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  1. general description the isp1105/1106 range of universal serial bus (usb) transceivers are compliant with the universal serial bus specification rev. 2.0 . they can transmit and receive serial data at both full-speed (12 mbit/s) and low-speed (1.5 mbit/s) data rates. the isp1105/1106 range can be used as a usb device transceiver or a usb host transceiver. they allow usb application specific ic s (asics) and programmable logic devices (plds) with power supply voltages from 1.65 v t o 3.6 v to interface with the physical layer of the universal serial bus. they have an integrated 5 v-to-3.3 v voltage regulator for direct powering via the usb supply v bus . isp1105 allows single-ended and differential input modes selectable by a mode input and it is available in hvqfn16 and hbcc16 packages. isp1106 allows only differential input mode and is available in both tssop16 and hbcc16 packages. the isp1105/1106 are ideal for portable electronics devices such as mobile phones, digital still cameras, personal digital assistants (pda) and information appliances (ia). 2. features ? complies with universal serial bus specification rev. 2.0 ? can transmit and receive serial data at both full-speed (12 mbit/s) and low-speed (1.5 mbit/s) data rates ? integrated bypassable 5 v-to-3.3 v voltage regulator for powering via usb v bus ? v bus disconnection indication through vp and vm ? used as a usb device transceiver or a usb host transceiver ? stable rcv output during se0 condition ? two single-ended receivers with hysteresis ? low-power operation ? supports an i/o voltage range from 1.65 v to 3.6 v ? 12 kv esd protection at the d+, d ? , v cc(5.0) and gnd pins ? full industrial operating temperature range from ? 40 c to + 85 c ? available in small hbcc16, hvqfn16 (only isp1105) and tssop16 (only isp1106) packages the isp1105 hbcc16 and hvqfn16 are lead-free and halogen-free. the isp1106 hbcc16 is lead-free. isp1105/1106 advanced usb transceivers rev. 10 ? 28 september 2009 product data sheet
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 2 of 25 isp1105/1106 advanced usb transceivers 3. applications ? portable electronic devices, such as: ? mobile phone ? digital still camera ? personal digital assistant (pda) ? information appliance (ia). 4. ordering information 4.1 ordering options table 1. ordering information commercial product code package description packing minimum sellable quantity ISP1105BSTM hvqfn16; 16 terminals; body 3 3 0.85 mm 13 inch tape and reel non-dry pack 6000 pieces isp1105wts hbcc16; 16 terminals; body 3 3 0.65 mm 7 inch tape and reel non-dry pack 1400 pieces isp1105wtm hbcc16; 16 terminals; body 3 3 0.65 mm 13 inch tape and reel non-dry pack 6000 pieces isp1106wts hbcc16; 16 terminals; body 3 3 0.65 mm 7 inch tape and reel non-dry pack 1400 pieces isp1106dhtm tssop16; 16 leads; body width 4.4 mm 13 inch tape and reel non-dry pack 2500 pieces table 2. selection guide product package description isp1105 hvqfn16 and hbcc16 supports both single-ended and differential input modes; see ta b l e 5 and table 6 . isp1106 tssop16 and hbcc16 supports only the differential input mode; see ta b l e 6 .
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 3 of 25 isp1105/1106 advanced usb transceivers 5. block diagram (1) connect to d ? for low-speed operation. (2) pin function depends on device type. (3) only for isp1105. fig 1. block diagram (combined isp1105 and isp1106). mbl301 v cc(i/o) v cc(5.0) voltage regulator 3.3 v 1.5 k (1) 33 (1%) 33 (1%) level shifter isp1105 isp1106 softcon speed v reg(3.3) gnd v pu(3.3) d + d ? oe vmo/fse0 (2) vpo/vo (2) mode (3) suspnd rcv vp vm
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 4 of 25 isp1105/1106 advanced usb transceivers 6. pinning information 6.1 pinning fig 2. pin configuration ISP1105BSTM (hvqfn). fig 3. pin configuration isp1105wts and isp1105wtm (hbcc16). 004aaa314 ISP1105BSTM d ? d+ mode suspnd vpo/vo vmo/fse0 8 gnd (exposed diepad) v cc(i/o) 56 7 4 3 2 9 10 11 13 14 15 16 speed 1 12 bottom view rcv vp oe vm v pu(3.3) softcon v cc(5.0) v reg(3.3) mbl303 bottom view isp1105wts isp1105wtm softcon v pu(3.3) rcv vp oe d + d ? speed v cc(i/o) vpo/vo vm suspnd mode v cc(5.0) v reg(3.3) vmo/fse0 13 14 15 16 8 7 6 12 11 10 9 2 1 3 4 5 gnd (exposed diepad) fig 4. pin configuration isp110 6dhtm (tssop16). fig 5. pin configuration isp1106wts (hbcc16). isp1106dhtm mbl302 1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9 v pu(3.3) softcon oe rcv vp vm suspnd gnd v cc(i/o) speed d ? d + vpo vmo v reg(3.3) v cc(5.0) mbl304 bottom view isp1106wts softcon v pu(3.3) rcv vp oe d + d ? speed v cc(i/o) vpo vm suspnd gnd v cc(5.0) v reg(3.3) vmo 13 14 15 16 8 7 6 12 11 10 9 2 1 3 4 5
