SMSC USB2513i Specification Sheet

Industrial temperature rated usb 2.0 high-speed 3-port hub controller
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PRODUCT FEATURES

General Description
The SMSC 3-Port Hub is low power, OEM configurable,
MTT (multi transaction translator) hub controller IC with
3 downstream ports for embedded USB solutions. The
3-port hub is fully compliant with the USB 2.0
Specification and will attach to an upstream port as a
Full-Speed Hub or as a Full-/High-Speed Hub. The 3-
Port Hub supports Low-Speed, Full-Speed, and High-
Speed (if operating as a High-Speed Hub) downstream
devices on all of the enabled downstream ports.
General Features
Hub Controller IC with 3 downstream ports
High-performance multiple transaction translator
MultiTRAK™ Technology Provides one transaction
translator per port
Enhanced OEM configuration options available
through either a single serial i2C EEPROM, or
SMBus Slave Port
36-pin (6x6mm) and 48-Pin (7x7mm) QFN lead-free,
RoHS compliant packages
Footprint compatible with USB2514i and USB2512i
(36-pin QFN) to provide designers with flexibility
regarding the quantity of USB expansion ports
utilized without redesign
Supports industrial temperature range of -40ºC to
85ºC
Hardware Features
Low power operation
Full Power Management with individual or ganged
power control of each downstream port
On-chip Power On Reset (POR)
Internal 1.8V Voltage Regulator
Fully integrated USB termination and Pull-up/Pull-
down resistors
On Board 24MHz Crystal Driver, Resonator or
External 24/48MHz clock input
USB host/device speed indicator. Per-port 3-color
LED drivers that indicate the speed of USB host and
device connection - hi-speed (480 Mbps), full-speed
(12 Mbps), low-speed (1.5 Mbps) (48-pin QFN)
Enhanced EMI rejection and ESD protection
performance
OEM Selectable Features
Customize Vendor ID, Product ID, and Device ID
Select whether the hub is part of a compound device
(When any downstream port is permanently
SMSC USB2513i
USB2513i
Industrial Temperature
Rated USB 2.0 High-Speed
3-Port Hub Controller
hardwired to a USB peripheral device, the hub is part
of a compound device)
Flexible port mapping and disable sequence. Ports
can be disabled/reordered in any order to support
multiple product SKUs. Hub will automatically reorder
the remaining ports to match the Host controller's
numbering scheme
Programmable USB differential-pair pin location
Ease PCB layout by aligning USB signal lines directly
to connectors
Programmable USB signal drive strength. Recover
USB signal integrity due to compromised system
environment using 3-level driving strength resolution
Select the presence of a permanently hardwired USB
peripheral device on a port by port basis
Configure the delay time for filtering the over-current
sense inputs
Configure the delay time for turning on downstream
port power
Configure the polarity of downstream port power
control signals
Indicate the maximum current that the 3-port hub
consumes from the USB upstream port
Indicate the maximum current required for the hub
controller
Supports Custom String Descriptor up to 31
characters in length for:
– Product String
– Manufacturer String
– Serial Number String
Pin Selectable Options for Default Configuration
— Select Downstream Ports as Non-Removable Ports
— Select Downstream Ports as Disabled Ports
— Select Downstream Port Power Control and Over-
Current Detection on a Ganged or Individual Basis
— Select Downstream Port Power Control Polarity
— Select USB Signal Drive Strength
— Select USB Differential Pair Pin location
— Select on-chip or off-chip voltage regulator mode
Applications
LCD monitors and TVs
Multi-function USB peripherals
PC mother boards
Set-top boxes, DVD players, DVR/PVR
Printers and scanners
PC media drive bay
Portable hub boxes
Mobile PC docking
Embedded systems
DATASHEET
Datasheet
Revision 1.98 (11-19-07)

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Summary of Contents for SMSC USB2513i

