STMICROELECTRONICS STV7623

STV7623
480 output high-voltage gate driver
Features
■
2-level high voltage output gate driver
■
480 channels with -40/+35 mA source/sink
output current capability
■
75 V output swing within +/- 45 V limits
■
3.0 to 3.6 V digital power supply
■
1.8 V CMOS input signal compatibility
■
Selectable 480 or 400 outputs
■
Direct input to bidirectional shift registers
■
Selectable polarity and blanking function
■
High voltage BCD process technology
■
Bumped dice in tray
■
Output stage similar to STV7622
■
PCB-less compatible dice
STV7623 die
Description
The STV7623 is a 1-bit x 480 shift register with
dual rail high voltage/medium current output, with
global blank and polarity control.
The maximum shift frequency starts from 1 MHz
for a 1.8 V type input signal, up to 10 MHz for a
3.3 V type input signal. This generic device can
be used for segmented/dot matrix
electroluminescent displays to drive an array of
organic electronic transistors, or for technologies
related to e-Paper/e-Reader/digital signage
solutions.
The device can be daisy-chained for various
display resolutions.
Table 1.
Device summary
Order code
Temperature
Package
Packing
STV7623WPB3
-25°C to +70°C
Bumped dice
3-inch tray
August 2011
Doc ID 018939 Rev 1
1/27
www.st.com
27
Contents
STV7623
Contents
1
Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
1.1
2
Pin description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Functional description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
2.1
Device operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
2.2
Device power supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
2.3
Power sequencing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3
Truth tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
4
Absolute maximum rating . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
5
Electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5.1
DC electrical characteristics (DGND = 0 V) . . . . . . . . . . . . . . . . . . . . . . . 11
5.2
AC characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
5.3
Timing requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
6
Packing information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
7
Pad information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
8
Revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26
2/27
Doc ID 018939 Rev 1
STV7623
1
Description
Description
Figure 1.
STV7623 block diagram
O U T 477 O U T 478 O U T 479 O U T 480
O U T1 O U T2 O U T3 O U T4
VP
L e v e l S h ifte r
^
^
^
^
VN
^
^
^
^
POL
DVDD
D GN D
B LA N K
S TV 2
S TV 1
4 8 0 b its b i - d ire c tio n a l s h ift re g is te r
C LK
JU S TIF Y
L E N G TH
TE S T
D IR
AM08731V1
Doc ID 018939 Rev 1
3/27
Description
1.1
STV7623
Pin description
Figure 2.
PCB-Less COF pinout diagram
T est20
T est19
T est18
T est17
T est16
T est15
T est14
T est13
T est12
T est11
O U T480
VP
DVDD
DGND
VN
STV2
TEST
D IR
C LK
B LA N K
POL
B LA N K
T e st2 0
T est2 0
T e st1 9
T est1 9
T e st1 8
T est1 8
T e st1 7
T est1 7
T e st1 6
T est1 6
T e st1 5
T est1 5
T e st1 4
T est1 4
T e st1 3
T est1 3
T e st1 2
T est1 2
T e st1 1
T est1 1
O U T 480
VP
DVDD
DGND
O u t4 8 0
VN
STV2
TEST
D IR
DVDD
C LK
B LA N K
POL
DGND
POL
B LA N K
-
O u t4 7 9
O u t4 7 8
O u t4 7 7
-
C LK
D IR
LE N G TH
STV1
VN
DGND
DVDD
VP
0U T 1
T est10
T est9
C LK
JU S TIF Y
D IR
LE N G T H
STV1
VN
DGND
DVDD
VP
0U T 1
T e st1 0
T est1 0
T est8
T est7
T est6
T est5
T est4
T est3
T est2
T est1
T e st9
T e st9
T e st8
T e st8
T e st7
T e st7
T e st6
T e st6
T e st5
T e st5
T e st4
T e st4
T e st3
T e st3
T e st2
T e st2
T e st1
T e st1
O u t4
O u t3
O u t2
O u t1
Figure 2 shows the possible design of a custom COF with wire on array (WOA) routing
(PCB-less). This example supports only 480 outputs.
Table 2.
Pin description
Pin name
Function
Description
CLK
In
Shift clock Input
Clock input for the chip internal shift register. Data
is shifted at each rising edge of this clock.
