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PDF UCD4066 Data sheet ( Hoja de datos )

Número de pieza UCD4066
Descripción QUAD BILATERAL SWITCH
Fabricantes Unisonic Technologies 
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No Preview Available ! UCD4066 Hoja de datos, Descripción, Manual

UNISONIC TECHNOLOGIES CO., LTD
UCD4066
QUAD BILATERAL SWITCH
CMOS IC
DESCRIPTION
The UTC UCD4066 is a quad bilateral switch which can be
applied for switching of analog signals and digital signals. When
control input CONT is set to “H” level, the impedance between
input and output of the switch becomes low and when it is set to “L”
level, the impedance becomes high. It has a much lower “ON”
resistance, and “ON” resistance is relatively constant over the
input-signal range.
FEATURES
* 15V Digital or ±7.5V Peak-to-Peak Switching
* 85-Typical On-State Resistance for 15V Operation
* High noise immunity 0.45 VDD (typ.)
* Matched “ON” resistance RON=5(typ.) over 15V signal input
* High degree linearity 0.1% distortion (typ.)
@ fIS=1kHz, VIS=5VP-P, VDD-VSS=5V, RL=10k
* Extremely low “OFF” 0.1nA (typ.)
switch leakage: @ VDD-VSS=10V, TA=25°C
* Extremely high control input impedance 1012(typ.)
* Frequency response, switch “ON” 40 MHz (typ.)
ORDERING INFORMATION
Ordering Number
Lead Free
Halogen Free
UCD4066L-D14-T
UCD4066G-D14-T
Package
DIP-14
DIP-14
Packing
Tube
UCD4066L-D14-T
(1)Packing Type
(2)Package Type
(3)Green Package
(1) T: Tube
(2) D14: DIP-14
(3) L: Lead Free, G: Halogen Free and Lead Free
MARKING
www.unisonic.com.tw
Copyright © 2014 Unisonic Technologies Co., Ltd
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UCD4066 pdf
UCD4066
CMOS IC
AC ELECTRICAL CHARACTERISTICS
(TA=25°C, tR=tF=20nS and VSS=0V, unless otherwise specified) (Note 1)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN TYP MAX UNIT
Propagation Delay Time Signal
tPHL, tPLH
VCON=VDD, CL=5pF,
RL=200k(Fig. 1)
VDD=5V
VDD=10V
VDD=15V
25 55 ns
15 35 ns
10 25 ns
Propagation Delay Time
Control Input to Signal
Output High Impedance to Logical Level
tPZH, tPZL
RL=1k, CL=50pF,
(Fig. 2, 3)
VDD=5V
VDD=10V
VDD=15V
125 ns
60 ns
50 ns
Propagation Delay Time
Control Input to Signal
Output Logical Level to High Impedance
tPHZ, tPLZ
RL=1k, CL=50pF,
(Fig. 2, 3)
VDD=5V
VDD=10V
VDD=15V
125 ns
60 ns
50 ns
Sine Wave Distortion
VCON=VDD=5V, VSS=-5V, RL=10k,
VIS=5Vp-p, f=1kHz (Fig. 4)
0.1
%
Frequency Response-Switch “ON”
(Frequency at -3dB)
VCON=VDD=5V, VSS=-5V, RL=1k,
20 Log10(VOS/VIS)=-3dB,
VIS=5.0Vp-p (Fig. 4)
40 MHz
Feedthrough - Switch “OFF”
(Frequency at -50dB)
VDD=5.0V, VCC=VSS=-5.0V,
RL=1k, VIS=5.0Vp-p,
20 Log10(VOS/VIS)=-50dB (Fig. 4)
1.25 MHz
Crosstalk Between Any Two Switches
(Frequency at -50dB)
VDD=VCON(A)=5.0V, RL=1k,
VSS=VCON (B)=5.0V, VIS(A)=5.0Vp-p,
0.9 MHz
20 Log10(VOS(B)/VIS(A))=-50dB(Fig. 5)
Crosstalk, Control Input to Signal Output
VDD=10V, RL=10k, RIN=1k,
VCC=10V Square Wave,
CL=50pF (Fig. 6)
150 mVP-
P
Maximum Control Input
RL=1k, CL=50pF,
VOS(f)=½ VOS(1kHz)
(Fig. 7)
VDD=5V
VDD=10V
VDD=15V
6 MHz
8 MHz
8.5 MHz
Signal Input Capacitance
CIS
8.0 pF
Signal Output Capacitance
COS
VDD=10V
8.0 pF
Feedthrough Capacitance
CIOS
VCON=0V
0.5 pF
Control Input Capacitance
CIN
5.0 7.5 pF
Notes: 1. AC Parameters are guaranteed by DC correlated testing.
2. These devices should not be connected to circuits with the power “ON”.
3. In all cases, there is approximately 5 pF of probe and jig capacitance in the output; however, this
capacitance is included in CL wherever it is specified.
4. VIS is the voltage at the in/out pin and VOS is the voltage at the out/in pin. VCON is the voltage at the control
input.
5. Conditions for VIHC:
a) VIS=VDD, IOS=standard B series IOH
b) VIS=0V, IOL= standard B series IOL
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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