參數(shù)資料
型號(hào): MAX3373EEBL-T
廠商: MAXIM INTEGRATED PRODUCTS INC
元件分類: 其它接口
英文描述: 【15kV ESD-Protected, 1レA, 16Mbps, Dual/Quad Low-Voltage Level Translators in UCSP
中文描述: SPECIALTY INTERFACE CIRCUIT, PBGA9
封裝: 1.50 X 1.50 MM, UCSP-9
文件頁數(shù): 14/25頁
文件大?。?/td> 533K
代理商: MAX3373EEBL-T
M
±15kV ESD-Protected, 1μA, 16Mbps, Dual/Quad
Low-Voltage Level Translators in UCSP
14
______________________________________________________________________________________
Applications Information
Power-Supply Decoupling
To reduce ripple and the chance of transmitting incor-
rect data, bypass V
L
and V
CC
to ground with a 0.1μF
capacitor. See
Typical Operating Circuit.
To ensure full
±15kV ESD protection, bypass V
CC
to ground with a
1μF capacitor. Place all capacitors as close to the
power-supply inputs as possible.
I
2
C Level Translation
The MAX3373E
MAX3376E, MAX3378E/MAX3379E
and MAX3390E
MAX3393E level-shift the data present
on the I/O lines between +1.2V and +5.5V, making
them ideal for level translation between a low-voltage
ASIC and an I
2
C device. A typical application involves
interfacing a low-voltage microprocessor to a 3V or 5V
D/A converter, such as the MAX517.
Push-Pull vs. Open-Drain Driving
All devices in the MAX3372E
MAX3379E and
MAX3390E
MAX3393E family may be driven in a push-
pull configuration. The MAX3373E
MAX3376E/
MAX3378E/MAX3379E and MAX3390E
MAX3393E
include internal 10k
resistors that pull up I/O V
L_
and
I/O V
CC_
to their respective power supplies, allowing
operation of the I/O lines with open-drain devices. See
Timing Characteristics
for maximum data rates when
using open-drain drivers.
tr = 0.7ns to 1ns
30ns
60ns
t
100%
90%
10%
I
P
I
Figure 4b. IEC 1000-4-2 ESD Generator Current Waveform
CHARGE-CURRENT-
LIMIT RESISTOR
DISCHARGE
RESISTANCE
STORAGE
CAPACITOR
Cs
150pF
R
C
50M
to 100M
R
D
330
HIGH-
VOLTAGE
DC
SOURCE
DEVICE
UNDER
TEST
Figure 4a. IEC 1000-4-2 ESD Test Model
MAX3378E
MAX3383E
THREE-STATE
I/O V
L_
DATA
DATA
I/O V
CC_
0.1
μ
F
0.1
μ
F
1
μ
F
+3.3V
+1.8V
V
CC
+3.3V
SYSTEM
+1.8V
SYSTEM
CONTROLLER
V
L
Typical Operating Circuit
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