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LRF1000A 1000 m 905 nm ToF Laser Rangefinder Module for Handheld Devices, Surveying Instruments and UAV Platforms

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Product Model:LRF1000A

The LRF1000A is a 905 nm ToF laser rangefinder module that measures 5–1000 m on building-type targets with ±0.7 m up to 200 m and ±(0.7 + 0.0004·d) m beyond, 0.1 m resolution and ≥98% accuracy rate. It runs from 3.3–5 V DC with ≤0.85 W power, weighs 10 g in a Φ17 × 37.2 mm housing and outputs data over a UART (TTL_3.3 V) interface using ERDI’s standard command protocol, making it ideal for handheld rangefinders, surveying instruments, UAV distance sensing and compact automation devices.

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Senior Engineer, Yilin

Tel : +86 28 81076698

WhatsApp : +86 18000520222

ERDI Pre-Sales Notice & Customer Information

(Please Read Before Purchase or Inquiry) Thank you for your interest in ERDI TECH LTD. We are committed to providing customers worldwide with high-precision, high-reliability laser products and technical solutions. Before placing an order, please read the following information carefully to better understand our company, services, and purchasing policies.

  • About ERDI​

     ERDI is a professional manufacturer specializing in the research, development, and production of laser modules, laser measurement systems, and related optoelectronic components.
    We integrate design, R&D, production, and sales, with a focus on safety, innovation, and precision.

    Our products are widely used in:

    • Industrial measurement and alignment systems
    • Scientific research and educational applications
    • Optical instrumentation and laser testing
    • Consumer and OEM laser solutions

    ERDI operates certified facilities and maintains rigorous quality control to ensure that every product meets international standards.

  • Global Presence and Trade Reliability​

    ERDI has established official stores on leading global platforms including Amazon, Alibaba International Station, and Made-in-China.com, allowing customers worldwide to purchase safely and conveniently. We are a verified and trusted factory, not a reseller, and we ensure that all transactions, quotations, and logistics follow transparent and secure trade practices.
  • Sample and Lead Time​

    To help customers evaluate our products and performance, we offer sample orders for most product categories.

    • Standard samplesare typically delivered within one week after order confirmation.
    • Customized modulesmay require additional processing time depending on design complexity and optical requirements.
      Our logistics team will provide real-time tracking and documentation for every shipment.
  • OEM / ODM / OBM Services​

     ERDI supports full-range customization including:

    • OEM (Original Equipment Manufacturing)– Products manufactured under your brand or part number.
    • ODM (Original Design Manufacturing)– Custom optical or mechanical design based on your specifications.
    • OBM (Original Brand Manufacturing)– Private-label solutions with our in-house R&D and branding support.

    We provide technical co-development, logo engraving, packaging customization, and batch production services to meet both small-scale and mass-production requirements.

  • Technical Support and Service System​

    ERDI maintains technical service centers and distribution partners worldwide, enabling rapid customer response.
    We provide:

    • Comprehensive technical consultation and project evaluation
    • One-on-one on-site technical assistanceat the customer’s facility when required
    • Lifetime after-sales supportand technical maintenance guidance

    Each laser product is delivered with a full set of user documentation, including Laser Module Usage Precautions and Safety Guidelines.

  • Quality Assurance and Warranty​

    ERDI implements strict multi-stage quality control throughout production:

    • Incoming material inspection
    • Optical alignment verification
    • Output power and wavelength calibration
    • Safety and durability testing under standard conditions

    We guarantee that all products leaving our factory meet design and performance specifications.
    Except for man-made damage, we will replace any defective unit within one year free of charge and provide lifetime maintenance support thereafter.

    For more details, please refer to our After-Sales Service & Warranty Policy.

  • Important Safety Reminder

    Before using any ERDI laser product:

    • Carefully read and follow the Laser Module Usage Precautions.
    • Always use appropriate laser protective eyewear.
    • Operate only in controlled environmentsunder trained personnel supervision.
      Failure to observe safety instructions may result in injury or equipment damage.
  • Communication and Order Confirmation​

    To ensure efficient service, please confirm the following before placing an order:

    • Product model, wavelength, output power, and working voltage/current
    • Whether you require custom mechanical dimensions, optical configurations, or driver circuitry.
    • Packaging, labeling, and shipping preferences.
    • Any specific export or compliance documentation needed for your country.