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 5 of 25 isp1105/1106 advanced usb transceivers 6.2 pin description table 3. pin description symbol [1] pin type description isp1105 isp1106 bstm wts, wtm dhtm wts oe 1 1 3 1 i output enable input (cmos level with respect to v cc(i/o) , active low); enables the transceiver to transmit data on the usb bus input pad; push pull; cmos rcv 2 2 4 2 o differential data receiver output (cmos level with respect to v cc(i/o) ); driven low when input suspnd is hi gh; the output state of rcv is preserved and stable during an se0 condition output pad; push pull; 4 ma output drive; cmos vp 3 3 5 3 o single-ended d+ receiver output (cmos level with respect to v cc(i/o) ); for external detection of single-ended zero (se0), error conditions, speed of connected device; driven high when no supply voltage is connected to v cc(5.0) and v reg(3.3) output pad; push pull; 4 ma output drive; cmos vm 4 4 6 4 o single-ended d ? receiver output (cmos level with respect to v cc(i/o) ); for external detection of single-ended zero (se0), error conditions, speed of connected device; driven high when no supply voltage is connected to v cc(5.0) and v reg(3.3) output pad; push pull; 4 ma output drive; cmos suspnd 5 5 7 5 i suspend input (cmos level with respect to v cc(i/o) ); a high level enables low-power state while the usb bus is inactive and drives output rcv to a low level input pad; push pull; cmos mode 6 6 - - i mode input (cmos level with respect to v cc(i/o) ); a high level enables the differential input mode (vpo, vmo) whereas a low level enables a single-ended input mode (vo, fse0); see ta b l e 5 and ta b l e 6 input pad; push pull; cmos gnd die pad die pad 8 6 - ground supply [2] v cc(i/o) 7 7 9 7 - supply voltage for digital i/o pins (1.65 v to 3.6 v). when v cc(i/o) is not connected, the (d+, d ? ) pins are in three-state; this supply pin is totally independent of v cc(5.0) and v reg(3.3) and must never exceed the v reg(3.3) voltage speed 8 8 10 8 i speed selection input (cmos level with respect to v cc(i/o) ); adjusts the slew rate of differential data outputs d+ and d ? according to the transmission speed low ? low-speed (1.5 mbit/s) high ? full-speed (12 mbit/s) input pad; push pull; cmos d ? 9 9 11 9 ai/o negative usb data bus connection (analog, differential); for low-speed mode connect to pin v pu(3.3) via a 1.5 k resistor d+ 10 10 12 10 ai/o positive usb data bus connecti on (analog, differential); for full-speed mode connect to pin v pu(3.3) via a 1.5 k resistor
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 6 of 25 isp1105/1106 advanced usb transceivers [1] symbol names with an overscore (e.g. name ) indicate active low signals. [2] isp1105: ground terminal is connecte d to the exposed die pad (heat sink). vpo/vo 11 11 - - i driver data input (c mos level with respect to v cc(i/o) , schmitt trigger); see table 5 and table 6 input pad; push pull; cmos vpo - - 13 11 vo ---- vmo/fse0 12 12 - - i driver data input (cmos level with respect to v cc(i/o) , schmitt trigger); see table 5 and table 6 input pad; push pull; cmos vmo - - 14 12 fse0 ---- v reg(3.3) 13 13 15 13 - internal regu lator option: regulated supply voltage output (3.0 v to 3.6 v) during 5 v operation; a decoupling capacitor of at least 0.1 f is required regulator bypass option: used as a supply voltage input for 3.3 v 10 % operation v cc(5.0) 14 14 16 14 - internal regu lator option: supply voltage input (4.0 v to 5.5 v); can be connected directly to usb supply v bus regulator bypass option: connect to v reg(3.3) v pu(3.3) 15 15 1 15 - pull-up supply voltage (3.3 v 10 %); connect an external 1.5 k resistor on d+ (full-speed) or d ? (low-speed); pin function is controlled by input softcon softcon = low ? v pu(3.3) floating (high impedance); ensures zero pull-up current softcon = high ? v pu(3.3) = 3.3 v; internally connected to v reg(3.3) softcon 16 16 2 16 i software controlled usb c onnection input; a high level applies 3.3 v to pin v pu(3.3) , which is connected to an external 1.5 k pull-up resistor; this allows usb connect/disconnect signalling to be controlled by software input pad; push pull; cmos table 3. pin description ?continued symbol [1] pin type description isp1105 isp1106 bstm wts, wtm dhtm wts