  • Page 1: Product Features

    PRODUCT FEATURES General Description The SMSC 3-Port Hub is low power, OEM configurable, MTT (multi transaction translator) hub controller IC with 3 downstream ports for embedded USB solutions. The 3-port hub is fully compliant with the USB 2.0 Specification and will attach to an upstream port as a Full-Speed Hub or as a Full-/High-Speed Hub.
  • Page 2: Order Numbers

    Any and all such uses without prior written approval of an Officer of SMSC and further testing and/or modification will be fully at the risk of the customer. Copies of this document or other SMSC literature, as well as the Terms of Sale Agreement, may be obtained by visiting SMSC’s website at http://www.smsc.com.
  • Page 3: Table Of Contents

    Chapter 7 Package Outlines ..........47 SMSC USB2513i DATASHEET Revision 1.98 (11-19-07)
  • Page 4 Figure 2.1 USB2513i Block Diagram........
  • Page 5 Table 5.2 Pin Capacitance............45 SMSC USB2513i Revision 1.98 (11-19-07)
  • Page 6: Chapter 1 Pin Configuration

    Industrial Temperature Rated USB 2.0 High-Speed 3-Port Hub Controller SMSC USB2513i (Top View QFN-36) Thermal Slug (must be connected to VSS) Indicates pins on the bottom of the device. Figure 1.1 USB2513i 36-Pin QFN DATASHEET Datasheet PRTPWR3 OCS2_N PRTPWR2 VDD33CR...
  • Page 7: Figure 1.2 Usb2513I 48-Pin Qfn

    VDD18PLL RBIAS VDD33PLL SMSC USB2513i SMSC USB2513i (Top View QFN-48) Thermal Slug (must be connected to VSS) Indicates pins on the bottom of the device. Figure 1.2 USB2513i 48-Pin QFN DATASHEET LED_B2_N/BOOST1 LED_A3_N/PRT_SWP3 LED_B3_N/GANG_EN PRTPWR3 OCS2_N PRTPWR2 VDD33CR VDD18 OCS1_N...
  • Page 8: Chapter 2 Block Diagram

    TT #1 TT #2 Port #2 Sense PHY#2 Switch Driver Drivers USB Data OC Sense Switch/LED Downstream Drivers Figure 2.1 USB2513i Block Diagram DATASHEET Datasheet To EEPROM or SMBus Master Serial Interface Controller Port TT #3 Controller Port #3 Sense...
  • Page 9: Chapter 3 Pin Descriptions

    (Host port, or upstream hub). I/O12 Detect Upstream VBUS Power Detects state of Upstream VBUS power. The SMSC Hub monitors VBUS_DET to determine when to assert the internal D+ pull-up resistor (signaling a connect event). When designing a detachable hub, this pin must be connected to the VBUS power pin of the USB port that is upstream of the hub.
  • Page 10 ‘1’ = Ganged sensing & switching, and LED_B3_N is active low. I/O12 Enhanced Port [2:1] LED & Phy Boost strapping option Enhanced Indicator LED for ports 1 & 2. Will be active low when LED support is enabled via EEPROM or SMBus. DATASHEET Datasheet SMSC USB2513i...
  • Page 11 Datasheet Table 3.1 USB2514 Pin Descriptions (continued) SYMBOL 36 QFN 48 QFN PRTPWR_POL OCS[3:1]_N SMSC USB2513i BUFFER TYPE DESCRIPTION BOOST[1:0], If this strap is enabled by package and configuration settings (see sampled at RESET_N negation to determine if all PHY ports (upstream and downstream) operate at a normal or boosted electrical level.
  • Page 12 CFG_SEL1: The logic state of this pin is internally latched on the rising edge of RESET_N (RESET_N negation), and will determine the hub configuration method as described in Interface Behavior". DATASHEET Datasheet Table 3.2, Behavior". Table 3.2, "SMBus or EEPROM SMSC USB2513i...
  • Page 13 SYMBOL 36 QFN 48 QFN CFG_SEL2 XTAL1/ CLKIN XTAL2 RESET_N SMSC USB2513i BUFFER TYPE DESCRIPTION Configuration Programming Select Note: This pin is not available in all packages; it is held to a logic ‘0’ when not available The logic state of this pin is internally latched on the...
  • Page 14 LED is active low TEST pin XNOR continuity tests all signal pins on the hub, please contact your SMSC representative for a detailed description of how this test mode is enabled and utilized. Select 48 MHz clock input 48MHz external clock input select.
  • Page 15: Table 3.2 Smbus Or Eeprom Interface Behavior

