IC Phoenix
 
Home ›  MM55 > MAX4533CAP+-MAX4533CWP+-MAX4533EWP+,Quad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch
MAX4533CAP+-MAX4533CWP+-MAX4533EWP+ Fast Delivery,Good Price
Part Number:
If you need More Quantity or Better Price,Welcom Any inquiry.
We available via phone +865332716050 Email
Partno Mfg Dc Qty AvailableDescript
MAX4533CAP+ |MAX4533CAPMAXN/a42avaiQuad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch
MAX4533CWP+MAXIMN/a2000avaiQuad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch
MAX4533EWP+MAXIMN/a1000avaiQuad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch
MAX4533CAP+ |MAX4533CAPMAXIMN/a1avaiQuad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch


MAX4533CWP+ ,Quad, Rail-to-Rail, Fault-Protected, SPDT Analog SwitchFeatures♦ Rail-to-Rail Signal HandlingThe MAX4533 quad, single-pole/double-throw (SPDT),fault-prote ..
MAX4533EAP ,Quad / Rail-to-Rail / Fault-Protected / SPDT Analog SwitchELECTRICAL CHARACTERISTICS—Dual Supplies(V+ = +15V, V- = -15V, T = T to T , unless otherwise noted. ..
MAX4533EPP ,Quad / Rail-to-Rail / Fault-Protected / SPDT Analog Switchfeatures fault-protected inputs and Rail-to-Rail signal' All Switches Off with Power Offhandling. T ..
MAX4533EWP+ ,Quad, Rail-to-Rail, Fault-Protected, SPDT Analog SwitchApplicationsOrdering InformationRedundant/Backup Systems Portable InstrumentsPART TEMP. RANGE PIN-P ..
MAX4534CUD ,Fault-Protected / High-Voltage / Single 4-to-1/Dual 2-to-1 MultiplexersELECTRICAL CHARACTERISTICS—Dual Supplies(V+ = +15V, V- = -15V, V = V = 2.4V, V = V = 0.8V, T = T to ..
MAX4534CUD+ ,Fault-Protected, High-Voltage, Single 4-to-1/Dual 2-to-1 MultiplexersApplications♦ 20ns typ Fault Response TimeData-Acquisition Systems Industrial and Process Control ♦ ..
MAX859ESA ,3.3V/5V or Adjustable-Output / Step-Up DC-DC ConvertersApplicationsMAX856C/D 0°C to +70°C Dice*3.3V to 5V Step-Up ConversionMAX856ESA -40°C to +85°C 8 SOP ..
MAX859ESA ,3.3V/5V or Adjustable-Output / Step-Up DC-DC ConvertersMAX856–MAX85919-0211; Rev 4; 5/963.3V/5V or Adjustable-Output, Step-Up DC-DC Converters____________ ..
MAX859ESA+ ,3.3V/5V or Adjustable Output, Step-Up DC-DC ConvertersELECTRICAL CHARACTERISTICS(Circuits of Figure 2, V = 2.5V, I = 0mA, T = T to T , unless otherwise n ..
MAX860 ,50mA, Frequency-Selectable, Switched-Capacitor Voltage ConvertersApplications†MAX860MJA -55°C to +125°C 8 CERDIPPortable ComputersMAX861ISA -25°C to +85°C 8 SOMedic ..
MAX8600AETD+ ,Single-Input 1-Cell Li+ Charger with OVP Protection and Programmable Charge TimerApplicationsMAX8600AETD+ -40°C to +85°C (3mm x 3mm) AEF(T1433-2)Cell Phones Portable Media Players* ..
MAX8600AETD+T ,Single-Input 1-Cell Li+ Charger with OVP Protection and Programmable Charge TimerFeaturesThe MAX8600A single-input linear battery charger safe-♦ Low Dropout -0.188V at 0.75Aly char ..