    Our sales engineers will provide an official quotation and delivery schedule upon confirmation of all specifications.

  • Final Statement​

    ERDI upholds the values of safety, integrity, and precision. We sincerely welcome customers from all over the world to visit our facilities, discuss cooperation, and experience our advanced laser technologies firsthand. Your satisfaction and trust are our highest pursuit.

After-Sales Service & Warranty Policy

We strive to provide high-quality laser modules and excellent customer service. Please read the following terms carefully to understand your rights and our responsibilities.

  • Product Origin and Quality Assurance​

    • All ERDI products are manufactured directly by the factory, ensuring consistent quality and full traceability.
    • We provide a diverse rangeof laser modules and laser distance measurement modules to suit various industrial, educational, and research applications.
    • Every product is tested and inspectedbefore shipment to guarantee that it meets specification standards.
  • Return and Exchange Policy​

    • Customers may request a return or exchange within 30 daysof receiving the goods, provided that:
    • The product remains in original condition, unused, and without affecting secondary sales.
    • A valid reason for return or exchangeis provided.
    • Upon approval, we will replace or refund according to our service policy.
    • The buyer is responsible for shipping costsassociated with returns, exchanges, or repairs, based on international freight cost rules.
  • Warranty Coverage​

    • The main functional componentsof ERDI laser products are covered by a 2-year warranty from the date of purchase, excluding cosmetic appearance.
    • Within the first 12 months, if a verified manufacturing defect occurs, we will replace the item with a brand-new productfree of charge.
    • Replacement of cosmetic or housing components (e.g., enclosure, labeling, or exterior parts) may incur a reasonable cost feebased on material expenses.
    • Warranty does not cover:
    • Damage due to misuse, improper installation, or modification.
    • Operation outside the recommended power supply or temperature range.
    • Accidental or physical damage, including drops, fire, or liquid ingress.
  • Receiving Inspection​

    • Upon delivery, please inspect the parcel immediately in the presence of the courier.
    • If there is any quantity discrepancy, visible damage, or mismatch, do not signthe delivery receipt.
    • Once the package is signed for (by you, family, or colleagues), it is considered accepted as correct and complete.
  • Customer Support

    For technical assistance, warranty claims, or safety inquiries, please contact our official service team through the contact information listed on erdicn.com.
    Our support engineers will provide professional guidance on installation, alignment, safety, and maintenance procedures.

Laser Module Usage Precautions

(Important – Buyers Must Read Before Use)

Operating laser modules involves potential optical and thermal hazards. To ensure safe and proper use, please read the following precautions carefully before powering on your laser product.

  • General Safety Warnings​

    • Invisible Radiation Warning– Some laser modules emit infrared (IR) or ultraviolet (UV) radiation that is invisible to the human eye. Never assume the laser is malfunctioning simply because you cannot see the beam. Always confirm that the power is disconnected before inspecting the module.
    • Do Not Look Directly into the Laser Aperture– Even when wearing certified laser safety goggles, never stare directly into or near the beam exit of a working laser module.
    • Avoid Reflected Beams from High-Power Lasers– Reflection from Class IV lasers (output power > 500 mW) can cause severe and permanent eye damage. Always wear wavelength-specific safety goggles when operating or aligning high-power laser systems.
    • Keep Away from Flammable Materials– Do not place flammable or explosive items (such as paper, cloth, leather, or plastics) in the laser path. Black or dark-colored materials absorb laser energy more easily and may ignite. (Exception: controlled material-burning experiments with proper fire protection.)
    • Avoid Direct Human Exposure– Class IIIa or higher lasers (≥ 5 mW) can burn skin or eyes. Never point a laser beam at any part of a person’s body.
    • Restrict Access to Trained Personnel Only – Keep all laser devices out of reach of untrained individuals, children, and pets.
  • Optical Path and Reflection Safety​

