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  rev. 1.6 12/13 copyright ? 2013 by silicon laboratories cp2102/9 cp2102/9 s ingle -c hip usb to uart b ridge single-chip usb to uart data transfer - integrated usb transceiver; no external resistors required - integrated clock; no external crystal required - internal 1024-byte programmable rom for vendor id, product id, serial number, power descriptor, release number, and product description strings - eeprom (cp2102) - eprom (one-time programmable) (CP2109) - on-chip power-on reset circuit - on-chip voltage regulator - 3.3 v output (cp2102) - 3.45 v output (CP2109) - 100% pin and software compatible with cp2101 usb function controller - usb specification 2.0 compliant; full-speed (12 mbps) - usb suspend states supported via suspend pins asynchronous serial data bus (uart) - all handshaking and modem interface signals - data formats supported: - data bits: 5, 6, 7, and 8 - stop bits: 1, 1.5, and 2 - parity: odd, even, mark, space, no parity - baud rates: 300 bps to 1 mbps - 576 byte receive buffer; 640 byte transmit buffer - hardware or x-on/x-off handshaking supported - event character support - line break transmission virtual com port device drivers - works with existing com port pc applications - royalty-free distribution license - windows 8/7/vista/server 2003/xp/2000 - mac os-x/os-9 - linux usbxpress? direct driver support - royalty-free distribution license - windows 7/vista/xp/server 2003/2000 - windows ce example applications - upgrade of rs-232 legacy devices to usb - cellular phone usb interface cable - usb interface cable - usb to rs-232 serial adapter supply voltage - self-powered: 3.0 to 3.6 v - usb bus powered: 4.0 to 5.25 v package - rohs-compliant 28-pin qfn (5x5 mm) ordering part numbers - cp2102-gm - CP2109-a01-gm temperature range: ?40 to +85 c figure 1. example system diagram cp2102/9 3.3 ? 3.45 v voltage regulator 48 mhz oscillator in out suspend suspend 11 12 regin 7 gnd 3 rst 9 d+ 4 d- 5 8 uart ri dcd cts rts rxd txd dsr dtr 2 27 26 25 24 23 2 3 external rs-232 transceiver or uart circuitry (to external circuitry for usb suspend states) vbus d- d+ gnd 4 5 6 usb connector 6 1 vdd vbus usb function controller usb transceiver 640b tx buffer 576b rx buffer 1024b prom vdd d1 d2 d3 1 28 vpp 18 *CP2109 only
cp2102/9 2 rev. 1.6
cp2102/9 rev. 1.6 3 t able of c ontents section page 1. system overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4 2. ordering information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .5 3. electrical specificat ions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6 4. pinout and package defini tions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 5. qfn-28 package specificati ons . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 6. usb function controller and transceiver . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15 7. asynchronous seri al data bus (uart) interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16 8. internal programmable rom . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 9. cp2102/9 device drivers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 8 9.1. virtual com port drivers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 9.2. usbxpress drivers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 9.3. driver customization . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .18 9.4. driver certification . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 10. voltage regulator . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19 11. porting considerations from cp2 102 to CP2109 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 11.1. pin-compatibility . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 11.2. distinguishing factors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 11.3. differences in electrical specif ications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 12. relevant application notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24 document change list . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 contact information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .26
cp2102/9 4 rev. 1.6 1. system overview the cp2102/9 is a highly-integrated usb-to-uart bridge controller providing a simple solution for updating rs- 232 designs to usb using a minimum of components and pcb space. the cp2102/9 includes a usb 2.0 full- speed function controller, usb transceiver, oscillator, eeprom or epr om, and asynchronous serial data bus (uart) with full modem control signals in a compact 5 x 5 mm qfn-28 package. no other external usb components are required. the on-chip programmable rom may be used to customiz e the usb vendor id, product id, product description string, power descriptor, device release number, and de vice serial number as de sired for oem applications. the programmable rom is programmed on-board via th e usb, allowing the programming step to be easily integrated into the product manufacturing and testing process. royalty-free virtual com port (vcp) device drivers provided by silic on laboratories a llow a cp2102/9-based product to appear as a com port to pc applications . the cp2102/9 uart interface implements all rs-232 signals, including control and handshaki ng signals, so existing system firmwa re does not need to be modified. in many existing rs-232 designs, all that is required to update the design from rs-232 to usb is to replace the rs- 232 level-translator with the cp2102/9. direct access driver support is available through th e silicon laboratories usbxpress driver set. an evaluation kit for the cp2102 (part number: cp2102ek) is available. the kit includes a cp2102-based usb-to- uart/rs-232 evaluation board, a complete set of vc p device drivers, usb and rs-232 cables, and full documentation. contact a silicon labs sales representative or go to www.silabs.com to order the cp2102 evaluation kit. the cp2102 evaluation kit serves as an evaluation kit for both the cp2102 and CP2109.