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 7 of 25 isp1105/1106 advanced usb transceivers 7. functional description 7.1 function selection [1] signal levels on (d+, d ? ) are determined by other usb devices and external pull-up/down resistors. [2] in ?suspend? mode (suspnd = high) the differential rece iver is inactive and out put rcv is always low. out-of-suspend (?k?) signalling is detect ed via the single-ended receivers vp and vm. [3] during suspend, the slew-rate control circuit of low-speed operation is disabled. the (d+, d ? ) lines are still driven to their intended states, without slew-rate cont rol. this is permitted because driving during suspend is used to signal remote wake-up by driving a ?k? signal (one transition from idle to ?k? state) for a period of 1to15ms. 7.2 operating functions [1] vp = vm = h indicates the sharing mode (v cc(5.0) and v reg(3.3) are disconnected). [2] rcv* denotes the signal level on output rcv just befor e se0 state occurs. this level is stable during the se0 period. table 4. function table suspnd oe (d+, d ? ) rcv vp/vm function l l driving and receiving active active normal driving (differential receiver active) l h receiving [1] active active receiving h l driving inactive [2] active driving during ?suspend? [3] (differential receiver inactive) hhhigh-z [1] inactive [2] active low-power state table 5. driving function (pin oe = l) using single-ended input data interface for isp1105 (pin mode = l) fse0 vo data l l differential logic 0 l h differential logic 1 hl se0 hhse0 table 6. driving function (pin oe = l) using differential input data interface for isp1105 (pin mode = h) and isp1106 vmo vpo data llse0 l h differential logic 1 h l differential logic 0 h h illegal state table 7. receiving function (pin oe =h) (d+, d ? ) rcv vp [1] vm [1] differential logic 0 l l h differential logic 1 h h l se0 rcv* [2] ll
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 8 of 25 isp1105/1106 advanced usb transceivers 7.3 power supply configurations the isp1105/1106 can be used with different power supply configurations, which can be changed dynamically. an overview is given in ta b l e 9 . normal mode ? both v cc(i/o) and v cc(5.0) or (v cc(5.0) and v reg(3.3) ) are connected. for 5 v operation, v cc(5.0) is connected to a 5 v source (4.0 v to 5.5 v). the internal voltage regulator then produces 3.3 v for the usb connections. for 3.3 v operation, both v cc(5.0) and v reg(3.3) are connected to a 3.3 v source (3.0 v to 3.6 v). v cc(i/o) is independently connected to a voltage source (1.65 v to 3.6 v), depending on the supply voltage of the external circuit. disable mode ? v cc(i/o) is not connected, v cc(5.0) or (v cc(5.0) and v reg(3.3) ) are connected. in this mode, the internal circuits of the isp1105/1106 ensure that the (d+, d ? ) pins are in three-state and the power cons umption drops to the low-power (suspended) state level. some hysteresis is built into the detection of v cc(i/o) lost. sharing mode ? v cc(i/o) is connected, (v cc(5.0) and v reg(3.3) ) are not connected. in this mode, the (d+, d ? ) pins are made three-state and the isp1105/1106 allows external signals of up to 3.6 v to share the (d+, d ? ) lines. the internal circuits of the isp1105/1106 ensure that virtually no current (maximum 10 a) is drawn via the (d+, d ? ) lines. the power consumption through pin v cc(i/o) drops to the low-power (suspended) state level. both the vp and vm pins are driven high to indicate this mode. pin rcv is made low. some hysteresis is built into the detection of v reg(3.3) lost. [1] high impedance or driven low. [2] isp1105 only. [1] high impedance or driven low. table 8. pin states in disable or sharing mode pins disable mode state sharing mode state v cc(5.0) / v reg(3.3) 5 v input / 3.3 v output; 3.3 v input / 3.3 v input not present v cc(i/o) not present 1.65 v to 3.6 v input v pu(3.3) high impedance (off) high impedance (off) (d+, d ? ) high impedance high impedance (vp, vm) invalid [1] h rcv invalid [1] l inputs (vo/vpo, fse0/vmo, speed, mode [2] , suspnd, oe , softcon) high impedance high impedance table 9. power supply configuration overview v cc(5.0) or v reg(3.3) v cc(i/o) configuration special characteristics connected connected normal mode - connected not connected disable mode (d+, d ? ) and v pu(3.3) high impedance; vp, vm, rcv: invalid [1] not connected connected sharing mode (d+, d ? ) and v pu(3.3) high impedance; vp, vm driven high; rcv driven low
