A2559 [ALLEGRO]

PROTECTED QUAD POWER DRIVER; 受保护QUAD功率驱动器
A2559
型号: A2559
厂家: ALLEGRO MICROSYSTEMS    ALLEGRO MICROSYSTEMS
描述:

PROTECTED QUAD POWER DRIVER
受保护QUAD功率驱动器

驱动器
文件: 总8页 (文件大小:120K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
2559  
PROTECTED  
QUAD POWER DRIVER  
Providing improved output current limiting, the UDK, UDN, and  
UDQ2559B, EB, and LB quad power drivers combine AND logic  
gates and high-current bipolar outputs with complete output protection.  
Each of the four outputs will sink 700 mA in the on state. The outputs  
have a minimum breakdown voltage (load dump) of 60 V and a  
sustaining voltage of 40 V. The inputs are compatible with TTL and  
5 V CMOS logic systems.  
UDx2559LB  
UDx2559B  
16  
1
Over-current protection for each channel has been designed into  
these devices and is activated at approximately 1 A. It protects each  
output from short circuits with supply voltages up to 25 V. When an  
output current trip point is reached, that output stage is driven linearly  
resulting in a reduced output current level. If an over-current or short-  
circuit condition continues, the thermal-limiting circuits will first sense  
the rise in junction temperature and then the rise in chip temperature,  
further decreasing the output current. Under worst-case conditions,  
these devices will tolerate short circuits on all outputs, simultaneously.  
1
2
3
4
16  
IN  
IN  
OUT  
4
3
4
15  
14  
K
ENABLE  
GROUND  
GROUND  
OUT  
3
13  
12  
11  
10  
9
GROUND  
5
6
GROUND  
OUT  
2
V
CC  
7
8
K
IN  
IN  
2
1
These devices can be used to drive various loads including incan-  
descent lamps (without warming or limiting resistors) or inductive  
loads such as relays, solenoids, or dc stepping motors.  
OUT  
1
Dwg. PP-017-1  
The suffix ‘B’ devices are 16-pin power DIPs, the suffix ‘EB’  
devices are 28-lead power PLCCs and suffix ‘LB’ devices are 16-lead  
power SOICs for surface-mount applications. All three packages are  
of batwing construction to provide for maximum package power  
dissipation.  
ABSOLUTE MAXIMUM RATINGS  
at TA = 25°C  
Output Voltage, VOUT . . . . . . . . . 60 V  
Over-Current Protected Output Voltage,  
VOUT . . . . . . . . . . . . . . . . . . . 25 V  
Output Current, IOUT . . . . . . . . . 1.0 A*  
Supply Voltage, VCC .. . . . . . . . . 7.0 V  
Input Voltage, VIN or VEN . . . . . . 7.0 V  
FEATURES  
700 mA Output Current per Channel  
Package Power Dissipation,  
Independent Over-Current Protection for Each Driver  
Thermal Protection for Device and Each Driver  
Low Output-Saturation Voltage  
PD . . . . . . . . . . . . . . . . See Graph  
Operating Temperature Range, TA  
Prefix ‘UDK’ . . . . -40°C to +125°C  
Prefix ‘UDN’ . . . . . -20°C to +85°C  
Prefix ‘UDQ’ . . . . . -40°C to +85°C  
Integral Output Flyback Diodes  
Storage Temperature Range,  
TTL and 5 V CMOS Compatible Inputs  
Pin-Compatible With UDQ2543B/EB and UDK2549B/EB  
TS . . . . . . . . . . . . -55°C to +150°C  
*Outputs are peak current limited at  
approximately 1.0 A per driver. See  
Circuit Description and Application for  
further information.  
Always order by complete part number: a prefix to  
indicate operating temperature range + the basic four-digit  
part number + a suffix to indicate package style, e.g., UDK2559LB .  
2559  
PROTECTED  
QUAD POWER DRIVER  
FUNCTIONAL BLOCK DIAGRAM  
(1 of 4 Channels)  
K
V
CC  
OUT  
N
ENABLE  
IN  
N
THERMAL  
LIMIT  
<<1  
Dwg. FP-041  
UDx2559EB  
5
R
= 6°C/W  
θJT  
4
NC  
SUFFIX 'EB', R  
= 36°C/W  
θJA  
GROUND  
5
25  
24  
23  
22  
GROUND  
3
2
1
0
6
7
SUFFIX 'B', R  
= 43°C/W  
θJA  
8
9
21  
20  
19  
10  
11  
GROUND  
GROUND  
SUFFIX 'LB', R  
50  
= 90°C/W  
V
NC  
CC  
θJA  
75  
100  
125  
150  
25  
°
TEMPERATURE IN C  
Dwg. GP-004-2B  
Dwg. PP-019-1  
PD = (VOUT1 x IOUT1 x dc) + … + (VOUTn x IOUTn x dc)  
+ (VCC x ICC) = (TJ - TA)/RθJA  
115 Northeast Cutoff, Box 15036  
Worcester, Massachusetts 01615-0036 (508) 853-5000  
Copyright © 1995, 2002 Allegro MicroSystems, Inc.  
