FXLH1T45 ONSEMI | Alldatasheet
Document overview
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Technical content
Features
- Bi−directional Interface between any 2 Levels from 1.1 V to 3.6 V
- Fully Configurable: Inputs Track VCC level
- Non−preferential Power−up Sequencing; either VCC may be Powered−up First
- Outputs Remain in 3−STA TE until Active VCC Level is Reached
- Outputs Switch to 3−STA TE if either VCC is at GND
- Power Off Protection
- Bushold On Data Inputs Eliminates the Need for External Pull−up/Pull−down Resistors
- Control Input (T/R) Levels are Referenced to VCCA V oltage
- Packaged in the MicroPak 6 SIP6 (1.0 mm x 1.45 mm)
- ESD Protections Exceeds: ♦ 4 kV HBM ESD (per JESD22−A114 & Mil Std 883e 3015.7) ♦ 8 kV HBM I/O to GND ESD (per JESD22−A114 & Mil Std 883e 3015.7) ♦ 1 kV CDM ESD (per ESD STM 5.3) ♦ 200 V MM ESD (per JESD22−A115 & ESD STM5.2) www.onsemi.com MARKING DIAGRAM See detailed ordering and shipping information on page 9 of this data sheet.
ORDERING INFORMATION
SIP6 1.45x1.0 CASE 127EB XDKK XYZ XD = Device Code KK = Lot Code XY = Numeric Date Code Z = Assembly Plant Code
www.onsemi.com FUNCTIONAL DIAGRAM VCCA A T/R VCCB B PINOUT (Top Through View) VCCB T/R B VCCA GND A PIN ASSIGNMENT Pin Number Terminal Name
1 VCCA
2 GND
5 T/R
6 VCCB
T/R Transmit/Receive Input A Side A Input or Output B Side B Input or Output VCCA Side A Power Supply VCCB Side B Power Supply FUNCTION TABLE Inputs (T/R) Outputs L Bus B Data to Bus A H Bus A Data to Bus B H = HIGH Logic Level L = LOW Logic Level POWER−UP/POWER−DOWN SEQUENCING FXL translators offer an advantage in that either VCC may be powered up first. This benefit derives from the chip design. When either V CC is at 0V , outputs are in a HIGH−Impedance state. To ensure that bus contention, excessive currents, or oscillations do not occur, a proper power−up sequence is recommended. The recommended power−up sequence is the following: 1. Apply power to either V CC 2. Apply power to the T/R input (Logic HIGH for A−to−B operation; Logic LOW for B−to−A operation) and to the respective data inputs (A Port or B Port). This may occur at the same time as Step 1 3. Apply power to other V CC The recommended power −down sequence is the following: 4. Remove power from either VCC 5. Remove power from other VCC
www.onsemi.com ABSOLUTE MAXIMUM RATINGS Symbol Parameter Rating VCCA, VCCB Supply Voltage −0.5 V to +4.6 V VI DC Input Voltage I/O Port A I/O Port B Control Input (T/R −0.5 V to +4.6 V −0.5 V to +4.6 V −0.5 V to +4.6 V VO Output Voltage (Note 1) Outputs 3−STATE Outputs Active (An) Outputs Active (Bn) −0.5 V to +4.6 V −0.5 V to VCCA + 0.5 V −0.5 V to VCCB + 0.5 V IIK DC Input Diode Current @ VI < 0 V −50 mA IOK DC Output Diode Current @ VO < 0 V VO > VCC −50 mA +50 mA IOH / IOL DC Output Source/Sink Current −50 mA / +50 mA ICC DC VCC or Ground Current per Supply Pin ±100 mA TSTG Storage Temperature Range −65°C to +150°C Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality should not be assumed, damage may occur and reliability may be affected. RECOMMENDED OPERATING CONDITIONS (Note 2) Symbol Parameter Rating VCCA or VCCB Power Supply Operating 1.1 V to 3.6 V Vi Input Voltage Port A Port B Control Input (T/R 0.0 V to 3.6 V 0.0 V to 3.6 V
0.0 V to V
Vo Output Current in IOH/IOL with VCC @ 3.0 V to 3.6 V 2.3 V to 2.7 V 1.65 V to 1.95 V 1.4 V to 1.65 V 1.1 V to 1.4 V ±24 mA ±18 mA ±6 mA ±2 mA ±0.5 mA TA Free Air Operating Temperature −40°C to +125°C /C0068t/ /C0068V Maximum Input Edge Rate VCCA/B = 1.1 V to 3.6 V 10 ns/V 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. NOTES: 1. I O Absolute Maximum Rating must be observed. 2. All unused inputs and I/O pins must be held at V CCI or GND.
