China 256X128 FSTN COB Positive Character Display FFC Connector S1D13700 for sale
China 256X128 FSTN COB Positive Character Display FFC Connector S1D13700 for sale
  1. China 256X128 FSTN COB Positive Character Display FFC Connector S1D13700 for sale
  2. China 256X128 FSTN COB Positive Character Display FFC Connector S1D13700 for sale

256X128 FSTN COB Positive Character Display FFC Connector S1D13700

Price Negotiable
MOQ 500pcs
Delivery Time 15-20 work days
Brand ROYAL DISPLAY
Place of Origin China
Certification ROHS, ISO
Model Number RYP256128A-GFTWWW-A
Packaging Details Cartons, Capboard, EPE, Blister Tray
Payment Terms L/C, T/T, Western Union
Supply Ability 300K/M

Product Details

Product Specification

DOT Format 256X128 Connector FFC-Connector
Place of Origin China Backlight Color White Color
Packaging Details Cartons, Capboard, EPE, Blister Tray Outline (mm) 89.4* 43.9* 7.0
Model Number RYP256128A-GFTWWW-A Supply Ability 300K/M
Appearance White on Black Certification ROHS, ISO
Power Supply 5V Brand Name ROYAL DISPLAY
Payment Terms L/C, T/T, Western Union Price Negotiable
Delivery Time 15-20 work days Minimum Order Quantity 500pcs
Viewing Direction 6:00 IC Package COB

Product Description

256X128 FSTN COB Positive White LCD Module

 

Product Description 

 

Item Description
Product Name 256X128 FSTN COB Positive White LCD Module
Model No. RYP256128A-GFTWWW-A
Dot Format 256X128
Outline (mm) 89.4* 43.9* 7.0
Polarzier Mode Transflective,Positive
Viewing Angle 12 O' clock
Backlight White
Driver IC S1D13700
Power supply 5V
Operating Temp -25º C~50ºC
Storage Temp -40º C~70ºC

 

 

 

 

 

Character LCM

 

1>> Customer requirements can be customized

 

2>> Available for different modes such as yellow-green, blue and white color.

 

3>> Support characters: 8x2,16x1,16x2,16x4,20x4, ect..

 

4>> Customized for the total module including new size, backlight, color,

PCB circuit board. connection mode ect.

Application: DAB Radios,Stereos, Access Control, The Printer

 

 

 

 

 

Royal Display Quality System