cp2102/9 rev. 1.6 5 2. ordering information table 1. product selection guide ordering part number internal programmable rom (byte) eeprom eprom calibrated internal 48 mhz oscillator supply voltage regulator lead-free (rohs- compliant) package cp2102-gm* 1024 y n y y y qfn28 CP2109-a01-gm* 1024 n y y y y qfn28 *note: pin compatible with the cp2101-gm.
cp2102/9 6 rev. 1.6 3. electrical specifications table 2. absolute maximum ratings parameter symbol test condition min typ max unit ambient temperature under bias t bias ?55 ? 125 c storage temperature t stg ?65 ? 150 c voltage on v dd with respect to gnd v dd ?0.3 ? 4.2 v maximum total current through v dd and gnd ? ? 500 ma maximum output cu rrent sunk by rst or any i/o pin ? ? 100 ma cp2102 voltage on any i/o pin, vbus, or rst with respect to gnd ?0.3 ? 5.8 v CP2109 voltage on any i/o pin, vbus, or rst with respect to gnd v dd > 3.0 v v dd not powered ?0.3 ?0.3 ? ? 5.8 v dd + 3.6 v note: stresses above those listed may cause permanent device dama ge. this is a stress rating only, and functional operation of the devices at or exceeding the conditio ns in the operation listings of this sp ecification is not implied. exposure to maximum rating conditions for extended periods may affect device reliability.
cp2102/9 rev. 1.6 7 table 3. recommended operating conditions v dd = 3.0 to 3.6 v, ?40 to +85 c unless otherwise specified parameter symbol test condition min typ max unit supply voltage v dd 3.0 3.3 3.6 v supply current - usb pull-up 1 i pu ?200230a specified operating temperature range t a ?40 ? +85 c thermal resistance 2 ja ?32?c/w cp2102 supply curr ent?normal 3 i regin normal operation; v reg enabled ?2026ma supply current?suspended 3 bus powered; v reg enabled ?80100a CP2109 supply curr ent?normal 3 i regin normal operation; v reg enabled ?1723ma supply current?suspended 3 bus powered; v reg enabled ?90230a notes: 1. the usb pull-up supply current values are calculated values based on usb specifications. usb pull-up supply current is current flowing from v dd to gnd through usb pull-down/pull-up resistors on d+ and d-. 2. thermal resistance assumes a multi-layer pcb with any exposed pad soldered to a pcb pad. 3. usb pull-up current should be added for total supply current. normal and suspended supply current is current flowing into v regin . normal and suspended supply current is guaranteed by characterization.
cp2102/9 8 rev. 1.6 table 4. uart and suspend i/o dc electrical characteristics v dd = 3.0 to 3.6 v, ?40 to +85 c unless otherwise specified parameter symbol test condition min typ max unit baud rate ? ? 921600 bps input leakage current i l ?2550a cp2102 output high voltage v oh i oh =?10a i oh =?3ma i oh = ?10 ma v dd ?0.1 v dd ?0.7 ? ? ? v dd ?0.8 ? ? ? v output low voltage v ol i ol =10a i ol =8.5ma i ol =25ma ? ? ? ? ? 1.0 0.1 0.6 ? v input high voltage v ih 2.0 ? ? v input low voltage v il ??0.8v CP2109 output high voltage v oh i oh =?10a i oh =?3ma i oh = ?10 ma v dd ?0.1 v dd ?0.2 ? ? ? v dd ?0.4 ? ? ? v output low voltage v ol i ol =10a i ol =8.5ma i ol =25ma ? ? ? ? ? 0.6 0.1 0.4 ? v input high voltage v ih 0.7 x v dd ??v input low voltage v il ??0.6v table 5. reset electrical characteristics ?40 to +85 c unless otherwise specified parameter symbol test condition min typ max unit v dd ramp time t rmp time to v dd 2.7 v ? ? 1 ms rst low time to generate a system reset t rstl 15 ? ? s cp2102 rst input high voltage v ihreset 0.7 x v dd ??v rst input low voltage v ilreset ? ? 0.25 x v dd v CP2109 rst input high voltage v ihreset 0.75 x v dd ??v rst input low voltage v ilreset ??0.6v