    • Never Aim Toward Glass Surfaces– Ordinary glass reflects roughly 4 % of incident light, which can redirect dangerous laser radiation into your eyes. Avoid operating lasers in front of mirrors or reflective windows.
    • Working Plane Awareness– When setting up an experimental platform, note the laser emission height. Do not position your head or eyes near this level during operation. Lenses and mirrors may reflect or refract light unexpectedly. Always align optical components downward or horizontally—never angle a beam upward.
    • Remove Reflective Accessories– Watches, jewelry, and other shiny objects can reflect laser light unpredictably. Remove them before use.
    • Infrared Beam Detection– IR lasers (wavelength > 800 nm) are almost completely invisible. Use a beam-viewing card, IR detector, or up-conversion screen to visualize the beam path safely.
    • Visual Brightness Misjudgment– Some wavelengths (below 430 nm or above 700 nm) appear much dimmer than their actual power output. Do not rely on visual brightness to judge beam intensity.
    • Pulsed Laser Caution– Pulsed lasers can have extremely high peak power even at modest average power levels. Verify that all optical elements and samples in your experiment exceed the laser’s damage threshold before exposure.
    • Prohibited Uses– It is strictly forbidden to point laser beams at moving vehicles, aircraft, or any area where light could distract or endanger others.
    • End-of-Beam Safety Stop– Always place a black anodized or matte metal plate at the end of your optical path to absorb residual energy and prevent laser leakage into surrounding areas.

    Low-Power Modules – ERDI laser modules rated below 1 mW are considered eye-safe under normal operating conditions and can be used without hazard when handled properly.

  • Recommended Protective Measures​

    • Protective Eyewear– Always wear certified laser safety goggles designed for the specific wavelength and power level of your module.
    • Appropriate Clothing– Light-colored or white long-sleeved clothing reduces the risk of heat absorption or ignition if stray laser light contacts the fabric.
    • UV Laser Protection– For ultraviolet lasers, apply broad-spectrum sunscreen (SPF 30 or higher) to exposed skin areas to minimize UV radiation effects.
    • Environmental Safety– Operate lasers in a controlled laboratory or industrial environment with minimal reflective surfaces. Ensure that all personnel nearby are informed of ongoing laser use and have received proper training.

TECHNICAL SPECIFICATIONS

Performance Indicators

Eye safety class

Class 1(IEC 60825-1)

Laser wavelength

905±10nm

Laser divergence angle (typical)

4×6mrad

Receiver field of view

~8mrad

Maximum range

(Visibility ≥ 6Km)

≥1000m @70% reflectivity, building targets

Minimum range

5m

Ranging accuracy

(Construction target)

d≤200m:±0.7m

d>200m:±(0.7+0.0004*d)m (d represents distance, in meters)

Measurement frequency

1~3Hz

Accuracy rate

≥98%

Measurement resolution

0.1m

Electrical Specifications

Baud rate

15200bps (factory setting)/57600bps/38400bps/9600bps

Interface type

UART(TTL_3.3V)

Supply voltage

DC 3.3V~5V

Standby power consumption

≤0.5W

Operating power consumption

(+3.3Vin)

≤0.85W

Startup time

≤550ms

Physical characteristics

Weight

10±0.5g

Dimensions

Φ17×37.2 mm

Shock

1200g,1ms

Vibration

5~50~5 Hz, 1 octave/min, 2.5g

Environmental adaptability

Operating temperature

-20~+70℃

Storage temperature

-25~+75℃

Reliability

MTBF≥1500h

OUTLINE DIMENSION(mm)

1000m 905nm laser rangefinder module

PIN INTERFACE

1000m 905nm laser rangefinder module

Interface Type: UART (TTL_3.3V)

Connector Model: HC-0.8-6PWT

Pin

Definition

Description

1

GND

Ground wire

2

VCC

3.3V DC power supply

3

NC

Empty pin

4

TX

Serial port transmitting end, TTL_3.3V level

5

RX

Serial port receiving end, TTL_3.3V level

6

Power - EN

Low level to power on

POWER - EN Control Instructions:

  1. Pull down <0.3V to disable the module; pull up >3V to enable the module.
  2. Pull from low to high during operation, with a 300mS delay to read data.

 

The 905nm Laser Rangefinder Module 1000m delivers precise distance measurements from 5 to 1000 meters using advanced TOF technology. Featuring a UART (TTL_3.3V) interface, it supports both single-shot and continuous modes, plus PC software for easy, standardized configuration.

