MAX4717EUB Maxim, MAX4717EUB Datasheet - Page 10

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MAX4717EUB

Manufacturer Part Number
MAX4717EUB
Description
4.5 /20 / 300MHz Bandwidth / Dual SPDT Analog Switches in UCSP
Manufacturer
Maxim
Datasheet

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The MAX4717/MAX4718 high-speed, low-voltage, low on-
resistance (R
from a single +1.8V to +5.5V supply. The switches feature
break-before-make switching operation and fast switch-
ing speeds (t
These switches have low 15pF on-channel capaci-
tance, which allows for 12Mbps switching of the data
signals for USB 1.0/1.1 applications. The MAX4717 is
designed to switch D+ and D- USB signals with a guar-
anteed skew of less than 2ns (see Figure 4) as mea-
sured from 50% of the input signal to 50% of the output
signal.
The MAX4717/MAX4718 logic inputs accept up to
+5.5V regardless of supply voltage. For example, with
a +3.3V supply, IN_ can be driven low to GND and high
to +5.5V allowing for mixing of logic levels in a system.
Driving the control logic inputs rail-to-rail minimizes
power consumption. For a +3V supply voltage, the
logic thresholds are 0.5V (low) and 1.4V (high); for a
4.5 /20 , 300MHz Bandwidth, Dual SPDT
Analog Switches in UCSP
10
UCSP
A1
A2
A3
A4
B1
B4
C1
C2
C3
C4
______________________________________________________________________________________
PIN
µMAX
10
7
8
9
6
1
5
4
3
2
ON
ON
= 80ns (max), t
Applications Information
), dual SPDT analog switches operate
NAME
COM2
COM1
GND
NC2
NO2
NC1
NO1
IN2
IN1
V+
Detailed Description
Analog Switch 2—Normally Closed
Terminal
Digital Control Input for Analog
Switch 2
Analog Switch 2—Common
Terminal
Analog Switch 2—Normally Open
Terminal
Ground
Positive-Supply Voltage Input
Analog Switch 1—Normally Closed
Terminal
Digital Control Input for Analog
Switch 1
Analog Switch 1—Common
Terminal
Analog Switch 1—Normally Open
Terminal
Digital Control Inputs
OFF
Pin Description
= 40ns (max)).
FUNCTION
+5V supply voltage, the logic thresholds are 0.8V (low)
and 2.0V (high).
The on-resistance of the MAX4717/MAX4718 changes
very little for analog input signals across the entire supply
voltage range (see the Typical Operating Characteristics).
The switches are bidirectional, so the NO_, NC_, and
COM_ pins can be either inputs or outputs.
Caution: Do not exceed the absolute maximum rat-
ings because stresses beyond the listed ratings
may cause permanent damage to the device.
Proper power-supply sequencing is recommended for
all CMOS devices. Always apply V+ before applying
analog signals, especially if the analog signal is not
current-limited.
For general UCSP package information and PC layout
considerations, please refer to the Maxim Application
Note (Wafer-Level Chip-Scale Package).
The chip-scale package (UCSP) represents a unique
packaging form factor that may not perform equally to a
packaged product through traditional mechanical relia-
bility tests. UCSP reliability is integrally linked to the
user’s assembly methods, circuit board material, and
usage environment. The user should closely review
these areas when considering use of a UCSP package.
Performance through Operating Life Test and Moisture
Resistance remains uncompromised as it is primarily
determined by the wafer-fabrication process.
Mechanical stress performance is a greater considera-
tion for a UCSP package. UCSPs are attached through
direct solder contact to the user’s PC board, foregoing
the inherent stress relief of a packaged product lead
frame. Solder joint contact integrity must be consid-
ered. Information on Maxim’s qualification plan, test
data, and recommendations are detailed in the UCSP
application note, which can be found on Maxim’s web-
site at www.maxim-ic.com.
TRANSISTOR COUNT: 235
PROCESS: BiCMOS
UCSP Package Considerations
Power-Supply Sequencing and
Overvoltage Protection
Analog Signal Levels
Chip Information
UCSP Reliability

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