Texas Instruments SN74ALS869DWR

GULL WING DUAL Positive Edge Synchronous logic counter 50pF 0C~70C 35MHz 45mA
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Datasheet27 SeitenVor 18 Jahren

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Price @ 1000
$ 9.392
$ 9.392
Stock
61,385
172,047
172,047
Authorized Distributors
0
5
5
Case/Package
SOIC
SOIC
SOIC
Number of Pins
24
24
24
Logic Function
Counter
Counter
Counter
Direction
-
Bidirectional
Bidirectional
Number of Elements
1
1
1
Number of Bits per Element
8
8
8
Reset
Synchronous
Synchronous
Synchronous
Clock Edge Trigger Type
Positive Edge
Positive Edge
Positive Edge
Frequency
35 MHz
35 MHz
35 MHz
Min Supply Voltage
-
4.5 V
4.5 V
Max Supply Voltage
-
5.5 V
5.5 V

Beschreibungen

Beschreibungen von Texas Instruments SN74ALS869DWR, die von den Distributoren bereitgestellt werden.

GULL WING DUAL Positive Edge Synchronous logic counter 50pF 0C~70C 35MHz 45mA
IC COUNTER SYNC 8BIT BIN 24-SOIC / Counter IC Binary Counter 1 Element 8 Bit Positive Edge 24-SOIC
Counter Logic IC; Logic Family:ALS; Supply Voltage Min:4.5V; Supply Voltage Max:5.5V; Package/Case:24-SOIC; No. of Pins:24; Operating Temperature Range:0°C to +70°C; Input Type:TTL; Leaded Process Compatible:Yes; Output Type:TTL ;RoHS Compliant: Yes
These synchronous, presettable, 8-bit up/down counters feature internal-carry look-ahead circuitry for cascading in high-speed counting applications. Synchronous operation is provided by having all flip-flops clocked simultaneously so that the outputs change coincidentally with each other when so instructed by the count-enable (,) inputs and internal gating. This mode of operation eliminates the output counting spikes normally associated with asynchronous (ripple-clock) counters. A buffered clock (CLK) input triggers the eight flip-flops on the rising (positive-going) edge of the clock waveform. These counters are fully programmable; they may be preset to any number between 0 and 255. The load-input circuitry allows parallel loading of the cascaded counters. Because loading is synchronous, selecting the load mode disables the counter and causes the outputs to agree with the data inputs after the next clock pulse. The carry look-ahead circuitry provides for cascading counters for n-bit synchronous applications without additional gating. Two count-enable (and ) inputs and a ripple-carry () output are instrumental in accomplishing this function. Both and must be low to count. The direction of the count is determined by the levels of the select (S0, S1) inputs as shown in the function table. is fed forward to enable . thus enabled produces a low-level pulse while the count is zero (all outputs low) counting down or 255 counting up (all outputs high). This low-level overflow-carry pulse can be used to enable successive cascaded stages. Transitions at and are allowed regardless of the level of CLK. All inputs are diode clamped to minimize transmission-line effects, thereby simplifying system design. These counters feature a fully independent clock circuit. With the exception of the asynchronous clear on the SN74ALS867A and ´AS867, changes at S0 and S1 that modify the operating mode have no effect on the Q outputs until clocking occurs. For the ´AS867 and ´AS869, any time ENP\ and/or ENT\ is taken high, either goes or remains high. For the SN74ALS867A and SN74ALS869, any time is taken high, either goes or remains high. The function of the counter (whether enabled, disabled, loading, or counting) is dictated solely by the conditions meeting the stable setup and hold times. The SN54AS867 and SN54AS869 are characterized for operation over the full military temperature range of -55°C to 125°C. The SN74ALS867A, SN74ALS869, SN74AS867, and SN74AS869 are characterized for operation from 0°C to 70°C.

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