DIR
In
Shift direction
Control pin
This pin controls the output shifting direction.
I/O
Start pulse
input/output pin
These pins are used to control the channel start
pulse input or output pin. The function of these
two pins depends on the status of DIR pin (refer
to the Section 3: Truth tables)
Output enable
control
This pin is used to control the channel output.
When BLANK is high, the shift register is
bypassed (overriden) and all driver outputs are
fixed to VN level instantly, (when POL= L).
It is assumed this signal affect few outputs
STV1
STV2
BLANK
4/27
I/O
In
Doc ID 018939 Rev 1
STV7623
Description
Table 2.
Pin description (continued)
Pin name
POL
I/O
In
Function
Description
Polarity pin
When POL is low, VP and VN are swapped
functionally at the output pins level.
This signal is assumed static.
OUT1..OUT480
Out
Driver output pins
The output voltage is either VP or VN for driving
the gate electrode, depending on the data stored
in the shift register. It is assumed that only up to 4
outputs are changing level simultaneously.
VP
Power
Power supply
High voltage supply (eg +50 V)
DVDD
Power
Power supply
Digital power supply
DGND
Power
Power supply
Digital ground
VN
Power
Power supply
Negative supply
TEST
In
Test pin
Test pin (must be grounded in application)
In
Nb of active
outputs
When LENGTH =0, enable 480 outputs
When LENGTH =1, enable 400 outputs
This signal is assumed static
Partial output
justify mode
Only applicable when LENGTH=1
When JUSTIFY = 0, use outputs 0 to 399
When JUSTIFY = 1, use outputs 80 to 479
This signal is assumed static.
LENGTH
JUSTIFY
In
In the pinout diagram:
●
TEST is used to test the device.
Doc ID 018939 Rev 1
5/27
Functional description
2
STV7623
Functional description
The STV7623 includes all the logic and power circuits necessary to drive the thin-film
transistor (TFT) of an active matrix display backplane. A low-voltage logic block manages
data information, and a high-voltage block converts the low-voltage information stored in the
logic block into high-voltage signals applied to the display gate lines.
2.1
Device operation
In the condition of DIR=L, the STV1 start pulse input is sensed at the rising edge of CLK and
stored in the first stage of shift register, which causes the first scan signal is outputted from
the OUT1 output pin. While stored data is transferred to the next stage of the shift register at
the rising edge of the CLK signal, new data of STV1 is sensed and stored simultaneously.
The output pin (OUT1 to OUT480) supplies VP or VN voltage to the gate lines depending on
the data stored in the shift register. For normal operation, a VP voltage is outputted one by
one like a shift token from OUT1 to OUT480, in sync with CLK pulse.
STV2 goes up to high level at the 400/480th falling edge of CLK and goes down to low level
at the 401/481th falling edge of CLK. This STV2 is connected to the next driver IC STV1
signal to cascade (daisy chain) them.
When STV2 is an output, the signal is activated for 1/2 clock later.
When the chip is configured in 400 output mode, only the first 400 bits entering the shift
register are used, the remaining 80 outputs are removed from the shift register.
Figure 3.
Example of input/output timing DIR = H
Example of input/output timing (DIR=0)
1
2
3
4
5
6
CLK
STV1
BLANK
OUT1
OUT2
OUT3
OUT4
OUT5
OUT6
OUT480
STV2
6/27
Doc ID 018939 Rev 1
7
479
480
481
482
STV7623
2.2
Functional description
Device power supply
The STV7623 must be used with the following conditions when operating:
–
VP - VN < 75 V
–
VP-DGND > 10 V
–
DGND-VN > 10V
Figure 4.
Device power supply
Output 1 to 480
VP
DVDD
DGND
Logic input
VN
AM08733V1
2.3
Power sequencing
To prevent the device from being damaged by latchup, the power ON/OFF sequence it is
recommended to follow the procedure below:
–
Power OFF => ON: DVDD -> VN -> VP
–
Power ON => OFF, VP -> VN -> DVDD
Doc ID 018939 Rev 1
7/27
Functional description
Figure 5.
STV7623
Power sequencing
VP
DVDD
D GN D
VN
AM08734V1
8/27
Doc ID 018939 Rev 1
STV7623
3
Truth tables
Truth tables
Table 3.