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 9 of 25 isp1105/1106 advanced usb transceivers 7.4 power supply input options the isp1105/1106 range has two power supply input options. internal regulator ? v cc(5.0) is connected to 4.0 v to 5.5 v. the internal regulator is used to supply the internal circuitry with 3.3 v (nominal). the v reg(3.3) pin becomes a 3.3 v output reference. regulator bypass ? v cc(5.0) and v reg(3.3) are connected to the same supply. the internal regulator is bypassed and the internal circuitry is supplied directly from the v reg(3.3) power supply. the voltage range is 3.0 v to 3.6 v to comply with the usb specification. the supply voltage range for each input option is specified in table 10 . table 10. power supply input options input option v cc(5.0) v reg(3.3) v cc(i/o) internal regulator supply input for internal regulator (4.0 v to 5.5 v) voltage reference output (3.3 v, 300 a) supply input for digital i/o pins (1.65 v to 3.6 v) regulator bypass connected to v reg(3.3) with maximum voltage drop of 0.3 v (2.7 v to 3.6 v) supply input (3.0 v to 3.6 v) supply input for digital i/o pins (1.65 v to 3.6 v)
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 10 of 25 isp1105/1106 advanced usb transceivers 8. electrostatic discharge (esd) 8.1 esd protection the pins that are connected to the usb connector (d+, d ? , v cc(5.0) and gnd) have a minimum of 12 kv esd protection. the 12 kv measurement is limited by the test equipment. capacitors of 4.7 f connected from v reg(3.3) to gnd and v cc(5.0) to gnd are required to achieve this 12 kv esd protection (see figure 6 ). 8.2 esd test conditions a detailed report on test set-up and results is available on request. fig 6. human body esd test model. r d 1500 r c 1 m high voltage dc source 4.7 f 4.7 f v cc(5v0) vreg3v3 device under test c s 100 pf storage capacitor charge current limit resistor discharge resistance gnd a b 004aaa145
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 11 of 25 isp1105/1106 advanced usb transceivers 9. limiting values [1] testing equipment limits measurement to only 12 kv. capacitors needed on v cc(5.0) and v reg(3.3) ; see section 8 . [2] equivalent to discharging a 100 pf capacitor via a 1.5 k resistor (human body model). 10. recommended operating conditions table 11. limiting values in accordance with the absolute ma ximum rating system (iec 60134). symbol parameter conditions min max unit v cc(5.0) supply voltage ? 0.5 +6.0 v v cc(i/o) i/o supply voltage ? 0.5 +4.6 v v reg(3.3) regulated supply voltage ? 0.5 +4.6 v v i dc input voltage ? 0.5 v cc(i/o) +0.5 v i lu latch-up current v i = ? 1.8 v to 5.4 v - 100 ma v esd electrostatic discharge voltage i li <1 a [1] [2] on pins d+, d ? , v cc(5.0) and gnd ? 12000 +12000 v on other pins ? 2000 +2000 v t stg storage temperature ? 40 +125 c table 12. recommended operating conditions symbol parameter conditions min typ max unit v cc(5.0) supply voltage (internal regulator option) 5 v operation 4.0 5.0 5.5 v v reg(3.3) supply voltage (regulator bypass option) 3.3 v operation 3.0 3.3 3.6 v v cc(i/o) i/o supply voltage 1.65 - 3.6 v v i input voltage 0 - v cc(i/o) v v i(ai/o) input voltage on analog i/o pins (d+/d ? ) 0- 3.6v t amb operating ambient temperature ? 40 - +85 c
