Product Information

TMC246A-PA

TMC246A-PA electronic component of Analog Devices

Datasheet
Integrated circuit: driver/sensor; 1500mA; Channels:1; PQFP44

Manufacturer: Analog Devices
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

1: USD 15.4193 ea
Line Total: USD 15.42

0 - Global Stock
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
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Ships to you between Thu. 25 Apr to Wed. 01 May

MOQ : 1
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TMC246A-PA
Analog Devices

1 : USD 17.5578
10 : USD 15.3956
25 : USD 14.2405
100 : USD 13.0858
250 : USD 11.9312
500 : USD 11.1614

0 - Global Stock


Ships to you between Thu. 25 Apr to Wed. 01 May

MOQ : 1
Multiples : 1

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TMC246A-PA
Analog Devices

1 : USD 18.3538
10 : USD 14.5782
50 : USD 12.9701
200 : USD 11.9779
500 : USD 11.1904
900 : USD 10.3871

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Ships to you between Thu. 25 Apr to Wed. 01 May

MOQ : 1
Multiples : 1

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TMC246A-PA
Analog Devices

1 : USD 11.367
3 : USD 10.405

     
Manufacturer
Product Category
Output Current
Case
Mounting
Kind Of Integrated Circuit
Integrated Circuit Features
Interface
Protection
Type Of Integrated Circuit
Number Of Channels
Number Of Outputs
Operating Voltage
Operating Temperature
Frequency
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TMC246 / TMC246A DATA SHEET (V2.06 / 2011-Aug-10) 1 TMC246/A DATA SHEET High current microstep stepper motor driver with stallGuard, protection / diagnostics and SPI Interface TRINAMIC Motion Control GmbH & Co KG Hamburg, Germany WWW.TRINAMIC.COM Features The TMC246 / TMC246A (1) is a dual full bridge driver IC for bipolar stepper motor control applications. The integrated unique sensorless stall detection (pat. pend.) stallGuard makes it a good choice for applications, where a reference point is needed, but where a switch is not desired. Its ability to predict an overload makes the TMC246 an optimum choice for drives, where a high reliability is desired. The TMC246 is realized in a HVCMOS technology combined with Low-RDS-ON high efficiency MOSFETs (pat. pend.). It allows driving a coil current of up to 1500mA even at high environment temperatures. Its low current consumption and high efficiency together with the miniature package make it a perfect solution for embedded motion control and for battery powered devices. Internal DACs allow microstepping as well as smart current control. The device can be controlled by a i serial interface (SPI ) or by analog / digital input signals. Short circuit, temperature, undervoltage and overvoltage protection are integrated. Sensorless stall detection stallGuard and load measurement integrated Control via SPI with easy-to-use 12 bit protocol or external analog / digital signals Short circuit, overvoltage and over temperature protection integrated Status flags for overcurrent, open load, over temperature, temperature pre-warning, undervoltage Integrated 4 bit DACs allow up to 16 times microstepping via SPI (can be expanded to 64 microsteps) Any resolution via analog control Mixed decay feature for smooth motor operation Slope control user programmable to reduce electromagnetic emissions Chopper frequency programmable via a single capacitor or external clock Current control allows cool motor and driver operation 7V to 34V motor supply voltage (A-type) Up to 1500mA output current and more than 800mA at 105C 3.3V or 5V operation for digital part Low power dissipation via low RDS-ON power stage Standby and shutdown mode available (1) The term TMC246 in this datasheet always refers to the TMC246A and the TMC246. The major differences in the older TMC246 are explicitly marked with non-A-type. The TMC246A brings a number of enhancements and is fully backward compatible to the TMC246. Copyright 2005, TRINAMIC Motion Control GmbH & Co KG TMC246 / TMC246A DATA SHEET (V2.06 / 2011-Aug-10) 2 FEATURES.............................................................................................................................................. 1 PINNING .................................................................................................................................................. 5 PACKAGE CODES.................................................................................................................................... 5 PQFP44 DIMENSIONS ............................................................................................................................ 6 APPLICATION CIRCUIT / BLOCK DIAGRAM ....................................................................................... 7 PIN FUNCTIONS ...................................................................................................................................... 7 LAYOUT CONSIDERATIONS ................................................................................................................ 8 CONTROL VIA THE SPI INTERFACE ................................................................................................... 9 SERIAL DATA WORD TRANSMITTED TO TMC246 ....................................................................................... 9 SERIAL DATA WORD TRANSMITTED FROM TMC246 .................................................................................. 9 TYPICAL WINDING CURRENT VALUES ..................................................................................................... 10 BASE CURRENT CONTROL VIA INA AND INB IN SPI MODE ....................................................................... 10 CONTROLLING THE POWER DOWN MODE VIA THE SPI INTERFACE ........................................................... 