cp2102/9 rev. 1.6 9 table 6. voltage regulator electrical specifications ?40 to +85 c unless otherwise specified. parameter symbol test condition min typ max unit cp2102 input voltage range v regin 4.0 ? 5.25 v output voltage v ddout output current = 1 to 100 ma* 3.0 3.3 3.6 v vbus detection in put threshold v vbusth 1.0 1.8 2.9 v bias current ?90?a CP2109 input voltage range v regin 3.0 ? 5.25 v output voltage v ddout output current = 1 to 100 ma* 3.3 3.45 3.6 v vbus detection in put threshold v vbusth 2.5 ? ? v bias current ?8399a *note: the maximum regulator supply current is 100 ma. table 7. usb transceiver electrical specifications v dd = 3.0 v to 3.6 v, ?40 to +85 c unless otherwise specified. parameter symbol test condition min typ max unit transmitter output high voltage v oh 2.8 ? ? v output low voltage v ol ??0.8v output crossover point v crs 1.3 ? 2.0 v output impedance (cp2102) z drv driving high driving low ? ? 38 38 ? ? ? output impedance (CP2109) driving high driving low ? ? 36 36 ? ? ? pull-up resistance r pu full speed (d+ pull-up) low speed (d- pull-up) 1.425 1.5 1.575 k ? output rise time t r low speed full speed 75 4 ? ? 300 20 ns output fall time t f low speed full speed 75 4 ? ? 300 20 ns receiver differential inpu t sensitivity v di | (d+) - (d-) | 0.2 ? ? v differential input common mode range v cm 0.8 ? 2.5 v input leakage current i l pullups disabled ? < 1.0 ? a *note: refer to the usb specification for timing diagrams and symbol definitions.
cp2102/9 10 rev. 1.6 table 8. eprom electrical characteristics parameter test condition min typ max unit CP2109 voltage on v pp with respect to gnd during a rom programming operation v dd > 3.3 v 5.75 ? v dd + 3.6 v capacitor on v pp for in-system programming ?4.7?f
cp2102/9 rev. 1.6 11 4. pinout and p ackage definitions table 9. cp2102/9 pin definitions name pin # type description v dd 6 power in power out 3.0?3.6 v power supply voltage input. 3.3 v voltage regulator output. see "10. voltage regulator" on page 19. gnd 3 ground rst 9 d i/o device reset. open-drain ou tput of internal por or v dd monitor. an external source can initiate a syste m reset by driving this pin low for at least 15 s. regin 7 power in 5 v regulator input. this pin is the input to the on-chip voltage regu- lator. vbus 8 d in vbus sense input. this pin should be connected to the vbus signal of a usb network. a 5 v signal on this pin indicates a usb network connection. nc 1 / v pp 2 18 a power this pin should be left unconnected or tied to v dd . this pin is unused on the cp2102 and may be connected to the vpp programming capacitor to maintain board compatibility with the CP2109. v pp programming supply voltage d+ 4 d i/o usb d+ d? 5 d i/o usb d? txd 26 d out asynchronous data output (uart transmit) rxd 25 d in asynchronous data input (uart receive) cts 23 3 d in clear to send control input (active low) rts 24 3 d out ready to send control output (active low) dsr 27 3 d in data set ready control input (active low) dtr 28 3 d out data terminal ready cont rol output (active low) dcd 1 3 d in data carrier detect co ntrol input (active low) ri 2 3 d in ring indicator control input (active low) suspend 12 3 d out this pin is driven high when the cp2102/9 enters the usb suspend state. suspend 11 3 d out this pin is driven low when the cp2102/9 enters the usb suspend state. nc 10, 13?22 these pins should be left unconnected or tied to v dd . notes: 1. for cp2102, pin is no connect (nc). 2. for CP2109, pin is v pp . v pp can be left unconnected when not used for in-application programming. 3. pins can be left unconnected when not used.
