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  overview the lb1846m and lb1848m are 2-channel low-voltage, low saturation voltage type bidirectional motor driver ics that are optimal for use as 2-phase stepping motor drivers in printers, floppy disk drives, and cameras and other portable equipment. the output circuits are of the bipolar type, with pnp transistors in the upper side and npn transistors in the lower side, and they achieve low saturation output and low power characteristics despite being provided in a miniature package. both of these ic products can directly control a motor from signals from a microcontroller. the lb1846m is optimal for 1-2 phase excitation drive for 2-phase stepping motors using 4-input logic (in1, in2, in3, and in4) and the lb1848m is optimal for 2-phase excitation drive for 2-phase stepping motors using 3-input logic (ena, in1, and in2). another point is that these ics include built-in thermal shutdown circuits so that ic scorching or burning is prevented in advance even if the ic outputs are shorted. additionally, the mfp-10s miniature package used supports reduced-space mounting. features optimal for 1-2 phase excitation drive for 2-phase stepping motors (lb1846m) optimal for 2 phase excitation drive for 2-phase stepping motors (lb1848m) low saturation voltage. v o (sat) = 0.55 v typical at i o = 400 ma standby current: zero thermal shutdown circuit miniature package: mfp-10s (6.5 5.1 mm 2 ) through-current prevention circuit (lb1848m only) ?oft off?function that reduces power supply line noise when switching from drive to standby modes. (requires the use of one external capacitor.) (lb1848m only) no limitations on the magnitude relationship between the power supply voltage (v cc ) and the input voltage (v in ) package dimensions unit: mm 3086a-mfp10s monolithic digital ic ordering number : enn5339a 73099th (ot)/o3096ha (ot) no. 5339-1/8 low-voltage/low saturation voltage type bidirectional motor driver lb1846m, 1848m any and all sanyo products described or contained herein do not have specifications that can handle applications that require extremely high levels of reliability, such as life-support systems, aircraft? control systems, or other applications whose failure can be reasonably expected to result in serious physical and/or material damage. consult with your sanyo representative nearest you before using any sanyo products described or contained herein in such applications. sanyo assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters) listed in products specifications of any and all sanyo products described or contained herein. 1 10 5 6 0.55 1.8 max 1.0 0.35 5.1 0.15 6.4 1.5 0.1 4.4 5.15 0.625 sanyo: mfp10s [lb1846m, 1848m] http://semicon.sanyo.com/en/network
no. 5339-2/8 lb1846m, 1848m parameter symbol conditions ratings unit supply voltage v cc 2.5 to 7.5 v input high-level voltage v ih 2.0 to 7.5 v input low-level voltage v il ?.3 to +0.7 v allowable operating ranges at ta = 25c parameter symbol conditions ratings unit maximum supply voltage v cc max ?.3 to +8.0 v output voltage v out v cc + v sf v input voltage v in ?.3 to +8.0 v ground pin outflow current i gnd per channel 800 ma allowable power dissipation pd max1 independent ic 350 mw pd max2 when mounted * 870 mw operating temperature topr ?0 to +75 ? storage temperature tstg ?0 to +150 ? specifications absolute maximum ratings at ta = 25? note: *on the specified circuit board (a 114.3 76.2 1.5-mm 3 glass-epoxy printed circuit board) parameter symbol conditions ratings unit min typ max [lb1846m] current drain i cc 0 in1, 2, 3, 4 = 0 v 0.1 10 a i cc 1 in1, 3 = 3 v, in2, 4 = 0 v 30 40 ma v out 1 v in = 3 v or 0 v, v cc = 3 to 7.5 v, 0.27 0.4 v output saturation voltage i out = 200 ma v out 2 v in = 3 v or 0 v, v cc = 4 to 7.5 v, 0.55 0.8 v i out = 400 ma input current i in v in = 5 v 150 200 a [spark killer diode] reverse current i s (leak) 30 a forward voltage v sf i out = 400 ma 1.7 v [lb1848m] current drain i cc 0 ena = 0 v, v in = 3 v or 0 v 0.1 10 a i cc 1 ena = 3 v, v in = 3 v or 0 v 25 35 ma v out 1 ena = 3 v, v in = 3 v or 0 v, 0.27 0.4 v output saturation voltage v cc = 3 to 7.5 v, i out = 200 ma v out 2 ena = 3 v, v in = 3 v or 0 v, 0.55 0.8 v v cc = 4 to 7.5 v, i out = 400 ma input current 1 i in v in = 5 v 75 100 a input current 2 i ena ena = 5 v 85 110 a [spark killer diode] reverse current i s (leak) 30 a forward voltage v sf i out = 400 ma 1.7 v electrical characteristics at ta = 25?, v cc = 5.0 v note: the thermal shutdown circuit function values are design guarantees, and are not tested.
