DS90UB901QSQX/NOPB


YeeHing #: Y007-DS90UB901QSQX/NOPB
Inventory: 5400

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Description

DS90UB901QSQX/NOPB Texas Instruments - Yeehing Electronics

10 - 43MHz 14 Bit Color FPD-Link III Serializer with Bidirectional Control Channel

Pricing (USD)

Quantity Unit Price
1 — 99 6.935
100 — 249 5.654
250 — 999 4.444
1,000 + 2.64

The above prices are for reference only.

Specifications

Manufacturer Texas Instruments
Product Category Display Interface IC
RoHS Y
Mounting Style SMD/SMT
Package / Case WQFN-32
Series DS90UB901Q-Q1
Type Display Interface
Maximum Operating Frequency 43 MHz
Operating Supply Voltage 1.71 V to 1.89 V
Minimum Operating Temperature - 40 C
Maximum Operating Temperature + 105 C
Packaging Reel
Description/Function 14 Bit Color FPD-Link III Serializer with Bidirectional Control Channel
Features BIST
Output Type CML
Brand Texas Instruments
Interface Type I2C
Moisture Sensitive Yes
Product Type Display Interface IC
Factory Pack Quantity 2500
Subcategory Interface ICs

For more information, please refer to datasheet

Documents

DS90UB901QSQX/NOPB Datasheet

More Information

The DS90UB901Q/DS90UB902Q chipset offers a FPD-Link III interface with a high-speed forward channel and a bidirectional control channel for data transmission over a single differential pair. The Serializer/Deserializer pair is targeted for direct connections between automotive camera systems and Host Controller/Electronic Control Unit (ECU). The primary transport sends 16 bits of image data over a single high-speed serial stream together with a low latency bidirectional control channel transport that supports I2C. Included with the 16-bit payload is a selectable data integrity option for CRC (Cyclic Redundancy Check) to monitor transmission link errors. Using TI’s embedded clock technology allows transparent full-duplex communication over a single differential pair, carrying asymmetrical bidirectional control information without the dependency of video blanking intervals. This single serial stream simplifies transferring a wide data bus over PCB traces and cable by eliminating the skew problems between parallel data and clock paths. This significantly saves system cost by narrowing data paths that in turn reduce PCB layers, cable width, and connector size and pins.

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