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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR

RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR
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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR

Product catalog summary
Product Description: The HDA446T is a high-precision dynamic tilt sensor by RION Technology, designed for environments with motion or vibration. It measures roll, pitch, and azimuth using built-in acceleration and gyroscope sensors, and employs the Kalman filter algorithm for real-time data measurement. It supports dual CAN modes (CAN2.0A/CAN2.0B) and is resistant to electromagnetic interference.
Main Features: The sensor offers a roll angle range of ±180°, pitch angle ±90°, and azimuth angle ±180°, with a resolution of 0.01°. It operates in temperatures from -40℃ to +85℃ and supports a DC voltage input of 9~36V. It is IP67/IP68 rated, suitable for high-vibration industrial environments.
Specifications: The sensor provides static accuracy of ±0.05° and dynamic accuracy of ±0.1° for roll and pitch. It includes a gyroscope range of ±300°/s and an acceleration range of ±4G/±16G. The startup time is ≤3.5S with a response time of 0.01S. It complies with electromagnetic compatibility standards EN61000 and GBT17626.
Electrical Parameters: Operates on a supply voltage of 9-36V with a working current of 40mA at 12V, within an operating temperature range of -40℃ to +85℃.
Ordering Information: Available with different configurations, including single or double connectors, and varying protection levels. Customizations such as PCBA-only options are available.
Mechanical Parameters: Features an M12 aviation plug connector, IP67 protection, and a frosted aluminum alloy shell. Installed using four M4 screws.
Working Principle: Utilizes a capacitive miniature pendulum principle, where earth's gravity affects the pendulum, altering capacitance to measure tilt.
Installation and Connection: Follows the NED coordinate system and uses a right-handed axis system. Electrical connections are defined for both male and female wiring configurations.
Communication Frame Format: Supports CAN2.0 protocol with options to modify node numbers, set baud rates, and configure output cycles. Data frames include angle, acceleration, and gyro frames, with specific formats for request and response messages.
Overview: This document provides technical specifications and procedures for interpreting data from the HDA446T CANBUS Type High Precision Dynamic Tilt Sensor, detailing data format for acceleration and gyroscope measurements, and output modes for data transmission.
Data Format:
  • Acceleration Data: Transmitted in a sequence of bytes, with each axis's acceleration as a 16-bit signed integer, converted to decimal and divided by 1000.
  • Gyroscope Data: Similar to acceleration data, represented by bytes for each axis, converted to decimal and divided by 100.
Data Output Modes:
  • Single-frame Angle Output: Default mode with periodic angle frame output.
  • Double-frame Angle Plus Indication Output: Outputs two frames continuously by cycle.
  • Three-frame Angle Gyro Plus Indication Output: Outputs three frames continuously by cycle.
Message Format: Each message consists of a CAN-ID followed by eight bytes of data, varying slightly depending on the output mode, generally including data for each axis and additional bytes for temperature or indication.
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Catalog excerpts

RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-1

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR HIGH PRECISION DYNAMIC TILT SENSOR

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-2

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR ○ Revised: 2024-12-26 Note: Product functions, parameters, appearance, etc. will be adjusted with the technical upgrade, please contact the company for pre-sales business confirmation when purchasing. Disclaimer This product is developed exclusively for commercial applications and is prohibited from being used for illegal purposes, such as military activities, research related to nuclear, chemical, or biological weapons, or any other actions that violate laws and regulations. It is strictly forbidden to engage in activities related to goods...

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-3

► PRODUCT DESCRIPTION The HDA446T product is a new generation of digital MEMS dynamic tilt sensor launched by RION Technology, which can measure the attitude parameters (roll, pitch, and azimuth) of a moving carrier and is suitable for tilt measurement in motion or vibration states. The HDA446T is equipped with built-in acceleration and gyroscope sensors, and integrates the Kalman filter algorithm to measure real-time motion data of the carrier under motion or vibration conditions. The product has dual CAN (CAN2.0A/CAN2.0B) modes and strong scalability. This product adopts non-contact measurement...