Output level truth table
Input pins
Data bit
Blank
POL
OUTn
0
0
1
VP (+)
1
0
1
VN (-)
X
1
1
VP (+)
X
1
0
VN (-)
1
0
0
VP (+)
0
0
0
VN (-)
Table 4.
Output ordering truth table
Configurations
Comments
Length
Justify
Dir
In
First
Last
Out
0
0
0
STV1
OUT1
OUT480
STV2
All outputs
0
1
0
STV1
OUT1
OUT480
STV2
All outputs
1
0
0
STV1
OUT1
OUT400
STV2
1..400
1
1
0
STV1
OUT81
OUT480
STV2
81..480
0
0
1
STV2
OUT480
OUT1
STV1
All outputs
0
1
1
STV2
OUT480
OUT1
STV1
All outputs
1
0
1
STV2
OUT400
OUT1
STV1
1..400
1
1
1
STV2
OUT480
OUT81
STV1
81..480
When only 400 outputs are used, the remaining 80 outputs remain static.
Doc ID 018939 Rev 1
9/27
Absolute maximum rating
4
STV7623
Absolute maximum rating
Stressing the device above the rating listed in the “absolute maximum ratings” table may
cause permanent damage to the device. These are stress ratings only and operation of the
device at these or any other conditions above those indicated in the operating sections of
this specification is not implied. Exposure to absolute maximum rating conditions for
extended periods may affect device reliability.
Table 5.
Absolute maximum ratings (VSS = 0 V, 25 °C)
Symbol
Parameter
Value
Unit
VDD
Digital supply range
-0.3 to +4.0
V
VP
Positive voltage supply
-0.3 to +50
V
VN
Negative voltage supply
+0.3 to -50
V
90
V
-0.3 to DVDD+0.3
mV
- 70 to +35
mA
-200 to +300
mA
-0.3 to +90
V
2
kV
Vp-Vn
Voltage difference
VIN
Logic input voltage range
Ipout
Driver output current x(1) (2) (3)
(1) (2) (3)
Idout
Diode output current
Vout
Output voltage range
VESD
ESD susceptibility, human body model (100 pF
discharged through 1.5 KΩ), on all except the VCC
pins(4)
Tjmax
Maximum junction temperature
-40 to +100
°C
Storage temperature range (die)
-65 to +150
°C
Tstg
1. Measurements done on one single output, x. The other outputs are either not used or are connected to
output x. Assumes junction temperature remains less than Tjmax during measurement.
2. All transient current measurements are made under conditions close to those encountered in a typical
application (that is, with duration of any output current spike always less than 300 ns).
3. These parameters are measured during STMicroelectronics’ internal qualification which includes
temperature characterization on standard as well as corner batches of the process. These parameters are
not tested in production.
10/27
Doc ID 018939 Rev 1
STV7623
Electrical characteristics
5
Electrical characteristics
5.1
DC electrical characteristics (DGND = 0 V)
DVDD = 3.3 V, VP = 30 V, VN = -45V, TAMB = 25 °C, fCLK = 1 MHz, unless otherwise specified.
Table 6.
Electrical characteristics - supply
Value
Symbol
DVDD
Parameter
Digital supply voltage
Unit
Min
Typ
Max
3.0
3.3
3.6
V
IDD
Digital supply current(1)
–
60
–
µA
IDDL
Digital dynamic supply
current (CLK1 freq =
1 MHz)(2)
–
900
–
µA
IDD
Digital supply current at
VIH = 2.0 V
–
80
–
µA
VP
DC power output positive
supply voltage
+10
–
–
V
VN
DC power output negative
supply voltage
–
–
-10
V
Voltage gap Vp-Vn
20
–
80
V
Power output supply current
(steady outputs)
–
–
500
µA
VP-VN
IPPH
1. For 3.3V CMOS input logic levels (0 or 3.3 V)
2. All input data is switched at 0.5 MHz rate.
Table 7.
