Long Range RFID Reader

Product name:106C Long Range RFID Reader
Item:DVL-106C
Details:

Description:
     WayLead RFID reader system is an important link in the Parking Management System.  card orientation, penetration, stability, interference, ease of use and safety has been paid more attentione by users. IDeal DVL-106C Long Range RFID Reader system launched later received by the community (national patent: 200520067754.5), the reader is a cell vehicle access control and parking management system upgrade intelligent generation product innovation.

      WayLead RFID reader system broke through the previous reader approach to directional remote card reader features a convenient and practical as a breakthrough set of strict orientation, good penetration, strong anti-interference, long battery life and other advantages as a whole, from fundamental solution to the  card user inconvenience practical application,  as the highlight in the parking management system.
  
DVL card reader compare with other long range RFID reader

Comparation
Active card reader
Passive card reader
DVL card reader
though metal sucessful
Can though explosion-proof membrane
can not though explosion-proof membrane,read card after opening car window
Can though explosion-proof membrane
direction
 
Without direction,disturb with adjacent channel,Reader with other car
Through primary and secondary wave rods and steel shielding
60 degree
anty-disturb
 
Read card by pressing loop,only reduce disturb frequency
Disturb easy
Body code verification technology, solve the interference problem
life
 
Avtice work type,large power consumption 
No need battery
Passiv ework type,work after activing,power consumption small
signal reduce
Large signal reduction
Signal reduction large
No signal reduction within2 years

Technology
   
 
Indicator
 
DVL-106C RFID reader
voltage(V)
DC12V(±5%)
current(mA)
<2A
frequency
433MHz
Infrared frequency
38KHz
 Communication distance(m)
tag→reader:15m at least
reader→controller:RS485 output less than 1500m
reader→controller:Viegand(WG)26、34   Less than 100m
degree
60  degree
Cabling requirements
Above 0.3  square millimeter
Communication speed
19200,n,8,1 (passive RS-485 output)
card type
AJ06、AJ08、AJ11、AJ10ID、AJ10IC
Operating Temperature (℃)
-40℃-80℃
Operating humidity(%)
15%~90%
size(mm)
L190 × W126× H 25
Main features Improved to the third-generation IDeal  long-range RFID reader
 
     A.Strict 60 ° angle positioning, without  interference issues; reading sensitivily, access speed  can up to 60 yards,   within 15 meters.
     B.Reader antenna with 3 groups  Infrared System (comes with the digital switch by use), with intermittent pulse mode of work, life for 10 years, to avoid the infrared lamp begin to damage within  2 to 3 years.
       C.sent immediately afrer reading, you can also set the card number through the computer serial port upload interval, the controller receving the card number too much caused abnormal condition , to avoid parking software show the same card number for a continuous increase in the time of enumeration workload.
       D.Super lightning protection features designed to meet any outdoor using condition ; waterproof grade IP66 grade, metal, built-in waterproof boxes,which can avoid water with storm conditions.
       E.The  body code recognition technology, for the distribution of different body code readers, card readers can work simultaneously to eliminate two adjacent string ,  the import and export will not interfere with each other.
       F.in-build switch adjust the read distance,adjusted within 3 to 15 meters.(any deitail info ,please refer to the user guidance )
       G.in-build switch adjust the indoor and out door model,Under indoor conditions regulating infrared signal strength to ensure no reflection problems. www.wlead.com
       H.can set reading after pressing the loop function in according to the customers requirement.
       I.Compatible with all  controller,communicate with PC though RS485,WG26 . www.wlead.com 

内容概要:该论文聚焦于T2WI核磁共振图像超分辨率问题,提出了一种利用T1WI模态作为辅助信息的跨模态解决方案。其主要贡献包括:提出基于高频信息约束的网络框架,通过主干特征提取分支和高频结构先验建模分支结合Transformer模块和注意力机制有效重建高频细节;设计渐进式特征匹配融合框架,采用多阶段相似特征匹配算法提高匹配鲁棒性;引入模型量化技术降低推理资源需求。实验结果表明,该方法不仅提高了超分辨率性能,还保持了图像质量。 适合人群:从事医学图像处理、计算机视觉领域的研究人员和工程师,尤其是对核磁共振图像超分辨率感兴趣的学者和技术开发者。 使用场景及目标:①适用于需要提升T2WI核磁共振图像分辨率的应用场景;②目标是通过跨模态信息融合提高图像质量,解决传统单模态方法难以克服的高频细节丢失问题;③为临床诊断提供更高质量的影像资料,帮助医生更准确地识别病灶。 其他说明:论文不仅提供了详细的网络架构设计与实现代码,还深入探讨了跨模态噪声的本质、高频信息约束的实现方式以及渐进式特征匹配的具体过程。此外,作者还对模型进行了量化处理,使得该方法可以在资源受限环境下高效运行。阅读时应重点关注论文中提到的技术创新点及其背后的原理,理解如何通过跨模态信息融合提升图像重建效果。
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