Technical Documents
Specifications
Brand
MicrochipNumber of Transceivers
3
Product Type
USB Transceiver
Sub Type
Transceiver
USB Specification
USB 2.0
Power Supply Type
Single
ESD Protection
Yes
Minimum Supply Voltage
3.3V
Maximum Supply Voltage
3.3V
Mount Type
Surface
Package Type
QFN
Pin Count
32
Minimum Operating Temperature
-40°C
Supported Protocols
UTMI + ULPI, OTG, USB 2.0
Maximum Operating Temperature
85°C
Length
5.1mm
Height
0.95mm
Standards/Approvals
No
Series
USB3300
Automotive Standard
No
Country of Origin
Taiwan, Province Of China
Product Details
The USB3300 is an industrial temperature Hi-Speed USB Physical Layer Transceiver (PHY). The USB3300 uses a low pin count interface (ULPI) to connect to a ULPI compliant Link layer. The ULPI interface reduces the UTMI+ interface from 54 pins to 12 pins using a method of in-band signaling and status byte transfers between the Link and PHY. This PHY was designed from the start with the ULPI interface. No UTMI to ULPI wrappers are used in this design which provides a seamless ULPI to Link interface. The result is a PHY with a low latency transmit and receive time.
Stock information temporarily unavailable.
€ 6,117.77
€ 1.224 Each (On a Reel of 5000) (Exc. VAT)
5000
€ 6,117.77
€ 1.224 Each (On a Reel of 5000) (Exc. VAT)
Stock information temporarily unavailable.
5000
Technical Documents
Specifications
Brand
MicrochipNumber of Transceivers
3
Product Type
USB Transceiver
Sub Type
Transceiver
USB Specification
USB 2.0
Power Supply Type
Single
ESD Protection
Yes
Minimum Supply Voltage
3.3V
Maximum Supply Voltage
3.3V
Mount Type
Surface
Package Type
QFN
Pin Count
32
Minimum Operating Temperature
-40°C
Supported Protocols
UTMI + ULPI, OTG, USB 2.0
Maximum Operating Temperature
85°C
Length
5.1mm
Height
0.95mm
Standards/Approvals
No
Series
USB3300
Automotive Standard
No
Country of Origin
Taiwan, Province Of China
Product Details
The USB3300 is an industrial temperature Hi-Speed USB Physical Layer Transceiver (PHY). The USB3300 uses a low pin count interface (ULPI) to connect to a ULPI compliant Link layer. The ULPI interface reduces the UTMI+ interface from 54 pins to 12 pins using a method of in-band signaling and status byte transfers between the Link and PHY. This PHY was designed from the start with the ULPI interface. No UTMI to ULPI wrappers are used in this design which provides a seamless ULPI to Link interface. The result is a PHY with a low latency transmit and receive time.