MAX3009

+1.2V to +5.5V, ±15kV ESD-Protected, 0.1µA, 35Mbps, 8-Channel Level Translators

Industry's First Bi-Directional Octal Level Translators


Please check latest availability status for a specific part variant.

Description

The MAX3000E/MAX3001E/MAX3002–MAX3012 8-channel level translators provide the level shifting necessary to allow data transfer in a multivoltage system. Externally applied voltages, VCC and VL, set the logic levels on either side of the device. Logic signals present on the VL side of the device appear as a higher voltage logic signal on the VCCside of the device, and vice-versa.

The MAX3000E/MAX3001E/MAX3002/MAX3003 use an architecture specifically designed to be bidirectional without the use of a directional pin.

The MAX3000E/MAX3001E/MAX3002/MAX3004–MAX3012 feature an EN input that, when low, reduces the VCC and VLsupply currents to < 2µA. The MAX3000E/MAX3001E also have ±15kV ESD protection on the I/O VCC side for greater protection in applications that route signals externally. The MAX3000E operates at a guaranteed datarate of 230kbps. The MAX3001E operates at a guaranteed data rate of 4Mbps. The MAX3002–MAX3012 operate at a guaranteed data rate of 20Mbps over the entire specified operating voltage range.

The MAX3000E/MAX3001E/MAX3002–MAX3012 accept VL voltages from +1.2V to +5.5V and VCC voltages from +1.65V to +5.5V, making them ideal for data transfer between low-voltage ASICs/PLDs and higher voltage systems. The MAX3000E/MAX3001E/MAX3002–MAX3012 are available in 20-bump UCSP™, 20-pin TQFN (5mm x 5mm), and 20-pin TSSOP packages.
MAX3000E, MAX3001E, MAX3002, MAX3003, MAX3004, MAX3005, MAX3006, MAX3007, MAX3008, MAX3009, MAX3010, MAX3011, MAX3012: Typical Operating Circuit MAX3000E, MAX3001E, MAX3002, MAX3003, MAX3004, MAX3005, MAX3006, MAX3007, MAX3008, MAX3009, MAX3010, MAX3011, MAX3012: Typical Operating Circuit Enlarge+

Key Features

  • Guaranteed Data Rate Options
    • 230kbps (MAX3000E)
    • 4Mbps (MAX3001E)
    • 20Mbps (MAX3002–MAX3012)
  • Bidirectional Level Translation Without Using a Directional Pin (MAX3000E/MAX3001E/MAX3002/MAX3003)
  • Unidirectional Level Translation (MAX3004–MAX3012)
  • Operation Down to +1.2V on VL
  • ±15kV ESD Protection on I/O VCC Lines (MAX3000E/MAX3001E)
  • Ultra-Low 0.1µA Supply Current in Shutdown
  • Low Quiescent Current (< 10µA)
  • UCSP, TQFN, and TSSOP Packages

Applications/Uses

  • Cell Phone Cradles
  • Cell Phones
  • Global Positioning Systems (GPS)
  • Low-Cost Serial Interfaces
  • Low-Voltage ASIC Level Translation
  • Portable Communication Devices
  • Portable POS Systems
  • Smart Card Readers
  • SPI™ and MICROWIRE™ Level Translation
  • Telecommunications Equipment
Part NumberLevel Transl.VL
(V)
VCC
(V)
Data Rate
(Mbps)
I/O VCC StateI/O VL StateICC
(µA)
VL
(µA)
ICC (Shutdown)
(µA)
IL (Shutdown)
(µA)
Package/PinsBudgetary
Price
maxShutdn.Shutdn.maxmaxmaxmaxSee Notes
MAX3000E 81.2 to 5.51.65 to 5.50.23High Impedance6kΩ to GND10100.10.1
TSSOP/20
$2.34 @1k
MAX3001E 45050
TSSOP/20
UCSP (B)/20
WLP/20
$2.34 @1k
MAX3002 201010
TQFN/20
TSSOP/20
UCSP (B)/20
$2.39 @1k
MAX3004 201010
TSSOP/20
$2.34 @1k
MAX3006 201010
TSSOP/20
$2.58 @1k
MAX3008 201010
TSSOP/20
$1.76 @1k
MAX3012 201010
TSSOP/20
$2.34 @1k
See All Logic Level Translators (39)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific and version-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

Quality and Environmental Data

Request Reliability Report for: MAX3009 
Lead-Free Package Tin (Sn) Whisker Reports

CAD Symbols and Footprints

  • MAX3009EBP-T
  • MAX3009EUP
  • MAX3009EUP-T
  • Device   Fab Process   Technology   Sample size   Rejects   FIT at 25°C   FIT at 55°C  

    Note : The failure rates are summarized by technology and mapped to the associated material part numbers. The failure rates are highly dependent on the number of units tested.

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