background image

© 2017 Exar Corporation

XR22414 EVB User’s Manual

3 / 8

www.exar.com\XR22414

Rev 1A

stream USB ports to connect to the QFN48 device for the XR22414CL48EVB. These resistors are not installed for the
LQFP48 EVB.

Power Configurations

The XR22414 EVB may operate in either bus powered or self-powered modes. The power mode must be selected by
jumper J8. If self-powered, the device uses the 5V supplied by the external 5V DC input to J8 power jack. When bus pow-
ered, the XR22414 may not be capable of providing sufficient power to all downstream ports. By USB specification, in bus
powered mode, each downstream port may draw 100 mA maximum and the hub itself may draw an additional 100 mA. In
self-powered mode, external 5V must be supplied to the PCB via the J7 power connector and each downstream port may
draw up to 500 mA.

The XR22414 EVB may alternately operate from a 3.3V input. To power the device from 3.3V the REG_EN# pin must be
deasserted and the VCC5 pin must not be connected to a 5V source. The 3.3V power input to should be provided to all
VCC33 pins and the 3V3_OUT pin will not provide an output voltage.

The XR22414 EVB can be configured for either individual or global power monitoring and ganged power control. In individ-
ual mode, each port is monitored by an XRP2527 power monitor circuit. In global mode, all four downstream ports power is
combined and monitored by a single monitor circuit. Alternately, power to the downstream ports of the XR22414 EVB can
be monitored by a resettable PTC fuse, or by both the fuse and the power monitor devices. Over-current conditions detected
by either XRP2527 current monitors or PTC fuses are signaled to the OVC# pin of the device, and power out pins (PWR#)
are deasserted to then power down downstream ports. 

Table 2 defines the jumper settings on the XR22414 EVB, and the default settings of each jumper when shipped from the
factory.

Table 2: Jumper Settings and components for PCB Power

Jumper

Description

Default

J8

J8 must be installed either pin 1 to 2 when the XR22414 is self-powered 
or pin 2 to 3 when the device is bus powered. 

By default J8 is installed pin 1 to 2

J6

J6 can be used to bypass the inrush current limiting circuit when the 
XR22414 is bus powered. 

By default J6 is not installed

J1, J2, J3, J4, J5

To power the device from 3.3V instead of 5V, the top surface trace 
across jumper J3 must be cut disabling the 5V to 3.3V internal regulator. 
For the XR22414CV48EVB the top surface trace across jumper J2 must 
also be cut and J1 must be installed from pin 2 to 3 to use the external 
3.3V LDO voltage. For the XR22414CL48EVB J5 trace must be cut and 
J4 must be installed pin 2 to 3. 

J2, J3 and J5 are normally not installed. 
By Default, J1 in installed pin 1 to 2 for 
the XR22414CV48EVB or J4 is installed 
pin 1 to 2 for the XR22414CL48EVB.

J21, J22, J23, J24, 
J25, J26, J27

J21 is used to select global over current monitoring for downstream port 
over-current protection. When J21 is installed, global over-current moni-
toring is selected. When J21 is not installed, individual port over-current 
monitoring is selected. If J21 is installed, J25, J26 and J27 should also 
be installed to connect port power for all downstream ports together and 
J22, J23, and J24 should also be installed to connect unused OVCn# 
pins to ground.

By default J21, J22, J23, J24, J25, J26 
and J27 are not installed. 

J9, J10, J15, J16

J9, J10, J15 and J16 are used to select whether the PTC fuse only or 
current monitor (XRP2527) device is used for downstream port over-cur-
rent protection. 

By default J9, J10, J15 and J16 are 
installed from pin 1 to 2.

J11, J12, J17, J18

If J9, J10, J15 and J16 are installed pin 1 to 2, J11, J12, J17 and J18 
select whether XRP2527 over-current monitor only or PTC fuse and cur-
rent monitor devices protect downstream ports.

By default J11, J12, J17 and J18 are 
installed from pin 2 to 3.

Summary of Contents for XR22414-EVB

Page 1: ...line Evaluation Board outline Figure 1 shows the topography of the evaluation board Either U1 or U2 will be installed depending upon the version of the evaluation board Figure 1 XR22414 PCB Outline Ta...

Page 2: ...umper settings that may be used to reconfigure operation Differences between XR22414CV48EVB and XR22414CL48EVB The XR22414 is available in two packages a 48 pin LQFP and a 48 pin QFN The two versions...

Page 3: ...and the default settings of each jumper when shipped from the factory Table 2 Jumper Settings and components for PCB Power Jumper Description Default J8 J8 must be installed either pin 1 to 2 when the...

Page 4: ...ula ILIM trip current 108 7 RSET resistance kOhms By default J13 J14 J19 and J20 are installed pin 1 to 2 J9 J9 selects normal hub operation port and hub activity indicators or charging mode By defaul...

Page 5: ...amic Capacitor 1uF 16V 0805 885012207051 8 16 C3 C5 C23 C25 C31 C35 C36 C37 C38 C42 C43 C44 C45 C48 C51 C52 Ceramic Capacitor 100nF 25V 0603 885012206071 9 4 D2 D3 D4 D5 LED Green 0805 150080GS75000 1...

Page 6: ...4 8 C1 C2 C4 C6 C10 C12 C18 C20 Ceramic Capacitor 47uF 16V 1210 885012109011 5 2 C26 C27 Ceramic Capacitor 4 7uF 16V 0805 885012107013 6 2 C28 C40 Ceramic Capacitor 10uF 16V 0805 885012107014 7 10 C7...

Page 7: ...hm 5 0603 25 1 R28 R28 R33 R34 Resistor 100 kOhm 5 0603 DNI 26 2 R1 R22 Resistor 5 1 kOhm 5 0603 27 1 R44 Resistor 470 Ohm 5 0603 28 4 R43 R45 R46 R47 Resistor 2 kOhm 5 0603 29 1 R20 Resistor 40 2 KOh...

Page 8: ...ion purposes and may vary depending upon a user s specific application While the information in this publication has been carefully checked no responsibility however is assumed for inaccuracies EXAR C...

Reviews: