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  rev. 0.2 6/10 copyright ? 2010 by silicon labs SI5356-EVB SI5356-EVB si5356 e valuation b oard u ser ? s g uide description the si5356 evaluation bo ard (evb) is used for evaluating the si5356 i 2 c programmable, any frequency 1?200 mhz, quad frequency 8-output clock generator. evb features ? fully powered from a single usb port ? on-board 25 mhz xtal allows standalone asynchronous operation ? gui programmable v dd supply allows device to operate from 3.3 v, 2.5 v, or 1.8 v (core) ? gui programmable v ddo supplies allows each of the four banks of outputs to have its own supply voltage selectable from 3.3 v, 2.5 v, and 1.8 v ? gui controlled voltage, current, and power measurements of v dd and all four v ddo supplies. ? voltage supply jumpers allo ws easy access for use of external supplies or current measurements. figure 1. si5356 evaluation board
SI5356-EVB 2 rev. 0.2 1. quick start 1. install the si5356 clockbuilder? desktop software and dr iver. (assumes that microsoft .net framework 1.1 is already installed.) 2. connect a usb cable from the evb to th e pc where the soft ware was installed. 3. leave the jumpers as installed from the factory and l aunch the si5356 configuration software by clicking on start ?? programs ? silicon laboratories ? clockbuilder desktop software . 4. click on the ?clockbuilder desktop? to configure the si5356 us ing the graphical user interface. 2. functional description a function block diagram of th e evb is shown in figure 2. t he mcu performs the usb to i 2 c conversion, controls the voltage regulators, monitors the intr pin, and cont rols the three status leds. there are five programmable voltage regulators (vdd, vddoa, v ddob, vddoc, vddod), which supply power to the si5356 device. vdd and vddo jumpers allow the option of powe ring the device from external supplies or as a convenient point for measuring current. i 2 c jumpers allow disconnecting the si5356 from the i 2 c bus to allow exte rnal control from another i 2 c master. the si5356 evb is shippe d with an on-board 25 mhz xt al to allow stand-alone as ynchronous operation. the si5356 can be synchronized to an external reference us ing the clkin input and selecting the external reference using the clockbuilder desktop software. figure 2. evb functional block diagram xtal mcu usb connector xa xb ssc_dis oeb clkin i2c_lsb clk0 clk1 vddoa vreg vreg vreg vreg clk2 clk3 vddob clk4 clk5 vddoc clk6 clk7 vddod si5356 vreg vdd to i2c bus scl sda i2c bus to i2c bus status leds reset switch vddo jumpers intr i2c jumpers vdd jumpers j7 1 2 j7 3 4 j7 5 6 scl sda vcc +5v +5v +5v
SI5356-EVB rev. 0.2 3 2.1. status leds there are thre e status leds on the evb: ? rdy (green) indicates that the evb is operating as normal. th is led should always be on. ? busy (green) lights when there is active communica tion between the pc, the mcu, and the si5356. ? intr (red) indicates the mcu has detected that the interrupt pin of the si5356 device is enabled. the most probable cause for an interrupt is because the si5356 ha s lost its input signal or the pll has lost lock. the ?status? tab of the gui will identify the event that caused the interrupt to happen. 2.2. inputs the si5356 evb provides two refer ence options - using th e on-board xtal or an external reference. note: SI5356-EVB rev 1.0 does not support synchronous operation us ing the clkin input. this feature will be supported in future revisions. 2.2.1. external input reference an sma connector (clkin) is provided to receive an exte rnal single-ended cmos signal. this input is dc-coupled to the device. the signal should have a minimum amount of dc bias to ensure that it never swings below ground level. 2.2.2. on-board xtal the on-board 25 mhz allows the si5356 evb to generat e asynchronou s clocks. to use this option, select the xtal input from the si5356 ?clockb uilder deskto p? software. 2.3. outputs (clk0-clk7) each of the eight output clocks can be accessed using sma connectors. the outputs are dc-coupled (no in-line dc blocking capacitors between the ou tput pin and the sma connector). 2.4. control pins header j7 locate d on the backside of the si5356 evb allows setting three si5356 control pins: ssc_dis, i2c_lsb, and oeb. 2.4.1. ssc_dis this pin allows disabling of the spread spectrum feature on the output clocks. spread spectrum is disabled when the jumper is installed. 2.4.2. i2c_lsb this pin is the least significant bit of the si5356 i 2 c address allowing up to two si53 56 devices to occupy the same i 2 c bus. i 2 c address of the si5356 = 0x70 when the jumper is installed. i 2 c address of the si5356 = 0x71 when the jumper is not installed. 2.4.3. oeb this pin allows disabling all output clocks. all outputs are enabled when the jumper is installed. 2.5. voltage regulators the si5356 evb has five built-in programmable voltage regulators to allow setting of the vdd supply (to 3.3 v, 2.5 v, and 1.8 v) and the four vddo s upplies (to 3.3 v, 2.5 v, and 1.8 v). the voltage level on each of these supplies can be set independently. 2.6. reset switch a reset switch is provided to reset co mmunication between the pc and si5356 evb.
SI5356-EVB 4 rev. 0.2 3. clockbuilder desktop software installation the following sections describe how to install and begin usin g the software. there is also a readme.txt file with the installation files as well as a user guide installed with the software. 3.1. system requirements ? microsoft windows 2000 or windows xp ? usb 2.0 ? 2 mb of free hard drive space ? 1024 x 768 screen resolution or greater ? microsoft .net framework 1.1 ? usbxpress 3.1.1 driver note: usbxpress 3.1.1 driver is prov ided and installed with the software. newer or older versions of usbxpress available from other evb kits or online have no t been tested with this software. 3.2. microsoft .net framework installation the microsoft .net framework is requi red before installing an d running the software. details and installation information about the .net framework are available via a shortcut in the netframework directory or at the following web site: http://www.microsoft.com/downloads/ details.aspx?familyid=262d25e3-f589-4842-8157-034d1e7cf3a3&displaylang=en there are multiple versions of the .net framework available from microsoft, and they can be installed side-by-side on the same computer. the software requires version 1.1. contact your system administrator for more details. 3.3. clockbuilder desk top software installation the clockbuilder desktop software is installe d from the clockbuilderdesktopswinstall.exe file. 1. double-click the install file to start the wizard. 2. follow the wizard instructions to comp lete the installation for both the software and the driver. use the default installation location for best results. 3. after the insta llation is complete, click on start ? programs ? silicon laboratories ? clockbuilder desktop software . select one of the items in the menu including the user guide to get more details on how to run the software.
SI5356-EVB rev. 0.2 5 3.4. clockbuilder desktop so ftware uninstall instructions close all the programs and he lp files before running the uninstaller to ensu re complete removal of the software. the driver software must be uninst alled separately. see ?3.6. usbxpress driver installation? for details. to uninstall the software, use the a dd and remove progr ams utility in the control pa nel, as shown in figure 3. figure 3. uninstall in add and remove programs
SI5356-EVB 6 rev. 0.2 3.5. clockbuilder desk top software description there are several programs to control the si 5356 device. these are available by clicking start ?? programs ?? silicon laboratories ?? clockbuilder desktop software x.x , where x.x is the software version number. there is a detailed user guide accessible here and in the help ? help menu option of the software. 3.6. usbxpress driver installation the evb uses the silicon la boratories' usbxpress driver to allow the evb to communica te with the computer via usb. the driver is installed after th e evb software is installed. click install to run the driver installation. clicking cancel will not install any files, and the evb will not work with the software. figure 4. driver installer dialog note: if the driver has already been installed on the computer before, it will not be reinstalled, and a message box will appear as shown in figure 5. figure 5. driver already installed the installer will copy the necessary dr iver files and update the operating system. however, for every different evb connected to the same computer, the hardware installation wizard will run to associate this driver with the new evb. let the wizard run with its de fault settings. figure 6 shows a successful driver installation. table 1. programs program description clockbuilder desktop this automatically programs the necessary registers based on the customer's desired frequency plan for the si5356 device. bit field programmer this utility provides access to each bit field in the register map of the device; no masking and shifting is required to decode each setting or control in the register map. register programmer this provides lo w-level control of the device with individual 8-bit register accesses.
SI5356-EVB rev. 0.2 7 figure 6. successful driver installation
SI5356-EVB 8 rev. 0.2 the usbxpress driver may be removed via the add and remove programs utility in the control panel. locate the entry called silicon laboratories usbxp ress device. click the butt on, and it should show the version and location of what it will remove. figure 7. driver uninstall location the usbxpress installation files are lo cated with the clockbuilder desktop so ftware. the driver files for the evb may be reinstalled from this location or by running the install software. figure 8. driver installation files
SI5356-EVB rev. 0.2 9 4. SI5356-EVB schematics oeb ssc_dis i2c_lsb vddob vddod vddoc vdd vddoa +3.3v vdd +3.3v sda_5338 scl_5338 intrpt si5356 place close to output pins these traces need to be 50 ohms and be of equal length. r3 0 r3 0 r6 0 r6 0 c3 0.1uf c3 0.1uf r22 0 r22 0 r15 10k r15 10k j6 sma clk4 j6 sma clk4 r13 0 r13 0 c1 0.1uf c1 0.1uf r7 0 r7 0 r14 0 r14 0 c54 0.01uf c54 0.01uf r9 0 r9 0 c2 0.1uf c2 0.1uf j1 sma clk0 j1 sma clk0 r17 2.15k r17 2.15k r20 1k r20 1k r16 2.15k r16 2.15k r4 0 r4 0 u1 si5356 u1 si5356 epad 25 clk4 14 i2c_lsb 3 oeb 6 clkin 4 ssc_dis 5 xb 2 xa 1 clk3 17 clk2 18 clk1 21 clk0 22 vdd 24 vddoa 20 vddob 16 vddoc 15 vddod 11 vdd 7 intr 8 scl 12 sda 19 gnd 23 clk7 9 clk6 10 clk5 13 j5 sma clk3 j5 sma clk3 r23 0 r23 0 r2 0 r2 0 j7 header 2x3 j7 header 2x3 1 3 2 4 5 6 j10 sma clk7 j10 sma clk7 25mhz u2 25mhz u2 xtal1 1 gnd 2 xtal2 3 gnd 4 c6 0.1uf c6 0.1uf j4 sma clkin j4 sma clkin c4 0.1uf c4 0.1uf r12 0 r12 0 c55 0.01uf c55 0.01uf j2 sma clk1 j2 sma clk1 r8 0 r8 0 r19 0 r19 0 j3 sma clk2 j3 sma clk2 c5 0.1uf c5 0.1uf r1 4.99k r1 4.99k r5 0 r5 0 j9 sma clk6 j9 sma clk6 r10 0 r10 0 r21 1k r21 1k r18 0 r18 0 tp1 intr red tp1 intr red r11 0 r11 0 j8 sma clk5 j8 sma clk5 figure 9. SI5356-EVB schematic
SI5356-EVB 10 rev. 0.2 i2c_5v_en i2c_5v_en +5v_usb vdd +3.3v vddob vddoc vddod +3.3v +3.3v +3.3v +3.3v vddoa +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +3.3v +3.3v +3.3v +3.3v +3.3v +5v_usb +3.3v +5v_usb +3.3v +5v_usb vdd_pin vddob_pin vddoc_pin vddod_pin vddoa_pin +3.3v scl_5v sda_5v intrpt scl_5v sda_5v scl_5338 sda_5338 scl_5v sda_5v address is 1001100 mcu 0.9v to 5.5v 2.7v to 5.5v +2.5v ref address is 1001101 r45 1.02k r45 1.02k d2 mmbd3004s-7-f d2 mmbd3004s-7-f c16 0.1uf c16 0.1uf r37 0 r37 0 j11 header 2x2 j11 header 2x2 1 1 3 3 2 2 4 4 d4 green busy d4 green busy r26 1k r26 1k r40 1k r40 1k r33 2k r33 2k c12 0.1uf c12 0.1uf c13 0.1uf c13 0.1uf r31 2k r31 2k r35 0 r35 0 + c14 10uf + c14 10uf c17 0.1uf c17 0.1uf adg728 u6 adg728 u6 sda 3 resetb 2 s1 4 s2 5 s3 6 s4 7 d 8 a0 16 s8 9 s7 10 s6 11 s5 12 vdd 13 gnd 14 scl 1 a1 15 r39 1k r39 1k r25 1.02k r25 1.02k c8 1uf c8 1uf r24 1.02k r24 1.02k c10 0.1uf c10 0.1uf c18 0.1uf c18 0.1uf r44 220 r44 220 s1 sw pushbutton s1 sw pushbutton r43 220 r43 220 r29 2k r29 2k c20 1uf c20 1uf r30 2k r30 2k r41 1k r41 1k c15 1uf c15 1uf d3 mmbd3004s-7-f d3 mmbd3004s-7-f r28 1k r28 1k u5 c8051f340 u5 c8051f340 vdd 10 regin 11 gnd 7 vbus 12 d+ 8 d- 9 p0.0 6 p0.1 5 p0.2 4 p0.3 3 p0.4 2 p0.5 1 p0.6 48 p0.7 47 p1.0 46 p1.1 45 p1.2 44 p1.3 43 p1.4 42 p1.5 41 p1.6 40 p1.7 39 p2.0 38 p2.1 37 p2.2 36 p2.3 35 p2.4 34 p2.5 33 p2.6 32 p2.7 31 p3.0 30 p3.1 29 p3.2 28 p3.3 27 p3.4 26 p3.5 25 p3.6 24 p3.7 23 p4.0 22 p4.1 21 p4.2 20 p4.3 19 p4.4 18 p4.5 17 p4.6 16 p4.7 15 rst/c2ck 13 c2d 14 c9 0.1uf c9 0.1uf j12 usb type b j12 usb type b 1 2 3 4 5 6 c19 0.1uf c19 0.1uf r47 412 r47 412 d1 red intr d1 red intr + c21 10uf + c21 10uf tp4 gnd red tp4 gnd red tp3 sda red tp3 sda red u4 pca9517d u4 pca9517d vcca 1 scla 2 sdaa 3 gnd 4 vccb 8 sclb 7 en 5 sdab 6 r46 1.02k r46 1.02k adg728 u7 adg728 u7 sda 3 resetb 2 s1 4 s2 5 s3 6 s4 7 d 8 a0 16 s8 9 s7 10 s6 11 s5 12 vdd 13 gnd 14 scl 1 a1 15 r42 1k r42 1k c7 4.7uf c7 4.7uf d5 green rdy d5 green rdy r34 0 r34 0 2.5v u3 2.5v u3 vout 1 gnd 2 vin 3 tp2 scl red tp2 scl red c11 0.1uf c11 0.1uf r27 1k r27 1k j13 5x2 shrouded header j13 5x2 shrouded header 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 figure 10. SI5356-EVB mcu schematic
SI5356-EVB rev. 0.2 11 vddo1_int_en vddo0_int_en vddo3_int_en vddo2_int_en vdd_int_en vdd_int_en vddo3_int_en vddo2_int_en vddo1_int_en vddo0_int_en +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb +5v_usb vdd vddoa vddob vddoc vddod +3.3v vddoa_pin vddob_pin vddoc_pin vddod_pin vdd_pin sda_5v scl_5v sda_5v scl_5v sda_5v scl_5v address is 0101100 address is 0101101 address is 0101110 voltage regulators c51 0.1uf c51 0.1uf j16 jumper j16 jumper 1 2 c50 0.01uf c50 0.01uf r56 10k r56 10k u10 max8869 u10 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 c32 1uf c32 1uf + c27 10uf + c27 10uf j15 jumper j15 jumper 1 2 r48 10 r48 10 u14 max8869 u14 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 r57 47.5k r57 47.5k tp8 vddod red tp8 vddod red r53 10k r53 10k c35 1uf c35 1uf tp14 gnd red tp14 gnd red j17 jumper j17 jumper 1 2 c41 0.01uf c41 0.01uf c31 1uf c31 1uf c26 1uf c26 1uf u9 max8869 u9 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 c29 1uf c29 1uf u13 ad5263 u13 ad5263 gnd 8 w4 19 a4 20 b3 4 w3 6 w1 3 a3 5 a1 2 b1 1 b4 21 w2 22 a2 23 b2 24 nc/o2 17 sdo/o1 16 vlogic 10 csb/ad0 13 resb/ad1 14 shdn_b 15 vdd 7 dis 9 sdi/sda 11 clk/scl 12 vss 18 c39 1uf c39 1uf tp13 gnd red tp13 gnd red + c25 10uf + c25 10uf u15 max8869 u15 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 c22 1uf c22 1uf r49 10 r49 10 + c33 10uf + c33 10uf c49 1uf c49 1uf tp12 gnd red tp12 gnd red r55 10k r55 10k u11 max8869 u11 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 u16 ad5263 u16 ad5263 gnd 8 w4 19 a4 20 b3 4 w3 6 w1 3 a3 5 a1 2 b1 1 b4 21 w2 22 a2 23 b2 24 nc/o2 17 sdo/o1 16 vlogic 10 csb/ad0 13 resb/ad1 14 shdn_b 15 vdd 7 dis 9 sdi/sda 11 clk/scl 12 vss 18 c47 1uf c47 1uf c23 1uf c23 1uf r54 10 r54 10 tp9 vdd red tp9 vdd red c34 1uf c34 1uf tp11 gnd red tp11 gnd red c24 1uf c24 1uf c45 1uf c45 1uf c38 0.01uf c38 0.01uf c28 1uf c28 1uf r58 15.4k r58 15.4k c37 0.01uf c37 0.01uf u8 max8869 u8 max8869 gnd 10 in 4 out 12 rstb 6 set 11 shdnb 7 in 5 in 3 in 2 out 13 out 14 out 15 ss 8 nc 16 nc 9 nc 1 epad 17 c52 1uf c52 1uf tp5 vddoa red tp5 vddoa red c53 0.01uf c53 0.01uf + c30 10uf + c30 10uf j14 jumper j14 jumper 1 2 c42 0.01uf c42 0.01uf tp6 vddob red tp6 vddob red + c46 10uf + c46 10uf j18 jumper j18 jumper 1 2 tp7 vddoc red tp7 vddoc red + c48 10uf + c48 10uf c40 0.1uf c40 0.1uf c36 1uf c36 1uf c44 1uf c44 1uf c43 0.1uf c43 0.1uf r52 10k r52 10k u12 ad5263 u12 ad5263 gnd 8 w4 19 a4 20 b3 4 w3 6 w1 3 a3 5 a1 2 b1 1 b4 21 w2 22 a2 23 b2 24 nc/o2 17 sdo/o1 16 vlogic 10 csb/ad0 13 resb/ad1 14 shdn_b 15 vdd 7 dis 9 sdi/sda 11 clk/scl 12 vss 18 r51 10 r51 10 r50 10 r50 10 tp10 +3.3v red tp10 +3.3v red figure 11. SI5356-EVB voltage regulators schematic
SI5356-EVB 12 rev. 0.2 5. SI5356-EVB bill of materials table 2. SI5356-EVB bill of materials item qty reference value voltage tol pcb footprint mfr mfr part number 1 18 c1,c2,c3,c4, c5,c6,c9,c10, c11,c12,c13, c16,c17,c18, c19,c40,c43, c51 0.1 f 10 v 10% c0402 venkel c0402x7r100-104k 2 1 c7 4.7 f 10 v 20% c1206 venkel c1206x7r100-475m 3 3 c8,c15,c20 1 f 25 v 10% c1206 venkel c1206x7r250-105k 4 7 c14,c25,c27, c30,c33,c46, c48 10 f 25 v 20% 6032_eiac kemet b45196h5106m309 5 17 c22,c23,c24, c26,c28,c29, c31,c32,c34, c35,c36,c39, c44,c45,c47, c49,c52 1 f 10 v 10% c0603 venkel c0603x7r100-105k 6 6 c37,c38,c41, c42,c50,c53 0.01 f 10 v 20% c0402 venkel c0402x7r100-103m 7 1 d1 red led-s-gw-ka panasonic ln1271ral 8 2 d2,d3 mmbd3004s-7-f 300 v sot23-akc diodes inc. mmbd3004s-7-f 9 2 d4,d5 green led-s-gw-ak panasonic ln1371g 10 8 j1,j2,j3,j5,j6, j8,j9,j10 sma sma-edge-5 johnson components 142-0701-801 11 1 j7 header 2x3 conn2x3 samtec tsw-103-07-t-d 12 1 j11 header 2x2 conn2x2 samtec tsw-102-07-t-d 13 1 j12 usb type b conn-usb-b tyco 292304-1 14 1 j13 5x2 shrouded header conn2x5-4w tyco 5103309-1 15 5 j14,j15,j16, j17,j18 jumper conn-1x2 samtec tsw-102-07-t-s 16 1 r1 4.99 k ? 1% r0402 venkel cr0402-16w-4991f 17 19 r2,r3,r4,r5, r6,r8,r9,r10, r11,r12,r13, r14,r18,r19, r22,r23,r34, r35,r37 0 ? r0402 venkel cr0402-16w-000 18 1 r15 10 k ? 1% r0603 venkel cr0603-10w-1002f 19 2 r16,r17 2.21 k ? 1% r0603 venkel cr0603-10w-2211f
SI5356-EVB rev. 0.2 13 20 2 r20,r21 1 k ? 1% r0603 venkel cr0603-10w-1001f 21 4 r24,r25,r45, r46 1.02 k ? 0.1 % r0402 venkel tfcr0402-16w-e-1021b 22 7 r26,r27,r28, r39,r40,r41, r42 1k ? 5% r0402 venkel cr0402-16w-102j 23 4 r29,r30,r31, r33 2k ? 1% r0402 venkel cr0402-16w-2001f 24 2 r43,r44 220 ? 5% r0402 venkel cr0402-16w-221j 25 1 r47 412 ? 1% r0402 venkel cr0402-16w-4120f 26 5 r48,r49,r50, r51,r54 10 ? 0.5 % r2512 venkel cr2512-2w-10r0d 27 4 r52,r53,r55, r56 10 k ? 5% r0402 venkel cr0402-16w-103j 28 1 r57 47.5 k ? 1% r0603 venkel cr0603-10w-4752f 29 1 r58 15.4 k ? 1% r0603 venkel cr0603-10w-1542f 30 1 s1 sw pushbutton 12 vdc sw-pb-mom mountain switch 101-0161-ev 31 1 tp4 black testpoint kobiconn 151-203-rc 32 1 u1 si5356 3.3 v qfn24n4x4p0 .5 silabs si5356-a-a-gm 33 1 u2 25 mhz xtal4n3.2x2. 5-fa238 epson fa-238 25.0000mb 34 1 u3 2.5 v sot-23 analog devices ad1582brt 35 1 u4 pca9517d so8n6.0p1.27 nxp pca9517d 36 1 u5 c8051f340 5.5 v qfp48n9x9p0 .5 silabs c8051f340-gq 37 2 u6,u7 adg728 2.7? 5.5 v tssop16n6.4 p0.65 analog devices adg728bruz 38 6 u8,u9,u10, u11,u14,u15 max8869 tssop16n6.5 p0.65e maxim max8869eue50 39 3 u12,u13,u16 ad5263 tssop24n6.4 p0.65 analog devices ad5263bruz20 40 4 spc technology 2397 41 4 richco nss-4-4-01 42 10 jumpers sullins spc02syan 43 1 c21 10 f 25 v 20% 6032_eiac kemet b45196h5106m309 table 2. SI5356-EVB bill of materials (continued) item qty reference value voltage tol pcb footprint mfr mfr part number