    36-Pin 48-Pin 48-Pin 48-Pin 48-Pin 48-Pin Notes: Denotes 48-Pin QFN SMSC USB2513i CFG_SEL0 SMBUS OR EEPROM INTERFACE BEHAVIOR Internal Default Configuration Strap Options Enabled Port Indicators Not Supported Configured as an SMBus slave for external download of user-defined descriptors. SMBus slave address 58 (0101100x)
  • Page 16: Buffer Type Descriptions

    +3.3V Filtered analog PHY power, shared between adjacent ports. VDDIO/VDD 3.3 Core Regulator Reference +3.3V power supply for the Digital I/O If the internal core regulator is enabled, then VDD33CR acts as the regulator input. Ground DESCRIPTION DATASHEET Datasheet FUNCTION μ F (or greater) SMSC USB2513i...
  • Page 17 I/OSD12 Open drain...12mA sink with Schmitt trigger, and must meet I2C-Bus Specification Version 2.1 requirements. ICLKx XTAL clock input. OCLKx XTAL clock output. RBIAS. I/O-U Analog Input/Output Defined in USB specification. Analog Input/Output. SMSC USB2513i DESCRIPTION DATASHEET Revision 1.98 (11-19-07)
  • Page 18: Chapter 4 Configuration Options

    4.1.1 Hub Configuration Options The SMSC Hub supports a large number of features (some are mutually exclusive), and must be configured in order to correctly function when attached to a USB host controller. There are three principal ways to configure the hub: SMBus, EEPROM, or by internal default settings (with or without pin strapping option over-rides).
  • Page 19: Eeprom Interface

    Datasheet EEPROM Interface The SMSC Hub can be configured via a 2-wire (I2C) EEPROM (256x8). (Please see specific details on how to enable configuration via an I2C EEPROM). The Internal state-machine will (when configured for EEPROM support) read the external EEPROM for configuration data.
  • Page 20 This field is set by the OEM using either the SMBus or EEPROM interface options. DATASHEET Datasheet SMBUS AND INTERNAL EEPROM POR DEFAULT ROM VALUES 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 SMSC USB2513i...
  • Page 21 Register 05h: Device ID (MSB) NUMBER BIT NAME DID_MSB SMSC USB2513i DESCRIPTION Least Significant Byte of the Product ID. This is a 16-bit value that the Vendor can assign that uniquely identifies this particular product (assigned by OEM). This field is set by the OEM using either the SMBus or EEPROM interface options.
  • Page 22 Bus-Powered (limited to a 100mA maximum of upstream power prior to being configured by the host controller). When configured as a Bus-Powered device, the SMSC Hub consumes less than 100mA of current prior to being configured. After configuration, the Bus-...
  • Page 23 (and from Bus-Powered to Self- Powered if the local power source is restored). {Note: If the local power source is available, the Hub will always switch to Self-Powered operation.} When Dynamic Power switching is enabled, the Hub detects the availability of a local power source by monitoring the external LOCAL_PWR pin.
  • Page 24 Bit 7= Reserved Bit 6= Reserved Bit 5= Reserved Bit 4= Reserved Bit 3= 1; Port 3 non-removable Bit 2= 1; Port 2 non-removable Bit 1= 1; Port 1 non removable Bit 0 is Reserved, always = ‘0’ DATASHEET Datasheet SMSC USB2513i...
  • Page 25 Register 0Bh: Port Disable For Bus Powered Operation NUMBER BIT NAME PORT_DIS_BP SMSC USB2513i DESCRIPTION Port Disable Self-Powered: Disables 1 or more contiguous ports. ‘0’ = port is available, ‘1’ = port is disabled. During Self-Powered operation when remapping mode is disabled (PRTMAP_EN='0'), this selects the ports which will be permanently disabled, and are not available to be enabled or enumerated by a Host Controller.
  • Page 26 Note: The USB 2.0 Specification does not permit this value to exceed 100mA A value of 50 (decimal) indicates 100mA, which is the default value. DATASHEET Datasheet SMSC USB2513i...
  • Page 27 Register 13h: Manufacturer String Length NUMBER BIT NAME MFR_STR_LEN SMSC USB2513i DESCRIPTION Hub Controller Max Current Bus-Powered: Value in 2mA increments that the Hub consumes from an upstream port (VBUS) when operating as a bus- powered hub. This value will include the hub silicon along with the combined power consumption (from VBUS) of all associated circuitry on the board.
  • Page 28 (subsequent characters must be stored in sequential contiguous address in the same LSB, MSB manner). Some EEPROM programmers may transpose the MSB and LSB, thus reversing the Byte order. Please pay careful attention to the Byte ordering or your selected programming tools. DATASHEET Datasheet SMSC USB2513i...
  • Page 29 4.3.1.27 Register F8h: Boost_3:0 NUMBER BIT NAME Reserved BOOST_IOUT_3 SMSC USB2513i DESCRIPTION Serial String, UNICODE UTF16LE per USB 2.0 Specification Maximum string length is 31 characters (62 bytes) Note: The String consists of individual 16 Bit UNICODE UTF-16LE characters. The Characters will be stored starting with the LSB at...
  • Page 30 Bit 5= Reserved Bit 4= Reserved Bit 3= ‘1’; Port 3 DP/DM is Swapped. Bit 2= ‘1’; Port 2 DP/DM is Swapped. Bit 1= ‘1’; Port 1 DP/DM is Swapped. Bit 0= ‘1’; Upstream Port DP/DM is Swapped DATASHEET Datasheet SMSC USB2513i...
  • Page 31: Table 4.3 Port Remap Register For Ports 1 & 2

