参数资料
型号: MAX3395EETC+
厂商: Maxim Integrated Products
文件页数: 18/20页
文件大小: 0K
描述: IC LVL XLTR LV 6MBPS 12-TQFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 75
逻辑功能: 变换器,双向,3 态
位数: 4
输入类型: 逻辑
输出类型: 逻辑
数据速率: 6Mbps
通道数: 4
输出/通道数目: 1
差分 - 输入:输出: 无/无
传输延迟(最大): 50ns
电源电压: 1.65 V ~ 5.5 V
工作温度: -40°C ~ 85°C
封装/外壳: 12-WQFN 裸露焊盘
供应商设备封装: 12-TQFN-EP(4x4)
包装: 管件
Detailed Description
The MAX3394E/MAX3395E/MAX3396E bidirectional
level translators provide level shifting required for data
transfer in a multivoltage system. Internal slew-rate
enhancement circuitry features 10mA current-sink and
15mA current-source drivers to isolate capacitive loads
from lower current drivers. In open-drain systems, slew-
rate enhancement enables fast data rates with larger
pullup resistors and increased bus load capacitance.
Externally applied voltages, VCC and VL, set the logic-
high levels for the device. A logic-low signal on one I/O
side of the device appears as a logic-low signal on the
opposite I/O side and vice-versa. Each I/O line is pulled
up to VCC or VL by an internal pullup resistor, allowing
the devices to be driven by either push-pull or open-
drain drivers.
MAX3394E/MAX3395E/MAX3396E
±15kV ESD-Protected, High-Drive Current, Dual-/Quad-/
Octal-Level Translators with Speed-Up Circuitry
_______________________________________________________________________________________
7
Pin Description
PIN
MAX3394E
MAX3395E
MAX3396E
TDFN
UCSP
TQFN
UCSP
TQFN
UCSP
NAME
FUNCTION
1
A1
11B1
14D3
VCC
VCC Supply Voltage +1.65V
≤ VCC ≤ +5.5V. Bypass
VCC to GND with a 0.1F ceramic capacitor and a
1F or greater ceramic capacitor as close to the
device as possible.
2
B1
6
B3
4
A4
EN
Enable Input. Drive EN logic high for normal
operation. Drive EN logic low to force all I/O lines to
a high-impedance state and disconnect internal
pullup resistors.
3
A2
10
C1
18
C1
I/O VCC1
I/O 1 Referred to VCC
4
A3
9
C2
16
D1
I/O VCC2
I/O 2 Referred to VCC
5
B3
5
B4
13
D4
GND
Ground
6
C3
2
A2
20
A1
I/O VL2
I/O 2 Referred to VL
7
C2
1
A1
19
B1
I/O VL1
I/O 1 Referred to VL
8
C1
12
B2
3
A3
VL
Logic Supply Voltage +1.2V
≤ VL ≤ VCC. Bypass VL
to GND with a 0.1F or greater ceramic capacitor
as close to the device as possible.
3
A3
1
B2
I/O VL3
I/O 3 Referred to VL
4
A4
2
A2
I/O VL4
I/O 4 Referred to VL
7
C4
15
D2
I/O VCC4
I/O 4 Referred to VCC
8
C3
17
C2
I/O VCC3
I/O 3 Referred to VCC
12
C3
I/O VCC5
I/O 5 Referred to VCC
11
D5
I/O VCC6
I/O 6 Referred to VCC
10
C4
I/O VCC7
I/O 7 Referred to VCC
9
C5
I/O VCC8
I/O 8 Referred to VCC
5
B3
I/O VL5
I/O 5 Referred to VL
6
A5
I/O VL6
I/O 6 Referred to VL
7
B4
I/O VL7
I/O 7 Referred to VL
8
B5
I/O VL8
I/O 8 Referred to VL
EP
EP
EP
EP
Exposed Pad. Connect exposed pad to GND.
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