cp2102/9 12 rev. 1.6 figure 2. qfn-28 pinout diagram (top view) 4 5 6 7 2 1 3 11 12 13 14 9 8 10 18 17 16 15 20 21 19 25 26 27 28 23 22 24 cp2102/9 top view dcd ri gnd d+ d- v dd regin vbus rst nc suspend suspend nc nc nc nc nc nc / vpp nc nc nc nc cts rts rxd txd dsr dtr gnd
cp2102/9 rev. 1.6 13 5. qfn-28 package specifications figure 3. qfn-28 package drawing table 10. qfn-28 package dimensions dimension min typ max dimension min typ max a 0.80 0.90 1.00 l 0.35 0.55 0.65 a1 0.00 0.02 0.05 l1 0.00 ? 0.15 a3 0.25 ref aaa 0.15 b 0.18 0.23 0.30 bbb 0.10 d 5.00 bsc. ddd 0.05 d2 2.90 3.15 3.35 eee 0.08 e 0.50 bsc. z 0.44 e 5.00 bsc. y 0.18 e2 2.90 3.15 3.35 notes: 1. all dimensions shown are in millim eters (mm) unless otherwise noted. 2. dimensioning and tolerancing per ansi y14.5m-1994. 3. this drawing conforms to the jedec solid state outline mo-220, variation vhhd except for custom features d2, e2, z, y, and l, wh ich are toleranced per supplier designation. 4. recommended card reflow profile is per the jede c/ipc j-std-020 specific ation for small body components.
cp2102/9 14 rev. 1.6 figure 4. qfn-28 recommended pcb land pattern table 11. qfn-28 pcb land pattern dimensions dimension min max dimension min max c1 4.80 x2 3.20 3.30 c2 4.80 y1 0.85 0.95 e 0.50 y2 3.20 3.30 x1 0.20 0.30 notes: general 1. all dimensions shown are in millim eters (mm) unless otherwise noted. 2. dimensioning and tolerancing is per the ansi y14.5m-1994 specification. 3. this land pattern design is based on the ipc-7351 guidelines. solder mask design 4. all metal pads are to be non-solder mask defined (nsmd). clearance between the solder mask and the metal pad is to be 60 m minimum, all the way around the pad. stencil design 5. a stainless steel, laser-cut and electro-polished stencil with trapezoidal walls should be used to assure good solder paste release. 6. the stencil thickness should be 0.125 mm (5 mils). 7. the ratio of stencil aperture to land pad size should be 1:1 for all perimeter pins. 8. a 3x3 array of 0.90 mm openings on a 1.1 mm pitch should be used for the center pad to assure the proper paste volume (67% paste coverage). card assembly 9. a no-clean, type-3 solder paste is recommended. 10. the recommended card reflow profile is per th e jedec/ipc j-std-020 specification for small body components.
cp2102/9 rev. 1.6 15 6. usb function controller and transceiver the universal serial bus function co ntroller in the cp2102/9 is a usb 2.0 compliant full-speed device with integrated transceiver and on-chip matching and pull-up resistors. the usb function controller manages all data transfers between the usb and the uart as well as comm and requests generated by the usb host controller and commands for controlling the function of the uart. the usb suspend and resume signals are supported for power management of both th e cp2102/9 device as well as external circuitry. th e cp2102/9 will enter suspend mode when susp end signaling is detect ed on the bus. on entering suspend mode, the cp2102/ 9 asserts the suspend and suspend signals. suspend and suspend are also asserted after a cp2102/9 reset until device configuration during usb enumeration is complete. the cp2102/9 exits suspend mode when any of the fo llowing occur: (1) resume signaling is detected or generated, (2) a usb reset signal is detected, or (3) a device reset occurs. on exit of suspend mode, the suspend and suspend signals are de-asserted. both suspend and suspend temporarily float high during a cp2102/9 reset. if this behavior is undesirable, a strong pulldown (10 k ? ) can be used to ensure suspend remains low during reset. see figure 5 for other recommended options. figure 5. typical connection diagram 1 cp2102/9 suspend suspend 11 12 regin 7 gnd 3 rst 9 d+ 4 d- 5 8 c4 0.1 ? f ri dcd cts rts rxd txd dsr dtr 2 1 28 27 26 25 24 23 2 3 external rs-232 transceiver or uart circuitry (to external circuitry for usb suspend states) vbus d- d+ gnd 4 5 6 usb connector 6 vdd vbus vdd r1 4.7 k ? d1 d2 d3 option 1 option 3 c3 4.7 ? f option 2 option 1: a 4.7 k ? pull-up resistor can be added to increase noise immunity. option 2: a 4.7 f capacitor can be added if powering other devices from the on-chip regulator. option 3: avalanche transient voltage suppression diodes should be added for esd protection. option 3: use littlefuse p/n sp0503baht or equivalent. option 4: 10 k ? resistor to ground to hold suspend low on initial power on or device reset. option 5: a 4.7 f capacitor can be added for in-system programming (CP2109 only). vpp c5 4.7 ? f option 5 18 r2 10 k ? option 4 c2 0.1 ? f c1 1.0 ? f