no. 5339-3/8 lb1846m, 1848m pin assignments
block diagrams [lb1846m] [lb1848m] note: when the ?oft off?function is used, a capacitor must be connected to the sof pin. if this function is not used, this pin must be left open with absolutely no signals or lines connected. notes on wiring and lines since large currents flow in the v cc and ground lines, oscillations may occur on these lines. the following points should be observed if such oscillations occur. (1) lower the line impedances by making them shorter and thicker. (2) attach capacitors close to the ic. (3) if the controller (cpu) is mounted on a separate printed circuit board, insert series resistors (of about 10 k ) between the controller outputs and this ic. no. 5339-4/8 lb1846m, 1848m
truth tables [lb1846m] note: 1. ?indicates a ?on? care?input. 2. if two high levels (h/h) are input to the in1/in2 pins with the timing shown in ? in the figure below, then the in2 input that arrived later will be ignored and the ic will function as though an h/l combination is applied to the in1/in2 pins. similarly, the timing shown in results in a l/h combination on the in1/in2 pins. no. 5339-5/8 lb1846m, 1848m in1 in2 in3 in4 out1 out2 out3 out4 notes l l l l off off off off standby h l l l h l off off h l h l h l h l l l h l off off h l l h h l l h h l 1-2 phase excitation l h l l l h off off l h l h l h l h l l l h off off l h h l l h h l l h h h the logic output for the first high-level h h input is produced. *2 [lb1848m] note: ?indicates a ?on? care?input. ena in1 in2 out1 out2 out3 out4 notes l off off off off standby l l h l h l h l h h l l h 2-phase excitation h h l h l h h l l h h l
sof pin (?oft off?function) operation [lb1848m only] the soft off function reduces power supply line noise due to the kickback current generated when the stepping motor drive mode is switched from drive to standby. the ?oft off?function provided by this ic operates when a capacitor (0.001 to 0.01 f) is connected between the sof pin and ground. (leave the sof pin open to disable the soft off function.) the waveforms for each pin are shown below. timing chart for stepping motor 2-phase excitation no. 5339-6/8 lb1846m, 1848m
no. 5339-7/8 lb1846m, 1848m
ps no. 5539-8/8 lb1846m, 1848m this catalog provides information as of july, 1999. specifications and information herein are subject to change without notice. specifications of any and all sanyo products described or contained herein stipulate the performance, characteristics, and functions of the described products in the independent state, and are not guarantees of the performance, characteristics, and functions of the described products as mounted in the customer? products or equipment. to verify symptoms and states that cannot be evaluated in an independent device, the customer should always evaluate and test devices mounted in the customer? products or equipment. sanyo electric co., ltd. strives to supply high-quality high-reliability products. however, any and all semiconductor products fail with some probability. it is possible that these probabilistic failures could give rise to accidents or events that could endanger human lives, that could give rise to smoke or fire, or that could cause damage to other property. when designing equipment, adopt safety measures so that these kinds of accidents or events cannot occur. such measures include but are not limited to protective circuits and error prevention circuits for safe design, redundant design, and structural design. in the event that any or all sanyo products (including technical data, services) described or contained herein are controlled under any of applicable local export control laws and regulations, such products must not be exported without obtaining the export license from the authorities concerned in accordance with the above law. no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, or any information storage or retrieval system, or otherwise, without the prior written permission of sanyo electric co., ltd. any and all information described or contained herein are subject to change without notice due to product/technology improvement, etc. when designing equipment, refer to the ?elivery specification for the sanyo product that you intend to use. information (including circuit diagrams and circuit parameters) herein is for example only; it is not guaranteed for volume production. sanyo believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties.


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