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MAX4800CCM+MAXIMN/a10avaiLow-Charge Injection, 8-Channel, High-Voltage Analog Switches
MAX4800CQIMAXIMN/a2462avaiLow-Charge Injection, 8-Channel, High-Voltage Analog Switches
MAX4800CQI+ |MAX4800CQIMAXIMN/a500avaiLow-Charge Injection, 8-Channel, High-Voltage Analog Switches
MAX4802CCM+ |MAX4802CCMMAXIMN/a552avaiLow-Charge Injection, 8-Channel, High-Voltage Analog Switches


MAX4800CQI ,Low-Charge Injection, 8-Channel, High-Voltage Analog SwitchesELECTRICAL CHARACTERISTICS(V = +2.7V to +13.2V, V = +40V to V + 200V, V = -15V to -160V, T = T to T ..
MAX4800CQI+ ,Low-Charge Injection, 8-Channel, High-Voltage Analog SwitchesApplicationsUltrasound ImagingPrintersOrdering Information/Selector GuidePART BLEED RESISTORS SECON ..
MAX4802CCM , Low-Charge Injection, 8-Channel, High-Voltage Analog Switches
MAX4802CCM+ ,Low-Charge Injection, 8-Channel, High-Voltage Analog Switchesapplications. The devices utilize BCDMOS♦ Pin-Compatible Replacement for Supertexprocess technology ..
MAX480CPA ,High-Precision, Low-Voltage, Micropower Op AmpApplications MAX480CPA 0°C to +70°C 8 Plastic DIPMAX480CSA 0°C to +70°C 8 SOPrecision Micropower Am ..
MAX480CSA ,High-Precision, Low-Voltage, Micropower Op AmpFeaturesThe MAX480 is a precision micropower operational ampli- ' Single- or Dual-Supply Operation: ..
MAX8878EUK18+T ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout
MAX8878EUK25+T ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout
MAX8878EUK28 ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout
MAX8878EUK28 ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout
MAX8878EUK29 ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout
MAX8878EUK29+T ,Low-Noise, Low-Dropout, 150mA Linear Regulators with '2982 Pinout


MAX4800CCM+-MAX4800CQI-MAX4800CQI+-MAX4802CCM+
Low-Charge Injection, 8-Channel, High-Voltage Analog Switches
General Description
The MAX4800/MAX4801/MAX4802 provide high-volt-
age switching on eight channels for ultrasonic imaging
and printer applications. The devices utilize BCDMOS
process technology to provide eight high-voltage low-
charge-injection SPST switches, controlled by a digital
interface. Data is clocked into an internal 8-bit shift reg-
ister and retained by a programmable latch with enable
and clear inputs. A power-on reset function ensures
that all switches are open on power-up.
The MAX4800/MAX4801/MAX4802 operate with a wide
range of high-voltage supplies including: VPP/VNN=
+100V/-100V, +185V/-15V, and +40V/-160V. The digital
interface operates from a separate VDDsupply from
+2.7V to +13.2V. Digital inputs DIN, CLK, LE, and CLR
are +13.2V tolerant, independent of the VDDsupply
voltage. The MAX4802 provides integrated 35kΩbleed
resistors on each switch terminal to discharge capaci-
tive loads.
The MAX4800 and MAX4802 are drop-in replacements
for the Supertex HV20220 and HV232. The devices are
available in the 48-pin TQFP, 26-bump CSBGA, and 28-
pin PLCC packages. The MAX4801 is a drop-in
replacement for the Supertex HV20320 and is available
in the 28-pin PLCC package. All devices are specified
for the commercial 0°C to +70°C temperature range.
Applications

Ultrasound Imaging
Printers
Features
Pin-Compatible Replacement for Supertex
HV20220 (MAX4800)
Pin-Compatible Replacement for Supertex
HV20320 (MAX4801)
Pin-Compatible Replacement for Supertex HV232
(MAX4802)
Flexible High-Voltage Supplies Up to VPP - VNN=
200V
Low-Charge Injection, Low-Capacitance 22Ω
Switches
DC to 10MHz Analog-Signal Frequency Range-77dB Off Isolation at 5MHzLow 10µA Quiescent CurrentIntegrated Bleed Resistors (MAX4802)Available in PLCC, TQFP, and CSBGA Packages
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches

19-0631; Rev 2; 5/09
Ordering Information/Selector Guide
PARTBLEED RESISTORSSECOND SOURCEPIN-PACKAGE
MAX4800CCM No
HV20220FG 48 TQFP
MAX4800CQI No HV20220PJ 28 PLCC
MAX4800CXZ No HV220** 26 CSBGA
MAX4801CQI
No HV20320PJ 28 PLCC
MAX4802CCM Yes
HV232FG 48 TQFP
MAX4802CQI Yes HV232PJ 28 PLCC
MAX4802CXZ Yes HV230GA 26 CSBGA
Note:
All devices are specified over the commercial 0°C to +70°C temperature range.
**Not pin-for-pin compatible.
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
ABSOLUTE MAXIMUM RATINGS

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.
(All voltages referenced to GND.)
VDDLogic-Supply Voltage.....................................-0.5V to +15V
VPP- VNNSupply Voltage....................................................220V
VPPPositive-Supply Voltage........................-0.5V to VNN+ 220V
VNNNegative-Supply Voltage..............................+0.5V to -220V
Logic Inputs LE, CLR, CLK, DIN............................-0.5V to +15V
DOUT............................................................-0.5V to VDD+ 0.5V
RGND (MAX4802).................................................-4.5V to +0.5V
COM_, NO_.................................................................VNNto VPP
Continuous Power Dissipation (TA= +70°C)
28-Pin PLCC (derate 10.5mW/°C above +70°C)..........842mW
48-Pin TQFP (derate 22.7mW/°C above +70°C).........1818mW
26-Pin CSBGA (derate 11.8mW/°C above +70°C).......941mW
Operating Temperature Range...............................0°C to +70°C
Storage Temperature Range.............................-65°C to +150°C
Junction Temperature Range..........................................+150°C
Lead Temperature (Soldering, 10s).................................+300°C
Bump Temperature (Soldering) Lead-Free......................+260°C
Bump Temperature (Soldering) Lead..............................+245°C
ELECTRICAL CHARACTERISTICS

(VDD= +2.7V to +13.2V, VPP= +40V to VNN+ 200V, VNN= -15V to -160V, TA= TMINto TMAX, unless otherwise noted. Typical values
are at TA= +25°C.) (Note 1)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS
ANALOG SWITCH

Analog Signal RangeVCOM_,
VNO_(Note 2)VNN +
VPP -V
TA = 0°C30
TA = +25°C2638ICOM = 5mA
TA = +70°C48
TA = 0°C25
TA = +25°C2227
VPP = +40V,
VNN = -160V,
VCOM_ = 0ICOM =
200mATA = +70°C32
TA = 0°C25
TA = +25°C2227ICOM = 5mA
TA = +70°C30
TA = 0°C18
TA = +25°C1824
VPP = +100V,
VNN = -100V,
VCOM_ = 0ICOM =
200mA
TA = +70°C27
TA = 0°C23
TA = +25°C2025ICOM = 5mA
TA = +70°C30
TA = 0°C22
TA = +25°C1625
Small-Signal Switch
On-ResistanceRONS
VPP = +160V,
VNN = -40V
VPP = +185V,
VNN = -15V,
VCOM _= 0
ICOM =
200mA
TA = +70°C27
Small-Signal Switch
On-Resistance MatchingΔRONSVPP = +100V, VNN = -100V,
VCOM_ = 0, ICOM = 5mA520%
Large-Signal Switch
On-ResistanceRONLVCOM_ = VPP - 10V, ICOM = 1A15Ω
Shunt ResistanceRINTNO_ or COM_ to RGND (MAX4802), switch
off303550kΩ
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
ELECTRICAL CHARACTERISTICS (continued)

(VDD= +2.7V to +13.2V, VPP= +40V to VNN+ 200V, VNN= -15V to -160V, TA= TMINto TMAX, unless otherwise noted. Typical values
are at TA= +25°C.) (Note 1)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