cp2102/9 16 rev. 1.6 7. asynchronous serial data bus (uart) interface the cp2102/9 uart interface consists of the tx (transmi t) and rx (receive) data signals as well as the rts, cts, dsr, dtr, dcd, and ri control signals. t he uart supports rts/cts, dsr/dtr, and x-on/x-off handshaking. the uart is programmable to support a variety of data fo rmats and baud rates. if the virtual com port drivers are used, the data format and baud rate are set during com port configuration on the pc. if the usbxpress drivers are used, the cp2102/9 is configured through the usbxpress api. the data formats and baud rates available are listed in table 12. table 12. data formats and baud rates data bits 5, 6, 7, and 8 stop bits 1, 1.5 1 , and 2 parity type none, even, odd, mark, space baud rates 2 300, 600, 1200, 1800, 2400, 4000, 4800, 7200, 9600, 14400, 16000, 19200, 28800, 38400, 51200, 56000, 57600, 64000, 76800, 115200, 128000, 153600, 230400, 250000, 256000, 460800, 500000, 576000, 921600 3 notes: 1. 5-bit only. 2. additional baud rates are supported. see ?an721: cp210x/cp211x device customization guide?. 3. 7 or 8 data bits only.
cp2102/9 rev. 1.6 17 8. internal programmable rom the cp2102 includes an internal electrically erasable programmable read-only memory (eeprom), and the CP2109 includes an internal one-time programmable (otp ) erasable programmable read-only memory (eprom). either may be used to customize the usb vendor id (vid), product id (pid), product description string, power descriptor, device release number and device serial number as desired for oem applications. if the eeprom/ eprom is not programmed with oem data, the default configuration data shown in table 13 is used. the eeprom has a typical enduranc e of 100,000 write cycles with a data retention of 100 years. the eprom can only be written one time and cannot be erased. while customization of the usb configuration data is optional, it is recommended to customize the vid/pid combination. a unique vid/pid combinat ion will prevent the driver from conflicting with any other usb driver. a vendor id can be obtained from http://www.usb.org/ or silicon laboratories can provide a free pid for the oem product that can be used with the s ilicon laboratories vid. it is also re commended to customize the serial number if the oem application is one in which it is possible for multip le cp2102/9-based devices to be connected to the same pc. the internal programmable rom is programmed via the us b. this allows the oem's usb configuration data and serial number to be written to the cp2102/9 on-board rom during the manufacturing and testing process. a stand- alone utility for program ming the internal progr ammable rom is available from s ilicon laboratories. a library of routines provided in the form of a windows ? dll is also available. this library can be used to integrate the programmable rom programming step into custom software used by the oem to streamline testing and serial number management during manufacturing. usb descriptors can be locked to prevent future modifi cation on the cp2102. the CP2109 can be programmed in- system over the usb interface by adding a capacitor to the pcb. if configuration rom is to be programmed in- system, a 4.7 f capacitor must be added between the v pp pin and ground. no other circuitry should be connected to v pp during a programming operation, and v dd must remain at 3.3 v or higher to successfully write to the configuration rom. table 13. default usb configuration data name value vendor id 10c4h product id ea60h power descriptor (attributes) 80h power descriptor (max. power) 32h release number 0100h cp2102 serial number 0001 (63 characters maximum) CP2109 serial number unique 8 character ascii string (63 characters maximum) cp2102 product description string ?cp2102 usb to uart bridge controller? (126 characters maximum) CP2109 product description string ?CP2109 usb to uart bridge controller? (126 characters maximum)
cp2102/9 18 rev. 1.6 9. cp2102/9 device drivers there are two sets of device drivers available for the cp 2102/9 devices: the virtual com port (vcp) drivers and the usbxpress direct access drivers. only one set of drivers is necessary to interface with the device. the latest drivers are available at http://www.silabs.com/support/p ages/software-downloads.aspx . 9.1. virtual co m port drivers the cp2102/9 virtual com port (vcp) device drivers allow a cp2102/9-based device to appear to the pc's application software as a com port. application software running on the pc accesses the cp2102/9-based device as it would access a standard hardware com port. howeve r, actual data transfer between the pc and the cp2102/ 9 device is performed over the usb in terface. therefore, existing com port applications may be used to transfer data via the usb to the cp2102/9-based device witho ut modifying the application. see ?an197: serial communications guide for the cp210x? for example code for interfacing to a cp2102/9 using the virtual com drivers. 