www.onsemi.com DC ELECTRICAL CHARACTERISTICS (TA = −40°C to +125°C, unless otherwise noted. Typical values are at TA = +25°C) Symbol Parameter Conditions VCCI (V) VCCO (V) Min. Typ. Max. Units VIH High Level Input Voltage (Note 3) 2.3–2.7 1.6 − − 1.65–2.3 0.65 x VCCI − − 1.4–1.65 0.65 x VCCI − − Control Pin T/R (Referenced to VCCA) 2.3–2.7 1.6 − − 1.65–2.3 0.65 x VCCA − − 1.4–1.65 0.65 x VCCA − − VIL Low Level Input Voltage (Note 3) 2.3–2.7 − − 0.7 1.65–2.3 − − 0.35 x VCCI 1.4–1.65 − − 0.35 x VCCI Control Pin T/R (Referenced to VCCA) 2.3–2.7 − − 0.7 1.65–2.3 − − 0.35 x VCCA 1.4–1.65 − − 0.35 x VCCA VOH High Level Output Voltage (Note 4) IOH = −12 mA 2.7 2.7 2.2 − − IOH = −18 mA 3.0 3.0 2.4 − − IOH = −24 mA 3.0 3.0 2.2 − − IOH = −12 mA 2.3 2.3 1.8 − − IOH = −18 mA 2.3 2.3 1.7 − − IOH = −6 mA 1.65 1.65 1.25 − − IOH = −2 mA 1.4 1.4 1.05 − − IOH = −0.5 mA 1.1 1.1 0.75 x VCCO − − VOL Low Level Output Voltage (Note 4) IOL = 12 mA 2.7 2.7 − − 0.4 IOL = 18 mA 3.0 3.0 − − 0.4 IOL = 24 mA 3.0 3.0 − − 0.55 IOL =12 mA 2.3 2.3 − − 0.4 IOL = 18 mA 2.3 2.3 − − 0.6 IOL = 6 mA 1.65 1.65 − − 0.3 IOL = 2 mA 1.4 1.4 − − 0.35 IOL = 0.5 mA 1.1 1.1 − − 0.3 x VCCO II Input Leakage Current Control Pins VI = VCCA or GND 1.1–3.6 3.6 − − ±1.0 /C0109A
www.onsemi.com DC ELECTRICAL CHARACTERISTICS (continued) (TA = −40°C to +125°C, unless otherwise noted. Typical values are at TA = +25°C) Symbol UnitsMax.Typ.Min.VCCO (V)VCCI (V)ConditionsParameter II(HOLD) Bushold Input Minimum Drive Current VIN = 0.8 V, TA = −40°C to +85°C 3.0 3.0 75.0 − − /C0109A VIN = 0.8 V 3.0 3.0 60.0 − − VIN = 2 V, TA = −40°C to +85°C 3.0 3.0 −75.0 − − VIN = 2 V 3.0 3.0 −60 − − VIN = 0.7 V 2.3 2.3 45.0 − − VIN = 0.57 V 1.65 1.65 25.0 − − VIN = 1.07 V 1.65 1.65 −25.0 − − VIN = 0.49 V 1.4 1.4 10.0 − − VIN = 0.11 V 1.1 1.1 − 4.0 − II(OD) Bushold Input Over−Drive Current to Change State (Note 5) 3.6 3.6 450 − − /C0109A Current−to−Change State (Note 6) 3.6 3.6 −450 – – (Note 5) 2.7 2.7 300 – – (Note 5) 1.95 1.95 200 – – (Note 5) 1.6 1.6 120 – – IOFF Power Off Leakage Current An, VCCA = VCCI, VI = 0 V to 3.6 V Bn, VCCB = VCCI, VI = 0 V to 3.6 V 0 3.6 − − ±10.0 IOZ 3−STATE Output Leakage An, VCCA = VCCO, VO = 0 V or 3.6 V Bn, VCCB = VCCO, VO = 0 V or 3.6 V 0 3.6 – – ±10.0 ICCA/B Quiescent Supply Current (Note 7) ICCA Quiescent Supply Current VI = VCCA or GND; IO = 0 0 1.1–3.6 − − −10.0 /C0109A VI = VCCA or GND; IO = 0 1.1–3.6 0 – – 10.0 ICCB Quiescent Supply Current VI = VCCB or GND; IO = 0 1.1–3.6 0 − − −10.0 /C0109A VI = VCCB or GND; IO = 0 0 1.1–3.6 – – 10.0 /C0068ICCA/B Increase in ICC per Input; Other Inputs at VCC or GND VIH = 3.0 V 3.6 3.6 – – 500 /C0109A 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. NOTES: 3. V CCI = the VCC associated with the data input under test. 4. V CCO = the VCC associated with the output under test. 5. An external driver must source at least the specified current to switch LOW−to−HIGH. 6. An external driver must source at least the specified current to switch HIGH−to−LOW. 7. Reflects current per supply, V CCA or VCCB.