TA = +25°C14
Switch-Off LeakageICOM_(OFF),
INO_(OFF)
VCOM_, VNO_ = VPP - 10V or
unconnected;
RGND unconnected
(MAX4802)
TA = TMIN
to TMAX10µA
Switch-Off DC OffsetRL = 100kΩ (MAX4800/MAX4801),
No load (MAX4802)100300mV
Switch-On DC OffsetRL =100kΩ (MAX4800/MAX4801),
No load (MAX4802)100500mV
TA = 0°C3
TA = +25°C23Switch-Output Peak Current
(Note 3)ICOM_ duty cycle ≤ 0.1%
TA = +70°C2
VPP – VNN ≤ 200V
COM_, NO1–NO7300
VPP – VNN
≤ 200V, NO030
Switch-Output Isolation Diode
Current
(Note 3)
300ns pulse width, 2%
duty cycle
VPP – VNN ≤ 160V
COM_, NO_750
SWITCH DYNAMIC CHARACTERISITICS

f = 5MHz, RL = 1kΩ, CL = 15pF-30-33Off-Isolation (Note 3)VISOf = 5MHz, RL = 50Ω-58-77 dB
Crosstalk (Note 3)VCTf = 5MHz, RL = 50Ω-60-80dB
COM_, NO_
Off-Capacitance
(Note 3)
CCOM_
(OFF),
CNO_ (OFF)
VCOM_ = 0, VNO_ = 0, f = 1MHz41118pF
COM_ On-Capacitance
(Note 3)
CCOM_
(ON)VCOM_ = 0, f = 1MHz203656pF
Output-Voltage Spike (Note 3)VSPKRL = 50Ω-150+150mV
VPP = +40V, VNN= -160V, VCOM_ = 0820
VPP = +100V, VNN = -100V, VCOM_ = 0600Charge InjectionQ
VPP = +160V, VNN = -40V, VCOM_ = 0350
LOGIC LEVELS

VDD ≥ +4.5V1.5Logic-Input Low VoltageVILVDD < +4.5V0.75V
VDD ≥ +4.5VVDD -
1.5Logic-Input High VoltageVIH
VDD < +4.5VVDD -
Logic-Input Capacitance (Note 3)CIN10pF
Logic-Input LeakageIIN-1+1µA
VDD ≥ +4.5V, ISINK = 1mA0.4VDOUT Low VoltageVOLVDD < +4.5V, ISINK = 0.5mA0.4V
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
ELECTRICAL CHARACTERISTICS (continued)

(VDD= +2.7V to +13.2V, VPP= +40V to VNN+ 200V, VNN= -15V to -160V, TA= TMINto TMAX, unless otherwise noted. Typical values
are at TA= +25°C.) (Note 1)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS

VDD ≥ +4.5V, ISOURCE = 0.5mAVDD -
0.5V
DOUT High VoltageVOH
VDD < +4.5V, ISOURCE = 0.25mAVDD -
0.5V
POWER SUPPLIES

VDD Supply Voltage2.713.2V
VPP Supply Voltage40VNN +
200V
VNN Supply Voltage-160-15V
VDD Supply Quiescent CurrentIDDQVIL = 0, VIH = VDD, fCLK = 015µA
VDD Supply Dynamic CurrentIDDVDD = +5V, VIL = 0, VIH = +5V,
fCLK = 5MHz4mA
VPP Supply Quiescent CurrentIPPQAll switches remain on or off, ICOM_(ON) =
5mA1050µA
TA = 0°C6.5
TA = +25°C6.5VPP = +40V,
VNN = -160V
TA = +70°C6.5
TA = 0°C4.0
TA = +25°C4.0VPP = +100V,
VNN = -100V
TA = +70°C4.0
TA = 0°C4.0
TA = +25°C4.0
VPP Supply Dynamic CurrentIPP
50kHz
output
switching
frequency
with no load
VPP = +160V,
VNN = -40V
TA = +70°C4.0
VNN Supply Quiescent CurrentINNQAll switches remain on or off, ICOM_(ON) =
5mA1050µA
TA = 0°C6.5
TA = +25°C6.5VPP = +40V,
VNN = -160V
TA = +70°C6.5
TA = 0°C4.0
TA = +25°C4.0VPP = +100V,
VNN = -100V
TA = +70°C4.0
TA = 0°C4.0
TA = +25°C4.0
VNN Supply Dynamic CurrentINN
50kHz
output
switching
frequency
with no load
VPP = +160V,
VNN = -40VTA = +70°C4.0
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
TIMING CHARACTERISTICS

(VDD= +2.7V to +13.2V, VPP= +40V to VNN+ 200V, VNN= -15V to -160V, TA= TMINto TMAX, unless otherwise noted. Typical values
are at TA= +25°C.) (Note 1)
PARAMETERSYMBOLCONDITIONSMINTYPMAXUNITS
ANALOG SWITCH

