MAX6956ATL+T Maxim Integrated Products, MAX6956ATL+T Datasheet - Page 14

IC DRVR DSPL LED 40-TQFN

MAX6956ATL+T

Manufacturer Part Number
MAX6956ATL+T
Description
IC DRVR DSPL LED 40-TQFN
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX6956ATL+T

Display Type
LED
Interface
I²C
Current - Supply
180µA
Voltage - Supply
2.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
40-TQFN Exposed Pad
Number Of Segments
28
Low Level Output Current
18 mA
Operating Supply Voltage
2.5 V to 5.5 V
Maximum Supply Current
230 uA
Maximum Power Dissipation
2105 mW
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Configuration
-
Digits Or Characters
-
Lead Free Status / Rohs Status
 Details
quently changes, the MAX6956’s address pointer, then
master 1’s delayed read may be from an unexpected
location.
Address autoincrementing allows the MAX6956 to be
configured with the shortest number of transmissions
by minimizing the number of times the command
address needs to be sent. The command address
stored in the MAX6956 generally increments after each
data byte is written or read (Table 4).
On initial power-up, all control registers are reset, the
current registers are set to minimum value, and the
MAX6956 enters shutdown mode (Table 6).
LED segment drive current can be set either globally or
individually. Global control simplifies the operation
when all LEDs are set to the same current level,
because writing just the global current register sets the
current for all ports configured as LED segment drivers.
It is also possible to individually control the current
2-Wire-Interfaced, 2.5V to 5.5V, 20-Port or
28-Port LED Display Driver and I/O Expander
Table 5. Register Address Map (continued)
Note: Unused bits read as 0.
14
8 ports 16–23 (data bits D0–D7)
8 ports 17–24 (data bits D0–D7)
8 ports 18–25 (data bits D0–D7)
8 ports 19–26 (data bits D0–D7)
8 ports 20–27 (data bits D0–D7)
8 ports 21–28 (data bits D0–D7)
8 ports 22–29 (data bits D0–D7)
8 ports 23–30 (data bits D0–D7)
8 ports 24–31 (data bits D0–D7)
7 ports 25–31 (data bits D0–D6; D7 reads as 0)
6 ports 26–31 (data bits D0–D5; D6–D7 read as 0)
5 ports 27–31 (data bits D0–D4; D5–D7 read as 0)
4 ports 28–31 (data bits D0–D3; D4–D7 read as 0)
3 ports 29–31 (data bits D0–D2; D3–D7 read as 0)
2 ports 30–31 (data bits D0–D1; D2–D7 read as 0)
1 port 31 only (data bit D0; D1–D7 read as 0)
______________________________________________________________________________________
Command Address Autoincrementing
REGISTER
Initial Power-Up
LED Current Control
D15
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
D14
drive of each LED segment driver. Individual/global
brightness control is selected by setting the configura-
tion register I bit (Table 9). The global current register
(0x02) data are then ignored, and segment currents are
set using register addresses 0x12 through 0x1F (Tables
12, 13, and 14). Each segment is controlled by a nibble
of one of the 16 current registers.
Port transition detection allows any combination of the
seven ports P24–P30 to be continuously monitored for
changes in their logic status (Figure 11). A detected
change is flagged on the transition detection mask reg-
ister INT status bit, D7 (Table 15). If port P31 is config-
ured as an output (Tables 1 and 2), then P31 also
automatically becomes an active-high interrupt output
(INT), which follows the condition of the INT status bit.
Port P31 is set as output by writing bit D7 = 0 and bit
D6 = 1 to the port configuration register (Table 1). Note
that the MAX6956 does not identify which specific
port(s) caused the interrupt, but provides an alert that
one or more port levels have changed.
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
D13
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
COMMAND ADDRESS
Transition (Port Data Change) Detection
D12
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
D11
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
D10
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
D9
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
D8
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
CODE
0x5A
0x5B
0x5C
0x5D
HEX
0x50
0x51
0x52
0x53
0x54
0x55
0x56
0x57
0x58
0x59
0x5E
0x5F

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