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 12 of 25 isp1105/1106 advanced usb transceivers 11. static characteristics [1] i load includes the pull-up resistor current via pin v pu(3.3) . [2] in ?suspend? mode, the minimum voltage is 2.7 v. [3] maximum value is characterized only, not tested in production. [4] excluding any load current and v pu(3.3) /v sw source current to the 1.5 k and 15 k pull-up and pull-down resistors (200 a typ.). [5] when v cc(i/o) < 2.7 v, the minimum value for v th(reg3.3)(present) is 2.0 v. table 13. static characte ristics: supply pins v cc = 4.0 v to 5.5 v or v reg(3.3) = 3.0 v to 3.6 v; v cc(i/o) =1.65vto3.6v; v gnd =0v; see ta ble 10 for valid voltage level combinations; t amb = ? 40 cto+85 c; unless otherwise specified. symbol parameter conditions min typ max unit v reg(3.3) regulated supply voltage output internal regulator option; i load 300 a [1] [2] 3.0 3.3 3.6 v i cc operating supply current full-speed transmitting and receiving at 12 mbit/s; c l = 50 pf on d+/d ? [3] -48ma i cc(i/o) operating i/o supply current full-speed transmitting and receiving at 12 mbit/s [3] -12ma i cc(idle) supply current during full-speed idle and se0 full-speed idle: v d + >2.7v, v d ? < 0.3 v; se0: v d + <0.3v, v d ? <0.3v [4] --500 a i cc(i/o)(static) static i/o supply current full- speed idle, se0 or suspend - - 20 a i cc(susp) suspend supply current suspnd = high [4] --20 a i cc(dis) disable mode supply current v cc(i/o) not connected [4] --20 a i cc(i/o)(sharing) sharing mode i/o supply current v cc(5.0) or v reg(3.3) not connected - - 20 a i dx(sharing) sharing mode load current on pins d+ and d ? v cc(5.0) or v reg(3.3) not connected; softcon = low; v dx =3.6v --10 a v reg(3.3)th regulated supply voltage detection threshold 1.65 v v cc(i/o) v reg(3.3) ; 2.7 v v reg(3.3) 3.6 v supply lost - - 0.8 v supply present [5] 2.4 - - v v reg(3.3)hys regulated supply voltage detection hysteresis v cc(i/o) = 1.8 v - 0.45 - v v cc(i/o)th i/o supply voltage detection threshold v reg(3.3) = 2.7 v to 3.6 v supply lost - - 0.5 v supply present 1.4 - - v v cc(i/o)hys i/o supply voltage detection hysteresis v reg(3.3) = 3.3 v - 0.45 - v
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 13 of 25 isp1105/1106 advanced usb transceivers table 14. static characte ristics: digital pins v cc(i/o) = 1.65 v to 3.6 v; v gnd =0v; t amb = ? 40 cto+85 c; unless otherwise specified. symbol parameter conditions min typ max unit v cc(i/o) = 1.65 to 3.6 v input levels v il low-level input voltage - - 0.3v cc(i/o) v v ih high-level input voltage 0.6v cc(i/o) -- v output levels v ol low-level output voltage i ol =100 a- -0.15v i ol =2ma - - 0.4 v v oh high-level output voltage i oh = 100 av cc(i/o) ? 0.15 - - v i oh =2ma v cc(i/o) ? 0.4 - - v leakage current i li input leakage current ? 1-+1 a example 1: v cc(i/o) =1.8v 0.15 v input levels v il low-level input voltage - - 0.5 v v ih high-level input voltage 1.2 - - v output levels v ol low-level output voltage i ol =100 a- -0.15v i ol =2ma - - 0.4 v v oh high-level output voltage i oh = 100 a1.5-- v i oh = 2 ma 1.25 - - v example 2: v cc(i/o) =2.5v 0.2 v input levels v il low-level input voltage - - 0.7 v v ih high-level input voltage 1.7 - - v output levels v ol low-level output voltage i ol =100 a- -0.15v i ol =2ma - - 0.4 v v oh high-level output voltage i oh = 100 a2.15-- v i oh =2ma 1.9 - - v example 3: v cc(i/o) =3.3v 0.3 v input levels v il low-level input voltage - - 0.9 v v ih high-level input voltage 2.15 - - v output levels v ol low-level output voltage i ol =100 a- -0.15v i ol =2ma - - 0.4 v v oh high-level output voltage i oh = 100 a2.85-- v i oh =2ma 2.6 - - v capacitance c in input capacitance pin to gnd - - 10 pf
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 14 of 25 isp1105/1106 advanced usb transceivers [1] v oh(min) =v reg(3.3) ? 0.2 v. [2] includes external resistors of 33 ? 1 % on both d+ and d ? . [3] this voltage is available at pins v reg(3.3) and v pu(3.3) . [4] in ?suspend? mode the minimum voltage is 2.7 v. table 15. static characteristi cs: analog i/o pins (d+, d ? ) v cc = 4.0 v to 5.5 v or v reg(3.3) = 3.0 v to 3.6 v; v gnd =0v; t amb = ? 40 cto+85 c; unless otherwise specified. symbol parameter conditions min typ max unit input levels differential receiver v di differential input sensitivity | v i(d + ) ? v i(d ? ) | 0.2--v v cm differential common mode voltage includes v di range 0.8 - 2.5 v single-ended receiver v il low-level input voltage - - 0.8 v v ih high-level input voltage 2.0 - - v v hys hysteresis voltage 0.4 - 0.7 v output levels v ol low-level output voltage r l =1.5k to +3.6 v - - 0.3 v v oh high-level output voltage r l =15k to gnd [1] 2.8 - 3.6 v leakage current i lz off-state leakage current ? 1- +1 a capacitance c in transceiver capacitance pin to gnd - - 20 pf resistance z drv driver output impedance steady-state drive [2] 34 39 44 z inp input impedance 10 - - m r sw internal switch resistance at pin v pu(3.3) --10 termination v term termination voltage for upstream port pull-up (r pu ) [3] [4] 3.0 - 3.6 v