Turn-On TimetONVNO_ = VPP - 10V, RL = 10kΩ, VNN = -40V
to -160V5µs
Turn-Off TimetOFFVNO_ = VPP - 10V, RL = 10kΩ, VNN = -40V
to -160V5µs
Output Switching FrequencyfSWDuty cycle = 50%50kHz
Maximum VCOM_, VNO_ Slew
RatedV/dt(Note 3)20V/ns
LOGIC TIMING (Figure 1)
D D ≥ + 4.5V 5D ai sy chai ni ng V D D ≤ + 4.5V 2.5D D ≥ + 4.5V 10CLK FrequencyfCLKo d ai sy chai ni ng V D D < + 4.5V 4
MHzD D ≥ + 4.5V 15DIN to CLK Setup TimetDSV D D < + 4.5V 40nsD D ≥ + 4.5V 35DIN to CLK Hold TimetDHV D D < + 4.5V 60nsD D ≥ + 4.5V 150CLK to LE Setup TimetCSV D D < + 4.5V 300nsD D ≥ + 4.5V 150LE Low-Pulse WidthtWLV D D < + 4.5V 300nsD D ≥ + 4.5V 150CLR High-Pulse WidthtWCV D D < + 4.5V 300nsD D ≥ + 4.5V ( N ote 3) 1CLK Rise and Fall TimestR, tFV D D < + 4.5V ( N ote 3) 1µs
TA = 0°C55150
TA = +25°C60150VDD = +5V ±10%,
CL ≤ 50pFTA = +70°C70150CLK to DOUT DelaytDO
VDD = +3V ±10%,
CL ≤ 50pFTA = TMIN to TMAX70280
Note 1:
Specifications at 0°C are guaranteed by correlation and design. Electrical parameters are tested at worst case conditions.
Note 2:
The analog signal input VCOM_and VNO_must satisfy VNN≤(VCOM_, VNO_) ≤VPP, or remain unconnected during power-up
and power-down.
Note 3:
Guaranteed by characterization; not production tested.
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
Typical Operating Characteristics

(VDD= +5V, VPP= +100V, VNN= -100V, TA= +25°C, unless otherwise noted.)
IDD SUPPLY CURRENT
vs. CLOCK FREQUENCY