9.2. usbxpress drivers the silicon laboratories usbxpress driv ers provide an alternate solution for interfacin g with cp2102/9 devices. no serial port protocol expertise is required. instead, a simple, high-level application program interface (api) is used to provide simpler cp210x c onnectivity and functiona lity. the usbxpress for cp210x development kit includes windows device drivers, windows device driver installer and uninstallers, and a host interface function library (host api) provided in the fo rm of a windows dynamic link libr ary (dll). the usbxpress driver set is recommended for new products that also include new pc software. the usbxpress interface is described in ?an169: usbxpress ? programmer's guide.? 9.3. driver customization in addition to customizing the device as described in "8 . internal programmable rom" on page 17, the drivers and the drivers installation package can be also be cust omized. see ?an220: usb driv er customization? for more information on generati ng customized vcp and usbxpress drivers. 9.4. driver certification the default drivers that are shipped with the cp2102/9 are microsoft whql (windows hardware quality labs) certified. the certification means that the drivers have be en tested by microsoft and their latest operating systems (2000, server 2003, xp, vista, 7, and 8) will allow the drivers to be inst alled without an y warnings or errors. some installations of windows will prevent unsign ed drivers from being installed at all. the customized drivers that are generated using the an220 software are not automati cally certified. they must first go through the microsoft driver reseller submission process. contac t silicon laboratories support for assistance with this process.
cp2102/9 rev. 1.6 19 10. voltage regulator the cp2102/9 includes an on-chip 5 to 3 v voltage regulato r. this allows the cp2102/9 to be configured as either a usb bus-powered device or a usb se lf-powered device. these configurations are show n in figure 6, figure 7, figure 8, figure 9, and figure 10. when enabled, the 3 v voltage regulator output appears on the v dd pin and can be used to power external 3 v devices. see table 6 for the voltage regulator el ectrical characteristics. alternatively, if 3 v power is supplied to the v dd pin, the cp2102/9 can function as a usb self-powered device with the voltage regulator disabled. for this configuration, it is recommended that the regin input be tied to the 3 v net to disable the voltage regulator. in addition, if vdd or regin may be unpowered while vbus is 5 v, a resistor divider (or functionally-equivalent circuit) shown in note 1 of figure 8 and figure 10 is required to meet the absolute maximum voltage on vb us specification in table 2. the usb max power and power attributes descriptor must match the device power usage and configuration. see ?an721: cp210x/cp211x device customization guide? fo r information on how to customize usb descriptors for the cp2102/9. note: it is recommended to connect additional decoupling capacitance (e.g., 0.1 f in parallel with 1.0 f) to the regin input. figure 6. configuration 1: usb bus-powered voltage regulator (reg0) 5 v in 3 v out vbus sense regin vbus from vbus to 3 v power net device power net v dd cp2102/9 1.0 ? f 0.1 ? f 4.7 ? f 0.1 ? f
cp2102/9 20 rev. 1.6 figure 7. cp2102 configuration 2: usb self-powered figure 8. CP2109 configuration 2: usb self-powered 4.7 ? f 0.1 ? f voltage regulator (reg0) 5 v in 3 v out vbus sense regin vbus to 3v power net device power net v dd cp2102 from 5 v power net from vbus 1.0 ? f 0.1 ? f 4.7 ? f 0.1 ? f voltage regulator (reg0) 5 v in 3 v out vbus sense regin vbus to 3v power net device power net v dd CP2109 from 5 v power net from vbus 1.0 ? f 0.1 ? f note 1 : for self-powered systems where vdd or regin may be unpowered when vbus is connected to 5 v, a resistor divider (or functionally-equivalent circuit) on vbus is required to meet the absolute maximum voltage on vbus specification in the electrical characteristics section. 47 k 24 k note 1 (optional)
cp2102/9 rev. 1.6 21 figure 9. cp2102 configuration 3: usb self-powered, regulator bypassed figure 10. CP2109 configuration 3: usb self-powered, regulator bypassed 4.7 ? f 0.1 ? f voltage regulator (reg0) 5 v in 3 v out vbus sense regin vbus from 3 v power net device power net v dd cp2102 from vbus 1.0 ? f 0.1 ? f 4.7 ? f 0.1 ? f voltage regulator (reg0) 5 v in 3 v out vbus sense regin vbus from 3 v power net device power net v dd CP2109 1.0 ? f 0.1 ? f from vbus 47 k 24 k note 1 (optional) note 1 : for self-powered systems where vdd or regin may be unpowered when vbus is connected to 5 v, a resistor di vider (or functionally-equivalent circuit) on vbus is required to meet the absolute maxi mum voltage on vbus specific ation in the electrical characteristics section.