MAX4533CAP+-MAX4533CWP+-MAX4533EWP+
Quad, Rail-to-Rail, Fault-Protected, SPDT Analog Switch
General Description
The MAX4533 quad, single-pole/double-throw (SPDT),
fault-protected analog switch is pin-compatible with the
industry-standard MAX333 and MAX333A. The MAX4533
features fault-protected inputs and Rail-to-Rail®signal
handling. The normally open (NO_ ) and normally closed
(NC_ ) terminals are protected from overvoltage faults up
to ±25V with power on and up to ±40V with power off.
During a fault condition, NO_ and NC_ become high
impedance with only nanoamperes of leakage current
flowing to the source. In addition, the output (COM_)
clamps to the appropriate polarity supply rail and pro-
vides up to ±10mA of load current. This ensures unam-
biguous rail-to-rail outputs when a fault occurs.
The MAX4533 operates from dual ±4.5V to ±18V power
supplies or a single +9V to +36V supply. All digital inputs
have +0.8V and +2.4V logic thresholds, ensuring both
TTL and CMOS logic compatibility when using ±15V
supplies or a +12V supply. On-resistance is 175Ωmax
and is matched between switches to 10Ωmax. The off-
leakage current is only0.5nAat TA=+25°C and10nA at=+85°C.
Applications

Redundant/Backup SystemsPortable Instruments
Test EquipmentData-Acquisition
Communications SystemsSystems
Industrial and Process ControlAvionics Systems
Features
Rail-to-Rail Signal Handling±40V Fault Protection with Power Off
±25V Fault Protection with ±15V Supplies
All Switches Off with Power OffNo Power-Supply Sequencing Required During
Power-Up or Power-Down
Output Clamped to Appropriate Supply Voltage
During Fault Condition—No Transition Glitch
1kΩ(typ) Output Clamp Resistance During
Overvoltage
175Ω(max) Signal Paths with ±15V Supplies20ns (typ) Fault Response Time±4.5V to ±18V Dual Supplies
+9V to +36V Single Supply
Pin-Compatible with Industry-Standard
MAX333/MAX333A
TTL/CMOS-Compatible Logic Inputs with ±15V or
Single +9V to +15V Supplies
MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch

SWITCHES ARE SHOWN WITH LOGIC "0" INPUT
N.C. = NOT INTERNALLY CONNECTED
IN4
NO4
COM4
NC4NC1
COM1
NO1
IN1
MAX4533
N.C.
NC3
COM3COM2
NC2
GND
NO3
IN3IN2
NO2
TOP VIEW
SSOP/SO/DIP/CERDIP

INPUTS
OSC
FLYING CAPACITOR LEVEL TRANSLATOR
(2-CHANNEL)
OUTPUTS
V1 - V2
V3 - V4
MAX4533
Typical Operating Circuit

19-1452; Rev 1; 10/99
PART

MAX4533CAP
MAX4533CWP0°C to +70°C
0°C to +70°C
TEMP. RANGEPIN-PACKAGE

20 SSOP
20 Wide SO
Ordering Information continued at end of data sheet.
Pin Configuration/
Functional Diagram
Ordering Information

Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd.Pg
MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS—Dual Supplies

(V+ = +15V, V- = -15V, TA= TMINto TMAX, unless otherwise noted. Typical values are at TA= +25°C.) (Note 3)
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Voltages Referenced to GND ........................................................................-0.3V to +44.0V
V-.........................................................................-44.0V to +0.3V
V+ to V-................................................................-0.3V to +44.0V
COM_, IN_ (Note 1).............................(V- - 0.3V) to (V+ + 0.3V)
NC_, NO_ (Note 2)..................................(V+ - 40V) to (V- + 40V)
NC_, NO_ to COM_.................................................-40V to +40V
NC_, NO_ Overvoltage with Switch Power On
(supplies at ±15V)................................................-30V to +30V
NC_, NO_ Overvoltage with Switch Power Off........-40V to +40V
Continuous Current into Any Terminal..............................±30mA
Peak Current into Any Terminal
(pulsed at 1ms,10% duty cycle)....................................±50mA
Continuous Power Dissipation (TA= +70°C)
20-Pin SSOP (derate 10.53mW/°C above +70°C)........842mW
20-Pin Wide SO (derate 10.00mW/°C above +70°C)..800mW
20-Pin Plastic DIP (derate 11.11mW/°C above +70°C)889mW
20-Pin CERDIP (derate 11.11mW/°C above +70°C).....889mW
Operating Temperature Ranges
MAX4533C_ _......................................................0°C to +70°C
MAX4533E_ _...................................................-40°C to +85°C
MAX4533M_ _.................................................-55°C to +125°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10s).................................+300°C
Note 1:
COM_ and IN_ pins are not fault protected. Signals on COM_ or IN_ exceeding V+ or V- are clamped by internal diodes.
Limit forward diode current to maximum current rating.
Note 2:
NC_ and NO_ pins are fault protected. Signals on NC_ or NO_ exceeding -25V to +25V may damage the device. These
limits apply with power applied to V+ or V-. The limit is ±40V with V+ = V- = 0.
VNO_ or VNC_ = ±10V,
ICOM_ = 1mA
V+ = +15V, V- = -15V,
VNO_ or VNC_ = ±15V
VCOM_= +5V, 0, -5V,
ICOM_= 1mA
CONDITIONS

