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 5817 ADDRESSABLE 28-LINE DECODER/DRIVER
5817
ADDRESSABLE 28-LINE DECODER/DRIVER
Intended for use in ink-jet printer applications, the A5817SEP addressable 28-line decoder/driver combines low-power CMOS inputs and logic with 28 high-current, high-voltage bipolar outputs. A 4-to-14 line decoder determines the selected output driver (n) in each 14-driver bank. Two independent output enable inputs (active low) then provide the final decoding to activate 1- or 2-of-28 outputs (OUTAn and/or OUTBn). Special internal circuitry is programmed at the time of manufacture to adjust the output pulse timing and thereby the energy the device delivers to the ink-jet print head. The CMOS inputs cause minimal loading and are compatible with standard CMOS, PMOS, and NMOS logic. Use with TTL or DTL circuits may require appropriate pull-up resistors to ensure an input logic high. The internal CMOS logic operates from a 5 V supply. A CHIP ENABLE function is provided to lock out the drivers during system power up. The 28 bipolar power outputs are open-collector 30 V Darlington drivers capable of sinking 500 mA at ambient temperatures up to 85C. The A5817SEP is furnished in a 44-lead plastic chip carrier (quad pack) for minimum-area, surface-mount applications.
Data Sheet 26186.20
OUTPUT ENABLE B
LOGIC SUPPLY
CHIP ENABLE
IN D (MSB)
GND
43
GND
IN C
IN B
42
41
IN A (LSB)
OUT B0
OUTB1 OUTB2 OUTB3 OUTB4 OUTB5 OUTB6 OUTB7 OUTB8 OUTB9 GND IC
7 8 9 10 11 12 13 14 15 16 17
ABSOLUTE MAXIMUM RATINGS
at TA = 25C
Output Voltage, VCE ............................. 30 V Logic Supply Voltage, VDD .................. 7.0 V Input Voltage Range, VIN ....................... -0.3 V to VDD + 0.3 V Output Current, IC ........................... 600 mA Package Power Dissipation, PD ..... 2.70 W* Operating Temperature Range, TA ................................. -20C to +85C Storage Temperature Range, TS .............................. -55C to +150C
*Derate at rate of 22 mW/C above TA = 25C.
Caution: CMOS devices have input static protection but are susceptible to damage when exposed to extremely high static electrical charges.
ty cl un dO. ro e P P nc E d e 7S er1 u fe 8 in e 6 tRA nr oo y cF b s in d D e w lac op he SR
39 38 37 36 35 34 33 32 31 OUTA0 OUTA1 OUTA2 OUTA3 OUTA4 OUTA5 OUTA6 OUTA7 OUTA8 OUTA9 GND
OUTPUT DRIVER BANK B 4-TO-14 LINE DECODER OUTPUT DRIVER BANK A
V
DD
44
40
6
5
4
3
2
1
OUTPUT ENABLE A
30
29
25
19
20
18
21
22
23
24
OUTB11
OUTB10
OUTB13
OUTA11
A13
26
OUT B12
OUTA12
A10
IC
IC
27
OUT
OUT
NC
28
Dwg. PP-050
FEATURES
s Controlled Characteristics for Ink-Jet Printers s Addressable Data Entry s 30 V Minimum V(BR)CEX
s CMOS, PMOS, NMOS Compatible Inputs s Low-Power CMOS Logic
Always order by complete part number: A5817SEP .
5817 ADDRESSABLE 28-LINE DECODER/DRIVER
FUNCTIONAL BLOCK DIAGRAM
OUTPUT ENABLE A OUTPUT ENABLE B OUT B11 OUT B12
OUTN
LOGIC SUPPLY
CHIP ENABLE
IN D (MSB)
IN A (LSB)
IN B
IN C
TURN-ON DELAY
4-TO-14 LINE DECODER
OUT A13
A2
OUT A12
A0
B0
OUT A1
OUT B1
B2
OUTA11
Dwg. FP-032
TYPICAL INPUT CIRCUIT
VDD
TYPICAL OUTPUT DRIVER
IN
Dwg. EP-021-7
Dwg. EP-010-1
115 Northeast Cutoff, Box 15036 Worcester, Massachusetts 01615-0036 (508) 853-5000 W Copyright (c) 1993, Allegro MicroSystems, Inc.
OUTB13
OUT
OUT
OUT
OUT
TURN-ON DELAY
5817 ADDRESSABLE 28-LINE DECODER/DRIVER
ELECTRICAL CHARACTERISTICS at TA = +25C, VDD = 5.0 V.
