Texas Instruments SN74F161ADR

Synchronous 4-Bit Binary Counter 16-SOIC 0 to 70
$ 0.364
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Newark

Datasheet17 páginas11 anos atrás

Texas Instruments

Mouser

SHENGYU ELECTRONICS

LCSC

Histórico de estoque

Tendência de 3 meses:
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Peças alternativas

Price @ 1000
$ 0.364
$ 0.664
$ 0.664
Stock
282,977
410,198
410,198
Authorized Distributors
3
4
4
Case/Package
SOIC
SOIC
SOIC
Number of Pins
16
16
16
Logic Function
Counter
Counter
Counter
Direction
Unidirectional
Unidirectional
Unidirectional
Number of Elements
1
1
1
Number of Bits per Element
4
4
4
Reset
Asynchronous
Asynchronous
Asynchronous
Clock Edge Trigger Type
Positive Edge
Positive Edge
Positive Edge
Frequency
120 MHz
120 MHz
120 MHz
Min Supply Voltage
4.5 V
4.5 V
4.5 V
Max Supply Voltage
5.5 V
5.5 V
5.5 V

Cadeia de suprimentos

Lifecycle StatusProduction (Last Updated: 3 days ago)
Manufacturer Lifecycle StatusACTIVE (Last Updated: 3 days ago)

Recursos de engenharia

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Descrições

Descrições de Texas Instruments SN74F161ADR fornecidas pelos seus distribuidores.

Synchronous 4-Bit Binary Counter 16-SOIC 0 to 70
Counter Single 4-Bit Sync Binary UP 16-Pin SOIC T/R
Cut Tape (CT) Active e4 74F161 logic counter 15ns 3.91mm 5V 0.02A
IC, 4BIT BINARY COUNTER, SYNC, SOIC-16, FULL REEL
F/FAST SERIES SYN POSITIVE EDGE TRIGGERED 4-BIT UP BINARY COUNTER PDSO16
IC BINARY COUNTER 4-BIT 16SOIC
IC SYNC 4BIT BINRY COUNTR 16SOIC
This synchronous, presettable, 4-bit binary counter has internal carry look-ahead circuitry for use in high-speed counting designs. Synchronous operation is provided by having all flip-flops clocked simultaneously so that the outputs change coincident with each other when so instructed by the count-enable (ENP, ENT) inputs and internal gating. This mode of operation eliminates the output counting spikes that are normally associated with asynchronous (ripple-clock) counters. However, counting spikes can occur on the ripple-carry (RCO) output. A buffered clock (CLK) input triggers the four flip-flops on the rising (positive-going) edge of CLK. This counter is fully programmable. That is, it can be preset to any number between 0 and 15. Because presetting is synchronous, a low logic level at the load (LOAD) input disables the counter and causes the outputs to agree with the setup data after the next clock pulse, regardless of the levels of ENP and ENT. The clear function is asynchronous, and a low logic level at the clear (CLR) input sets all four of the flip-flop outputs to low, regardless of the levels of CLK, LOAD, ENP, and ENT. The carry look-ahead circuitry provides for cascading counters for n-bit synchronous applications, without additional gating. This function is implemented by the ENP and ENT inputs and an RCO output. Both ENP and ENT must be high to count, and ENT is fed forward to enable RCO. RCO, thus enabled, produces ahigh-logic-level pulse while the count is 15 (HHHH). The high-logic-level overflow ripple-carry pulse can be used to enable successive cascaded stages. Transitions at ENP or ENT are allowed, regardless of the level of CLK. The SN74F161A features a fully independent clock circuit. Changes at ENP, ENT, or LOAD that modify the operating mode have no effect on the contents of the counter until clocking occurs. The function of the counter (whether enabled, disabled, loading, or counting) is dictated solely by the conditions meeting the setup and hold times.

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