RONCOM_ to NO_ or COM_ to NC_
On-ResistanceV-V+VNO_, VNC_Fault-Free Analog Signal Range
(Note 2)
2504On-Resistance Flatness
-0.50.020.5INO_(OFF),
INC_(OFF)
NO_ or NC_ Off-Leakage
Current (Note 5)-1010
UNITSMINTYPMAXSYMBOLPARAMETER

+25°C
C, E, M
+25°C
+25°C
C, E
C, E200
+25°CVNO_ or VNC_ = ±10V,
ICOM_ = 1mA
C, E10Ω
ΔRON
COM_ to NO_ or COM_ to NC_
On-Resistance Match Between
Channels (Note 4)15
VNO_ or VNC_ = ±14V,
VCOM_ = 14V
VCOM_= ±14V,
VNO_or VNC_= ±14V or floating
+25°C
C, E
ICOM_(ON)COM_ On-Leakage Current
(Note 5)-2020
+25°C-25+25Applies with power onVNO_, VNC_VFault-Protected Analog Signal
Range (Note 2)
VNO_ or VNC_ = ±25V,
VCOM_ = 10V
VNO_ or VNC_= ±25V,
no connection to “ON” channel
+25°C
C, E
-200200ICOM_nACOM_ Output Leakage Current,
Supplies On
+25°C
C, E
INO_, INC_-200200NO_ or NC_ Off Input Leakage
Current, Supplies On
Applies with power off+25°C-40+40
FAULT
ANALOG SWITCH

MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch
ELECTRICAL CHARACTERISTICS—Dual Supplies (continued)

(V+ = +15V, V- = -15V, TA= TMINto TMAX, unless otherwise noted. Typical values are at TA= +25°C.) (Note 3)
CONDITIONSTAUNITSMINTYPMAXSYMBOLPARAMETER

+25°C
+25°C
C, E
INO_, INC_-200200NO_ or NC_ Input Leakage
Current, Supplies Off
COM_ On-Clamp Output
Resistance, Supplies On
+25°C
VNO_or VNC= ±25VC, E, MRCOM_= 10kΩ,
VNO_or VNC_= ±25V
±Fault Output Clamp Turn-On
Delay Time (Note 6)
C, E, M2.4VVIN_HIN_ Input Logic Threshold High
+25°C100250
C, E400
+25°C
60050VCOM_= ±10V, = 1kΩ; Figure 3tBBMBreak-Before-Make Time Delayns= 10kΩ,
VNO_or VNC_= ±25V+25°C2.5µs±Fault Recovery Time
(Note 6)
C, E, M0.8VVIN_LIN_ Input Logic Threshold Low
VIN_= +0.8V or +2.4V+25°C-10.031IIN_H, IIN_LµAIN_ Input Current Logic High or
LowC, E, M-55
VCOM_= ±10V, = 2kΩ; Figure 2tONTurn-On Timens= 50Ω, CL= 15pF,
VN_= 1VRMS, f = 1MHz;
Figure 6
f = 1MHz; Figure 5
VISO
CN_(OFF)
Off-Isolation (Note 7)
NO_ or NC_ Off-Capacitance +25°C5
+25°C-62
+25°C60150VNO_= ±10V, = 2kΩ; Figure 2tOFFTurn-Off TimensC, E300450
±4.5±18VV+, V-Power-Supply Range
C, E, M
+25°C
400µAAll VIN_= 0 or +5V,
VNO_= VNC_ = 0
C, E, M
+25°C
600µAAll VIN_= 0 or +5V,
VNO_= VNC_ = 0I+V+ Supply CurrentV- Supply Current
+25°C1.5CL= 100pF,
VCOM_= 0; Figure 4QpCCharge Injection (Note 6)
f = 1MHz; Figure 5CCOM_(ON)COM_ On-Capacitance pF+25°C12= 50Ω, CL= 15pF,
VN_= 1VRMS, f = 1MHz;
Figure 6
VCTChannel-to-Channel Crosstalk
(Note 8)dB+25°C-66
C, E, M
+25°C
300µAAll VIN_= 0 or +5V,
VNO_= VNC_ = 0IGNDGND Supply Current
VNO_or VNC_= +25V+25°C
+25°C
81113ICOM_-12-10-7
COM_ On-Clamp Output
Current, Supplies OnVNO_or VNC_= -25VmA
VNO_or VNC_= ±40V,
V+ = 0, V- = 0M-1010µA
LOGIC INPUT
SWITCH DYNAMIC CHARACTERISTICS
POWER SUPPLY
MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch
ELECTRICAL CHARACTERISTICS—Single Supply

