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Part: TC7SBL384FU
Category: Logic -> Bus Switches -> 1 Bit Low Voltage
Description: Function = Single Low-voltage Bus Switch ;; Features = Operating Voltage: VCC = 2~3.6 V High Speed Operation: TPD = 0.25 NS (max) ;; Package = Usv
Company: Toshiba America Electronic Components, Inc.
Datasheet: Download TC7SBL384FU datasheet File size : 301 kB
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Datasheet text preview:
TC7SBL384FU TENTATIVE
TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic
TC7SBL384FU
Single Low-Voltage Bus Switch
The TC7SBL384FU is a low on-resistance, high-speed CMOS 1-bit bus switch with low voltage operation. The low on resistance of the switch allows connections to be made with minimal propagation delay. The device is organized as just 1-bit low-impedance switch with output-enable (OE) input. When OE is low, the switch is on and data can flow from port A to port B, or vice versa. When OE is high, the switch is open and a high-impedance state exists between the two ports. P-MOS and N-MOS channel block also allows the device is suitable for analog signal transmission. All inputs are equipped with protection circuits against static discharge.
Weight: 0.06 g (typ.)
Features
· · · · · · · Operating voltage: VCC = 2~3.6 V High speed operation: tpd = 0.25 ns (max) @3 V Low on resistance: RON = 5 (typ.) @3 V ESD performance: Machine model > ±200 V Human body model > ±2000 V High noise immunity: VNIH = VNIL = 28% VCC (min) Power-down protection for inputs and I/O terminal. Package: USV
Pin Assignment (top view)
V CC 5 OE 4
1 A
2 B
3 GND
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2001-10-16
TC7SBL384FU
Truth Table
Input
OE
Function A port = B port Disconnect
L H
System Diagram
A
B
OE
Maximum Ratingsçççç
Characteristics Power supply range DC input voltage DC switch voltage Input diode current Continuous channel current Power dissipation DC VCC/GND current Storage temperature Symbol V CC VIN VS IIK IS PD ICC/IGND Tstg Rating -0.5~7.0 -0.5~7.0 -0.5~7.0 -50 128 200 ±100 -65~150 Unit V V V mA mA mW mA °C
Recommended Operating Conditions
Characteristics Supply voltage Input voltage Switch voltage Operating temperature Input rise and fall time Symbol V CC VIN VS Topr dt/dv Rating 2.0~3.6 0~5.5 0~5.5 -40~85 0~10 Unit V V V °C ns/V
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TC7SBL384FU
Electrical Characteristics DC Characteristics (Ta = -40~85°C)
Characteristics "H" level "L" level Symbol VIH VIL IIN IOFF ISZ VIN = 0~5.5 V A, B, OE = 0~5.5 V A, B = 0~5.5 V, OE = VCC VIS = 0 V, IIS = 30 mA VIS = 3.0 V, IIS = 30 mA ON resistance (Note 3) RONç VIS = 2.4 V, IIS = 15 mA VIS = 0 V, IIS = 24 mA VIS = 2.3 V, IIS = 24 mA VIS = 1.7 V, IIS = 15 mA Quiescent supply current I CC VIN = VCC or GND, IOUT = 0 (Note 1) (Note 1) (Note 1) (Note 2) (Note 2) (Note 2) Test Condition VCC (V) 2.0~3.6 2.0~3.6 2.0~3.6 0 2.0~3.6 3.0 3.0 3.0 2.3 2.3 2.3 3.6 Min 0.7 × V CC Typ. 2 3 5 3 4 9 Max 0.3 × V CC ±1.0 ±1.0 ±1.0 7 7 15 10 15 25 10 µA V Unit
Control pin input voltage
Input leakage current Power off leakage current Off-state leakage current (switch off)
µA µA µA
Note 1: The typical values are at VCC = 3.3 V, Ta = 25°C. Note 2: The typical values are at VCC = 2.5 V, Ta = 25°C. Note 3: Measured by the voltage drop between A and B pins at the indicated current through the switch. On resistance is determined by the lower of the voltages on two (A or B) pins.
AC Characteristics (Ta = -40~85°C)
Characteristics Propagation delay time (bus to bus) Output enable time Symbol tpLH tpHL tpZL tpZH tpLZ tpHZ Test Condition Figure 1, Figure 2 (Note 4) VCC (V) 3.0 3.0 2.3 3.0 2.0 Min Max 0.25 TBD TBD TBD TBD Unit ns
Figure 1, Figure 3
ns
Output disable time
Figure 1, Figure 3
ns
Note 4: This parameter is guaranteed by design but is not tested. The bus switch contributes no propagation delay other than the RC delay of the typical on resistance of the switch and the 50 pF load capacitance, when driven by an ideal voltage the source (zero output impedance).
Capacitive Characteristics (Ta = 25°C)
Characteristics Control pin input capacitance Switch terminal capacitance Symbol CIN CI/O
OE = VCC
Test Condition (Note 5) (Note 5)
VCC (V) 3.0 3.0
Typ. 3 10
Unit pF pF
Note 5: This item is guaranteed by design.
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