CBTL06DP213EE 产品信息|NXP

CBTL06DP213EE

正常供应

CBTL06DP213EE

正常供应

购买选项

工作特点

参数
Number of pins
48
Operating Voltage [Min to Max] (V)
3 to 3.6
Package Style
TFBGA
Supply Voltage [max] (V)
3.6
Ambient Operating Temperature (Min to Max) (℃)
-40 to 105
Failures in time
4
Supply Voltage [min] (V)
3
Security Status
COMPANY PUBLIC
参数
Pad supply (V)
3 to 3.6
Supply Voltage [Min to Max] (V)
3 to 3.6
Description
Third generation high-performance DisplayPort multiplexer
Supply Voltage [Min - Max]
3, 3.6
Operating Temperature (Min-Max) (℃)
-40 to 105
Early Failure Rate
0
Mean time between failures
250000000

环境

部件/12NC无铅欧盟 RoHS无卤素RHF指标REACH SVHC重量(mg)
CBTL06DP213EE,118(935297709118)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
DREACH SVHC
47.652364999999996

质量

部件/12NC安全保障功能安全湿度灵敏度等级(MSL)封装体峰值温度(PPT)(C°)适合MTBFIR
无铅焊接铅焊接无铅焊接
CBTL06DP213EE,118
(935297709118)
No
1
235
260
4.0
2.5E8
0.0

配送

部件/12NC协调关税 (美国)免责声明
CBTL06DP213EE,118
(935297709118)
854239

更多信息 CBTL06DP213EE

CBTL06DP213 is an NXP third generation high-performance multi-channel multiplexer, meant for DisplayPort (DP) v1.3 or Embedded DisplayPort applications operating at data rate of 1.62 Gbit/s, 2.7 Gbit/s, 5.4 Gbit/s or 8.1 Gbit/s. It is designed using NXP proprietary high-bandwidth pass-gate technology and it can be used for 1 : 2 switching or 2 : 1 multiplexing of four high-speed differential AC-coupled DP channels. Further, it is capable of switching/multiplexing of Hot Plug Detect (HPD) signal as well as Auxiliary (AUX) and Display Data Channel (DDC) signals. In order to support GPUs/CPUs that have dedicated AUX and DDC I/Os, CBTL06DP213 provides an additional level of multiplexing of AUX and DDC signals delivering true flexibility and choice.

A typical application of CBTL06DP213 is on motherboards where one of two GPU DisplayPort sources needs to be selected to connect to a DisplayPort sink device or connector. A controller chip selects which path to use by setting a select signal HIGH or LOW. Due to the bidirectional nature of the signal paths, CBTL06DP213 can also be used in the reverse topology, for example, to connect one display source device to one of two display sink devices or connectors.

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