SI5356-EVB 14 rev. 0.2 44 1 j4 sma sma-edge-5 johnson components 142-0701-801 45 1 r7 0 r0402 venkel cr0402-16w-000 46 13 tp1,tp2,tp3, tp5,tp6,tp7, tp8,tp9,tp10, tp11,tp12, tp13,tp14 red testpoint kobiconn 151-207-rc table 2. SI5356-EVB bill of materials (continued) item qty reference value voltage tol pcb footprint mfr mfr part number
SI5356-EVB rev. 0.2 15 d ocument c hange l ist revision 0.1 to revision 0.2 ? changed ?any rate clock generator? to ?clockbuilder desktop? throughout. ? changed ?multisynth clock programmer? to ?clockbuilder desktop? throughout. ? updated figure 3 on page 5. ? removed ?uninstaller option? figure. ? updated figure 8 on page 8.
SI5356-EVB 16 rev. 0.2 c ontact i nformation silicon laboratories inc. 400 west cesar chavez austin, tx 78701 tel: 1+(512) 416-8500 fax: 1+(512) 416-9669 toll free: 1+(877) 444-3032 please visit the silicon labs technical support web page: https://www.silabs.com/support/pages/contacttechnicalsupport.aspx and register to submit a technical support request. silicon laboratories, silicon labs, and dspll are trademarks of silicon laboratories inc. other products or brandnames mentioned herein are trademarks or registered trademarks of their respective holders. the information in this document is believed to be accurate in all respects at the time of publ ication but is subject to change without notice. silicon laboratories assumes no responsibility for errors and om issions, and disclaims responsibi lity for any consequences resu lting from the use of information included herein. ad ditionally, silicon laboratorie s assumes no responsibility for the functioning of und escribed features or parameters. silicon laboratories reserves the right to make changes without further notice . silicon laboratories makes no wa rranty, rep- resentation or guarantee regarding the suitability of its products for any particular purpose, nor does silicon laboratories as sume any liability arising out of the application or use of any product or circuit, and s pecifically disclaims any and all liability, including wi thout limitation conse- quential or incidental damages. silicon laborat ories products are not designed, intended, or authorized for use in applications intended to support or sustain life, or for any other application in which the failure of t he silicon laboratories product could create a s ituation where per- sonal injury or death may occur. should buyer purchase or us e silicon laboratories products for any such unintended or unauthor ized ap- plication, buyer shall indemnify and hold silicon laboratories harmles s against all claims and damages.


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