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What is UT54ACS191E?

This electronic component, produced by the manufacturer "Aeroflex Circuit Technology", performs the same function as "Synchronous 4-Bit Up-Down Binary Counters".


UT54ACS191E Datasheet PDF - Aeroflex Circuit Technology

Part Number UT54ACS191E
Description Synchronous 4-Bit Up-Down Binary Counters
Manufacturers Aeroflex Circuit Technology 
Logo Aeroflex Circuit Technology Logo 


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UT54ACS191E
Synchronous 4-Bit Up-Down Binary Counters
March 2015
www.aeroflex.com/Logic
Datasheet
FEATURES
Single down/up count control line
Look-ahead circuitry enhances speed of cascaded counters
Fully synchronous in count modes
Asynchronously pre-settable with load control
• 0.6μm CRH CMOS process
- Latchup immune
High speed
Low power consumption
Wide power supply operating range of 3.0V to 5.5V
Available QML Q or V processes
16-lead flatpack
UT54ACS191E - SMD 5962-96564
DESCRIPTION
The UT54ACS191E is a performance and voltage enhanced
version of the UT54ACS191 synchronous 4-bit, reversible up-
down binary counter. Synchronous counting operation is
provided by having all flip-flops clocked simultaneously so that
the outputs change coincident with each other when so
instructed. Synchronous operation eliminates the output
counting spikes associated with asynchronous counters.
The outputs of the four flip-flops are triggered on a low-to-high-
level transition of the clock input if the enable input (CTEN) is
low. A logic one applied to CTEN inhibits counting. The direc-
tion of the count is determined by the level of the down/up (D/
U) input. When D/U is low, the counter counts up and when D/
U is high, it counts down.
The counter features a fully independant clock circuit. Changes
at control inputs (CTEN and D/U) that will modify the operating
mode have no effect on the contents of the counter until clocking
occcurs.
The counter is fully programmable. The outputs may be preset
to either logic level by placing a low on the load input and
entering the desired data at the data inputs. The output will
change to agree with the data inputs independently of the level
of the clock input. The asynchronous load allows counters to
be used as modulo-N dividers by simply modifying the count
length with the preset inputs.
Two outputs have been made available to perform the cascading
function: ripple clock and maximum/minimum (MAX/MIN)
count. The MAX/MIN output produces a high-level output
pulse with a duration approximately equal to one complete cycle
of the clock while the count is zero (all outputs low) counting
down or maximum (15) counting up.
The ripple clock output (RCO) produces a low-level output
pulse under those same conditions but only while the clock input
is low. The counters easily cascade by feeding the RCO to the
enable input of the succeeding counter if parallel clocking is
used, or to the clock input if parallel enabling is used. Use the
MAX/MIN count output to accomplish look-ahead for high-
speed operation.
The device is characterized over full military temperature range
of -55oC to +125oC.
PINOUT
B
QB
QA
CTEN
D/U
QC
QD
VSS
16-Lead Flatpack
TopView
1 16
2 15
3 14
4 13
5 12
6 11
7 10
89
VDD
A
CLK
RCO
MAX/MIN
LOAD
C
D
FUNCTION TABLE
FUNCTION
Count Up
Count Down
Asynchronous
Reset
No Change
LOAD
H
H
L
H
CTEN
L
L
X
H
D/U
L
H
X
X
CLK
-
-
X
X
36-00-04-001
Ver. 1.0.0
1 Aeroflex Microelectronics Solutions - HiRel

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UT54ACS191E equivalent
DC ELECTRICAL CHARACTERISTICS FOR THE UT54ACS191E7
( VDD = 3.0V to 5.5V; VSS = 0V6; -55°C < TC < +125°C)
SYMBOL
DESCRIPTION
VIL Low-level input voltage 1
VIH High-level input voltage 1
IIN Input leakage current
VOL Low-level output voltage 3
VOH High-level output voltage 3
IOS1 Short-circuit output current 2 ,4
IOS2 Short-circuit output current 2 ,4
IOL1 Low level output current10
(sink)
IOL2 Low level output current10
(sink)
IOH1 High level output current10
(source)
IOH2 High level output current10
(source)
Ptotal1 Power dissipation 2, 8, 9
Ptotal2 Power dissipation 2, 8, 9
IDDQ Quiescent Supply Current
CONDITION
VDD from 3.0V to 5.5V
VDD from 3.0V to 5.5V
VIN = VDD or VSS
IOL = 100μA
VDD from 3.0V to 5.5V
IOH = -100μA
VDD from 3.0V to 5.5V
VO = VDD and VSS
VDD from 4.5V to 5.5V
VO = VDD and VSS
VDD from 3.0V to 3.6V
VIN = VDD or VSS
VOL = 0.4V
VDD from 4.5V to 5.5V
VIN = VDD or VSS
VOL = 0.4V
VDD from 3.0V to 3.6V
VIN = VDD or VSS
VOH = VDD-0.4V
VDD from 4.5V to 5.5V
VIN = VDD or VSS
VOH = VDD-0.4V
VDD from 3.0V to 3.6V
CL = 50pF
VDD = 4.5V to 5.5V
CL = 50pF
VDD = 3.0V to 3.6V
VIN = VDD or VSS
VDD from 3.0V to 5.5V
MIN
0.7 VDD
-1
MAX
0.3 VDD
1
0.25
UNIT
V
V
μA
V
VDD -0.25
-200
+200
V
mA
-100
+100
mA
+8 mA
+6 mA
-8 mA
-6 mA
1.4 mW/
MHz
1.0 mW/
MHz
25 μA
36-00-04-001
Ver. 0.1.0
5 Aeroflex Microelectronics Solutions - HiRel


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