Our Products
Leading Manufacturer, Supplier & Retailer of Temperature Sensor Module, Fiber Optic Connector Cleaner, Fiber Optic Basic Cleaning Kits, Temperature-Sensor module and SMD Hot Air Rework Station.
2X Lifetime than traditional heater
Heat Fast , 36sec 300 oC By Alumina Ceramic heating element
Smart Microprocessor Accurate temperature controlled
Auto Cooling System Prolongs the service life
2 In 1 rework station to save cost
Closed circuit sensor design
High power, quick warm up times
Individual function start saves energy
LED digital display
Quiet operation & ESD safe design
Auto cool-off process to prolong the life of heating element
Interchangeable and applicable to most of branded hot air nozzles and tips
Silicone Handpiece Cord Wire heat-resistant up to 200oC
AWG 20 (0.5mm2) UL Certified Wires
Soldering iron heater made by Alumina Ceramic
Description
Refillable cleaning tapeFull cleaning for SC , FC, MU, LC, ST, D4, DIN Connectors
Features
| Model NO. | Material | Cleaning times |
Applications | Dimensions |
| FB-C010 | high density textile fibers |
500/per box | For cleaning SC , FC , ST, MU, LC, D4, MT, DIN connector |
115×79×32mm |
1. FB-C010 Fiber Optic Connector Cleaner
2. FB-C008/FB-C009 Fiber Optic one Click Cleaner
| Model | Product Name | PK-9460 Basic Cleaning Kit |
PK-9461 |
PK-9462 |
| MS-153A | Bulb Blower (Φ42mm) | ■ | ■ | ■ |
| FB-C008 |
2.5mm Fiber Optic one Click Cleaner |
■ | ■ | ■ |
| FB-C009 | 1.25mm Fiber Optic one Click Cleaner | ■ | ■ | ■ |
| FB-C010 | Fiber Optic Cleaning Cassette | ■ | ■ | ■ |
| FB-C011 | Lint free wiper | ■ | ■ | ■ |
| 9C003 | Cleaning Liquid | ■ | ■ | ■ |
| 8PK-MA009 | Fiber Optic Viewing Scope Kit | ■ | ■ | |
| MT-7601 |
Fiber Optic Power Meter |
The PE-001 Temperature Sensor Module consists of a DS18B20 single-bus digital temperature sensor, a LED and a resistor. Compatible with popular electronics platforms like Arduino, Raspberry Pi and Esp8266.
The KY-013 Analog Temperature Sensor module consist of a NTC thermistorand a10 k resistor. The resistance ofthe thermistorvaries with surrounding temperature, we'll use theSteinhartHart equation to derive precise temperature of the thermistor.