(V+ = +12V, V- = 0, TA= TMINto TMAX, unless otherwise noted. Typical values are at TA= +25°C.) (Note 3)
+25°C
C, E, M
V+ = +12V,
VNO_ or VNC_ = +10V,
ICOM_ = 1mA
V+ = +12V,
VCOM_= +10V,
VNO_or VNC_= +10V or floating
V+ = +12V, V- = 0,
VNO_ or VNC_ = +12V or 0
+25°C
C, E
ICOM_(ON)COM_ On-Leakage Current
(Notes 5, 9)-2020
Applies with power off
+25°C
V+ = +12V,
VCOM_= +10V, +1V,
VNO_or VNC_= +1V, +10V
+25°C
CONDITIONS

+25°C
+25°C
C, E
C, E
V+ = +12V,
VNO_ or VNC_ = +10V,
ICOM_ = 1mAM
C, E20Ω
ΔRON
COM_ -NO_ On-Resistance
Match Between Channels
(Note 4)30
-40+40
-25+25
Applies with power onVNO_, VNC_
VNO_or VNC_= ±40V,
V+ = 0, V- = 0
Fault-Protected Analog Signal
Range (Note 2)
VNO_ or VNC_= ±25V,
V+ = +12V,
no connection to “ON” channel
+25°C
C, E
+25°C
C, E
INO_, INC_-200200
ICOM_COM_ Output Leakage Current,
Supply On (Note 9)
VNO_or VNC_= ±25V,
VCOM_= 0,
V+ = +12V
+25°C
C, E
RONCOM_ to NO_, COM_ to NC_
On-Resistance0V+VNO_, VNC_Fault-Free Analog Signal Range
(Note 2)
NO_ or NC_ Input Leakage
Current, Supply Off (Note 9)
INO_, INC_-200200NO_ or NC_ Off Input Leakage
Current, Supply On (Note 9)
-0.50.010.5INO_(OFF),
INC_(OFF)
NO_ or NC_ Off-Leakage
Current (Notes 5, 9)-1010
UNITSMINTYPMAXSYMBOLPARAMETER

+25°C235VNO_or VNC_= ±25V,
V+ = +12VICOM_mACOM_ On-Clamp Output
Current, Supply On
+25°C
C, E, M
C, E, M0.031
2.4VIN_H
0.8IN_ Input Logic Threshold High
VIN_= +0.8V or +2.4VIIN_H, IIN_L
VIN_LV
IN_ Input Current Logic High or
Low
IN_ Input Logic Threshold Low
+25°C2.45VNO_or VNC_= ±25V,
V+ = +12VRCOM_kΩCOM_ On-Clamp Output
Resistance, Supply On
C, E, M-55
ANALOG SWITCH
FAULT
LOGIC INPUT
MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch
Note 3:
The algebraic convention is used in this data sheet; the most negative value is shown in the minimum column.
Note 4:
ΔRON= RON(MAX)- RON(MIN).
Note 5:
Leakage parameters are 100% tested at maximum-rated hot temperature and guaranteed by correlation at TA= +25°C.
Note 6:
Guaranteed by design.
Note 7:
Off-isolation = 20log10(VCOM_/ VNO_), VCOM_= output, VNO_= input to off switch.
Note 8:
Between any two analog inputs.
Note 9:
Leakage testing for single-supply operation is guaranteed by testing with dual supplies.
ELECTRICAL CHARACTERISTICS—Single Supply (continued)

(V+ = +12V, V- = 0, TA= TMINto TMAX, unless otherwise noted. Typical values are at TA= +25°C.) (Note 3)
CONDITIONSTA