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 15 of 25 isp1105/1106 advanced usb transceivers 12. dynamic characteristics table 16. dynamic characteristi cs: analog i/o pins (d+, d ? ) v cc = 4.0 v to 5.5 v or v reg(3.3) = 3.0 v to 3.6 v; v cc(i/o) =1.65vto3.6v; v gnd =0v; see ta ble 10 for valid voltage level combinations; t amb = ? 40 cto+85 c; unless otherwise specified. [1] symbol parameter conditions min typ max unit driver characteristics full-speed mode t fr rise time c l =50pf to125pf; 10%to90% of | v oh ? v ol | ; see figure 7 4 - 20 ns t ff fall time c l =50pf to125pf; 90%to10% of | v oh ? v ol | ; see figure 7 4 - 20 ns frfm differential rise/fall time matching (t fr /t ff ) excluding the first transition from idle state 90 - 111.1 % v crs output signal crossover voltage excluding the first transition from idle state; see figure 10 [2] 1.3 - 2.0 v low-speed mode t lr rise time c l =50pf to600pf; 10%to90% of | v oh ? v ol | ; see figure 7 75 - 300 ns t lf fall time c l =50pf to600pf; 90%to10% of | v oh ? v ol | ; see figure 7 75 - 300 ns lrfm differential rise/fall time matching (t lr /t lf ) excluding the first transition from idle state 80 - 125 % v crs output signal crossover voltage excluding the first transition from idle state; see figure 10 [2] 1.3 - 2.0 v driver timing full-speed mode t plh(drv) driver propagation delay (vo/vpo, fse0/vmo to d+,d ? ) low-to-high; see figure 10 --18ns t phl(drv) driver propagation delay (vo/vpo, fse0/vmo to d+,d ? ) high-to-low; see figure 10 --18ns t phz driver disable delay (oe to d+,d ? ) high-to-off; see figure 8 --15ns t plz driver disable delay (oe to d+,d ? ) low-to-off; see figure 8 --15ns t pzh driver enable delay (oe to d+,d ? ) off-to-high; see figure 8 --15ns t pzl driver enable delay (oe to d+,d ? ) off-to-low; see figure 8 --15ns low-speed mode not specified : low-speed delay timings are dominated by the slow rise/fall times t lr and t lf .
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 16 of 25 isp1105/1106 advanced usb transceivers [1] test circuit: see figure 13 . [2] characterized only, not test ed. limits guaranteed by design. receiver timings (full-speed and low-speed mode) differential receiver t plh(rcv) propagation delay (d+,d ? to rcv) low-to-high; see figure 9 --15ns t phl(rcv) propagation delay (d+,d ? to rcv) high-to-low; see figure 9 --15ns single-ended receiver t plh(se) propagation delay (d+,d ? to vp, vm) low-to-high; see figure 9 --18ns t phl(se) propagation delay (d+,d ? to vp, vm) high-to-low; see figure 9 --18ns table 16. dynamic characteristi cs: analog i/o pins (d+, d ? ) ?continued v cc = 4.0 v to 5.5 v or v reg(3.3) = 3.0 v to 3.6 v; v cc(i/o) =1.65vto3.6v; v gnd =0v; see ta ble 10 for valid voltage level combinations; t amb = ? 40 cto+85 c; unless otherwise specified. [1] symbol parameter conditions min typ max unit fig 7. rise and fall times. fig 8. timing of oe to d+, d ? . fig 9. timing of d+, d ? to rcv, vp, vm. fig 10. timing of vo/vpo, fse0/vmo to d+, d ? . 004aaa572 v ol t fr , t lr t ff , t lf v oh 90 % 10 % 10 % 90 % 004aaa574 v ol v oh t pzh t pzl t phz t plz v oh ? 0.3 v v ol + 0.3 v v crs 0.9 v 0.9 v 1.8 v 0 v logic input differential data lines t plh(se) t phl(se) 004aaa575 v ol v oh t phl(rcv) t plh(rcv) v crs v crs 0.9 v 0.9 v 2.0 v 0.8 v logic output differential data lines 004aaa573 v ol v oh t phl(drv) t plh(drv) v crs v crs 0.9 v 0.9 v 1.8 v 0 v logic input differential data lines
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 17 of 25 isp1105/1106 advanced usb transceivers 13. test information v = 0 v for t pzh , t phz v=v reg(/3.3) for t pzl , t plz fig 11. load for enable and disable times. fig 12. load for vm, vp and rcv. load capacitance: (1) c l = 50 pf or 125 pf (full-speed mode, minimum or maximum timing) (2) c l = 50 pf or 600 pf (low-speed mode, minimum or maximum timing) (1) full-speed mode: connected to d+ ; low-speed mode: connected to d ? . fig 13. load for d+, d ? . test point v 33 d.u.t. 500 50 pf mbl142 mgs968 25 pf test point d.u.t. mgs967 c l test point 15 k d + /d ? v pu(3.3) 1.5 k (1) 33 d.u.t.
