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USB3250 数据表(PDF) 37 Page - Microchip Technology

部件名 USB3250
功能描述  Hi-Speed USB Device Transceiver with UTMI Interface
PDF  46 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

USB3250 数据表(HTML) 37 Page - Microchip Technology

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2013 - 2016 Microchip Technology Inc.
DS00002142A-page 37
USB3250
8.12
Detection of Resume
Resume signaling always takes place in FS mode (TERMSELECT and XCVRSELECT = FS enabled), so the behavior
for a HS device is identical to that if a FS device. The SIE uses the LINESTATE signals to determine when the USB
transitions from the 'J' to the 'K' state and finally to the terminating FS EOP (SE0 for 1.25us-1.5µs.).
The resume signaling (FS 'K') will be asserted for at least 20ms. At the beginning of this period the SIE may negate
SUSPENDN, allowing the transceiver (and its oscillator) to power up and stabilize.
The FS EOP condition is relatively short. SIEs that simply look for an SE0 condition to exit suspend mode do not nec-
essarily give the transceiver's clock generator enough time to stabilize. It is recommended that all SIE implementations
key off the 'J' to 'K' transition for exiting suspend mode (SUSPENDN = 1). And within 1.25µs after the transition to the
SE0 state (low-speed EOP) the SIE must enable normal operation, i.e. enter HS or FS mode depending on the mode
the device was in when it was suspended.
If the device was in FS mode: then the SIE leaves the FS terminations enabled. After the SE0 expires, the downstream
port will assert a J state for one low-speed bit time, and the bus will enter a FS Idle state (maintained by the FS termi-
nations).
If the device was in HS mode: then the SIE must switch to the FS terminations before the SE0 expires (< 1.25µs). After
the SE0 expires, the bus will then enter a HS IDLE state (maintained by the HS terminations).
8.13
HS Device Attach
Figure 8-8 demonstrates the timing of the PHY control signals during a device attach event. When a HS device is
attached to an upstream port, power is asserted to the device and the device sets XCVRSELECT and TERMSELECT
to FS mode (time T1).
VBUS is the +5V power available on the USB cable. Device Reset in Figure 8-8 indicates that VBUS is within normal
operational range as defined in the USB 2.0 specification. The assertion of Device Reset (T0) by the upstream port will
initialize the device. By monitoring LINESTATE, the SIE state machine knows to set the XCVRSELECT and TERMSE-
LECT signals to FS mode (T1).
The standard FS technique of using a pull-up resistor on DP to signal the attach of a FS device is employed. The SIE
must then check the LINESTATE signals for SE0. If LINESTATE = SE0 is asserted at time T2 then the upstream port is
forcing the reset state to the device (i.e. Driven SE0). The device will then reset itself before initiating the HS Detection
Handshake protocol.
TABLE 8-9:
RESUME TIMING VALUES (HS MODE)
Timing Parameter
Description
Value
T0
Internal device event initiating the resume process
0 (reference)
T1
Device asserts FS 'K' on the bus to signal resume
request to downstream port
T0 < T1 < T0 + 10ms.
T2
The device releases FS 'K' on the bus. However by this
time the 'K' state is held by downstream port.
T1 + 1.0ms < T2 < T1 + 15ms
T3
Downstream port asserts SE0.
T1 + 20ms
T4
Latest time at which a device, which was previously in
HS mode, must restore HS mode after bus activity
stops.
T3 + 1.33µs {2 Low-speed bit times}



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