+25°C200500VCOM_= +10V, = 2kΩ; Figure 2tONTurn-On Timens
C, E, M
+25°C
f = 1MHz; Figure 5
C, E, M
CCOM_(ON)
1000= 50Ω, CL= 15pF,
VNO_= 1VRMS, f = 1MHz;
Figure 6
f = 1MHz; Figure 5
VISO
CN_(OFF)
Off-Isolation (Note 7)
NO_ or NC_ Off-Capacitance
All VIN_= 0 or +5V,
VNO_= VNC_ = 0
C, E, M
IGND
+25°C
V- and GND Supply Current100
VCOM_= +10V, = 1kΩ; Figure 3
tBBMBreak-Before-Make Time Delayns
+25°C5= 50Ω, CL= 15pF,
VNO_= 1VRMS, f = 1MHz;
Figure 6
COM_ On-Capacitance
+25°C
VCT
UNITSMINTYPMAXSYMBOLPARAMETER

Channel-to-Channel Crosstalk
(Note 8)
-62+25°C
+25°C15
-65Power-Supply Range
C, E, M
+25°C
200µAAll VIN_= 0 or +12V,
VNO_= VNC_ = 0
C, E, M
+25°C
350µAAll VIN_= 0 or +5V,
VNO_= VNC_ = 0I+V+ Supply Current
+25°C2CL= 100pF,
VCOM_= 0; Figure 4QpCCharge Injection
+25°C100300VCOM_= +10V, = 2kΩ; Figure 2tOFFTurn-Off TimensC, E, M900
SWITCH DYNAMIC CHARACTERISTICS
POWER SUPPLY
MAX4533
Quad, Rail-to-Rail, Fault-Protected,
SPDT Analog Switch
Typical Operating Characteristics

(V+ = +15V, V- = -15V, TA = +25°C, unless otherwise noted.)
ON-RESISTANCE vs. VCOM
(DUAL SUPPLIES)
MAX4533 toc01
VCOM (V)
V± = ±4.5V
V± = ±10V
V± = ±12V
V± = ±15V
V± = ±18V
ON-RESISTANCE vs. VCOM
(SINGLE SUPPLY)
MAX4533toc02
VCOM (V)
V- = 0
V+ = +12V
V+ = +15V
V+ = +20V
V+ = +25V
V+ = +30V
V+ = +36V
V+ = +9V
ON-RESISTANCE vs. VCOM AND
TEMPERATURE (DUAL SUPPLIES)
MAX4533 toc03
VCOM (V)
V+ = +15V
V- = -15V
TA = +85°C
TA = +125°C
TA = +70°C
TA = +25°C
TA = 0°C
TA = -40°C
TA = -55°C
ON-RESISTANCE vs. VCOM AND
TEMPERATURE (SINGLE SUPPLY)
MAX4533 toc04
VCOM (V)
TA = +125°C
TA = +70°C
TA = +85°C
TA = -40°C
TA = 0°C
TA = -55°C
TA = +25°C
V+ = +12V
V- = 0
600±10±12±6±8±14±16±18
TURN-ON/TURN-OFF TIME vs.
SUPPLY VOLTAGE (DUAL SUPPLIES)

MAX4533 toc07a
SUPPLY VOLTAGE (V)
tON
, t
OFF
(ns)
tON
tOFF
ON/OFF-LEAKAGE CURRENT
vs. TEMPERATURE
MAX4533 toc05
TEMPERATURE (°C)
LEAKAGE CURRENT (A)
ICOM_ON (V+ = +15V, V- = -15V)
ICOM_ON (V+ = +12V, V- = 0)
INC_OFF (V+ = +12V, V- = 0)
INC_OFF (V+ = +15V, V- = -15V)
CHARGE INJECTION vs. VCOM
MAX4533 toco6
VCOM (V)
Q (pC)
SINGLE SUPPLY
DUAL SUPPLIES
TURN-ON/TURN-OFF TIME vs.
SUPPLY VOLTAGE (SINGLE SUPPLY)
MAX4533 toc07b
SUPPLY VOLTAGE (V)
tON
, t
OFF
(ns)
tON
tOFF
TURN-ON/TURN-OFF TIME vs.
TEMPERATURE (DUAL SUPPLIES)
MAX4533 toc08a
TEMPERATURE (°C)
tON
, t
OFF
(ns)
tON
tOFF
V+ = +15V
V- = -15V
ic,good price


TEL:86-533-2716050      FAX:86-533-2716790
   

©2020 IC PHOENIX CO.,LIMITED