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-4

HDA446TCANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-5

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR ► ELECTRICAL PARAMETERS E.g: HDA446T-C2-OB : Standard industrial scenario / Horizontal Installation / CAN 2.0A output interface / On-board/ship Application. Note: 1. This product is a double connector (male and female) by default. If you need a single connector (male), you need to add S before ordering, for example: HDA446T-C2-OB-S; 2. The default protection level of this product is IP67. If a higher protection level is required, for example: HDA446T-C1-OB-8; 3. If only PCBA board is needed, add PCBA after selection, for example: ► MECHANICAL...

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-6

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR HDA446T follows the NED coordinate system, right-handed. According to the rotation sequence of ZYX, when the positive direction of the X axis is directed to the front of the carrier, the rotation angle around the Z axis is the heading angle, the rotation angle around the Y axis is the pitch angle, and the rotation angle around the X axis is the roll angle. ► ELECTRICAL CONNECTION Definition of male wiring Installation size: 35 x 28mm Mounting screws: 4 M2 screws

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-7

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR Shell size of double connector Shell size: 96 × 47 × 22.5mm Installation size: 64 × 39 × 6.5mm Mounting screws: 4 M4 screws Shell material: aluminum alloy Size of single connector Shell size: 83 × 47 × 22.5mm Installation size: 64 × 39 × 6.5mm Mounting screws: 4 M4 screws Shell material: aluminum alloy

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-8

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR Size of corrosion-resistant IP68 protection direct outlet product Shell size: 72 × 56 × 24.5mm Installation size: 64 × 39 × 6.5mm Mounting screws: 4 M4 screws Shell material: 304 alloy steel ▶ WORKING INDICATOR LIGHT DESCRIPTION 1. The working indicator light flashes after the product is powered on; 2. The working indicator light is on when the product has data to send.

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-9

HDA446T CANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-10

► COMMUNICATION FRAME FORMAT CAN2.0 Protocol support 2.0A(11bit ID)and 2.0B(29 bit ID) 1) Modify the node number. (node range: 0x01-0x7F), the default node number is 0x05 The lower 3 bits of the fifth byte Mask are valid. Mask (binary: 0B00000cba). a: indicates the angle frame, 1: turn on the output, 0: turn off the output. b: Represents the acceleration frame, 1: turn on the output, 0: turn off the output. c: Represents the gyro angular velocity frame, 1: turn on the output, 0: turn off the output.

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-11

HDA446TCANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR The host sends: 40 30 10 00 07 00 00 00, the angle frame, acceleration frame and gyro angular velocity frame output will be turned on. The host sends: 40 30 10 00 05 00 00 00, will turn on the angle frame and gyro angular velocity frame output, and turn off the acceleration frame output. 5) Azimuth clear zero Request message format There are eight bytes of data behind CAN-ID. The first two bytes are XL, XH is the inclination of the X axis (RoLl roll angle), the third and fourth bytes are YL, and YH is the Y axis (PITCH pitch angle). The inclination...

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-12

The result is the angle. Eg , XL=0x26 , XH=0x15 , angle is 54.14° XH XL 0x15 0x26 B: Acceleration data frame There are eight bytes of data behind CAN-ID. The first two bytes are XL, XH is the X-axis acceleration, the third and fourth bytes are YL, YH is the Y-axis acceleration, and the fifth and sixth bytes ZL and ZH are the acceleration of the Z axis; the acceleration is int16_t, the low byte is first, the high byte is last, and then divide by 1000 to get the acceleration floating point number. The seventh byte is reserved. Example of acceleration conversion: Flag=0x01, which indicates the horizontal...

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-13

HDA446TCANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR C: Gyro data frame

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RION HDA446T CAN2.0A_B OUTPUT DYNAMIC TILT SENSOR-14

HDA446TCANBUS TYPE HIGH PRECISION DYNAMIC TILT SENSOR

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