    Register FBh: Port Remap 12 NUMBER BIT NAME PRTR12 SMSC USB2513i DESCRIPTION Port remap register for ports 1 & 2. When a hub is enumerated by a USB Host Controller, the hub is only permitted to report how many ports it has; the hub is not permitted to select a numerical range or assignment.
  • Page 32: Table 4.4 Port Remap Register For Port 3

    Physical Port 3 is mapped to Logical Port 2 ‘0011’ Physical Port 3 is mapped to Logical Port 3 ‘0100’ ‘1111’ DATASHEET Datasheet Reserved Reserved Reserved Reserved Illegal; Do Not Use Physical Port 3 is Disabled Illegal; Do Not Use SMSC USB2513i...
  • Page 33: I2C Eeprom

    4.3.3 In-Circuit EEPROM Programming The EEPROM can be programmed via ATE by pulling RESET_N low (which tri-states the Hub’s EEPROM interface and allows an external source to program the EEPROM). SMSC USB2513i DESCRIPTION Reserved SMBus Interface Power Down ‘0’ = Interface is active ‘1’...
  • Page 34: Smbus Slave Interface

    SMBus interface, external EEPROM support is no longer available (and the user-defined descriptor data must be downloaded via the SMBus). Due to system issues, the SMSC Hub waits indefinitely for the SMBus code load to complete and only “appears” as a newly connected device on USB after the code load is complete.
  • Page 35: Invalid Protocol Response Behavior

    SCLK. 4.4.6 SMBus Timing The SMBus Slave Interface complies with the SMBus AC Timing Specification. See the SMBus timing in the “Timing Diagram” section. SMSC USB2513i Register Address Data byte 2 Block Read Figure 4.2 Block Read Section 4.4.3 for the response to undefined registers.
  • Page 36: Bus Reset Sequence

    Unless otherwise instructed, only a ‘0’ may be written to all reserved registers or bits. Default Configuration Option: The SMSC Hub can be configured via its internal default configuration. (please see "Internal Register Set (Common to EEPROM and SMBus)" configuration.) Please refer to Table 4.2...
  • Page 37: Reset

