FSA634 ONSEMI | Alldatasheet

Document overview

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  • PDF pages: 8

Technical content

Features

  • Switch Type: SPDT (10x)
  • Signal Type: MIPI, D−PHY
  • VCC: 1.65 to 4.5 V
  • Input Signal: 0 V to VCC
  • RON: ♦ 5 /C0087 Typical HS MIPI ♦ 5 /C0087 Typical LP MIPI
  • /C0068RON: 0.1 /C0087 Typical
  • RON_FLAT: 0.06 /C0087 Typical
  • ICCZ: 0.5 /C0109A Maximum
  • ICC: 32 /C0109A Maximum
  • OIRR: −30 dB Typical
  • Bandwidth: 1.9 GHz Typical
  • Xtalk: −38 dB Typical
  • CON: 4.3 pF Typical
  • Skew: 3 ps Typical

Applications

  • Cellular Phones, Smart Phones
  • Tablets
  • Laptops
  • Displays www.onsemi.com WLCSP36, 2.06x2.06x0.432 CASE 567XU See detailed ordering and shipping information on page 7 of this data sheet.

ORDERING INFORMATION

VJ = Specific Device Code KK = Assembly Lot X = Year Y = Work Week Z = Assembly Location (Bottom View) VJKK XYZ

Figure 3. Top Through View Table 1. BALL−TO−PIN MAPPINGS

Figure 4. Suggested Configuration for 4 Lane D−PHY should not be assumed, damage may occur and reliability may be affected.

  1. The input and output negative ratings may be exceeded if the input and output diode current ratings are observed.

SW refers to analog data switch paths.

www.onsemi.com RECOMMENDED OPERATING CONDITIONS Symbol Parameter Min Max Unit VCC Supply Voltage 1.65 4.50 V VCNTRL Control Input Voltage (SEL, /OE) (Note 3) 0 VCC V VSW Switch I/O Voltage (Dn, DAn, DBn) HS Mode 0 0.425 V LP Mode 0 1.3 V TA Operating Temperature −40 +85 °C Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond the Recommended Operating Ranges limits may affect device reliability. 3. The control inputs must be held HIGH or LOW; they must not float. ELECTRICAL SPECIFICATION TABLE Typical values are at TA = 25°C, VCC = 3.3 V unless otherwise specified. Symbol Parameter Conditions Min Typ Max Units DC ELECTRICAL PARAMETERS VIK Clamp Diode Voltage IIN = −18 mA, VCC = 1.8 V −1.2 V VIH Input Voltage High VCC = 1.65 V to 4.50 V 1.0 V VIL Input Voltage Low VCC = 1.65 V to 4.50 V 0.4 V IIN Control Input Leakage (SEL,/OE) VSW = 0 V to VCC, VCC = 1.65 V to 4.50 V −500 500 nA INO(OFF), INC(OFF) Off Leakage Current of Port Dn, DnA, DnB Dn = 0.3 V to VCC − 0.3 V; DnA or DnB = Floating, 0.3 V, or VCC − 0.3 V; /OE = 0 V; VCC = 1.65 V to 4.5 V −500 500 nA IA(ON) On Leakage Current of Common Ports (Dn) Dn = 0.3 V to VCC − 0.3 V; DnA or DnB = Floating, 0.3 V, or VCC − 0.3 V; /OE = 0 V; VCC = 1.65 V to 4.5 V −500 500 nA IOFF Power−Off Leakage Current Dn, DnA or DnB; VIN = 0 V to 4.5 V; VCC = 0 V −500 500 nA IOZ Off−State Leakage 0 ≤ Dn, DnA, DnB ≤ 3.6 V, /OE = High, VCC = 4.5 V −500 500 nA RON_MIPI_HS_1p8 Switch On Resistance for HS MIPI Applications (Note 5) ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 1.8 V 5 12 /C0087 RON_MIPI_HS_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 2.5 V 5 9 /C0087 RON_MIPI_HS_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 3.6 V 5 9 /C0087 RON_MIPI_HS_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 4.5 V 5 9 /C0087 RON_MIPI_LP_1p8 Switch On Resistance for LP MIPI Applications (Note 5) ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0 V, 0.6 V, 1.2 V, VCC = 1.8 V 5 12 /C0087 RON_MIPI_LP_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0 V, 0.6 V, 1.2 V, VCC = 2.5 V 5 9 /C0087 RON_MIPI_LP_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0 V, 0.6 V, 1.2 V, VCC = 3.6 V 5 9 /C0087 RON_MIPI_LP_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0 V, 0.6 V, 1.2 V VCC = 4.5 V 5 9 /C0087

