MAX6958AAEE Maxim Integrated Products, MAX6958AAEE Datasheet - Page 5

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MAX6958AAEE

Manufacturer Part Number
MAX6958AAEE
Description
LED Drivers 2-Wire Interfaced, 3 V to 5.5V, 4-Digit,
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX6958AAEE

Number Of Digits
4
Number Of Segments
36
Low Level Output Current
275000 uA
High Level Output Current
30000 uA
Operating Supply Voltage
3 V to 5.5 V
Maximum Supply Current
6700 uA
Maximum Power Dissipation
667 mW
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Package / Case
QSOP-16
Minimum Operating Temperature
- 40 C

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The MAX6958/MAX6959 serially interfaced display dri-
vers drive up to: four 7-segment digits plus four dis-
crete LEDs if the decimal points are used, or four
7-segment digits plus eight discrete LEDs if the deci-
mal points are not used, or 36 discrete LEDs. Table 1
lists the display connection scheme.
The MAX6958/MAX6959 include the hexadecimal font
map for seven-segment displays. The seven-segment
LED digits can be controlled directly or programmed to
use the hexadecimal font. Direct segment control
allows the MAX6958/MAX6959 to drive bar graphs and
discrete LED indicators.
The MAX6958/MAX6959 use a multiplexing scheme that
minimizes the connections between the driver and LED
display. The MAX6958/MAX6959 can drive monocolor
and bicolor single-digit type displays, and monocolor
dual-digit displays. Dual-digit displays internally
wire together the equivalent segments for each digit,
requiring only eight segment pins instead of 16. The
Table 1. Standard Driver Connection to LED Displays
4–7, 11–15
LED Digit 0
LED Digit 1
LED Digit 2
LED Digit 3
MAX6958
9, 10
16
1
2
3
8
9-Segment LED Display Drivers with Keyscan
PIN
4–7, 11–15
MAX6959
DIG0/SEG0 DIG1/SEG1 DIG2/SEG2
SEG 1
SEG g
SEG g
CC0
10
16
1
2
3
8
9
_______________________________________________________________________________________
Detailed Description
2-Wire Interfaced, 3V to 5.5V, 4-Digit,
DIGX, SEGX
IRQ/SEG9
INPUT1
INPUT2
SEG 0
SEG f
SEG f
NAME
SEG9
CC1
GND
SDA
N.C.
SCL
V+
Serial Data I/O
Serial Clock Input
Segment Output. Segment driver sourcing current to a display anode.
Interrupt or Segment Output. May be segment driver sourcing current to a display
anode, or open-drain interrupt output, or open-drain logic output.
Digit and Segment Drivers. Digit X outputs sink current from the display common
cathode when acting as digit drivers. Segment X drivers source current to the display
anodes. Segment/digit drivers are high impedance when turned off.
Ground
No Connect. Connect to V+ or leave open.
General-Purpose Input Port 1 with Internal Pullup. May be configured as general-
purpose logic input or keyscan input. Connect to V+ or leave open if unused.
General-Purpose Input Port 2 with Internal Pullup. May be configured as general-
purpose logic input or keyscan input. Connect to V+ or leave open if unused.
Positive Supply Voltage
SEG g
SEG g
SEG 3
CC2
DIG3/SEG3
SEG 2
SEG f
SEG f
CC3
MAX6958/MAX6959 can also drive multidigit LED dis-
plays that have the segments individually pinned for
each digit.
To connect four single-digit displays to the MAX6958/
MAX6959, connect cathode outputs DIG0/SEG0–
DIG3/SEG3 to the cathodes of the four display digits as
shown in Table 1 (CC0–CC3). Drive eight additional
LEDs with SEG0 to SEG7. Four of the eight LEDs can
be the decimal point (DP) segments of the four dis-
plays, and the other four can be discrete LED indica-
tors.
To connect two dual-digit displays to the MAX6958/
MAX6959, connect cathode outputs DIG0/SEG0 and
DIG1/SEG1 to the cathodes of the first dual digit.
Connect DIG2/SEG2 and DIG3/SEG3 to the cathodes
of the second dual digit. SEG0 to SEG3 can only drive
discrete LEDs, not digit DP segments. SEG4 to SEG7
can drive the DP segments if required. Bicolor single-
digit displays are connected and treated as dual-digit
displays, each digit being one of the two colors.
SEG 4
SEG e
SEG e
SEG e
SEG e
SEG 5
SEG d
SEG d
SEG d
SEG d
FUNCTION
SEG 6
SEG c
SEG c
SEG c
SEG c
SEG 7
SEG b
SEG b
SEG b
SEG b
Pin Description
SEG 8
SEG a
SEG a
SEG a
SEG a
SEG 9/IRQ
SEG 4
SEG 5
SEG 6
SEG 7
5

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