Programmable Embedded USB Host and Peripheral Controller with Automotive AEC Grade Support Specification Sheet
Table Of Contents
- EZ-Host Features
- Typical Applications
- Introduction
- Functional Overview
- Interface Descriptions
- USB Interface
- OTG Interface
- External Memory Interface
- General Purpose IO Interface (GPIO)
- UART Interface
- I2C EEPROM Interface
- Serial Peripheral Interface
- High-Speed Serial Interface
- Programmable Pulse/PWM Interface
- Host Port Interface
- IDE Interface
- Charge Pump Interface
- Booster Interface
- Crystal Interface
- Boot Configuration Interface
- Operational Modes
- Power Savings and Reset Description
- Memory Map
- Registers
- Processor Control Registers
- CPU Flags Register [0xC000] [R]
- Bank Register [0xC002] [R/W]
- Hardware Revision Register [0xC004] [R]
- CPU Speed Register [0xC008] [R/W]
- Power Control Register [0xC00A] [R/W]
- Interrupt Enable Register [0xC00E] [R/W]
- Breakpoint Register [0xC014] [R/W]
- USB Diagnostic Register [0xC03C] [R/W]
- Memory Diagnostic Register [0xC03E] [W]
- External Memory Registers
- Timer Registers
- General USB Registers
- USB Host Only Registers
- Host n Control Register [R/W]
- Host n Address Register [R/W]
- Host n Count Register [R/W]
- Host n Endpoint Status Register [R]
- Host n PID Register [W]
- Host n Count Result Register [R]
- Host n Device Address Register [W]
- Host n Interrupt Enable Register [R/W]
- Host n Status Register [R/W]
- Host n SOF/EOP Count Register [R/W]
- Host n SOF/EOP Counter Register [R]
- Host n Frame Register [R]
- USB Device Only Registers
- Device n Endpoint n Control Register [R/W]
- Device n Endpoint n Address Register [R/W]
- Device n Endpoint n Count Register [R/W]
- Device n Endpoint n Status Register [R/W]
- Device n Endpoint n Count Result Register [R/W]
- Device n Port Select Register [R/W]
- Device n Interrupt Enable Register [R/W]
- Device n Address Register [W]
- Device n Status Register [R/W]
- Device n Frame Number Register [R]
- Device n SOF/EOP Count Register [W]
- OTG Control Registers
- GPIO Registers
- IDE Registers
- HSS Registers
- HSS Control Register [0xC070] [R/W]
- HSS Baud Rate Register [0xC072] [R/W]
- HSS Transmit Gap Register [0xC074] [R/W]
- HSS Data Register [0xC076] [R/W]
- HSS Receive Address Register [0xC078] [R/W]
- HSS Receive Counter Register [0xC07A] [R/W]
- HSS Transmit Address Register [0xC07C] [R/W]
- HSS Transmit Counter Register [0xC07E] [R/W]
- HPI Registers
- SPI Registers
- SPI Configuration Register [0xC0C8] [R/W]
- SPI Control Register [0xC0CA] [R/W]
- SPI Interrupt Enable Register [0xC0CC] [R/W]
- SPI Status Register [0xC0CE] [R]
- SPI Interrupt Clear Register [0xC0D0] [W]
- SPI CRC Control Register [0xC0D2] [R/W]
- SPI CRC Value Register [0xC0D4] [R/W]
- SPI Data Register [0xC0D6] [R/W]
- SPI Transmit Address Register [0xC0D8] [R/W]
- SPI Transmit Count Register [0xC0DA] [R/W]
- SPI Receive Address Register [0xC0DC [R/W]
- SPI Receive Count Register [0xC0DE] [R/W]
- UART Registers
- PWM Registers
- Processor Control Registers
- Pin Diagram
- Pin Descriptions
- Absolute Maximum Ratings
- Operating Conditions
- Crystal Requirements (XTALIN, XTALOUT)
- DC Characteristics
- AC Timing Characteristics
- Register Summary
- Ordering Information
- Package Diagrams
- Document History Page
- Sales, Solutions, and Legal Information

CY7C67300
Document #: 38-08015 Rev. *J Page 83 of 99
Absolute Maximum Ratings
This section lists the absolute maximum ratings. Stresses above
those listed can cause permanent damage to the device.
Exposure to maximum rated conditions for extended periods can
affect device operation and reliability.
Storage Temperature .................................. –40°C to +125°C
Ambient Temperature with Power Supplied.. –40°C to +85°C
Supply Voltage to Ground Potential..................0.0V to +3.6V
DC Input Voltage to Any General Purpose Input Pin..... 5.5V
DC Voltage Applied to XTALIN ............. –0.5V to V
CC
+ 0.5V
Static Discharge Voltage.......................................... > 2000V
Max Output Current, per IO.......................................... 4 mA
Operating Conditions
T
A
(Ambient Temperature Under Bias) ......... –40°C to +85°C
Supply Voltage (V
CC
, AV
CC
)...........................+3.0V to +3.6V
Supply Voltage (BoostV
CC
)
[7]
.........................+2.7V to +3.6V
Ground Voltage.................................................................. 0V
F
OSC
(Oscillator or Crystal Frequency).... 12 MHz ± 500 ppm
................................................................... Parallel Resonant
Crystal Requirements (XTALIN, XTALOUT)
DC Characteristics
Notes
7. The on-chip voltage booster circuit boosts BoostV
CC
to provide a nominal 3.3V V
CC
supply.
8. All tests were conducted with Charge pump off.
Table 132. Crystal Requirements
Crystal Requirements
(XTALIN, XTALOUT)
Min Typical Max Unit
Parallel Resonant Frequency 12 MHz
Frequency Stability –500 +500 PPM
Load Capacitance 20 33 pF
Driver Level 500 µW
Startup Time 5ms
Mode of Vibration: Fundamental
Table 133. DC Characteristics
[8]
Parameter Description Conditions Min Typ. Max Unit
V
CC
, AV
CC
Supply Voltage 3.0 3.3 3.6 V
BoosV
CC
Supply Voltage 2.7 3.6 V
V
IH
Input HIGH Voltage 2.0 5.5 V
V
IL
Input LOW Voltage 0.8 V
I
I
Input Leakage Current 0< V
IN
< V
CC
–10.0 +10.0 μA
V
OH
Output Voltage HIGH I
OUT
= 4 mA 2.4 V
V
OL
Output LOW Voltage I
OUT
= –4 mA 0.4 V
I
OH
Output Current HIGH 10 20 mA
I
OL
Output Current LOW 10 20 mA
C
IN
Input Pin Capacitance Except D+/D– 10 pF
D+/D– 15 pF
V
HYS
Hysteresis on nReset Pin 250 mV
I
CC
[9, 10]
Supply Current 4 transceivers powered 80 100 mA
I
CCB
[9, 10]
Supply Current with Booster
Enabled
4 transceivers powered 135 180 mA
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