2559  
PROTECTED  
QUAD POWER DRIVER  
ELECTRICAL CHARACTERISTICS at TA = +25°C (prefix ‘UDN’) or over operating  
temperature range (prefix ‘UDK’ or ‘UDQ’), V = 4.75 V to 5.25 V  
CC  
Limits  
Max.  
Characteristic  
Symbol  
Test Conditions  
VOUT = 50 V, VIN = 0.8 V, VEN = 2.0 V  
OUT = 50 V, VIN = 2.0 V, VEN = 0.8 V  
Min.  
40  
2.0  
Typ.  
<1.0  
<1.0  
Units  
µA  
µA  
V
Output Leakage Current  
ICEX  
100  
100  
V
Output Sustaining Voltage  
Output Saturation Voltage  
VOUT(SUS)  
VOUT(SAT)  
IOUT = 100 mA, VIN = VEN = 0.8 V  
All Devices, IOUT = 100 mA  
300  
500  
700  
mV  
mV  
mV  
A
All Devices, IOUT = 400 mA  
B& EBPackages Only, IOUT = 600 mA  
Over-Current Trip  
Input Voltage  
ITRIP  
Logic 1  
Logic 0  
Logic 1  
Logic 0  
ICC  
1.0  
V
V
IN(1) or VEN(1)  
IN(0) or VEN(0)  
V
0.8  
40  
V
Input Current  
VIN(1) or VEN(1) = 2.0 V  
IN(0) or VEN(0) = 0.8 V  
µA  
µA  
mA  
mA  
V
V
-10  
80  
Total Supply Current  
Clamp Diode Forward Voltage  
All Outputs ON, VIN* = VEN = 2.0 V  
All Outputs OFF  
5.0  
1.7  
2.1  
50  
VF  
IF = 1.0 A  
IF = 1.5 A  
V
Clamp Diode Leakage Current  
Turn-On Delay  
IR  
VR = 50 V, D1 + D2 or D3 + D4  
IOUT = 500 mA  
µA  
µs  
µs  
°C  
tPHL  
tPLH  
TJ  
20  
IOUT = 500 mA  
20  
Thermal Limit  
165  
Typical Data is for design information only.  
Negative current is defined as coming out of (sourcing) the specified terminal.  
As used here, -100 is defined as greater than +10 (absolute magnitude convention) and the minimum is implicitly zero.  
* All inputs simultaneously, all other tests are performed with each input tested separately.  
www.allegromicro.com  
2559  
PROTECTED  
QUAD POWER DRIVER  
TYPICAL OUTPUT  
CHARACTERISTIC  
CIRCUIT DESCRIPTION AND APPLICATION  
INCANDESCENT LAMP DRIVER  
High incandescent lamp turn-ON/in-rush currents can contribute to  
poor lamp reliability and destroy semiconductor lamp drivers. Warm-  
ing or current-limiting resistors protect both driver and lamp but use  
significant power either when the lamp is OFF or when the lamp is  
ON, respectively. Lamps with steady-state current ratings up to 700  
mA can be driven by these devices without the need for warming  
(parallel) or current-limiting (series) resistors.  
NOT TO SCALE  
T
< 150°C  
J
When an incandescent lamp is initially turned ON, the cold fila-  
ment is at minimum resistance and would normally allow a 10x to 12x  
in-rush current. With these drivers, during turn-ON, the high in-rush  
current is sensed by the internal low-value sense resistor. Drive current  
to the output stage is then diverted by the shunting transistor, and the  
load current is momentarily limited to approximately 1.0 A. During  
this short transition period, the output current is reduced to a value  
dependent on supply voltage and filament resistance. During lamp  
warmup, the filament resistance increases to its maximum value, the  
output stage goes into saturation and applies maximum rated voltage to  
the lamp.  
T
= 165°C  
J
JUNCTION  
TEMP. LIMIT  
THERMAL  
GRADIENT  
SENSING  
I TRIP  
V
OUT(SAT)  
OUTPUT CURRENT, I  
OUT  
Dwg. GP-013  
INDUCTIVE LOAD DRIVER  
TYPICAL OUTPUT BEHAVIOR  
Bifilar (unipolar) stepper motors, relays, or solenoids can be driven  
directly. The internal flyback diodes prevent damage to the output transistors  
by suppressing the high-voltage spikes that occur when turning OFF an  
inductive load.  
NORMAL LAMP IN-RUSH CURRENT  
For rapid current decay (fast turn-OFF speeds), the use of Zener diodes  
will raise the flyback voltage and inprove performance. However, the peak  
NOT TO SCALE  
voltage must not exceed the specified minimum sustaining voltage (VSUPPLY  
+
VZ + VF VOUT(SUS)).  
