MAX6958AAEE Maxim Integrated Products, MAX6958AAEE Datasheet - Page 16

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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 key debounced register shows which keys have
been detected as debounced by the keyscanning cir-
cuit (Table 17). Each bit in the register corresponds to
one key switch. The bit is set to 1 if the switch has been
correctly debounced since the last key debounced reg-
ister read operation.
Reading the key debounced register clears the register
(after the data has been read) so that future key presses
can be identified. If the key debounced register is not
read, the keyscan data accumulates. There is no FIFO
register in the MAX6959. Key-press order, or whether a
key has been pressed more than once, cannot be
determined unless the key debounced register is read
after each interrupt and before completion of the next
keyscan cycle.
Reading the key debounced register clears the IRQ
output. If a key is pressed and held down, the key is
reported as debounced (and an IRQ is issued) only
once. The key must be detected as released by the
keyscanning circuit before it is debounced again.
The key debounced register is read only. A write to
address 0x08 is ignored.
The key pressed register shows which keys have been
detected as pressed by the keyscanning circuit during
the last test. Each bit in the register corresponds to one
key switch. The bit is set if the switch has been detect-
ed as pressed by the keyscanning circuit during the
last test. The bit is cleared if the switch has not been
2-Wire Interfaced, 3V to 5.5V, 4-Digit,
9-Segment LED Display Drivers with Keyscan
Table 17. Key Debounced Register Format
Table 18. Key Pressed Register Format
Table 19. Display Test Register
16
______________________________________________________________________________________
KEY DEBOUNCED REGISTER
KEY PRESSED REGISTER
Key Debounced Register (MAX6959 Only)
Key debounced register
Key pressed register
Key Pressed Register (MAX6959 Only)
Display test mode
Normal operation
MODE
CODE (HEX)
CODE (HEX)
CODE (HEX)
ADDRESS
ADDRESS
ADDRESS
0x0C
0x08
0x07
0x07
detected as pressed by the keyscanning circuit during
the last test. Reading the key pressed register does not
clear either the key pressed register, or the key
debounced register, and does not clear the IRQ output.
The key pressed register is read only. A write to
address 0x0C is ignored.
The display test register operates in two modes: normal
and display test (Table 19). Display test mode turns on
all LEDs by overriding, but not altering, all control and
digit registers (including the shutdown register) except
for the port configuration register. The duty cycle while
in display test mode is 28/64.
Bicolor digits combine a red and a green die for each
display element, so that the element displays red or
green (or orange), depending on which die (or both) is
lit. The MAX6958/MAX6959 treat a bicolor digit as two
monocolor digits.
The MAX6958/MAX6959 are guaranteed to drive a 23mA
segment current into 2.4V (or lower) LEDs when operat-
ed from a supply voltage of 4.5V to 5.5V. Operating the
MAX6958/MAX6959 from a supply voltage lower than
4.5V reduces the LED drive current. The drivers drive at
least 15.5mA segment current into 2V (or lower) LEDs
when operated from a 3V supply voltage.
Key7
Key7
D7
D7
D7
X
X
WITH APPROPRIATE SWITCH NAMED BELOW
WITH APPROPRIATE SWITCH NAMED BELOW
Key6
Key6
D6
D6
D6
X
X
Key5
Key5
Applications Information
D5
D5
D5
X
X
REGISTER DATA
REGISTER DATA
REGISTER DATA
Key4
Key4
D4
D4
D4
X
X
Low-Voltage Operation
Display Test Register
Driving Bicolor LEDs
Key3
Key3
D3
D3
D3
X
X
Key2
Key2
D2
D2
D2
X
X
Key1
Key1
D1
D1
D1
X
X
Key0
Key0
D0
D0
D0
0
1

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