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MAX1601EAIMAXIMN/a73avaiDual-Channel CardBus and PCMCIA Power Switches with SMBus Serial Interface
MAX1601EAIMAXN/a11avaiDual-Channel CardBus and PCMCIA Power Switches with SMBus Serial Interface
MAX1604EAIMAXN/a12avaiDual-Channel CardBus and PCMCIA Power Switches with SMBus Serial Interface


MAX1601EAI ,Dual-Channel CardBus and PCMCIA Power Switches with SMBus Serial Interfaceapplications is supported in two' Thermal Shutdown at T = +150°Cjways: stiff, low-resistance 3.3V s ..
MAX1601EAI ,Dual-Channel CardBus and PCMCIA Power Switches with SMBus Serial InterfaceELECTRICAL CHARACTERISTICS(VL = VY = 3.3V, VX = 5V, 12INA = 12INB = 12V, T = 0°C to +85°C, unless o ..
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MAX1601EAI-MAX1604EAI
Dual-Channel CardBus and PCMCIA Power Switches with SMBus Serial Interface
________________General Description
The MAX1601/MAX1604 DC power-switching ICs con-
tain a network of low-resistance MOSFET switches that
deliver selectable VCC and VPP voltages to two
CardBus or PC Card host sockets. Key features include
ultra-low-resistance switches, small packaging, soft-
switching action, and compliance with PCMCIA specifi-
cations for 3V/5V switching. 3.3V-only power switching
for fast, 32-bit CardBus applications is supported in two
ways: stiff, low-resistance 3.3V switches allow high 3.3V
load currents (up to 1A); and completely independent
internal charge pumps let the 3.3V switch operate nor-
mally, even if the +5V and +12V supplies are discon-
nected or turned off to conserve power. The internal
charge pumps are regulating types that draw reduced
input current when the VCC switches are static. Also,
power consumption is automatically reduced to 10µA
max when the switches are programmed to high-Z or
GND states over the serial interface, unlike other solu-
tions that may require a separate shutdown-control
input.
Other key features include guaranteed specifications for
output current limit level, and guaranteed specifications
for output rise/fall times (in compliance with PCMCIA
specifications). Reliability is enhanced by thermal-over-
load protection, accurate current limiting, an overcur-
rent-fault flag output, undervoltage lockout, and extra
ESD protection at the VCC/VPP outputs. The SMBus ser-
ial interface is flexible, and can tolerate logic input levels
in excess of the positive supply rail.
The MAX1604 and MAX1601 are identical, except
for the MAX1604’s VY switch, which has roughly three-
times the on-resistance (typically 140mΩ).The
MAX1601/MAX1604 fit two complete CardBus/PCMCIA
switches into a space-saving, narrow (0.2in. or 5mm
wide) SSOP package.
________________________Applications

Desktop ComputersData Loggers
Notebook ComputersDigital Cameras
Docking StationsPrinters
Handy-TerminalsPCMCIA Read/Write Drives
____________________________Features
Supports Two CardBus Sockets1A, 0.08ΩMax VY VCC Switch (MAX1601 only)
1A, 0.14ΩMax VX VCC Switch
Soft Switching for Low Inrush Surge CurrentOvercurrent ProtectionOvercurrent/Thermal-Fault Flag OutputThermal Shutdown at Tj= +150°CIndependent Internal Charge PumpsBreak-Before-Make Switching Action10µA Max Standby Supply Current5V and 12V Not Required for Low-RDS(ON)3.3V
Switching
Complies with PCMCIA 3V/5V Switching
Specifications
Super-Small, 28-Pin SSOP Package
(0.2in. or 5mm wide)
System Management Bus (SMBus) Serial
Interface
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface

19-1085; Rev 1; 10/96
Pin Configuration appears on last page.
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
ELECTRICAL CHARACTERISTICS