cp2102/9 22 rev. 1.6 11. porting considerations from cp2102 to CP2109 this section highlights the differences between the cp 2102 and CP2109. these devices are designed to be pin- compatible, and thus require very minor changes when porting hardware between devices. the CP2109 is an updated, cost-reduced version of t he cp2102 with a one-time programmable rom. 11.1. pin-compatibility the CP2109 is pin-compatible with the cp2102 with a si ngle exception; the CP2109 requires an additional capacitor between v pp and gnd for in-application programming. this capacitor is not required after the CP2109 eprom has been successfully programmed or if the CP2109 does not need to be customized in system. 11.2. distinguishing factors the cp2102 has 1024 bytes of eeprom for vendor id (vid), product id (pid), serial number, power descriptor, release number, and product de scription strings. this co nfiguration eeprom can be wr itten and re-written multiple times. the CP2109 has 1024 bytes of one-time program mable eprom for configurat ion. this configuration eprom can only be written one time. the CP2109 may require an additional capacitor on v pp if in-application programming is desired. the cp2102 default serial number is always ?0001?. ev ery CP2109 is programmed from the factory with a unique serial number. 11.3. differences in electrical specifications table 14 and table 15 list differences in absolute maximu m and electrical specificat ions between the cp2102 and CP2109. refer to "3. electrical specifications" on p age 6 for the comprehensive electrical specifications. table 14. differences in absolute maximum specifications between cp2102 and CP2109 parameter symbol test condition cp2102 CP2109 unit voltage on any i/o pin, vbus, or rst with respect to gnd, maximum v dd > 3.0 v v dd not powered 5.8 5.8 5.8 v dd + 3.6 v table 15. differences in electrical specifications between cp2102 and CP2109 parameter symbol test condition cp2102 CP2109 unit supply current?normal, typical i regin normal operation; v reg enabled 20 17 ma supply current?normal, maximum i regin normal operation; v reg enabled 26 23 ma supply current?suspended, typical i regin bus powered; v reg enabled 80 90 a supply current?suspended, maximum i regin bus powered; v reg enabled 100 230 a output high voltage, minimum v oh i oh =?3ma v dd ?0.7 v dd ?0.2 v output high voltage, typical v oh i oh =?10ma v dd ?0.8 v dd ?0.4 v output low voltage, maximum v ol i ol = 8.5 ma 0.6 0.4 v output low voltage, typical v ol i ol =25ma 1.0 0.6 v input high voltage, minimum v ih 2.0 0.7 x v dd v input low voltage, maximum v il 0.8 0.6 v
cp2102/9 rev. 1.6 23 rst input high voltage, minimum v ihreset 0.7 x v dd 0.75 x v dd v rst input low voltage, maximum v ilreset 0.25 x v dd 0.6 v regulator input voltage range, minimum v regin 4.0 3.0 v regulator output voltage, minimum v ddout output current = 1 to 100 ma* 3.0 3.3 v regulator output voltage, typical v ddout output current = 1 to 100 ma* 3.3 3.45 v vbus detection input threshold, minimum v vbusth 1.0 2.5 v vbus detection input threshold, typical v vbusth 1.8 ? v vbus detection input threshold, maximum v vbusth 2.9 ? v regulator bias current, typical 90 83 a regulator bias current, maximum ?99a usb transceiver output impedance, typical z drv driving high driving low 38 38 36 36 ? voltage on v pp with respect to gnd during a rom programming operation, minimum v dd > 3.3 v ? 5.75 v voltage on v pp with respect to gnd during a rom programming operation, maximum v dd > 3.3 v ? v dd + 3.6 v capacitor on v pp for in-application programming, typical ?4.7f table 15. differences in electrical specifications between cp2102 and CP2109 (continued) parameter symbol test condition cp2102 CP2109 unit
cp2102/9 24 rev. 1.6 12. relevant ap plication notes the following application notes are applicable to the cp2102/ 9. the latest versions of these application notes and their accompanying software are available at: http://www.silabs.com/products/mcu /pages/applicationnotes.aspx . ? an169: usbxpress ? programmer's guide ?this application note describes the usbxpress api interface and includes example code. ? an197: serial communications guide for the cp210x ?this application note describes how to use the standard windows com port function to communicate with the cp2102/9 and includes example code. ? an220: usb driver customization? this application note describes how to use the an220 software to customize the vcp or usbxpress drivers with oem information. ? an721: cp210x/cp211x device customization guide ?this application note describes how to use the an721 software to configure the usb parameters on the cp2102/9 devices.