Product Description

The LRF1000A is a compact 905 nm Time-of-Flight (ToF) laser rangefinder module designed as an OEM distance core for handheld laser rangefinders, surveying instruments, UAV / UGV platforms and compact industrial devices. By measuring the round-trip time of a pulsed 905 nm laser beam, it delivers stable distance data from 5 m to 1000 m on building-type targets under visibility ≥ 6 km.

The sensor is classified as Class 1 eye-safe (IEC 60825-1) and operates at 905 ±10 nm with a typical laser divergence of 4 × 6 mrad and a receiver field of view around 8 mrad, giving a practical spot size for targets such as walls, sign boards, trees or vehicles. Distance accuracy on construction-type targets is specified as ±0.7 m within 200 m, and ±(0.7 + 0.0004·d) m beyond 200 m, where d is distance in metres. Measurement resolution is 0.1 m, with an accuracy rate of ≥98% and a measurement frequency of 1–3 Hz, suitable for handheld reading, surveying workflows and slow to medium speed platform motion.

Electrically, the module is powered from DC 3.3–5 V, with ≤0.5 W standby power and ≤0.85 W operating power at 3.3 V, which makes it easy to integrate into battery-powered devices. The default UART baud rate is 15200 bps, and the module also supports 9600, 38400 and 57600 bps for different host requirements. The interface is UART (TTL_3.3 V), and ERDI provides PC configuration software plus a standardised command set that supports single-shot and continuous measurement, baud rate configuration, external circuit enable/disable and low-power modes.

Mechanically, the LRF1000C keeps a very small footprint with a weight of 10 ±0.5 g and dimensions of Φ17 × 37.2 mm, making it well-suited for compact handheld housings, optical tubes, UAV pods and small robotic heads. The mechanical drawing on page 4 of the datasheet shows the front optics and recommended external window layout, including suggestions for H-K9L optical glass, wedge angle tolerance ≤3′, surface roughness around Ra 0.012, and anti-reflection coatings optimised for 855–955 nm with ≥99.5% transmittance and ≥98% overall transmittance after protective films.

The UART protocol uses 8-byte frames with a 0x55 0xAA header. Function words control single measurements, continuous measurements, stop commands, angular output (for configurations with an angle sensor) and system settings. Replies include a status byte STA (0 = failure, 1 = success), high and low bytes of distance or angle and a checksum based on the low eight bits of the sum of the verified bytes. Distance data are transmitted in hexadecimal, with all measurement values scaled by 10, so the host simply divides by 10 to obtain metres. The module also supports a secondary low-power mode: when the external circuit is disabled via command, the MCU remains in standby but can respond to subsequent measurement commands without a full power cycle.

The hardware interface uses connector model HC-0.8-6PWT, with pins for GND, VCC (3.3–5 V input), TX, RX and Power-EN. The enable pin is pulled low (<0.3 V) to power the module off and pulled high (>3 V) to power on; when enabling during operation, the host should wait about 300 ms before reading data to allow proper startup. Shock resistance is specified as 1200 g, 1 ms, and vibration as 5–50–5 Hz, 1 octave/min, 2.5 g. The operating temperature range is −20 °C to +70 °C, with storage from −25 °C to +75 °C, and MTBF ≥1500 h, covering typical handheld, field-survey and embedded use-cases.

The datasheet also lists practical guidance on factors affecting performance, including target reflectivity, target shape, incidence angle and atmospheric conditions. Under typical conditions—medium-reflectivity building walls, perpendicular incidence and clear weather without direct sunlight—the module achieves its specified 5–1000 m range. For long-distance measurement, ERDI recommends fixing the module to a tripod or stable platform to minimise vibration and improve repeatability.

With its 5–1000 m range, 0.1 m resolution, Class 1 eye safety, 3.3–5 V supply, low mass of about 10 g and open UART protocol, the LRF1000C is a strong candidate for OEM handheld rangefinders, compact surveying equipment, golf or outdoor rangefinders, UAV/UGV distance sensing and small industrial automation systems that require accurate, low-power 905 nm distance measurement.

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