www.onsemi.com VCCA = 3.0 V to 3.6 V Symbol Parameter VCCB = 3.0 V to 3.6 V VCCB = 2.3 V to 2.7 V VCCB = 1.65 V to 1.95 V VCCB = 1.4 V to 1.6 V VCCB = 1.1 V to 1.3 V tPZH, tPZL (Note 8) VCCA = 2.3 V to 2.7 V Symbol Parameter VCCB = 3.0 V to 3.6 V VCCB = 2.3 V to 2.7 V VCCB = 1.65 V to 1.95 V VCCB = 1.4 V to 1.6 V VCCB = 1.1 V to 1.3 V tPZH, tPZL (Note 8) VCCA = 1.65 V to 1.95 V Symbol Parameter VCCB = 3.0 V to 3.6 V VCCB = 2.3 V to 2.7 V VCCB = 1.65 V to 1.95 V VCCB = 1.4 V to 1.6 V VCCB = 1.1 V to 1.3 V tPZH, tPZL (Note 8)
www.onsemi.com VCCA = 1.4 V to 1.6 V Symbol Parameter VCCB = 3.0 V to 3.6 V VCCB = 2.3 V to 2.7 V VCCB = 1.65 V to 1.95 V VCCB = 1.4 V to 1.6 V VCCB = 1.1 V to 1.3 V tPZH, tPZL (Note 8) VCCA = 1.1 V to 1.3 V Symbol Parameter VCCB = 3.0 V to 3.6 V VCCB = 2.3 V to 2.7 V VCCB = 1.65 V to 1.95 V VCCB = 1.4 V to 1.6 V VCCB = 1.1 V to 1.3 V tPZH, tPZL (Note 8) NOTES: 8. The enable time, tPZH or tPZL, is the time for the FXLH1T45 to return to active operation after a direction change. The enable time specifies the worst−case delay from the time the T/R pin is switched until a valid output signal is expected. For example, to change direction to B−to−A operation, the T/R pin is switched from HIGH−to−LOW. The enable time for this case is found by adding the disable time for T/R to B to the propagation delay for B to A. The formulas for calculating enable times are the following: tPZH (T/R to A) = tPLZ (T/R to B) + tPLH (B to A) tPZL (T/R to A) = tPHZ (T/R to B) + tPHL (B to A) tPZH (T/R to B) = tPLZ (T/R to A) + tPLH (A to B) tPZL (T/R to B) = tPHZ (T/R to A) + tPHL (A to B) CAPACITANCE Symbol Parameter Conditions TA = +25/C0095C UnitsTypical CIN Input Capacitance Control Pin (T/R) VCCA = VCCB = 3.3 V, VI = 0 V or VCCA/B 4.0 pF CI/O Input/Output Capacitance An, Bn Ports VCCA = VCCB = 3.3 V, VI = 0 V or VCCA/B 5.0 pF CPD Power Dissipation Capacitance VCCA = VCCB = 3.3 V, VI = 0 V or VCC, F = 10 MHz 20.0 pF
www.onsemi.com Order Number Case Number Pb−Free Package Description Supplied As FXLH1T45L6X 127EB Yes 6−Lead MicroPak/SIP6, 1.0 mm Wide 5k Units on Tape and Reel Tape and Reel Specification TAPE FORMAT FOR MICROPAK Package Designator Tape Section Number Cavities Cavity Status Cover Tape Status L6X Leader (Start End) 125 (typ) Empty Sealed Carrier 5000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed Tape Dimensions Millimeters Reel Dimensions Inches (Millimeters) Tape Size A B C D N W1 W2 W3 8 mm 7.0 (177.8) 0.059 (1.50) 0.512 (13.00) 0.795 (20.20) 2.165 (55.00) 0.567 (14.40) W1 + 0.078 /−0.039 (W1 + 2.00 /−1.00)
SIP6 1.45X1.0 CASE 127EB ISSUE O DATE 31 AUG 2016 MECHANICAL CASE OUTLINE PACKAGE DIMENSIONS http://onsemi.com © Semiconductor Components Industries, LLC, 2002 October, 2002 − Rev. 0 Case Outline Number: XXX DOCUMENT NUMBER: STATUS: NEW STANDARD: DESCRIPTION: 98AON13590G ON SEMICONDUCTOR STANDARD SIP6 1.45X1.0 Electronic versions are uncontrolled except when accessed directly from the Document Repository. Printed versions are uncontrolled except when stamped “CONTROLLED COPY” in red. PAGE 1 OF 2
DOCUMENT NUMBER: 98AON13590G PAGE 2 OF 2 ISSUE REVISION DATE O RELEASED FOR PRODUCTION FROM FAIRCHILD MAC06A TO ON SEMICONDUCTOR. REQ. BY B. MARQUIS.
31 AUG 2016
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