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IDT74FCT162701ATPF Ver la hoja de datos (PDF) - Integrated Device Technology

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IDT74FCT162701ATPF
IDT
Integrated Device Technology IDT
IDT74FCT162701ATPF Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
IDT54/74FCT162701T/AT
FAST CMOS 18-BIT R/W BUFFER
MILITARY AND COMMERCIAL TEMPERATURE RANGES
POWER SUPLY CHARACTERISTICS
Symbol
Parameter
Test Conditions(1)
Min. Typ.(2) Max.
ICC
Quiescent Power Supply Current VCC = Max.
TTL Inputs HIGH
VIN = 3.4V(3)
— 0.5 1.5
ICCD (CLK)
Dynamic Power Supply Current
due to clock switching(4)
VCC = Max. CLK Toggling
VIN = VCC
Outputs Open 50% Duty Cycle VIN = GND
— 180 240
ICCD (O/P)
IC
Dynamic Power Supply Current
due to output switching(4)
Total Power Supply Current(6)
VCC = Max.
One Bit Toggling
50% Duty Cycle
VIN = VCC
80 120
1.8 2.9(5)
Outputs Open
VIN = GND
fCP= 10MHz
50% Duty Cycle
OEAB = GND; OEBA = VCC
LE = WCE = RCE = GND
RESET = VCC
VIN = 3.4V
2.1 3.7(5)
VIN = GND
All Inputs Low
VCC = Max.
VIN = VCC
— 2.2 3.5
Outputs Open
VIN = GND
fCP= 10MHz
50% Duty Cycle
OEAB = GND; OEBA = VCC
LE = WCE = RCE = GND
RESET = VCC
VIN = 3.4V
— 2.7 5.0
VIN = GND
One Bit Toggling
at fo = 5MHz
50% Duty Cycle
NOTES:
1. For conditions shown as Max. or Min., use appropriate value specified under Electrical Characteristics for the applicable device type.
2. Typical values are at VCC = 5.0V, +25°C ambient.
3. Per TTL driven input (VIN) = 3.4V). All other inputs at VCC or GND.
4. This parameter is not directly testable, but is derived for use in Total Power Supply Calculations.
5. Values for these conditions are examples of the ICC formula. These limits are guaranteed but not tested.
6. IC = IQUIESCENT + IINPUTS + IDYNAMIC
IC = ICC + ICC DHNT + ICCD (CLK) X fCP + ICCD (O/P) x fO NO
ICC = Quiescent Current (ICCL, ICCH and ICCZ)
ICC = Power Supply Current for a TTL High Input (VIN = 3.4V)
DH = Duty Cycle for TTL Inputs High
NT = Number of TTL Inputs at D
ICCD = Dynamic Current Caused by an Input Transition Pair (HLH or LHL)
fCP = Clock Frequency for Register Devices (Zero for Non-Register Devices)
fO = Output Frequency
NO = Number of Outputs at fO
Unit
mA
µA/
MHz
mA
2915 tbl 06
5.15
6

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