CD4053B

CD405xB CMOS Single 8-Channel Analog Multiplexer or Demultiplexer With Logic-Level Conversion

Overview

Part: CD405xB

Type: CMOS Single 8-Channel Analog Multiplexer or Demultiplexer With Logic-Level Conversion

Key Specs:

  • Digital signal levels: 3V to 20V
  • Analog signal levels: ≤ 20VP-P
  • Single supply range: 3V to 20V
  • Dual supply range: ± 3V to ± 10V
  • ON resistance: 125Ω (typical) over input range for VDD = 15V
  • Channel leakage: ±10pA (typical) at VDD = 15V
  • Quiescent power dissipation: 0.2μW (typical)
  • ESD protection HBM: 3000V
  • ESD protection CDM: 2000V
  • Recommended Operating Temperature Range: –55°C to 125°C

Features:

  • Wide range of digital and analog signal levels
  • Single supply range
  • Dual Supply range
  • Low ON resistance
  • Low channel leakage
  • Low quiescent power dissipation
  • Break-before-make switching eliminates channel overlap
  • Bidirectional signal path
  • ESD protection
  • Pin compatible with industry standard 4051 muxes

Applications:

  • Analog and digital multiplexing and demultiplexing
  • Analog to digital and digital to analog conversion
  • Signal gating
  • Factory automation
  • Televisions
  • Appliances
  • Consumer audio
  • Programmable logic circuits
  • Sensors

Package:

  • J (CDIP, 16): 19.50mm × 6.92mm
  • N (PDIP, 16): 19.3mm × 9.4mm
  • D (SOIC, 16): 9.9mm × mm
  • NS (SOP, 16): 10.2mm × 7.8mm
  • PW (TSSOP, 16): 5mm × 6.4mm

Features

  • Wide range of digital and analog signal levels:
    • Digital: 3V to 20V
    • Analog: ≤ 20VP-P
  • Single supply range: 3V to 20V (performance degrades for VDD < 3V)
  • Dual Supply range: ± 3V to ± 10V
  • Low ON resistance, 125Ω (typical) over input range for VDD = 15V
  • Low channel leakage of ±10pA (typical) at VDD = 15V
  • Low guiescent power dissipation: 0.2μW (typical)
  • Break-before-make switching eliminates channel overlap
  • Bidirectional signal path
  • ESD protection HBM: 3000V, CDM: 2000V
  • Pin compatible with industry standard 4051 muxes

Applications

  • Analog and digital multiplexing and demultiplexing
  • Analog to digital and digital to analog conversion
  • Signal gating
  • Factory automation
  • Televisions
  • Appliances
  • Consumer audio
  • Programmable logic circuits
  • Sensors

Pin Configuration

Figure 4-1. CD4051B E, M, NS, and PW Package, 16-Pin PDIP, CDIP, SOIC, SOP, and TSSOP (Top View)

Figure 4-2. CD4052B E, M, NS, and PW Package, 16-Pin PDIP, CDIP, SOP, and TSSOP (Top View)

Figure 4-3. CD4053B E, M, NS, and PW Package, 16-Pin PDIP, CDIP, SOP, and TSSOP (Top View)

PIN
NO.NAME
1CH 4 IN/OUT
2CH 6 IN/OUT
3COM OUT/IN
4CH 7 IN/OUT
5CH 5 IN/OUT
6INH
7VEE
8VSS
9C
10B
11A
12CH 3 IN/OUT
13CH 0 IN/OUT
14CH 1 IN/OUT
15CH 2 IN/OUT
16VDD

Table 4-1. Pin Functions CD4051B

(1) I = input, O = output

Table 4-2. Pin Functions CD4052B

PIN
NO.NAME
1Y CH 0 IN/OUT
2Y CH 2 IN/OUT
3Y COM OUT/IN
4Y CH 3 IN/OUT
5Y CH 1 IN/OUT
6INH
7VEE
8VSS
9B
10A
11X CH 3 IN/OUT
12X CH 0 IN/OUT
13X COM IN/OUT
14X CH 1 IN/OUT
15X CH 2 IN/OUT
16VDD