Electrical characteristics - OUT1 to OUT480
Value
Symbol
Parameter
Unit
Min
Typ
Max
Vpouth
Power output high level
(voltage drop versus VP)
at Ipouth = -20 mA and VP =
30 V
–
4
–
V
Vpoutl
Power output low level at Ipoutl
= +20 mA, VN=-45 V
–
6
–
V
Vdouth
Output upper diode voltage
drop at Idouth = +30 mA
–
1
2
V
Vdoutl
Output lower diode voltage
drop at Idoutl = -30 mA
-2
-1
–
V
Doc ID 018939 Rev 1
11/27
Electrical characteristics
Table 8.
STV7623
Electrical characteristics - standard mode,
TTL/LVCMOS inputs: CLK, DIR, blank, POL, STV1, STV2, length, justify
Value
Symbol
Parameter
Unit
Min
Typ
Max
VIH
High level input voltage
1.2
–
DVDD
V
VIL
Low level input voltage
DGND
–
0.6
V
VOH
High level output voltage
IOH = 200 µA
DVDD-0.3
–
DVdd
V
VOL
Low level output voltage
IOH = 200 µA
DGND
–
DGND+0.3
V
IIH
High level input current
(VIH ≥ 2.0 V)
-1
–
1
µA
IIL
Low level input current
(VIL = 0 V)
-1
–
1
µA
Figure 6.
Output test configuration
VP
VP
933
21
933
2))
9GRXWK
,GRXWK 287Q
2))
966396668%
VN
2XWSXWVLQNLQJFXUUHQWLV
FRQVLGHUHGDVSRVLWLYH
,GRXWO 21
287Q
9GRXWO
966396668%
VN
2XWSXWVRXUFLQJFXUUHQWLV
FRQVLGHUHGDVQHJDWLYH
!-6
12/27
Doc ID 018939 Rev 1
STV7623
Electrical characteristics
Figure 7.
Supply voltage (VP,VN) setting examples
VP
VP
VP
VP
VP
VP > 10V
0V = DGND
VN < -10V
VN
VN
VN
VP-VN < 80V
VP > 10V
VN < -10V
VN
VN
5.2
AC characteristics
DVDD = 3.3 V to 3.6 V, Tamb = -20°C to +85°C, input signal edge maximum rise and fall times
(tr, tf) = 3 ns load condition: 68 pF, 3.9 kΩ, 333 pF.
Table 9.
AC timing requirements
Value
Symbol
Parameter
tCLK
Data clock period
FCLK
Max clock frequency
Unit
Min
Typ
Max
0.1
–
–
µs
–
200k
1M/10M(1)(2)
Hz
tWHCLK
Duration of clock pulse at
high level
400, 40(2)
–
–
ns
tWLCLK
Duration of clock pulse at
low level
400, 40(2)
–
–
ns
tSDAT
Input data set-up time before
low-to-high clock transition
25
–
–
ns
tHDAT
Input data hold-time after
low-to-high clock transition
25
–
–
ns
1. If the digital inputs are 3.3V +/-10%, max clock frequency can be 10 MHz
2. Output blanked during data shift.
Test condition: 25 °C ambient, VP = +30, VN = -45 V, DVDD = 3.3 V.
Doc ID 018939 Rev 1
13/27
Electrical characteristics
5.3
STV7623
Timing requirements
DVDD = 3.3 V, VP = +30 V, VN = -45 V, Tamb = 25 °C, Fclk= 1 MHz, VILmax = 0.2 × DVDD,
VIHmin = 0.8 × DVDD
Table 10.
AC timing characteristics
Value
Symbol
14/27
Parameter
Unit
Min
Typ
Max
tPHL1
tPLH1
Delay of power output change
after CLK transition
- High to low
- Low to high
–
100
–
ns
tPHL2
tPLH2
Delay of power output change
after POL transition
- High to low
- Low to high
–
100
–
ns
tPHL3
tPLH3
Delay of power output change
after BLANK transition
- High to low
- Low to high
–
100
–
ns
Doc ID 018939 Rev 1
STV7623
6
Packing information
Packing information
Figure 8.
Tray (top view)
("1.4.%
Doc ID 018939 Rev 1
15/27
Packing information
Figure 9.
