Advance Info
TF0211
Single 1.9A High-Speed, Low-Side
Gate Driver
Features
Description
E
fficient, low-cost solution for driving MOSFETs and
IGBTs
Wide supply voltage operating range: 4.5V to 18V
1.9A source / 1.8A sink output current capability
Non-inverting and inverting inputs (TF0211C)
Non-inverting input with Enable pin (TF0211E)
Fast propagation delays (35ns typical)
Fast rise and fall times (15ns typical)
Logic inputs (IN, IN*, and EN) 3.3V capability
Space saving SOT23-5L package
Extended temperature range: -40°C to +125°C
The TF0211 single high speed MOSFET and IGBT drivers are
capable of driving 1.9A of peak current in low side driving
configurations. The TF0211 logic inputs are compatible
with standard TTL and CMOS levels (down to 3.3V) to
interface easily with MCUs. The TF0211C provides noninverting and inverting inputs while the TF0211E provides
a non-inverting input with an EN control.
Because of fast propagation times of 35ns typical and rise/
fall times of 15ns typical the TF0211 is well suited for high
speed applications like switch mode power supplies and
PFC circuits. The TF0211 comes in a space-saving SOT23-5L
package and it operates over an extended -40 °C to +125
°C temperature range.
Applications
Switch mode power supplies
Line Drivers
DC-DC Converters
Motor Drive
SOT-23-5L
Typical Application
TO
LOAD
VCC
www.tfsemi.com
Mar. 2019
VCC
HIN
TF0211C/E
IN
R4
IN
OUT
IN*/EN
R4
IN*/EN
GND
Rev. 1.0
1
Advance Info
TF0211
Single 1.9A High-Speed, Low-Side Gate Driver
Pin Diagrams
VCC
1
GND
2
IN
3
5
4
OUT
IN*
TF0211C
VCC
1
GND
2
IN
3
5
OUT
4
EN
TF0211E
Top View: SOT23-5L
Pin Descriptions
PIN NAME
PIN NUMBER
PIN DESCRIPTION
VCC
1
Supply input
GND
2
Supply return
IN
3
Logic input, see input/output response table pg. 3
IN* (TF0211C)
4
Logic input, see input/output response table pg. 3
EN (TF0211E )
4
Enable input, see input/output response table pg. 3
Functional Block Diagram
IN*
TF0211C
Vcc
IN
OUT
GND
EN
TF0211E
Vcc
IN
OUT
GND
Mar. 2019
2
Advance Info
TF0211
Absolute Maximum Ratings (NOTE1)
VCC - Low-side fixed supply voltage...............................-0.3V to +22V
VOUT - Output voltage (OUT)........................-0.3V to VCC +0.3V
VIN - Logic input voltage (IN, IN*, EN)............-0.3V to VCC +0.3V
NOTE1 Stresses beyond those listed under “Absolute Maximum Ratings” may cause
permanent damage to the device. These are stress ratings only, and functional operation
of the device at these or any other conditions beyond those indicated in the operational
sections of the specifications is not implied. Exposure to absolute maximum rating
conditions for extended periods may affect device reliability.
Single 1.9A High-Speed, Low-Side Gate Driver
A
PD - Package power dissipation at TA ≤ 25 °C
SOT23-5L..........................................................................................TBD
SOT23-5L Thermal Resistance (NOTE2)
qJA ................................................................................................TBD °C/W
qJC................................................................................................TBD °C/W
TJ - Junction operating temperature........................................+150 °C
TL - Lead Temperature (soldering, 10 seconds).......................+300 °C
Tstg - Storage temerature ......................................................-55 to 150 °C
NOTE2 When mounted on a standard JEDEC 2-layer FR-4 board.
Recommended Operating Conditions
Symbol
Parameter
MIN
MAX
Unit
VCC
Supply voltage
4.5
18
V
VOUT
Output voltage (OUT)
0
VCC
V
VIN
Logic input voltage (IN, IN*, EN)
0
5
V
TA
Ambient temperature
-40
125
°C
Input/Output response table
Mar. 2019
IN
IN*(TF0211C)/
EN(TF0211E)
OUT (TF0211C)
OUT (TF0211E)
0
0
0
1
0
1
0
0
1
0
1
1
1
1
0
1
3
Advance Info
TF0211
Single 1.9A High-Speed, Low-Side Gate Driver
Electrical Characteristics (NOTE3)
VCC = 12V, TA = 25 °C , unless otherwise specified.
Symbol
Parameter
Conditions
MIN
TYP
2.4
1.6
MAX
Unit
DC Characteristics
VIH
Logic “1” input voltage
VIL
Logic “0” input voltage
IIN+
Logic “1” input bias current
VIN = 3V, VIN* /VEN = 0V
5
IIN-
Logic “0” input bias current
VIN = 0V, VIN* /VEN = 3V
2
VOH
High level output voltage, VBIAS - VO
25
VOL
Low level output voltage
25
ICCQ
VCC quiescent supply current
IO+
Output high short circuit pulsed current
1.9
IO-
Output low short circuit pulsed current
1.8
IRVS
Output reverse current withstand
250
1.3
VIN = 0V or 3V
50
0.8
V
mA
mV
100
mA
A
mA
Switching Characteristics
tr
Turn-on rise time
CL = 1000pF
15
25
ns
tf
Turn-off fall time
CL = 1000pF
15
25
ns
ton
Turn-on propogation delay
35
50
ns
toff
Turn-off propogation delay
35
55
ns
NOTE3 The VIN and IIN parameters are applicable to the logic input pin: IN, IN*, and EN. The VO and IO parameters are applicable to the output pin: OUT.
Timing Waveforms
50%
50%
IN/IN*/EN
tON
90%
tOFF
90%
90%
90%
10%
10%
OUT
10%
10%
tr=10%-90%
tr=90%-10%
Figure 1. Switching Time Waveform Definitions
Mar. 2019
4
Advance Info
TF0211
Package Dimensions (SOT23-5L)
Single 1.9A High-Speed, Low-Side Gate Driver
Please contact support@tfsemi.com for package availability.
Mar. 2019
5
Advance Info
TF0211
Single 1.9A High-Speed, Low-Side Gate Driver
Revision History
Rev.
Change
Owner
1.0
First release
Keith Spaulding
Date
3/20/2019
Important Notice
TF Semiconductor Solutions (TFSS) PRODUCTS ARE NEITHER DESIGNED NOR INTENDED FOR USE IN MILITARY AND/OR
AEROSPACE, AUTOMOTIVE OR MEDICAL DEVICES OR SYSTEMS UNLESS THE SPECIFIC TFSS PRODUCTS ARE SPECIFICALLY
DESIGNATED BY TFSS FOR SUCH USE. BUYERS ACKNOWLEDGE AND AGREE THAT ANY SUCH USE OF TFSS PRODUCTS WHICH TFSS
HAS NOT DESIGNATED FOR USE IN MILITARY AND/OR AEROSPACE, AUTOMOTIVE OR MEDICAL DEVICES OR SYSTEMS IS SOLELY AT
THE BUYER’S RISK.
TFSS assumes no liability for application assistance or customer product design. Customers are responsible for their products and
applications using TFSS products.
Resale of TFSS products or services with statements different from or beyond the parameters stated by TFSS for that product or
service voids all express and any implied warranties for the associated TFSS product or service. TFSS is not responsible or liable for
any such statements.
©2019 TFSS. All Rights Reserved. Information and data in this document are owned by TFSS wholly and may not be edited,
reproduced, or redistributed in any way without the express written consent from TFSS.
For additional information please contact support@tfsemi.com or visit www.tfsemi.com.
Mar. 2019
6
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