(1) I = input, O = output

Table 4-3. Pin Functions CD4053B

PINTYPE(1)
NO.NAME
1BY IN/OUTI/O
2BX IN/OUTI/O
3CY IN/OUTI/O
4CX OR CY
OUT/IN
I/O
5CX IN/OUTI/O
6INHI
7VEE
8VSS
9CI
10BI
11AI
12AX IN/OUTI/O
13AY IN/OUTI/O
14AX OR AY OUT/INI/O
15BX OR BY OUT/INI/O
16VDD

(1) I = input, O = output

Electrical Characteristics

Over operating free-air temperature range, VSUPPLY = ±5V, and RL = 100Ω, (unless otherwise noted)(1)

Over operating free-air temperature range, VSUPPLY = ±5V, and RL = 100Ω, (unless otherwise noted)(1)
PARAMETER
TEST CONDITIONSMIN
TYP
MAX UNIT
SIGNAL INPUTS (VIS) AND OUTPUTS (VOS)
VIS (V)VEE (V)VSS (V)VDD (V)TEMP
–55°C60
–40°C60
0V0V5V25°C1760
85°C150
125°C150
–55°C60
–40°C60
0V0V10V25°C1860
85°C300
Quiescent Device Current, IDD Max125°C300
–55°C60μA
15V–40°C60
0V0V25°C1860
85°C600
125°C600
–55°C100
–40°C100
0V0V20V25°C18100
85°C3000
125°C3000
–55°C800
5V–40°C850
0V0V25°C4701050
85°C1200
125°C1300
–55°C310
–40°C300
Drain to Source ON Resistance rON
Max
0V0V10V25°C180400Ω
0 ≤ VIS ≤ VDD85°C520
125°C550
–55°C200
–40°C210
0V015V25°C125240
85°C300
125°C300
0V0V5V15
Change in ON Resistance
(Between Any Two Channels),
0V0V10V25°C10Ω
ΔRON0V0V15V5

Absolute Maximum Ratings

over operating free-air temperature range (unless otherwise noted)(1) (2)

MINMAXUNIT
Supply VoltageV+ to V-, Voltages Referenced to
VSS Terminal
–0.520V
DC Input Voltage–0.5VDD+0.5V
DC Input CurrentAny One Input–1010mA
TJMAX1Maximum junction temperature, ceramic package175°C
TJMAX2Maximum junction temperature, plastic package150°C
TstgStorage temperature–65150°C

(1) Stresses beyond those listed under Absolute Maximum Rating may cause permanent damage to the device. These are stress ratings only, which do not imply functional operation of the device at these or any other conditions beyond those indicated under Recommended Operating Condition. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.

(2) All voltages are with respect to ground, unless otherwise specified.

Recommended Operating Conditions

over operating free-air temperature range (unless otherwise noted)

MINNOMMAXUNIT
Temperature Range–55125°C

5.4 Thermal Information

THERMAL METRIC(1)CD405x
E (PDIP)
16 PINS
RθJAJunction-to-ambient thermal resistance67

(2) JEDEC document JEP157 states that 250V CDM allows safe manufacturing with a standard ESD control process.

5.5 Electrical Characteristics

Over operating free-air temperature range, VSUPPLY = ±5V, and RL = 100Ω, (unless otherwise noted)(1)

