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Número de pieza | UT54ACTS163 | |
Descripción | 4-Bit Synchronous Counters | |
Fabricantes | Aeroflex Circuit Technology | |
Logotipo | ||
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No Preview Available ! Standard Products
UT54ACS163/UT54ACTS163
4-Bit Synchronous Counters
Datasheet
November 2010
www.aeroflex.com/logic
FEATURES
Internal look-ahead for fast counting
Carry output for n-bit cascading
Synchronous counting
Synchronously programmable
1.2μ CMOS
- Latchup immune
High speed
Low power consumption
Single 5 volt supply
Available QML Q or V processes
Flexible package
- 16-pin DIP
- 16-lead flatpack
UT54ACS163 - SMD 5962-96554
UT54ACTS163 - SMD 5962-96555
DESCRIPTION
The UT54ACS163 and the UT54ACTS163 are synchronous
presettable 4-bit binary counters that feature internal carry look-
ahead logic for high-speed counting designs. Synchronous op-
eration occurs by having all flip-flops clocked simultaneously
so that the outputs change coincident with each other when in-
structed by the count-enable inputs and internal gating. A buff-
ered clock input triggers the four flip-flops on the rising (posi-
tive-going) edge of the clock input waveform.
The counters are fully programmable (i.e., they may be preset
to any number between 0 and 15). Presetting is synchronous;
applying a low level at the load input disables the counter and
causes the outputs to agree with the load data after the next clock
pulse.
The clear function is synchronous and a low level at the clear
input sets all four of the flip-flop outputs low after the next clock
pulse. This synchronous clear allows the count length to be mod-
ified by decoding the Q outputs for the maximum count desired.
The counters feature a fully independent clock circuit. Changes
at control inputs (ENP, ENT, or LOAD) that modify the operat-
ing mode have no effect on the contents of the counter until
clocking occurs. The function of the counter (whether enabled,
disabled, loading, or counting) will be dictated solely by the
conditions meeting the stable setup and hold times.
The devices are characterized over full military temperature
range of -55°C to +125°C.
PINOUTS
16-Pin DIP
Top View
CLR
CLK
A
B
C
D
ENP
VSS
1 16
2 15
3 14
4 13
5 12
6 11
7 10
89
VDD
RCO
QA
QB
QC
QD
ENT
LOAD
CLR
CLK
A
B
C
D
ENP
VSS
16-Lead Flatpack
Top View
1 16
2 15
3 14
4 13
5 12
6 11
7 10
89
VDD
RCO
QA
QB
QC
QD
ENT
LOAD
LOGIC SYMBOL
(1)
CLR
(9)
LOAD
ENT
ENP
CLK
(10)
(7)
(2)
CTRDIV 16
5CT=0
M1
M2 3CT = 15
G3
G4
C5/2,3,4+
(3)
A
(4)
B
(5)
C
(6)
D
1,5D
(1)
(2)
(4)
(8)
(15) RCO
(14) QA
(13) QB
(12) QC
(11) QD
Note:
1. Logic symbol in accordance with ANSI/IEEE Std 91-1984 and IEC Publi-
cation 617-12.
1
1 page Notes:
1. Functional tests are conducted in accordance with MIL-STD-883 with the following input test conditions: VIH = VIH(min) + 20%, - 0%; VIL = VIL(max) + 0%, -
50%, as specified herein, for TTL, CMOS, or Schmitt compatible inputs. Devices may be tested using any input voltage within the above specified range, but are
guaranteed to VIH(min) and VIL(max).
2. Supplied as a design limit but not guaranteed or tested.
3. Per MIL-PRF-38535, for current density ≤ 5.0E5 amps/cm2, the maximum product of load capacitance (per output buffer) times frequency should not exceed 3,765
pF/MHz.
4. Not more than one output may be shorted at a time for maximum duration of one second.
5. Capacitance measured for initial qualification and when design changes may affect the value. Capacitance is measured between the designated terminal and VSS at
frequency of 1MHz and a signal amplitude of 50mV rms maximum.
6. Maximum allowable relative shift equals 50mV.
7. All specifications valid for radiation dose ≤1E6 rads(Si).
8. Power does not include power contribution of any TTL output sink current.
9. Power dissipation specified per switching output.
10. This value is guaranteed based on characterization data, but not tested.
5
5 Page |
Páginas | Total 10 Páginas | |
PDF Descargar | [ Datasheet UT54ACTS163.PDF ] |
Número de pieza | Descripción | Fabricantes |
UT54ACTS163 | 4-Bit Synchronous Counters | Aeroflex Circuit Technology |
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UT54ACTS165 | 8-Bit Parallel Shift Registers | Aeroflex Circuit Technology |
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