Limits Characteristic Output Drivers Output Leakage Current Output Saturation Voltage ICEX VCE(SAT) VCE = 30 V IOUT = 450 mA IOUT = 400 mA Output Breakdown Voltage Unclamped Inductive Load Current Turn-On Time Fall Time Turn-Off Time Rise Time Control Logic Logic Input Voltage VIN(1) VIN(0) Logic Input Current IIN(1) IIN(0) Input Resistance Supply Current RIN IDD(ON) IDD(OFF) Two Outputs ON All Drivers OFF, All Inputs = 0 V, OEA = OEB = VDD VIN = 5.0 V VIN = 0 V 3.5 -- -- -- 50 -- -- -- -- <1.0 <-1.0 -- 6.0 -- -- 0.8 100 -100 -- 10.0 600 V V A A k mA A V(BR)CEX -- tPHL tf tPLH tr RL = 56 VCC = 30 V, L = 3 H, RL = 56 , IL = 500 mA, Test Fig. VCC = 21 V, RL = 39 VCC = 21 V, RL = 39 VCC = 21 V, RL = 39 VCC = 21 V, RL = 39 125 -- 175 -- -- 0.85 0.8 30 <1.0 1.15 1.1 -- See Note 225 20 250 50 475 -- 400 -- 100 1.45 1.4 -- A V V V -- ns ns ns ns Symbol Test Conditions Min Typ Max Units
Note: Device will turn off and meet all specifications after test.
5817 ADDRESSABLE 28-LINE DECODER/DRIVER
OUTN
L
R V CC IL
Dwg. EP-044
UNCLAMPED INDUCTIVE LOAD CURRENT TEST FIGURE
A
INA-D
B
t ENABLE
OUTPUT ENABLE (A and/or B)
t PHL
90% OUTPUT VOLTAGE N 50% 10%
t OUT
t PLH
50%
90% 10%
tf
tr
Dwg. WP-017
(Logic Levels are VDD and Ground)
A. Minimum Data Active Time Before Output Enable (Data Set-Up Time) ............ 150 ns B. Minimum Data Hold Time After Output Enable (Data Hold Time) ..................... 250 ns
TIMING CONDITIONS
115 Northeast Cutoff, Box 15036 Worcester, Massachusetts 01615-0036 (508) 853-5000
5817 ADDRESSABLE 28-LINE DECODER/DRIVER
APPLICATIONS INFORMATION
This device is intended specifically for, although certainly not limited to, driving ink-jet print heads. In this application, a certain minimum energy (a function of load voltage and output pulse duration) is required for proper operation, while excessive energy will degrade the life of the print head. The output pulse duration (tOUT) is equal to tENABLE + tPLH - tPHL, where tPHL is adjusted during manufacture to compensate for variations in the output saturation voltage (VCE(SAT)). For the A5817SEP, the relationship between tOUT and tENABLE at TA = 25C is: tOUT = tENABLE ([VCE(SAT)(actual) - VCE(SAT)(typical)] x 330 ns) + 25 ns + 110 ns. For most applications, this will result in a drivercontribution-to-energy-error of less than 4%. A logic low on the CHIP ENABLE input will prevent the drivers from turning ON, regardless of the state of other inputs or the logic supply voltage. The CHIP ENABLE input has a slow response time and should not be used as a high-speed control line. For proper operation, all ground terminals should be connected to a common ground on the printed wiring board. The IC (Internal Connection) terminals are used to program the turn-on time of the device and MUST be left electrically unconnected (floating) for proper operation.
IND (MSB) 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1
DECODER TRUTH TABLE
INC INB INA (LSB) 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 N 0 1 2 3 4 5 6 7 8 9 10 11 12 13 ALL OFF ALL OFF
0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1
0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1
Depending on the four address inputs, the 4-to-14 line decoder selects one driver from each of the 14 output A and B banks of sink drivers according to the Decoder Truth Table. The state of the selected outputs is determined by the OUTPUT ENABLE inputs as shown in the Enable Truth Table.
ENABLE TRUTH TABLE
CHIP ENABLE 0 1 1 1 1
X = Irrelevant
OUTPUT ENABLEA X 1 0 1 0
OUTPUT ENABLEB X 1 1 0 0
OUTPUTS (OFF unless otherwise specified. For the value of N see the Decoder Truth Table) ALL OFF ALL OFF OUTAN ON OUTBN ON OUTAN ON, OUTBN ON
5817 ADDRESSABLE 28-LINE DECODER/DRIVER
Dimensions in Inches (for reference only)
28 18
29 0.319 0.291 0.021 0.013 0.695 0.685 0.656 0.650 0.319 0.291 0.050
BSC INDEX AREA
17
0.032 0.026
39
7
40 0.020
MIN
44
1
2
6
0.656 0.650 0.695 0.685
Dwg. MA-005-44A in
0.180 0.165
Dimensions in Millimeters (controlling dimensions)
28 18
29 8.10 7.39 0.533 0.331 17.65 17.40 16.662 16.510
INDEX AREA
17
0.812 0.661
8.10 7.39 1.27
BSC
39
7
40 0.51
MIN
44 16.662 16.510
1
2
6
4.57 4.20
17.65 17.40
Dwg. MA-005-44A mm
NOTES: 1. Exact body and lead configuration at vendor's option within limits shown. 2. Lead spacing tolerance is non-cumulative.
Allegro MicroSystems, Inc. reserves the right to make, from time to time, such departures from the detail specifications as may be required to permit improvements in the design of its products. The information included herein is believed to be accurate and reliable. However, Allegro MicroSystems, Inc. assumes no responsibility for its use; nor for any infringements of patents or other rights of third parties which may result from its use.
115 Northeast Cutoff, Box 15036 Worcester, Massachusetts 01615-0036 (508) 853-5000
This datasheet has been downloaded from: www..com Datasheets for electronic components.


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