Over operating free-air temperature range, VSUPPLY = ±5V, and RL = 100Ω, (unless otherwise noted)(1)
PARAMETER
TEST CONDITIONSMIN
TYP
MAX UNIT
SIGNAL INPUTS (VIS) AND OUTPUTS (VOS)
VIS (V)VEE (V)VSS (V)VDD (V)TEMP
–55°C60
–40°C60
0V0V5V25°C1760
85°C150
125°C150
–55°C60
–40°C60
0V0V10V25°C1860
85°C300
Quiescent Device Current, IDD Max125°C300
–55°C60μA
15V–40°C60
0V0V25°C1860
85°C600
125°C600
–55°C100
–40°C100
0V0V20V25°C18100
85°C3000
125°C3000
–55°C800
5V–40°C850
0V0V25°C4701050
85°C1200
125°C1300
–55°C310
–40°C300
Drain to Source ON Resistance rON
Max
0V0V10V25°C180400Ω
0 ≤ VIS ≤ VDD85°C520
125°C550
–55°C200
–40°C210
0V015V25°C125240
85°C300
125°C300
0V0V5V15
Change in ON Resistance
(Between Any Two Channels),
0V0V10V25°C10Ω
ΔRON0V0V15V5

5.5 Electrical Characteristics (continued)

Over operating free-air temperature range, VSUPPLY = ± 5V , and RL = 100Ω , (unless otherwise noted)(1)

PARAMETERTEST CONIDITIONSMIN TYP MAX UNIT
–55°C± 100
-40°C± 100
OFF ChOFF Channel Leakage Current: Any
Channel OFF (Max)
25°C± 0.3 102)
or ALLor ALL Channels OFF (COMMON
DUT/IN) (Max)
MONOV0V18V85°C100# nA 0 2)
125°C100±
0
2)
annel Leakage Current: Any5 or 0-5V0V10.5V85°C± 300
Channel ON (Max) or
ALL Channels ON (COMMON OUT/IN)
50V0V18V85°C± 30nA
Input, C IS5
Output, C OSCD4
051
30
Capaci
tance
Output, C OSCD4
052
0V0V10V25°C18pF
Output, C OSCD4
053
9
Feed through, C IOS0.2
R L = 200kΩ5V30 60
Prop DeProp DelayVDDC L = 50pFC L = 50pF25°C15 30 ns
tr , tf = 20 ns15V10 20

5.5 Electrical Characteristics (continued)

Over operating free-air temperature range, VSUPPLY = ±5V, and RL = 100Ω, (unless otherwise noted)(1)

PARAMETERTEST CONDITIONSMINTYPMAX UNIT
CONTROL (ADDRESS OR INHIBIT), VC
–55°C0.8
–40°C0.8
5V25°C0.8
85°C0.8
125°C0.8
–55°C0.8
–40°C0.8
Input Low Voltage, VIL, Max10V25°C0.8V
85°C0.8
125°C0.8
–55°C0.8
–40°C0.8
15V25°C0.8
85°C0.8
125°C0.8
–55°C3.5
–40°C3.5
5V25°C3.5
85°C3.5
125°C3.5
–55°C7
–40°C7
Input High Voltage, VIH, Min10V25°C7V
85°C7
125°C7
–55°C11
–40°C11
15V25°C11
85°C11
125°C11
–55°C±1
–40°C±1
Input current, IIN (Max)VIN = 0, 1818V25°C±0.6±1μA
85°C±1
125°C±1
0V0V5V450720
PropaAddress-to-Signal OUT
tr
, tf = 20ns,
0V0V10V160320
Delaygation
(Channels ON or OFF) (See
Figure 10, Figure 11, and
CL = 50pF,0V0V15V120240ns
TimeFigure 15)RL = 10kΩ–5V0V5V225
450
0V0V5V400720
PropaInhibit-to-Signal OUT (Channeltr
, tf = 20ns,
0V10V160320
gation
Delay
Turning ON) (See Figure 11)0V
CL = 50pF,
0V0V15V120240ns
TimeRL = 1kΩ
–10V
0V
5V200400

Thermal Information

THERMAL METRIC(1)CD405x
E (PDIP)
16 PINS
RθJAJunction-to-ambient thermal resistance67

(2) JEDEC document JEP157 states that 250V CDM allows safe manufacturing with a standard ESD control process.

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