STV7623
Tray (bottom view)
("1.4.%
16/27
Doc ID 018939 Rev 1
STV7623
Packing information
Figure 10. Die orientation in tray
DIE IDENTIFICATION
Doc ID 018939 Rev 1
17/27
Pad information
7
STV7623
Pad information
Figure 11. Pad dimensions and coordinates (in µm)
OUT368
OUT113
Y
DIE FACE UP
X
(0,0)
VP
DVDD
DGND
VN
DGND
VN
DGND
DVDD
VP
OUT112
OUT1
VPP
DVDD
DGND
VN
STV1
LENGTH
DIR
JUSTIFY
CLK
BLANK
POL
DGND
POL
BLANK
CLK
DVDD
DIR
TEST
STV2
VN
DGND
DVDD
VP
OUT480
OUT369
VP
DVDD
DGND
VN
DGND
VN
DGND
DVDD
VP
The reference (x=0, y=0) is the centre of the die. Output pad pitch is 68 µm.
Stress relief pads are connected to VN (VSS).
Pad size:
●
Type 1: (north/south pads) 51 x 51 µm, 68 µm linear pitch, passivation opening 34 x 34
µm.
●
Type 2: (east/west) pads
●
Type 3: stress relief die corner pads
Alignment: 2 alignment marks, using 2 metals across the input long edge of the die.
Die size = 51 mm2, with special reticle/wafer map adjustments.
18/27
Doc ID 018939 Rev 1
STV7623
Pad information
*************************
*
*
*
PADS extraction
*
*
*
*************************
release 1.4
Mon Mar 01 18:49:21 SGT 2010
CHIP NAME:
STV7623_Top_ICPack
All dimensions are in Microns.
Pad Placement values correspond to each pad center coordinates.
Pad Placement Origin is the center of the die.
LEAD PAD NAME
PAD PLACEMENTS
PAD DIMENSIONS
X =
Y =
X =
Y =
Note: vss! == VN line
vss!
OUT<113>
OUT<114>
OUT<115>
OUT<116>
OUT<117>
OUT<118>
OUT<119>
OUT<120>
OUT<121>
OUT<122>
OUT<123>
OUT<124>
OUT<125>
OUT<126>
OUT<127>
OUT<128>
OUT<129>
OUT<130>
OUT<131>
OUT<132>
OUT<133>
OUT<134>
OUT<135>
OUT<136>
OUT<137>
OUT<138>
OUT<139>
OUT<140>
OUT<141>
OUT<142>
OUT<143>
OUT<144>
OUT<145>
OUT<146>
OUT<147>
OUT<148>
OUT<149>
OUT<150>
OUT<151>
OUT<152>
OUT<153>
OUT<154>
OUT<155>
OUT<156>
OUT<157>
OUT<158>
OUT<159>
OUT<160>
OUT<161>
OUT<162>
OUT<163>
OUT<164>
OUT<165>
OUT<166>
OUT<167>
OUT<168>
OUT<169>
OUT<170>
OUT<171>
OUT<172>
OUT<173>
OUT<174>
OUT<175>
OUT<176>
OUT<177>
OUT<178>
OUT<179>
OUT<180>
OUT<181>
OUT<182>
-8803.79
-8670.0
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-8534.0
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-8398.0
-8330.0
-8262.0
-8194.0
-8126.0
-8058.0
-7990.0
-7922.0
-7854.0
-7786.0
-7718.0
-7650.0
-7582.0
-7514.0
-7446.0
-7378.0
-7310.0
-7242.0
-7174.0
-7106.0
-7038.0
-6970.0
-6902.0
-6834.0
-6766.0
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-6630.0
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-6494.0
-6426.0
-6358.0
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-5202.0
-5134.0
-5066.0
-4998.0
-4930.0
-4862.0
-4794.0
-4726.0
-4658.0
-4590.0
-4522.0
-4454.0
-4386.0
-4318.0
-4250.0
-4182.0
-4114.0
-4046.0
-3978.0
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Doc ID 018939 Rev 1
19/27
Pad information
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Doc ID 018939 Rev 1
STV7623
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21/27
Pad information
22/27
STV7623
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Doc ID 018939 Rev 1
STV7623
Pad information
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Doc ID 018939 Rev 1
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Doc ID 018939 Rev 1
STV7623
Pad information
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Doc ID 018939 Rev 1
25/27
Revision history
8
STV7623
Revision history
Table 11.
26/27
Document revision history
Date
Revision
17-Aug-2011
1
Changes
Initial release.
Doc ID 018939 Rev 1
STV7623
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27/27