cp2102/9 rev. 1.6 25 d ocument c hange l ist revision 1.0 to revision 1.1 ? updated ?linux 2.40? bullet on page 1. ? changed mlp to qfn throughout. revision 1.1 to revision 1.2 ? added additional supported operating systems on page 1. ? changed vdd conditions of tables 3 and 4 from a minimum of 2.7 to 3.0 v. ? updated typical and max supply current number in table 3. ? removed tantalum requirement in figure 5. ? consolidated sections 8 and 9. ? added section "12. relevant application notes" on page 24. revision 1.2 to revision 1.3 ? updated figure 1 on page 1. ? updated figure 5 on page 15. ? updated maximum vbus detection input threshold in table 6 on page 9. revision 1.3 to revision 1.4 ? updated table 4 rst input low voltage ? updated table 10, note 4. ? updated table 11, note 10. revision 1.4 to revision 1.5 ? added CP2109. ? updated single-chip usb to uart data transfer bullet on page 1. ? added CP2109 to ordering part numbers on page 1. ? updated section "1. system overview" on page 4. ? updated figure 1. ? added section "2. ordering information" on page 5. ? added symbol columns to tables in section "3. electrical specifications" on page 6. ? updated table 3. - added CP2109, note 1, note 2. - updated thermal resistance spec. - updated normal supply current spec. ? updated table 4, added CP2109, added baud rate. ? updated table 5, added CP2109, added v dd ramp time. ? moved table 6. ? updated table 6, added CP2109. ? added table 7. ? added table 8. ? updated table 9. - updated pin 18 spec, note 1, note 2. ? updated figure 2, added CP2109, pin 18. ? updated section "6. usb function controller and transceiver" on page 15, added CP2109. ? updated figure 5, added CP2109, option 5. ? updated section "8. internal programmable rom" on page 17, added CP2109. ? updated table 12. - updated note 2 app note reference. ? updated table 13. - added CP2109. ? updated table 15. - updated normal maximum and suspended maximum supply current specs. ? updated section "10. voltage regulator" on page 19, changed an144 to an721. ? added section "11. porting considerations from cp2102 to CP2109" on page 22. ? updated "11.2. distinguishing factors" on page 22. - updated cp2102 default serial number to ?0001?. ? updated section "12. rele vant application notes" on page 24. - replaced an144/an205 with an721. revision 1.5 to revision 1.6 ? added mention of vbus in table 2, ?absolute maximum ratings,? on page 6 and split out port i/o maximums for cp2102 and CP2109. ? added v pp voltage specifications to table 8, ?eprom electrical characteristics,? on page 10. ? updated "10. voltage regulator" on page 19 to add CP2109 absolute maximum voltage on vbus requirements in self-powered systems. ? updated "11.3. differences in electrical specifications" on page 22 to include the new or modified specifications.
cp2102/9 26 rev. 1.6 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. patent notice silicon labs invests in research and development to help our cust omers differentiate in the market with innovative low-power, s mall size, analog- intensive mixed-signal soluti ons. silicon labs' extensive pat ent portfolio is a testament to our unique approach and world-clas s engineering team. silicon laboratories and silicon labs 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 responsibili ty for errors and omissions, and disclaim s responsibility for any consequences resu lting from the use of information included herein. a dditionally, silicon laboratorie s assumes no responsibility for the functioning of und escribed fea- tures or parameters. silicon laboratories reserves the right to make changes without further notice. silicon laboratories makes no warran- ty, representation or guarantee regarding t he suitability of its products for any par ticular purpose, nor does silicon laborato ries assume any liability arising out of the application or use of any product or circuit, and specif ically disclaims any and all liability, in cluding without limitation consequential or incidental damages . silicon laboratories products are not designed, intended, or authorized for use in applica tions intend- ed to support or sustain life, or for any other application in which the failure of the silicon laboratories product could crea te a situation where personal injury or death may occur. should buyer purchase or us e silicon laboratories products for any such unintended or unaut horized application, buyer shall indemnify and hold silicon laboratories harmle ss against all claims and damages.


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