FAULT CONDITIONS  
In the event of a shorted load, the load current will attempt to  
increase. As described above, the drive current to the affected output  
stage is reduced, causing the output stage to go linear, limiting the peak  
output current to approximately 1 A. As the power dissipation of that  
output stage increases, a thermal gradient sensing circuit will become  
operational, further decreasing the drive current to the affected output  
stage and reducing the output current to a value dependent on supply  
voltage and load resistance.  
THERMAL GRADIENT SENSING  
CURRENT LIMIT  
ITRIP  
Continuous or multiple overload conditions causing the chip  
temperature to reach approximately 165°C will result in an additional  
reduction in output current to maintain a safe level.  
0
TIME  
Dwg. WP-008  
If the fault condition is corrected, the output stage will return to its  
normal saturated condition.  
115 Northeast Cutoff, Box 15036  
Worcester, Massachusetts 01615-0036 (508) 853-5000  
2559  
PROTECTED  
QUAD POWER DRIVER  
UDx2559B  
Dimensions in Inches  
(controlling dimensions)  
0.020  
0.008  
NOTE 4  
9
16  
0.430  
MAX  
0.280  
0.240  
0.300  
BSC  
1
8
0.100  
BSC  
0.070  
0.005  
MIN  
0.045  
0.775  
0.735  
0.210  
MAX  
0.015  
MIN  
0.150  
0.115  
0.022  
0.014  
Dwg. MA-001-17A in  
Dimensions in Millimeters  
(for reference only)  
0.508  
0.204  
NOTE 4  
9
16  
10.92  
MAX  
7.11  
6.10  
7.62  
BSC  
1
8
2.54  
BSC  
1.77  
0.13  
MIN  
1.15  
19.68  
18.67  
5.33  
MAX  
0.39  
MIN  
3.81  
2.93  
0.558  
0.356  
Dwg. MA-001-17A mm  
NOTES: 1. Exact body and lead configuration at vendors option within limits shown.  
2. Lead spacing tolerance is non-cumulative  
3. Lead thickness is measured at seating plane or below.  
4. Webbed lead frame. Leads 4, 5, 12, and 13 are internally one piece.  
www.allegromicro.com  
2559  
PROTECTED  
QUAD POWER DRIVER  
UDx2559EB  
Dimensions in Inches  
(controlling dimensions)  
18  
12  
0.013  
0.021  
19  
11  
0.219  
0.191  
0.026  
0.032  
0.456  
0.450  
INDEX AREA  
0.495  
0.485  
0.050  
BSC  
0.219  
0.191  
25  
5
26  
28  
1
4
0.020  
0.456  
0.450  
MIN  
0.165  
0.180  
0.495  
0.485  
Dwg. MA-005-28A in  
Dimensions in Millimeters  
(for reference only)  
18  
12  
0.331  
0.533  
19  
11  
5.56  
4.85  
0.812  
0.661  
11.58  
11.43  
12.57  
INDEX AREA  
1.27  
BSC  
12.32  
5.56  
4.85  
25  
5
26  
28  
1
4
0.51  
MIN  
11.582  
11.430  
4.57  
4.20  
12.57  
12.32  
Dwg. MA-005-28A mm  
NOTES: 1. Exact body and lead configuration at vendors option within limits shown.  
2. Lead spacing tolerance is non-cumulative  
3. Webbed lead frame. Leads 511, and 1925 are internally one piece.  
115 Northeast Cutoff, Box 15036  
Worcester, Massachusetts 01615-0036 (508) 853-5000  
2559  
PROTECTED  
QUAD POWER DRIVER  
UDx2559LB  
Dimensions in Inches  
(for reference only)  
16  
9
0.0125  
0.0091  
0.419  
0.394  
0.2992  
0.2914  
0.050  
0.016  
0.020  
0.013  
1
2
0.050  
3
BSC  
0° TO 8°  
0.4133  
0.3977  
0.0926  
0.1043  
Dwg. MA-008-17A in  
0.0040 MIN.  
16  
Dimensions in Millimeters  
(controlling dimensions)  
9
0.32  
0.23  
10.65  
10.00  
7.60  
7.40  
1.27  
0.40  
0.51  
0.33  
1
2
1.27  
3
BSC  
0° TO 8°  
10.50  
10.10  
2.65  
2.35  
Dwg. MA-008-17A mm  
0.10 MIN.  
NOTES: 1. Exact body and lead configuration at vendors option within limits shown.  
2. Lead spacing tolerance is non-cumulative  
3. Webbed lead frame. Leads 4, 5, 12, and 13 are internally one piece.  
www.allegromicro.com  
2559  
PROTECTED  
QUAD POWER DRIVER  
The products described here are manufactured under one or more  
U.S. patents or U.S. patents pending.  
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 performance, reliability, or  
manufacturability of its products. Before placing an order, the user is  
cautioned to verify that the information being relied upon is current.  
Allegro products are not authorized for use as critical components  
in life-support devices or systems without express written approval.  
The information included herein is believed to be accurate and  
reliable. However, Allegro MicroSystems, Inc. assumes no responsi-  
bility for its use; nor for any infringement 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  

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