10 OPEN LOAD DETECTION ........................................................................................................................ 11 STANDBY AND SHUTDOWN MODE........................................................................................................... 11 POWER SAVING .................................................................................................................................... 11 STALL DETECTION ............................................................................................................................. 12 USING THE SENSORLESS LOAD MEASUREMENT ...................................................................................... 12 IMPLEMENTING SENSORLESS STALL DETECTION ..................................................................................... 12 PROTECTION FUNCTIONS ................................................................................................................. 13 OVERCURRENT PROTECTION AND DIAGNOSIS ........................................................................................ 13 OVERTEMPERATURE PROTECTION AND DIAGNOSIS................................................................................. 13 OVERVOLTAGE PROTECTION AND ENN PIN BEHAVIOR ............................................................................ 13 CHOPPER PRINCIPLE ......................................................................................................................... 14 CHOPPER CYCLE / USING THE MIXED DECAY FEATURE............................................................................ 14 ADAPTING THE SINE WAVE FOR SMOOTH MOTOR OPERATION .................................................................. 15 BLANK TIME ......................................................................................................................................... 15 BLANK TIME SETTINGS .......................................................................................................................... 15 CLASSICAL NON-SPI CONTROL MODE (STAND ALONE MODE) .................................................. 16 PIN FUNCTIONS IN STAND ALONE MODE.................................................................................................. 16 INPUT SIGNALS FOR MICROSTEP CONTROL IN STAND ALONE MODE .......................................................... 16 CALCULATION OF THE EXTERNAL COMPONENTS ....................................................................... 17 SENSE RESISTOR ................................................................................................................................. 17 EXAMPLES FOR SENSE RESISTOR SETTINGS .......................................................................................... 17 HIGH SIDE OVERCURRENT DETECTION RESISTOR R ............................................................................ 17 SH MAKING THE CIRCUIT SHORT CIRCUIT PROOF ......................................................................................... 18 OSCILLATOR CAPACITOR ...................................................................................................................... 19 TABLE OF OSCILLATOR FREQUENCIES.................................................................................................... 19 PULLUP RESISTORS ON UNUSED INPUTS ................................................................................................ 19 POWER SUPPLY SEQUENCING CONSIDERATIONS .................................................................................... 19 SLOPE CONTROL RESISTOR ................................................................................................................. 20 EXAMPLE FOR SLOPE SETTINGS ............................................................................................................ 20 ABSOLUTE MAXIMUM RATINGS ....................................................................................................... 21 ELECTRICAL CHARACTERISTICS ..................................................................................................... 21 OPERATIONAL RANGE .......................................................................................................................... 21 DC CHARACTERISTICS ......................................................................................................................... 22 AC CHARACTERISTICS ......................................................................................................................... 23 THERMAL PROTECTION ......................................................................................................................... 23 Copyright 2005, TRINAMIC Motion Control GmbH & Co KG

Tariff Desc

8542.39.23 No ..Linear/analogue and peripheral integrated circuits, timers, voltage regulators, A/D and D/A converters, telecommunication and modem integrated circuits, other than board level products Free

Electronic integrated circuits- Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
AD4
ANALOG DEVICES
Analog Devices Hittite
ANALOG DEVICES (LINEAR TECHNOLOGY)
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ANALOG DEVICES (TRINAMIC)
Analog Devices / Hittite
Analog Devices / Linear Technology
Analog Devices Inc
Analog Devices Inc.
Analog Devices, Inc.
DA4
Dallas
DALLAS / MAXIM
Dallas Semiconductor (VA)
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LT
LT4
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MAXIM INTEGRATED / ANALOG DEVICES
Maxim Integrated Products
MAXIM-DALLAS
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Technology
Trinamic
TRINAMIC / ANALOG DEVICES
Trinamic Motion Control
Trinamic Motion Control GmbH

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