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PDF ATA6827 Data sheet ( Hoja de datos )

Número de pieza ATA6827
Descripción High Temperature Triple Half-Bridge Driver
Fabricantes ATMEL Corporation 
Logotipo ATMEL Corporation Logotipo



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No Preview Available ! ATA6827 Hoja de datos, Descripción, Manual

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Features
Supply Voltage up to 40V
RDSon Typically 0.8at 25°C, Maximum 1.8at 200°C
Up to 1.0A Output Current
Three Half-bridge Outputs Formed by Three High-side and Three Low-side Drivers
Capable to Switch all Kinds of Loads Such as DC Motors, Bulbs, Resistors, Capacitors
and Inductors
No Shoot-through Current
Outputs Short-circuit Protected
Overtemperature Protection for Each Switch and Overtemperature Prewarning
Undervoltage Protection
Various Diagnostic Functions Such as Shorted Output, Open-load, Overtemperature
and Power-supply Fail Detection
Serial Data Interface, Daisy Chain Capable, up to 2 MHz Clock Frequency
QFN18 Package
1. Description
The ATA6827 is a fully protected driver IC specially designed for high temperature
applications. In mechatronic solutions, for example turbo charger or exhaust gas recir-
culation systems, many flaps have to be controlled by DC motor driver ICs which are
located very close to the hot engine or actuator where ambient temperatures up to
150°C are usual. Due to the advantages of SOI technology junction temperatures up
to 200°C are allowed. This enables new cost effective board design possibilities to
achieve complex mechatronic solutions.
The ATA6827 is a fully protected Triple Half-Bridge to control up to 3 different loads by
a microcontroller in automotive and industrial applications. Each of the 3 high-side and
3 low-side drivers is capable to drive currents up to 1.0A. The drivers are internally
connected to form 3 half-bridges and can be controlled separately from a standard
serial data interface. Therefore, all kinds of loads such as bulbs, resistors, capacitors
and inductors can be combined. The IC design especially supports the application of
H-bridges to drive DC motors.
Protection is guaranteed regarding short-circuit conditions, overtemperature and und-
ervoltage. Various diagnostic functions and a very low quiescent current in standby
mode opens a wide range of applications. Automotive qualification gives added value
and enhanced quality for exacting requirements of automotive applications.
High
Temperature
Triple
Half-bridge
Driver with
Serial Input
Control
ATA6827
Preliminary
DataSheet4 U .com
4912C–AUTO–10/06

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ATA6827 pdf
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ATA6827 [Preliminary]
Table 3-2. Output Data Protocol
Output (Status)
Bit
Register
Function
0 TP Temperature prewarning: high = warning
1
Status LS1
High = output is on, low = output is off; not affected by SRR
2
Status HS1
High = output is on, low = output is off; not affected by SRR
3
Status LS2
Description see LS1
4
Status HS2
Description see HS1
5
Status LS3
Description see LS1
6
Status HS3
Description see HS1
7 n. u. Not used
8 n. u. Not used
9 n. u. Not used
10 n. u. Not used
11 n. u. Not used
12 n. u. Not used
Short circuit detected: set high when at least one high-side or low-side
13
SCD
switch is switched off by a short-circuit condition. Bits 1 to 6 can be used
to detect the shorted switch.
Open load detected: set high, when at least one active high-side or
14
OPL
low-side switch sinks/sources a current below the open load threshold
current.
15 PSF Power-supply fail: undervoltage at pin VS detected
After power-on reset, the input register has the following status:
Bit 15 Bit 14 Bit 13 Bit 12 Bit 11 Bit 10 Bit 9 Bit 8 Bit 7
(OCS)
xx H x x x x x x
Bit 6
(HS3)
L
Bit 5
(LS3)
L
Bit 4
(HS2)
L
Bit 3
(LS2)
L
Bit 2 Bit 1
(HS1) (LS1)
LL
Bit 0
(SRR)
L
The following patterns are used to enable internal test modes of the IC. It is not recommended to use these patterns during
normal operation.
Bit 15 Bit 14 Bit 13 Bit 12 Bit 11 Bit 10 Bit 9 Bit 8 Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0
(OCS)
(HS3) (LS3) (HS2) (LS2) (HS1) (LS1) (SRR)
HH H H H L L L L L L L L LL L
HH H L L H H L L L L L L LL L
HH H L L L L H H L L L L LL L
4912C–AUTO–10/06
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ATA6827 arduino
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ATA6827 [Preliminary]
9. Serial Interface – Timing
No. Parameters
Test Conditions Pin Timing Chart No.(1) Symbol Min. Typ. Max. Unit Type*
8.1
DO enable after CS
falling edge
CDO = 100 pF
7
1
tENDO
200 ns
D
8.2
DO disable after CS
rising edge
CDO = 100 pF
7
2
tDISDO
200 ns
D
8.3 DO fall time
CDO = 100 pF
7
-
tDOf
100
8.4 DO rise time
CDO = 100 pF
7
-
tDOr
100
8.5 DO valid time
CDO = 100 pF
7
10
tDOVal
200
8.6 CS setup time
3
4
tCSSethl
225
8.7 CS setup time
3
8
tCSSetlh
225
8.8 CS high time
39
tCSh 500
8.9 CLK high time
55
tCLKh
225
8.10 CLK low time
56
tCLKl
225
8.11 CLK period time
5-
tCLKp
500
8.12 CLK setup time
5
7
tCLKSethl
225
8.13 CLK setup time
5
3
tCLKSetlh
225
8.14 DI setup time
4 11
tDIset
40
8.15 DI hold time
4 12
tDIHold
40
*) Type means: A =100% tested, B = 100% correlation tested, C = Characterized on samples, D = Design parameter
Note: 1. Serial Interface Timing with Chart Numbers
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
D
D
D
D
D
D
D
D
D
D
D
D
D
4912C–AUTO–10/06
DataSheet4 U .com
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