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 18 of 25 isp1105/1106 advanced usb transceivers 14. package outline fig 14. hbcc16 package outline. 2.5 a 1 b a 2 unit d e h e 1 references outline version european projection issue date 01-11-13 03-03-12 iec jedec jeita mm 0.8 0.10 0.05 0.7 0.6 3.1 2.9 1.45 1.35 3.1 2.9 1.45 1.35 0.33 0.27 dimensions (mm are the original dimensions) sot639-2 mo-217 d h 0.33 0.27 b 1 0.38 0.32 b 3 0.38 0.32 b 2 2.45 e 3 e 0.23 0.17 f 0.5 w e yy 1 0.1 0.05 0.2 2.5 e 2 2.45 e 4 0.08 v 0 2.5 5 mm scale sot639-2 hbcc16: plastic thermal enhanced bottom chip carrier; 16 terminals; body 3 x 3 x 0.65 mm a max. detail x y y 1 c e e e 1 e 3 d h e 4 d e x c b a 16 113 59 e 2 1/2 e 3 1/2 e 4 e h a 1 a 2 a b 2 b 1 b 3 b f terminal 1 index area a c c b v m w m a c c b v m w m a c c b v m w m a c c b v m w m
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 19 of 25 isp1105/1106 advanced usb transceivers fig 15. hvqfn16 package outline. terminal 1 index area 0.5 1 a 1 e h b unit y e 0.2 c references outline version european projection issue date iec jedec jeita mm 3.1 2.9 d h 1.75 1.45 y 1 3.1 2.9 1.75 1.45 e 1 1.5 e 2 1.5 0.30 0.18 0.05 0.00 0.05 0.1 dimensions (mm are the original dimensions) sot758-1 mo-220 - - - - - - 0.5 0.3 l 0.1 v 0.05 w 0 2.5 5 mm scale sot758-1 hvqfn16: plastic thermal enhanced very thin quad flat package; no leads; 16 terminals; body 3 x 3 x 0.85 mm a (1) max. a a 1 c detail x y y 1 c e l e h d h e e 1 b 58 16 13 12 9 4 1 x d e c b a e 2 02-03-25 02-10-21 terminal 1 index area 1/2 e 1/2 e a c c b v m w m e (1) note 1. plastic or metal protrusions of 0.075 mm maximum per side are not included. d (1)
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 20 of 25 isp1105/1106 advanced usb transceivers fig 16. tssop16 package outline. unit a 1 a 2 a 3 b p cd (1) e (2) (1) eh e ll p qz y w v references outline version european projection issue date iec jedec jeita mm 0.15 0.05 0.95 0.80 0.30 0.19 0.2 0.1 5.1 4.9 4.5 4.3 0.65 6.6 6.2 0.4 0.3 0.40 0.06 8 0 o o 0.13 0.1 0.2 1 dimensions (mm are the original dimensions) notes 1. plastic or metal protrusions of 0.15 mm maximum per side are not included. 2. plastic interlead protrusions of 0.25 mm maximum per side are not included. 0.75 0.50 sot403-1 mo-153 99-12-27 03-02-18 w m b p d z e 0.25 18 16 9 a a 1 a 2 l p q detail x l (a ) 3 h e e c v m a x a y 0 2.5 5 mm scale tssop16: plastic thin shrink small outline package; 16 leads; body width 4.4 mm sot403-1 a max. 1.1 pin 1 index
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 21 of 25 isp1105/1106 advanced usb transceivers 15. revision history table 17. revision history document id release date data sheet status change notice supersedes isp1105_1106_10 20090928 product data sheet - isp1105_1106_9 modifications: ? rebranded to the st-ericsson template. ? section 2 ? features ? : updated. ? section 4 ? ordering information ? : updated. ? removed packing information. ? removed soldering information. isp1105_1106_9 20090119 product data sheet - isp1105_1106-08 isp1105_1106-08 (9397 750 09529) 20040219 product data - isp1105_1106_1107-07 isp1105_1106_1107-07 (9397 750 08872) 20020329 product data - isp1105_1106_1107-06 isp1105_1106_1107-06 (9397 750 08681) 20011130 product data - isp1105_1106_1107-05 isp1105_1106_1107-05 (9397 750 08643) 20010903 product data - isp1105_1106_1107-04 isp1105_1106_1107-04 (9397 750 08515) 20010802 preliminary data - isp1105_1106_1107-03 isp1105_1106_1107-03 (9397 750 07879) 20010704 preliminary data - isp1107-02 isp1107-02 (9397 750 06899) 20010205 objective specification; isp1107 stand-alone data sheet only - isp1107-01 isp1107-01 (9397 750 08643) 20000223 objective specification; isp1107 stand-alone data sheet only -- -
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 22 of 25 isp1105/1106 advanced usb transceivers 16. tables table 1. ordering information . . . . . . . . . . . . . . . . . . . . .2 table 2. selection guide . . . . . . . . . . . . . . . . . . . . . . . . .2 table 3. pin description . . . . . . . . . . . . . . . . . . . . . . . . . .5 table 4. function table . . . . . . . . . . . . . . . . . . . . . . . . . .7 table 5. driving function (pin oe = l) using single-ended input data interface for isp1105 (pin mode = l) . . . . . . . . . . . . . . . . . . . . . . . . .7 table 6. driving function (pin oe = l) using differential input data interface for isp1105 (pin mode = h) and isp1106 . . . . . . . . . . . . . . . . . . . . . . . . . . .7 table 7. receiving function (pin oe = h) . . . . . . . . . . . .7 table 8. pin states in disable or sharing mode . . . . . . . .8 table 9. power supply configuration overview . . . . . . . .8 table 10. power supply input options . . . . . . . . . . . . . . . .9 table 11. limiting values . . . . . . . . . . . . . . . . . . . . . . . . . 11 table 12. recommended operating conditions . . . . . . . . 11 table 13. static characteristics: supply pins . . . . . . . . . .12 table 14. static characteristics: digital pins . . . . . . . . . . .13 table 15. static characteristics: analog i/o pins (d+, d ? )14 table 16. dynamic characteristics: analog i/o pins (d+, d ? ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .15 table 17. revision history . . . . . . . . . . . . . . . . . . . . . . . .21
