In today’s digital age, fiber optic networks play a crucial role in ensuring fast and reliable data transmission. As the demand for high-speed internet continues to grow, the need for robust and dependable fiber optic infrastructure has never been more critical. This article explores the
In the rapidly evolving world of fiber optics, the role of the Specialty Fusion Splicer has become increasingly pivotal. These advanced tools are not just enhancing the quality of fiber optic connections but are also significantly driving research and development, especially in the field of fiber op
In an era where technological advancements are reshaping industries, the realm of medical applications is no exception. Among the pivotal innovations making waves is the Specialty Fusion Splicer, a device that is revolutionizing fiber optic current transfer in medical settings. This sophisticated eq
Introduction As technology advances, so do the tools and equipment used to maintain and repair data center networks. One such tool that has become increasingly popular in recent years is the portable fusion splicer. This compact and lightweight device offers a range of benefits for network technici
Dear Valued Customers, Partners, and Friends,As we deepen our commitment to embodying our core values and elevating our presence worldwide, SHINHO is thrilled to unveil our new logo on March 6, 2025.The new logo is as below:Since its establishment in 2012, SHINHO has empowered clients across 80+ cou
In the intricate world of fiber optics, the Specialty Fusion Splicer plays a pivotal role, especially in the realm of Polarization Maintaining (PM) Dense Wavelength Division Multiplexing (DWDM) applications. As the demand for high-speed, reliable communication networks grows, the need for precision
Fusion splicing is a critical process in telecommunications, particularly in the realm of fiber optics. Choosing the right fusion splicer is essential for ensuring the quality and reliability of the splice, which can significantly impact the overall performance of a fiber optic network. This article
In the fast-paced world of modern telecommunications, the demand for high-speed, reliable data transmission has never been greater. As the backbone of this industry, fiber optic technology plays a crucial role in meeting these demands. At the heart of fiber optic deployment and maintenance lies a cr
What is a Fusion Splicer? Fusion splicing is a technique used to connect two optical fibers end-to-end. This method is primarily used in telecommunications to enable the transmission of data over long distances. The process involves aligning the fibers so that the light signals can pass through wit
Fusion splicing is the process of joining two optical fibers end-to-end using heat. This method is preferred over other techniques such as mechanical splicing because it provides a permanent bond that minimizes signal loss and reflection. Fusion splicing is used in various applications including tel
Availability: | |
---|---|
Quantity: | |
X-1100E
SHINHO
Product Description
FEATURES
◆ Nine functions in one OTDR:OTDR,OPM,LS, VFL,event map,RJ45 test, loss test, flashlight, line finder(optional)
◆ The 4.3-inch full-view capacitive touch screen supports multi-touch, Any interface supports screen capture
◆ Cover plate type tempered glass panel, no worry about screen scratch
◆ Large capacity battery ensures an 8-hour extended measurement time and a 15-hour extended standby time, providing guarantee for field testing operations.
◆ Support online testing, with a maximum online optical power of -2dBm
◆ Support PDF output report, Support for local storage
◆ Support USB drives, SD card expansion memory, Supports Type C charging and data transmission
◆ Support power bank charging, no worry about the battery runs out
◆ In line with the international standards of test data with perfect simulation software, easier to generate the report
◆ Sink type light port design for better protection
◆ Automatic optical protection function to prevent damage to the optical module.
GENERAL SPECIFICATIONS
Display | 4.3-inch FTF LCD ,Capacitive TP |
Battery | 3.7V/5200mAh, standby time >10 hrs |
Power Adapter | USB(Type C) |
Data Storage | Inside≥1000 ,External:SD |
Working/ Storage Temp | -10℃~+50℃/-20℃~+70℃ |
Humidity | 0~90%(non-condensing) |
Dimension/Weight | 175x105x45mm/450g (with battery) |
Package | X-1100E OTDR; soft carrying bag; bag belt; USB cable; RJ45; FC/SC connector; strap; user guide; calibration certificate |
TECHNICAL SPECIFICATIONS
Measuring Range | 100m/500m/1km/2km/5km/10km/20km/40km/60km/90km |
Event Dead Zone | ≤1.5m |
Attenuation Zone | 6 m |
Pulse Width | 5ns/10ns/20ns/50ns/100ns/275ns/500ns/1us/2us/5us/10us(for triple wavelength max is 2us |
Refractive Index | 1 .0000~2 .0000 |
Reflection Accuracy | ±3d B |
Sampling Resolution | Minimum 0.2m |
Sampling Point | Maximum sampling points:20000 |
Sampling Resolution | 20cm~8m |
Linearity | ±0 .2dB/dB |
Loss Threshold | 0.01dB |
Loss Resolution | 0.001dB |
File Format | Standard SOR file format |
Safety Level | Class 3B |
Range Resolution | 0 .001m |
Distance Accuracy | ±( 1m+Sampling interval+0.005% X measuring range) (excluding refractive index error) |
OTHER FUNCTIONAL MODULES
Module | Parameter | Note |
VFL | 10mW,CW/2Hz | 10mW in default |
OPM | Wavelength :850/ 1300/ 1310/ 1490/ 1550/ 1625/ 1650nm Range Option A:-70dBm~+10dBm; Option B:-50dBm~+26dBm. | Option A in default |
RJ45 | Line sequence / line finding | |
Laser source | Only support SM wavelength, Output:-5dB m±2dB (Adjust), Uncertainty±5% | |
Network cable test | Support network wire sequence testing and wire alignment |
MODELS
Model Number | Wavelength(nm) | Dynamic Range(dB) | Testing Distance(km) | Online Test | |||
Single Wavelength Sequence | |||||||
X1100E-A20SF | 1550±20nm (1310 available) | 20 | 1310nm:30km 1550nm:50km | Available | |||
X1100E-A22SF | 1550±20nm (1310 available) | 22 | 1310nm:36km 1550nm:60km | Available | |||
X1100E-A24SF | 1550±20nm (1310 available) | 24 | 1310nm:42km 1550nm:70km | Available | |||
X1100E-C22SF | 1650±5nm | 22 | 50km | Available | |||
X1100E-P22SF | 1625±5nm | 22 | 50km | Available | |||
X1100E-T22SF | 1610±20nm | 22 | 50km | Available | |||
X1100E-B26SF | 1310±20nm | 26 | 50km | Available | |||
Dual Wavelength Sequence | |||||||
X1100E-A22D | 1310/1550±20nm | 22/20 | 50km(1550nm) | Not available | |||
X1100E-A24D | 1310/1550±20nm | 24/22 | 60km(1550nm) | Not available | |||
X1100E-A26D | 1310/1550±20nm | 26/24 | 70km(1550nm) | Not available | |||
X1100E- M24 | 850/1300±20nm | 22/24 | 30km(1300nm) | Not available | |||
Three Wavelength Sequence | |||||||
X1100E-S-AT24 | 1310/1550/1610 | 24/22/22 | 60km | Not available | |||
X1100E-S-AB24 | 1310/1550/1625 | 24/22/22 | 60km | available | |||
X1100E-S-AC24 | 1310/1550/1650 | 24/22/22 | 60km | available |