MAX4800 toc01
CLOCK FREQUENCY (MHz)
IDD
SUPPLY CURRENT (mA)0.1
DIN = 01010101
DIN = 00000000
OFF-ISOLATION vs. FREQUENCY

MAX4800 toc02
FREQUENCY (MHz)
OFF-ISOLATION (dB)
RS = RL = 50Ω
ON-RESISTANCE
vs. TEMPERATURE
MAX4800 toc03
TEMPERATURE (°C)
ON-RESISTANCE (
ISW = 5mA
ISW = 200mA
+40/
+60/
+80/
+100/
+120/
+140/
+160/
ON-RESISTANCE
vs. VPP/VNN SUPPLY VOLTAGE
MAX4800 toc04
VPP/VNN SUPPLY VOLTAGE (V)
ON-RESISTANCE (TA = +70°C
TA = 0°CTA = +25°C
tDO vs. TEMPERATURE
MAX4800 toc05
TEMPERATURE (°C)
tDO
(ns)
VDD = +3V
VDD = +5V
SUPPLY CURRENT
vs. SWITCHING FREQUENCY
MAX4800 toc06
SWITCHING FREQUENCY (kHz)
SUPPLY CURRENT (mA)
INN
IPP
IDD
ALL SWITCHES OPERATING
ALL SWITCHES CONNECTED TO GND
SUPPLY CURRENT
vs. VPP/VNN SUPPLY VOLTAGE
MAX4800 toc07
SUPPLY CURRENT (mA)
ONE SWITCH OPERATING
ALL SWITCHES CONNECTED TO GND
fSW = 50kHz
INN
IPP
+40/
+60/
+80/
+100/
+120/
+140/
+160/
LOGIC THRESHOLD
vs. VDD SUPPLY VOLTAGE
MAX4800 toc08
VDD SUPPLY VOLTAGE (V)
LOGIC THRESHOLD (V)
RISING
FALLING
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
Pin Descriptions
PIN
MAX4800
TQFP
MAX4800
CSBGA
MAX4800
PLCC
MAX4801
PLCC
NAME FUNCTION
E4 26 26 COM5 Analog Switch 5 – Common Terminal
2, 4, 6, 7, 9,
11, 13, 15,
17, 19, 21,
23, 26, 27,
30, 31, 32,
38, 40, 42,
44, 46, 48
D6 9, 11, 15 11, 14, 15 N.C. No Connection. Not connected internally. E1 27 27 COM4 Analog Switch 4 – Common Terminal E3 28 28 NO4 Analog Switch 4 – Normally Open Terminal
8 D1 1 1 COM3 Analog Switch 3 – Common Terminal
10 D3 2 2 NO3 Analog Switch 3 – Normally Open Terminal
12 D4 3 3 COM2 Analog Switch 2 – Common Terminal
14 C3 4 4 NO2 Analog Switch 2 – Normally Open Terminal
16 C4 5 5 COM1 Analog Switch 1 – Common Terminal
18 A4 6 6 NO1 Analog Switch 1 – Normally Open Terminal
20 C5 7 7 COM0 Analog Switch 0 – Common Terminal
22 D5 8 8 NO0 Analog Switch 0 – Normally Open Terminal
24 C6 10 9 VPPPositive High-Voltage Supply. Bypass VPP to GND
with a 0.1μF or greater ceramic capacitor.
25 C7 12 10 VNNNegative High-Voltage Supply. Bypass VNN to GND
with a 0.1μF or greater ceramic capacitor.
28 D7 13 12 GND Ground
29 D9 14 13 VDDDigital-Supply Voltage. Bypass VDD to GND with a
0.1μF or greater ceramic capacitor.
33 E9 16 16 DIN Serial Data Input
34 E7 17 17 CLK Serial Clock Input
35 E6 18 18 LE Latch Enable Input, Active Low
36 F7 19 19 CLR Latch Clear Input
37 F6 20 20 DOUT Serial Data Output
39 E5 21 21 COM7 Analog Switch 7 – Common Terminal
41 F5 22 22 NO7 Analog Switch 7 – Normally Open Terminal
43 F4 23 23 COM6 Analog Switch 6 – Common Terminal
45 H4 24 24 NO6 Analog Switch 6 – Normally Open Terminal
47 F3 25 25 NO5 Analog Switch 5 – Normally Open Terminal
MAX4800/MAX4801/MAX4802
Low-Charge Injection,
8-Channel, High-Voltage Analog Switches
Pin Descriptions (continued)
PIN
MAX4802
TQFP
MAX4802
CSBGA
MAX4802
PLCC
NAMEFUNCTION
E4 26 COM5 Analog Switch 5 – Common Terminal
2, 4, 6, 7, 9,
11,13, 15, 17,
19, 21, 23, 26,
30, 31, 32, 38,
40, 42, 44, 46, 9, 15 N.C. Not Connected Internally E1 27 COM4 Analog Switch 4 – Common Terminal E3 28 NO4 Analog Switch 4 – Normally Open Terminal D1 1 COM3 Analog Switch 3 – Common Terminal
10 D3 2 NO3 Analog Switch 3 – Normally Open Terminal
12 D4 3 COM2 Analog Switch 2 – Common Terminal
14 C3 4 NO2 Analog Switch 2 – Normally Open Terminal
16 C4 5 COM1 Analog Switch 1 – Common Terminal
18 A4 6 NO1 Analog Switch 1 – Normally Open Terminal
20 C5 7 COM0 Analog Switch 0 – Common Terminal
22 D5 8 NO0 Analog Switch 0 – Normally Open Terminal
24 C6 10 VPPPositive High-Voltage Supply. Bypass VPP to GND with a
0.1μF or greater ceramic capacitor.
25 C7 12 VNNNegative High-Voltage Supply. Bypass VNN to GND with a
0.1μF or greater ceramic capacitor.
27 D6 11 RGND Bleed Resistor Ground
28 D7 13 GND Ground
29 D9 14 VDDDigital-Supply Voltage. Bypass VDD to GND with a 0.1μF or
greater ceramic capacitor.
33 E9 16 DIN Serial Data Input
34 E7 17 CLK Serial Clock Input
35 E6 18 LE Latch Enable Input, Active Low
36 F7 19 CLR Latch Clear Input
37 F6 20 DOUT Serial Data Output
39 E5 21 COM7 Analog Switch 7 – Common Terminal
41 F5 22 NO7 Analog Switch 7 – Normally Open Terminal
43 F4 23 COM6 Analog Switch 6 – Common Terminal
45 H4 24 NO6 Analog Switch 6 – Normally Open Terminal
47 F3 25 NO5 Analog Switch 5 – Normally Open Terminal
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