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 23 of 25 isp1105/1106 advanced usb transceivers 17. figures fig 1. block diagram (combined isp1105 and isp1106). 3 fig 2. pin configuration ISP1105BSTM (hvqfn).. . . . . .4 fig 3. pin configuration isp1105wts and isp1105wtm (hbcc16). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4 fig 4. pin configuration i sp1106dhtm (tssop16).. . . .4 fig 5. pin configuration isp1106wts (hbcc16). . . . . . .4 fig 6. human body esd test model. . . . . . . . . . . . . . . .10 fig 7. rise and fall times. . . . . . . . . . . . . . . . . . . . . . . .16 fig 8. timing of oe to d+, d-. . . . . . . . . . . . . . . . . . . . .16 fig 9. timing of d+, d- to rcv, vp, vm. . . . . . . . . . . . .16 fig 10. timing of vo/vpo, fse0/vmo to d+, d-.. . . . . .16 fig 11. load for enable and disable times. . . . . . . . . . . .17 fig 12. load for vm, vp and rcv. . . . . . . . . . . . . . . . . .17 fig 13. load for d+, d-. . . . . . . . . . . . . . . . . . . . . . . . . . .17 fig 14. hbcc16 package outline. . . . . . . . . . . . . . . . . . .18 fig 15. hvqfn16 package outline. . . . . . . . . . . . . . . . . .19 fig 16. tssop16 package outline. . . . . . . . . . . . . . . . . .20
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 24 of 25 isp1105/1106 advanced usb transceivers 18. contents 1 general description . . . . . . . . . . . . . . . . . . . . . . 1 2 features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 3 applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 4 ordering information . . . . . . . . . . . . . . . . . . . . . 2 4.1 ordering options . . . . . . . . . . . . . . . . . . . . . . . . 2 5 block diagram . . . . . . . . . . . . . . . . . . . . . . . . . . 3 6 pinning information . . . . . . . . . . . . . . . . . . . . . . 4 6.1 pinning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 6.2 pin description . . . . . . . . . . . . . . . . . . . . . . . . . 5 7 functional description . . . . . . . . . . . . . . . . . . . 7 7.1 function selection. . . . . . . . . . . . . . . . . . . . . . . 7 7.2 operating functions . . . . . . . . . . . . . . . . . . . . . 7 7.3 power supply configurations. . . . . . . . . . . . . . . 8 7.4 power supply input options. . . . . . . . . . . . . . . . 9 8 electrostatic discharge (esd). . . . . . . . . . . . . 10 8.1 esd protection . . . . . . . . . . . . . . . . . . . . . . . . 10 8.2 esd test conditions . . . . . . . . . . . . . . . . . . . . 10 9 limiting values. . . . . . . . . . . . . . . . . . . . . . . . . 11 10 recommended operating conditions. . . . . . . 11 11 static characteristics. . . . . . . . . . . . . . . . . . . . 12 12 dynamic characteristics . . . . . . . . . . . . . . . . . 15 13 test information . . . . . . . . . . . . . . . . . . . . . . . . 17 14 package outline . . . . . . . . . . . . . . . . . . . . . . . . 18 15 revision history . . . . . . . . . . . . . . . . . . . . . . . . 21 16 tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 17 figures . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 18 contents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
isp1105_1106_10 ? st-ericsson 2009. all rights reserved. product data sheet rev. 10 ? 28 september 2009 25 of 25 isp1105/1106 advanced usb transceivers please read carefully: the contents of this document are subject to change without prior notice. st-ericsson makes no representation or warranty of an y nature whatsoever (neither expressed nor implied) with respect to the matters addressed in this document, including but not limited to warranties of merchantability or fitness for a particular purpose, interpretability or interoperability or, against infringement of third par ty intellectual property rights, and in no event shall st-ericsson be liable to any party for any direct, indirect, incidental and or consequential dama ges and or loss whatsoever (including but not limited to monetary losses or loss of data), that might arise from the use of this document or th e information in it. st-ericsson and the st-ericsson logo are trademarks of the st-ericsson group of companies or used under a license from stmicroelectronics nv or telefonaktiebolaget lm ericsson. all other names are the property of their respective owners. ? st-ericsson, 2009 - all rights reserved contact information at www.stericsson.com under contacts www.stericsson.com


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