www.onsemi.com ELECTRICAL SPECIFICATION TABLE Typical values are at TA = 25°C, VCC = 3.3 V unless otherwise specified. Symbol UnitsMaxTypMinConditionsParameter DC ELECTRICAL PARAMETERS /C0068RON_MIPI_HS_1p8 On Resistance Matching Between HS MIPI Chan- nels ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 1.8 V 0.10 /C0087 /C0068RON_MIPI_HS_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 2.5 V 0.10 /C0087 /C0068RON_MIPI_HS_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 3.6 V 0.10 /C0087 /C0068RON_MIPI_HS_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 4.5 V 0.10 /C0087 /C0068RON_MIPI_LP_1p8 On Resistance Matching Between LP MIPI Chan- nels ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 1.8 V 0.12 /C0087 /C0068RON_MIPI_LP_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 2.5 V 0.12 /C0087 /C0068RON_MIPI_LP_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 3.6 V 0.12 /C0087 /C0068RON_MIPI_LP_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 4.5 V 0.12 /C0087 RON_FLAT_MIPI_HS_1p8 On Resistance Flatness for HS MIPI Signals ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 1.8 V 0.04 /C0087 RON_FLAT_MIPI_HS_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 2.5 V 0.06 /C0087 RON_FLAT_MIPI_HS_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 3.6 V 0.06 /C0087 RON_FLAT_MIPI_HS_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.1 V, 0.2 V, 0.3 V, VCC = 4.5 V 0.06 /C0087 RON_FLAT_MIPI_LP_1p8 On Resistance Flatness for LP MIPI Signals ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 1.8 V 0.18 /C0087 RON_FLAT_MIPI_LP_2p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 2.5 V 0.28 /C0087 RON_FLAT_MIPI_LP_3p6 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 3.6 V 0.28 /C0087 RON_FLAT_MIPI_LP_4p5 ION = −10 mA, /OE = 0 V, SEL = VCC or 0 V, DnA or DnB = 0.0 V, 0.6 V, 1.2 V, VCC = 4.5 V 0.28 /C0087 ICCZ Quiescent Hi−Z Supply Current VIN = 0 V or VCC, IOUT = 0 A, VCC = 4.5 V 0.5 /C0109A ICC Quiescent Supply Current VIN = 0 or VCC, IOUT = 0 A, VCC = 2.5 V to 4.5 V 16 32 /C0109A ICC_1p8 VIN = 0 or VCC, IOUT = 0 A, VCC = 1.8 V 15 25 /C0109A ICCT_4p5 Increase in ICC Current Per Control Voltage and VCC VSEL = 1.65 V, /OE = 1.65 V, VCC = 4.5 V 4 /C0109A ICCT_2p5 VSEL = 1.65 V, /OE = 1.65 V, VCC = 2.5 V 0.1 /C0109A AC ELECTRICAL PARAMETERS tINIT Initalization Time VCC to Output RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 2.5 V to 4.5 V 100 /C0109s tINIT_1p8 RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.8 V 150 /C0109s tEN Enable Turn−On Time, /OE to Output RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 2.5 V to 4.5 V 120 200 ns tEN_1p8 RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.8 V 250 500 ns tDIS Disable Turn−Off Time, /OE to Output RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 2.5 V to 4.5 V 25 50 ns tDIS_1p8 RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.8 V 50 90 ns

www.onsemi.com ELECTRICAL SPECIFICATION TABLE Typical values are at TA = 25°C, VCC = 3.3 V unless otherwise specified. Symbol UnitsMaxTypMinConditionsParameter AC ELECTRICAL PARAMETERS tON Turn−On Time, SEL to Output RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 2.5 V to 4.5 V, SEL = H to L, SEL = L to H 200 ns tON_1p8 RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.8 V, SEL = H to L, SEL = L to H 300 ns tOFF Turn−Off Time SEL to Output RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 2.5 V to 4.5 V, SEL = H to L, SEL = L to H 200 ns tOFF_1p8 RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.8 V, SEL = H to L, SEL = L to H 300 tBBM Break−Before−Make Time RL = 50 /C0087, CL = 5 pF, VSW = 1.2 V, VCC = 1.65 V to 4.5 V 10 50 ns OIRR Off Isolation for MIPI (Note 5) RL = 50 /C0087, f = 750 MHz, /OE = VCC, VSW = −1 dBm (200 mVPP), VCC = 1.65 V to 4.5 V −30 dB XTALK Crosstalk for MIPI (Note 5) RL = 50 /C0087, f = 750 MHz, VSW = −1 dBm (200 mVPP), VCC = 1.65 V to 4.5 V −38 dB BW Bandwidth at −3dB (Note 5) RL = 50 /C0087, CL = 0 pF, VCC = 3 V 1.9 GHz tSK(O) Channel−to−Channel Sin- gle−Ended Skew (Note 5) TDR−Based Method (VSW = 0.2 VPP, CL = CON), VCC = 3.3 V 3 20 ps tSK(P) Skew of Opposite Transi- tions of the Same Output (Note 5) TDR−Based Method (VSW = 0.2 VPP, CL = CON), VCC = 3.3 V 3 20 ps CAPACITANCE CIN Control Pin Input Capaci- tance (Note 5) VCC = 0 V, f = 1 MHz 2.7 pF CON Out On Capacitance (Note 5) VCC = 3.3 V, /OE = 0 V, f = 1 MHz 4.3 pF COFF Out Off Capacitance (Note 5) VCC and /OE = 3.3 V, f = 1 MHz 1.9 pF Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions. NOTE: Guarantee Levels: 4. Guaranteed by Design. Characterized on the ATE or Bench. 5. Guaranteed by Design and Characterization, not Production Tested. The table below pertains to the Packaging information on the following page. Part Number Operating Temperature Range Package Top Mark FSA634UCX −40 to +85°C 36−Ball WLCSP, Non−JEDEC 2.06 x 2.06 mm, 0.35 mm Pitch VJ

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