windows 7, Windows 8.1, Windows 10, (Linux depending on kernel configuration) Cable outlet USB mini B connector (at housing) Cable (included) USB cable (length approx. 198 cm, min. bending radius 34 mm) with USB A plug to USB mini B plug. The USB controller is integrated in the joystick housing. The joystick is powered via the interface cable. Most Windows and Linux versions recognize the device without additional drivers....
Open the catalog to page 4Data Sheet for Joysticks Series TRY100 Finger Joystick Cable configuration CANBus versions (output options 7-9) TRY100 series joysticks with CAN bus output (output options 7-9) are delivered with a JST B6B-PH-S (LF) (SN) connector in combination with a 56 cm cable harness (AWG22, PTFE, JST PHR-6 , stripped ends, tinned). The table on the left shows the assignment / functions of the individual pins on the housing or the different strands. +X Cable harness with connector JST-PHR-6 Housing dimensions of the CANBus versions (output options 7-9) MEGATRON Elektronik GmbH & Co. KG ▪ Hermann-Oberth-Strasse...
Open the catalog to page 5Data Sheet for Joysticks Series TRY100 Finger Joystick Technical data CAN J1939 version (output option 7) The TRY100 series can be configured with a maximum of 3 proportional axes and with a maximum of 2 buttons. The axis information and button data are transmitted via a CAN 2.0B-compatible physical interface. Two additional wires allow the address of the controller to be configured. The controller transmits its information in accordance with the SAE J1939-71 protocol. For the exact structure of the data packages, see the tables on the next page. Transmission repetition rate Terminal resistor...
Open the catalog to page 6Data Sheet for Joysticks Series TRY100 Finger Joystick EJM1 data field configuration (output option 7) Start position (BYTE/BIT) Length (BITS) Function Redundant data X axis, status neutral position * Redundant data X axis, status left position (minimum value) * Redundant data X axis, status right position (maximum value) * Redundant data X axis, axis position * Redundant data Y axis, status neutral position * Redundant data Y axis, status reverse position (minimum value) * Redundant data Y axis, status forward position (minimum value) * Redundant data Y axis, axis position * Z axis primary data,...
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