    7. LED indicators are disabled. The Hub is “operational” 500μs after RESET_N is negated. Once operational, the Hub immediately reads OEM-specific data from the external EEPROM (if the SMBus option is not disabled). SMSC USB2513i Strap High 100K Strap Low 100K Figure 4.3 LED Strapping Option...
  • Page 38: Figure 4.4 Reset_N Timing For Default/Strap Option Mode

    USB Reset inactive recovery Upstream levels Driven by Hub if strap is an output. Don’t Care 16.7 16.7 undefined DATASHEET Datasheet Start completion Idle request response UNITS μsec nsec 1400 nsec μsec msec msec msec msec Chapter 5, DC SMSC USB2513i...
  • Page 39: Figure 4.5 Reset_N Timing For Eeprom Mode

    When in Bus-Powered mode, the Hub and its associated circuitry must not consume more than 100mA from the upstream USB power source during t4+t5+t6+t7. All Power Supplies must have reached the operating levels mandated in Parameters, prior to (or coincident with) the assertion of RESET_N. SMSC USB2513i Attach USB Reset recovery...
  • Page 40: Usb Bus Reset

    Industrial Temperature Rated USB 2.0 High-Speed 3-Port Hub Controller Attach SMBus Code Hub PHY USB Reset Load Stabilization Upstream DATASHEET Datasheet Start completion Idle recovery request response UNITS μsec μsec msec msec msec Undefined msec msec Chapter 5, DC SMSC USB2513i...
  • Page 41 6. Complies with Section 11.10 of the USB 2.0 Specification for behavior after completion of the reset sequence. The Host then configures the Hub and the Hub’s downstream port devices in accordance with the USB Specification. SMSC USB2513i DATASHEET Revision 1.98 (11-19-07)
  • Page 42: Chapter 5 Dc Parameters

    Datasheet COMMENTS Soldering < 10 seconds COMMENTS If any 3.3V supply voltage drops b e l o w 3 . 0 V, t h e n t h e M A X becomes: (3.3V supply voltage) + 0.5 SMSC USB2513i...
  • Page 43: Table 5.1 Dc Electrical Characteristics

    High Input Level IHCK Input Leakage O12, I/O12 &I/OSD12 Type Buffer Low Output Level High Output Level Output Leakage Hysteresis (‘SD’ pad only) HYSC SMSC USB2513i UNITS -0.3 DDA33 -0.3 DD18 Table 5.1 DC Electrical Characteristics UNITS DATASHEET COMMENTS COMMENTS...
  • Page 44 See USB 2.0 Specification for USB DC electrical characteristics. Revision 1.98 (11-19-07) Industrial Temperature Rated USB 2.0 High-Speed 3-Port Hub Controller UNITS All supplies combined All supplies combined μA All supplies combined μA All supplies combined DATASHEET Datasheet COMMENTS SMSC USB2513i...
  • Page 45: Table 5.2 Pin Capacitance

    = 25°C; fc = 1MHz; V PARAMETER SYMBOL Clock Input XTAL Capacitance Input Capacitance Output Capacitance SMSC USB2513i = 1.8V DD18 DDPLL Table 5.2 Pin Capacitance LIMITS UNIT All pins except USB pins (and pins under test tied to AC ground)
  • Page 46: Chapter 6 Ac Specifications

    Figure 6.2 Formula to find value of C 6.1.1 SMBus Interface: The SMSC Hub conforms to all voltage, power, and timing characteristics and specifications as set forth in the SMBus 1.0 Specification for Slave-Only devices (except as noted in Slave Interface").
  • Page 47: Chapter 7 Package Outlines

    Chapter 7 Package Outlines Figure 7.1 36-Pin QFN, 6x6mm Body, 0.5mm Pitch...
  • Page 48: Figure 7.2 48-Pin Qfn, 7X7Mm Body, 0.5Mm Pitch

    Figure 7.2 48-Pin QFN, 7x7mm Body, 0.5mm Pitch...

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