(VL = VY = 3.3V, VX = 5V, 12INA = 12INB = 12V, TA= 0°C to +85°C, unless otherwise noted. Typical values are at TA= +25°C.)
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.
ABSOLUTE MAXIMUM RATINGS
Note 1:
There are no parasitic diodes between any of these pins, so there are no power-up sequencing restrictions (for example,
logic input signals can be applied even if all of the supply voltage inputs are grounded).
Note 2:
VCC and VPP outputs are internally current-limited to safe values. See the Electrical Characteristicstable.
Inputs/Outputs to GND
(VL, VX, VY, VCCA, VCCB) (Note 1)........................-0.3V, +6V
VPP Inputs/Outputs to GND
(12INA, 12INB, VPPA, VPPB) (Note 1)..................-0.3V, +15V
Inputs and Outputs to GND (SMBCLK, SMBDATA,
SMBSUS, SMBALERT) (Note 1)..............................-0.3V, +6V
ADR Input to GND...........................................-0.3V, (VL + 0.3V)
VCCA, VCCB Output Current (Note 2).....................................4A
VPPA, VPPB Output Current (Note 2)...............................250mA
VCCA, VCCB Short Circuit to GND............................Continuous
VPPA, VPPB Short Circuit to GND..............................Continuous
Continuous Power Dissipation (TA= +70°C)
SSOP (derate 9.52mW/°C above +70°C)....................762mW
Operating Temperature Range
MAX1601EAI/MAX1604EAI.............................-40°C to +85°C
Storage Temperature Range.............................-65°C to +160°C
Lead Temperature (soldering, 10sec).............................+300°C
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
ELECTRICAL CHARACTERISTICS (continued)

(VL = VY = 3.3V, VX = 5V, 12INA = 12INB = 12V, TA= 0°C to +85°C, unless otherwise noted. Typical values are at TA= +25°C.)
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
ELECTRICAL CHARACTERISTICS (continued)

(VL = VY = 3.3V, VX = 5V, 12INA = 12INB = 12V, TA= 0°C to +85°C, unless otherwise noted. Typical values are at TA= +25°C.)
Note 3:
Not production tested.
Note 4:
Thermal limit not active in standby state (all switches programmed to GND or high-Z state).
Note 5:
A transition must internally provide at least a hold time in order to bridge the undefined region (300ns max) of the falling
edge of SMBCLK.
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
ELECTRICAL CHARACTERISTICS

(VL = VY = 3.3V, VX = 5V, 12INA = 12INB = 12V, TA= -40°C to +85°C, unless otherwise noted.)
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
__________________________________________Typical Operating Characteristics

(VL = VY = 3.3V, VX = 5V, 12IN, TA = +25°C, unless otherwise noted.)
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface
_____________________________Typical Operating Characteristics (continued)

(VL = VY = 3.3V, VX = 5V, 12IN, TA = +25°C, unless otherwise noted.)
MAX1601/MAX1604
Dual-Channel CardBus and PCMCIA
Power Switches with SMBus™ Serial Interface

MAX1604
VY ON-RESISTANCE vs. CURRENT
155MAX1600/3 TOC-20
CURRENT (mA)
VY R
(m
VX ON-RESISTANCE
vs. VCC_ LOAD CURRENT
100MAX1601/4 TOC-13
VCC_ LOAD CURRENT (mA)
VX R
(m
MAX1601
VY ON-RESISTANCE vs. CURRENTMAX1601/4 TOC-14
CURRENT (mA)
VY R
(m
12IN_ ON-RESISTANCE vs. CURRENT
MAX1601/4 TOC-15
CURRENT (mA)
12IN R
(m406080
12IN_ ON-RESISTANCE vs. TEMPERATURE
MAX1601/4 TOC-16
TEMPERATURE (°C)
12IN R
(m
VX, VY SUPPLY CURRENT
vs. INPUT VOLTAGE
MAX1601/4 TOC-17
INPUT VOLTAGE (V)
VX, VY SUPPLY CURRENT (34
12IN SUPPLY CURRENT
vs. INPUT VOLTAGE
MAX1601/4 TOC-18
INPUT VOLTAGE (V)
12IN SUPPLY CURRENT (
VL SUPPLY CURRENT
vs. VL INPUT VOLTAGE
MAX1601/4 TOC-19
INPUT VOLTAGE (V)
VL SUPPLY CURRENT (
_____________________________Typical Operating Characteristics (continued)
(VL = VY = 3.3V, VX = 5V, 12IN, TA = +25°C, unless otherwise noted.)
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