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74HC4316NNSCN/a25avai74HC/HCT4316; Quad bilateral switches
74HC4316PW NXP N/a42500avaiQuad bilateral switches


74HC4316PW ,Quad bilateral switchesGENERAL DESCRIPTIONV as a positive limit and V as a negative limit.CC EEV - V may not exceed 10.0 V ..
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74HC4316N-74HC4316PW
Quad bilateral switches

Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
FEATURES
Low “ON” resistance:
160Ω (typ.) at VCC− VEE= 4.5 V
120Ω (typ.) at VCC− VEE= 6.0 VΩ (typ.) at VCC− VEE= 9.0 V Logic level translation:
to enable 5 V logic to communicate
with± 5 V analog signals Typical “break before make” built in Output capability: non-standard ICC category: MSI
GENERAL DESCRIPTION

The 74HC/HCT4316 are high-speed Si-gate CMOS
devices. They are specified in compliance with JEDEC
standard no. 7A.
The 74HC/HCT4316 have four independent analog
switches. Each switch has two input/output terminals
(nY, nZ) and an active HIGH select input (nS). When the
enable input (E) is HIGH, all four analog switches are
turned off.
Current through a switch will not cause additional VCC
current provided the voltage at the terminals of the switch
is maintained within the supply voltage range;
VCC>> (VY, VZ)>> VEE. Inputs nY and nZ are electrically
equivalent terminals.
VCC and GND are the supply voltage pins for the digital
control inputs (E and nS). The VCC to GND ranges are 2.0
to 10.0 V for HC and 4.5 to 5.5 V for HCT.
The analog inputs/outputs (nY and nZ) can swing between
VCC as a positive limit and VEE as a negative limit.
VCC− VEE may not exceed 10.0 V.
See the “4016” for the version without logic level
translation.
QUICK REFERENCE DATA

VEE= GND= 0 V; Tamb =25 °C; tr =tf= 6 ns
Notes
CPD is used to determine the dynamic power
dissipation (PD in μW): =CPD× VCC2×fi +∑ {(CL+ CS)× VCC2×fo}
where:= input frequency in MHz= output frequency in MHz= output load capacitance in pF= max. switch capacitance in pF
VCC= supply voltage in V For HC the condition is VI= GND to VCC
For HCT the condition is VI= GND to VCC− 1.5 V
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
ORDERING INFORMATION

See “74HC/HCT/HCU/HCMOS Logic Package Information”.
PIN DESCRIPTION
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
FUNCTION TABLE
Note
H= HIGH voltage level= LOW voltage level= don’t care
APPLICATIONS
Signal gating Modulation Demodulation Chopper
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
RATINGS

Limiting values in accordance with the Absolute Maximum System (IEC 134)
Voltages are referenced to VEE= GND (ground= 0 V)
Note to ratings

To avoid drawing VCC current out of terminal Z, when switch current flows in terminals Yn, the voltage drop across the
bidirectional switch must not exceed 0.4 V. If the switch current flows into terminals Z, no VCC current will flow out of
terminal Yn. In this case there is no limit for the voltage drop across the switch, but the voltages at Yn and Z may not
exceed VCC or VEE.
RECOMMENDED OPERATING CONDITIONS
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
DC CHARACTERISTICS FOR 74HC/HCT

For 74HC: VCC− GND or VCC− VEE= 2.0, 4.5, 6.0 and 9.0 V
For 74HCT: VCC− GND= 4.5 and 5.5 V; VCC− VEE= 2.0, 4.5, 6.0 and 9.0 V
Notes
At supply voltages (VCC− VEE) approaching 2.0 V the analog switch ON-resistance becomes extremely non-linear.
Therefore it is recommended that these devices are used to transmit digital signals only, when using these supply
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
DC CHARACTERISTICS FOR 74HC

Voltages are referenced to GND (ground= 0 V)
Philips Semiconductors Product specification
Quad bilateral switches 74HC/HCT4316
AC CHARACTERISTICS FOR 74HC

GND= 0 V; tr =tf= 6 ns; CL= 50 pF
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