SN74CB3T16211
SN74CB3T16211 is 2.5-V/3.3-V LOW-VOLTAGE BUS SWITCH manufactured by Texas Instruments.
FEATURES
- 2 Member of the Texas Instruments Widebus™ Family
- Output Voltage Translation Tracks VCC
- Supports Mixed-Mode Signal Operation on
All Data I/O Ports
- 5-V Input Down to 3.3-V Output Level Shift With 3.3-V VCC
- 5-V/3.3-V Input Down to 2.5-V Output Level Shift With 2.5-V VCC
- 5-V Tolerant I/Os With Device Powered Up or Powered Down
- Bidirectional Data Flow With Near-Zero Propagation Delay
- Low ON-State Resistance (ron) Characteristics (ron = 5 Ω Typ)
- Low Input/Output Capacitance Minimizes Loading (Cio(OFF) = 5 p F Typ)
- Data and Control Inputs Provide Undershoot Clamp Diodes
- Low Power Consumption (ICC = 70 μA Max)
- VCC Operating Range From 2.3 V to 3.6 V
- Data I/Os Support 0- to 5-V Signaling Levels
(0.8 V, 1.2 V, 1.5 V, 1.8 V, 2.5 V, 3.3 V, 5 V)
- Control Inputs Can Be Driven by TTL or 5-V/3.3-V CMOS Outputs
- Ioff Supports Partial-Power-Down Mode Operation
- Latch-Up Performance Exceeds 250 m A Per JESD 17
- ESD Performance Tested Per JESD 22
- 2000-V Human-Body Model (A114-B, Class II)
- 1000-V Charged-Device Model (C101)
- Supports Digital Applications: Level Translation, PCI Interface, Bus Isolation
- Ideal for Low-Power Portable Equipment
BRK BRK BRK BRK BRK
DGG, DGV, OR DL PACKAGE (TOP VIEW)
NC 1 1A1 2 1A2 3 1A3 4 1A4 5 1A5 6 1A6 7 GND 8 1A7 9 1A8 10 1A9 11 1A10 12 1A11 13 1A12 14 2A1 15 2A2 16 VCC 17 2A3 18 GND 19 2A4 20 2A5 21 2A6 22 2A7 23 2A8 24 2A9 25 2A10 26 2A11 27 2A12 28
56 1OE 55 2OE 54 1B1 53 1B2 52 1B3 51 1B4 50 1B5 49 GND 48 1B6 47 1B7 46 1B8 45 1B9 44 1B10 43 1B11 42 1B12 41 2B1 40 2B2 39 2B3 38 GND 37 2B4 36 2B5 35 2B6 34 2B7 33 2B8 32 2B9 31 2B10 30 2B11 29 2B12
- No internal connection
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. Widebus is a trademark of Texas Instruments.
PRODUCTION DATA information is current as of publication...