Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller

Product Details
Customization: Available
Application: Industrial Machinery, Remote Control
Battery Type: Aa Battery
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  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
  • Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
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Basic Info.

Model NO.
B16FK
Code Type
None
Color
Red
Encode Mode
None
Frequency
400-470MHz
Material
Plastic
Transmission Distance
50-100m
Type
Button
Universal
Not Universal
Voltage
3.6V-4.5VDC
Transport Package
Carton
Specification
255mm x 62mm x 50mm
Trademark
OHM
Origin
China

Product Description

Product Parameters
Radio:
Frequency range: 400-470MHz
Transmission rate: 9600bit/s
Transmitted power: ≤10mW
Frequency tolerance: 4ppm
Adjacent channel rejection: >50dB
Modulation mode: GFSK (Gaussian Frequency Shift Keying)
Channel spacing: 25Hz
Receiving sensitivity: -115dBm
Check method: CRC-1TM
Response time: ≤20ms

Physical Data:
Transmitter weight: 400g (without battery)
Transmitter size: 255mm x 62mm x 50mm (length x width x height)
Transmitter shell material: high-strength engineering plastics
Receiver weight: 2kg
The overall size of the receiver: 298mm x 206mm x 75mm (length x width x height)
Receiver installation size: 184mm x 88mm
Receiver installation aperture: Φ6mm
Receiver shell material: high-strength engineering plastic
Working temperature range: -25ºC-70ºC
Working humidity range: 0-97%RH

Safety Standard:
JB/T8437-2015
EN ISO 13849 Class D
Radio Transmission Equipment Type Approval Certificate (State Radio Regulatory Commission of the People's ***)
Crane remote control device safety qualification certificate (Liao'an Institute)

Processing Units:
Real-time performance: Implement control technology
Frequency control: PLL (phase-locked loop)
Special address code: 32bit>4,200,000,000
Control distance: >80m
Transmitter form: button type, 10 double-speed buttons
Transmitter power supply: 3.6V-4.5VDC (3 AA batteries or rechargeable batteries)
Transmitter working current: 50mA
Transmitter low voltage alarm: sound and light alarm (3.3-3.5VDC)
Transmitter failure alarm: Various combination of sound-light alarms
Power saving protection: Auto power-off (setting range: 0-30 minutes)
Transmitter antenna: Internal
Receiver power supply: 42-250VDC/10-30VDC/380VAC optional
Rated power of receiver: ≤6W
Receiver fault display: LED for indication of operating/fault conditions
Output mode: fully airtight relay output; *non-standard customizable PROFIBUS-DP, CANOPEN
Relay contact capacity: 4A/250VAC
Output interface: "Output terminals (including pipe fittings);*Non-standard optional HAN16,25 heavy connectors
Receiver antenna: external

Standard Accessories:
Transmitter lanyard: 1
Receiver antenna: 1
Receiver anti-vibration pad: 4
Receiver mounting screws: 4 sets
Instruction manual: 1 set (Chinese and English)

B16FK Description:
Ergonomic design;
Push-Button patent technology, comfortable feel, and clear step;
Life cycle for push buttons: above 2,000,000 times;
High-speed CPU, response time<=20ms;
Secondary packing adhesive technology ensures shatter and falling-down resistance;
Automatically shutdown when being impacted and three-level safety guarantee;
Smart key for perfect replacement of spare system;
Special holder for transmitter for easy management.
Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio ControllerOhm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio ControllerOhm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio ControllerOhm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio ControllerOhm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller
ABOUT US
OHM (Chongqing) Electronics Technology Co., Ltd.


Founded in August 2013, OHM is a high-tech enterprise specializing in industrial wireless remote control equipment. We integrate R&D, production, sales, and after-sales support to deliver unparalleled products and services. With a production base in Chongqing and a sales and service center in Shanghai, OHM is dedicated to providing comprehensive consulting and support for industrial wireless remote control technology.
As a trailblazer in the industrial wireless remote control sector, OHM upholds the principle of 'creating brilliance, only quality.' Our mission is to offer safe, reliable, and superior industrial wireless remote control products. We are committed to reducing labor, boosting efficiency, and enhancing the safety and convenience of operations for users across various industries, including construction, forestry, mining, and more.
OHM aims to become the most influential brand in both domestic and global markets for industrial wireless remote control products, cementing our position as the nation's premier choice.
Ohm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio ControllerOhm B16fk, Remote Control Industrial Crane Wireless Transmitter System Machinery Radio Controller

Industrial Remote Control and Its Advantages

While remote controls are ubiquitous in households, industrial remote controls are specialized devices that are less familiar to the general public. These controls use radio transmission to manage industrial machinery remotely.

An industrial remote control comprises a handheld or waist-mounted transmitter and a receiver fixed to the equipment. The operator inputs commands via the transmitter's panel. These commands are then digitized, encoded, and encrypted for wireless transmission to the receiver, which decodes and converts them back into control signals to operate various machinery.

Industrial remote controls demand higher standards for accuracy, sensitivity, signal continuity, anti-interference, remote control range, and resistance to environmental factors compared to consumer-grade remote controls. These robust features make them ideal for harsh environments where consumer remote controls would fail.

Commonly used in industries like metallurgy, shipbuilding, container terminals, warehousing, machinery manufacturing, chemicals, papermaking, construction, and engineering, industrial remote controls enable efficient, safe, and flexible operation. They allow effective control within a radius of 100 meters or more, overcoming obstacles and ensuring visibility for the operator, which significantly enhances safety and productivity.

What are the ADVANTAGES of industrial remote controls?
★ Slash Manufacturing and Maintenance Costs: The transition to remote control systems, replacing traditional cabs, is no longer a futuristic dream but a standard in modern production processes, offering significant cost reductions.
★ Enhance Safety and Reliability: By eliminating the command link, we minimize misunderstandings due to improper commands. Operators gain a more intuitive view of hoisted items, ensuring safer operations. This setup mitigates the risks associated with cab operations during inclement weather and prevents accidents stemming from miscommunication in high-altitude settings.
★ Optimize Operating Environments: Operators can now select safe vantage points, avoiding areas with poor visibility and severe pollution. This innovation prevents exposure to harmful gases, significantly improving workplace safety.
★ Maximize Human Resource Efficiency: For example, in bridge crane operations, a single person can now manage the entire process—from operation to mooring, hanging, and unloading—eliminating the need for additional command roles.
★ Boost Work Efficiency: Empowered by the ability to make independent judgments, operators achieve greater accuracy and continuity in their tasks. Freed from the constraints of upper and lower cabs and operating lines, they avoid the physical discomfort of extreme temperatures, thus enhancing both morale and operational output.

With the pervasive adoption of industrial remote controls across various sectors, their array of benefits has become increasingly evident.

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