MAX459CQH-D Maxim Integrated Products, MAX459CQH-D Datasheet - Page 10

IC VIDEO CROSSPOINT SWIT 44PLCC

MAX459CQH-D

Manufacturer Part Number
MAX459CQH-D
Description
IC VIDEO CROSSPOINT SWIT 44PLCC
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX459CQH-D

Function
Video Crosspoint Switch
Circuit
1 x 8:4
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
44-LCC (J-Lead)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX459CQH-D
Manufacturer:
Maxim Integrated
Quantity:
10 000
The MAX458/MAX459 video crosspoint switches consist
of a high-speed 32 (8x4) switch array with wide-band-
width line drivers (Figure 1). This design allows make-
before-break switching to reduce output noise and
glitches, but the inputs will not short together. It also pro-
vides high input impedance and low input capacitance,
so no input buffer amplifier is needed. However,
because different transistors provide gain depending on
the input selection, the DC offset voltage shifts slightly
when a new input is switched in. The change in offset
voltage is typically 3mV.
All output buffers will drive back-terminated 50 , 75 ,
or higher impedance lines with up to 100pF capaci-
tance. The amplifier outputs can be disabled, which is
useful for creating large arrays. When disabled, the
MAX458 presents an output impedance of approxi-
mately 1M . The MAX459 disabled output impedance
is 1k
tors used to achieve the gain of two.
During power-on, if
output amplifiers are disabled. In a large array, this
feature prevents two ON paralleled amplifiers from dis-
torting each other’s signals. The amplifiers can be pro-
grammed to come up in any state simultaneously at any
time after power-on. See the Creating Large Arrays
section.
Figure 3. Parallel Connection (only logic pins shown)
_______________Detailed Description
Pin numbers apply to DIP package.
SHUTDOWN
(to ground), due to the internal feedback resis-
8x4 Video Crosspoint Switches with Buffers
19
20
1
DOUT
DIN
SHDN
_______________________________________________________________________________________
C
MAX458
MAX459
S
and
U
UPDATE
P
SCLK
D
WR
CS
CE
A0
A1
D0
D1
D2
D3
A
T
Analog Section
E
40
39
38
37
36
26
25
24
23
22
21
are held high, all
V
UPDATE
WRITE
CHIP ENABLE (SELECT)
AMPLIFIER SELECT A0
AMPLIFIER SELECT A1
DATA BIT D0
DATA BIT D1
DATA BIT D2
DATA BIT D3
CC
The MAX458/MAX459 have two register banks—an
input register and a switch register (Figure 2). Each of
these registers is either latched (when the control input
is high) or transparent (when the control input is low).
The input register is controlled by
selected by the decode of A0 and A1. If both
C
transparent, and the state of D0–D3 is presented to the
switch register. The other three input registers remain
latched. If D0–D3 change before
(goes low), the new data (the changed D0–D3) will then
be latched in the switch register. If
input registers are latched and their data is presented
Table 1. Amplifier Selection
Table 2. Input Selection
Table 3. Writing Data
C
E
H
H
X
X
L
L
D3
E
H
L
L
L
L
L
L
L
L
are low, the input register selected by A0 and A1 is
A1
H
H
W
L
L
H
H
X
X
L
L
R
D2
H
H
H
H
L
L
L
X
L
U
P
D
H
H
H
L
L
L
A
D1
T
Digital Section—Parallel Mode
H
H
H
H
X
L
L
L
L
E
A0
H
H
L
L
Device not selected or is operating in seri-
al mode. Both registers are latched.
Data in input registers passes through
switch registers. Output reflects data in
input registers.
Input register of selected amplifier is trans-
parent. Switch registers are latched. Other
input registers are latched.
All switch registers and selected input regis-
ter are transparent. Selected amplifier (cho-
sen by state of A0, A1) reflects input data.
Other amplifiers reflect data that had been
latched into the input registers previously.
D0
H
H
H
H
X
L
L
L
L
Output Amplifier Selected
Disable output amplifier
selected by A0, A1.
Input Channel Selected
FUNCTION
U
W
W
P
R
D
R
or
A
0
1
2
3
and
T
0
1
2
3
4
5
6
7
C
E
E
is asserted
C
is high, all
E
W
and is
R
and
9

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