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PDF N74F807D Data sheet ( Hoja de datos )

Número de pieza N74F807D
Descripción Octal shift/count registered transceiver with adder and parity 3.State
Fabricantes Philips 
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Philips Semiconductors FAST Products
Octal shift/count registered transceiver
with adder and parity (3–State)
Product specification
FAST 74F807
FEATURES
High speed parallel registers with
positive edge–triggered D–type
flip–flops
High speed full adder
8–bit parity generator
High impedance PNP inputs for light
bus loading
Center VCC and GND pins and con-
trolled output buffers minimize
ground–bounce problems
3–State glitch–free power–up and
power–down
Broadside pinout
DESCRIPTION
The 74F807 is a registered transceiver
that also has the capability to perform
count, shift, and add functions. It is also
has the capability to generate a parity
bit output. All of this is done within a
28–pin package.
The MR input is an overriding
asynchronous reset which forces the
STATOUT output low as well as the A
and B busses.
The A and B busses have separate OE
inputs (OEA, OEB]. These inputs have
no bearing on the internal functioning of
this device only on the output states.
Both OE pins are enabled low.
All operating modes, other than clear,
3–State, and the two hold modes re-
quire the rising edge of the clock. All
setup and hold times must be observed
for proper functioning.
Data on the internal register can be
switched on either the A or B ports for
output.
Depeding on the state of the select in-
puts (S0, S1, S2), and carry in/ serial in/
clock enable (CI/SI/CE), the 74F807 has
nine distinct operating modes:
1. Add mode w/carry in – the CI/SI/CE
input is used as a carry in signal and the
STATOUT output is the carry out signal.
(In add mode the COUT is NOT
registered. This means the carry output
signal appears at the STATOUT output
one clock prior to the related data.). In
this mode, the CI/SI/CE input is added
to the register contents and to the
inputs. (The adder uses only the An
inputs, not the Bn inputs.)
2. Add mode wo/carry in –– same as above
except the CI/SI/CE input is not included in
the addition.
3. Count w/count enable (count) –– the CI/SI/
CE input is now used as the count enable
input and the STATOUT output is terminal
count. In this mode the CI/SI/CE input must
be high to enable the count function. The
register contents are incremented by one.
4. Count w/count enable (hold) –– same as
above except no incrementing occurs.
5. Count wo/count enable –– same as num-
ber 3 except the CI/SI/CE input has no con-
trol over counting or holding.
6. Shift –– The CI/SI/CE input now becomes
the serial input and the STATOUT output
becomes the serial output. In this mode the
CI/SI/CE input is shifted into the Q0 register,
Q0 into the Q1 register etc. The Q7 register
is shifted into the STATOUT.
7. Load A inputs –– The CI/SI/CE input has
no bearing in either of the load modes. The
STATOUT output becomes the parity out.
The parity out is high for an odd number of
registered bits high, and low for even number
of registered bits high (even parity). In this
mode the An inputs are loaded into the
internal register and output to the B bus. If
OEA = low the internal register would wrap
around and be loaded again.
8. Load B inputs –– same as number 7
except the A and B busses are switched.
9. Hold –– Again the CI/SI/CE input is not
used; the STATOUT output is still the parity
out. In this mode either the A bus, B bus or
both can be held with the registered data. No
other operation is performed.
TYPE
74F807
TYPICAL fmax
115MHz
TYPICAL SUPPLY CURRENT (TOTAL)
155mA
ORDERING INFORMATION
DESCRIPTION
28–pin plastic DIP (300 mils)
28–pin SOL1
ORDER CODE
COMMERCIAL RANGE
VCC = 5V ±10%, Tamb = 0°C to +70°C
N74F807N
N74F807D
28–pin PLCC
N74F807A
Note to ordering information
1.Thermal mounting techiques are recommended. See SMD Process Applications (page 17) for a discussion of thermal consideration for surface
mounted devices.
June 18, 1991
1 853–1421 02931

1 page




N74F807D pdf
Philips Semiconductors FAST Products
Octal shift/count registered transceiver
with adder and parity (3–State)
Product specification
FAST 74F807
RECOMMENDED OPERATING CONDITIONS
SYMBOL
PARAMETER
VCC Supply voltage
VIH High–level input voltage
VIL Low–level input voltage
IIk Input clamp current
IOH High–level output current
IOL Low–level output current
Tamb
Operating free air temperature
range
LIMITS
MIN
NOM
MAX
UNIT
4.5 5.0 5.5 V
2.0 V
0.8 V
–18 mA
–3 mA
24 mA
0 +70 °C
DC ELECTRICAL CHARACTERISTICS
(Over recommended operating free-air temperature range unless otherwise noted.)
SYMBOL
PARAMETER
TEST
CONDITIONS1
LIMITS
UNIT
MIN TYP2 MAX
VOH High-level output voltage
VOL Low-level output voltage
VIK
II
IIH
IIL
IOZH + IIH
Input clamp voltage
Input current at maximum input voltage
High–level input current
Low–level input current
Off–state output current,
high–level voltage applied
VCC = MIN, VIL = MAX, ±10%VCC 2.4
VIH = MIN, IOH = MAX
±5%VCC 2.7 3.4
VCC = MIN, VIL = MAX,
VIH = MIN, IOL = MAX
±10%VCC
±5%VCC
0.35 0.50
0.35 0.50
VCC = MIN, II = IIK
VCC = MAX, VI = 7.0V
–0.73 -1.2
100
VCC = MAX, VI = 2.7V
20
VCC = MAX, VI = 0.5V
–20
An, Bn VCC = MAX, VO = 2.7V
50
V
V
V
V
V
µA
µA
µA
µA
IOZL + IIL
IOS
Off–state output current,
low–level voltage applied
Short–circuit output current3
VCC = MAX, VO = 0.5V
VCC = MAX
–50 µA
-60 -150 mA
ICC Supply current (total)
VCC = MAX
155 210 mA
Notes to DC electrical characteristics
1. For conditions shown as MIN or MAX, use the appropriate value specified under recommended operating conditions for the applicable type.
2. All typical values are at VCC = 5V, Tamb = 25°C.
3. Not more than one output should be shorted at a time. For testing IOS, the use of high-speed test apparatus and/or sample-and-hold
techniques are preferable in order to minimize internal heating and more accurately reflect operational values. Otherwise, prolonged shorting
of a high output may raise the chip temperature well above normal and thereby cause invalid readings in other parameter tests. In any
sequence of parameter tests, IOS tests should be performed last.
June 18, 1991
5

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