Part Number Hot Search : 
NT2903 MC100LV 01234 LA38B MAXIM LC66512 4S15W LT1059CN
Product Description
Full Text Search
 

To Download AP13120YA Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 AH266
High Voltage Hall Effect Latch Features
- On-chip Hall plate - Operating voltage: 4V~28V - Output current: 400mA(Continuous, 25oC) - Reverse protection diode only for chip reverse power connecting (Note) - Output protection Zener breakdown Vz=62V(Typ) - Package: SIP-4L
(Note) Protection diode only exists at power pin(1,4) output, not including pin (2,3).
General Description
AH266 is an integrated Hall sensor with output drivers designed for electronic commutation of brush-less DC motor applications. The device includes an on-chip Hall voltage generator for magnetic sensing, a comparator that amplifies the Hall voltage, and a Schmitt trigger to provide switching hysteresis for noise rejection, and complementary darlington open-collector drivers for sinking large current loads. An internal bandgap regulator is used to provide temperature compensated supply voltage for internal circuits and allows a wide operating supply range. If a magnetic flux density (B) is larger than operate point (Bop), DO turn on (low) and DOB turn off (high). The outputs state is latched prior to reach release point (Brp). if B< Brp, DO turn off and DOB turn on. AH266 is rated for operation over temperature range from -20oC to 85 oC and voltage range from 4V to 28V. The devices are available in low cost die forms or rugged 4 pin SIP packages.
Application
- Dual-coil Brush-less DC Motor - Dual-coil Brush-less DC Fan - Revolution Counting - Speed Measurement
Pin Assignment
4. GND 3. DOB 2. DO 1. VCC
Pin Configuration
Name VCC DO DOB GND Description Positive Power Supply Output Pin Output Pin Ground
Ordering Information
AH266 X - X X X - X
Wafer Body Blank or A~Z : if necessary to specify
Package P: SIP-4L
Lead L : Lead Free Blank: Normal
Packing Blank : Tube A : Taping
Magnetic Characteristics A or B
This datasheet contains new product information. Anachip Corp. reserves the rights to modify the product specification without notice. No liability is assumed as a result of the use of this product. No rights under any patent accompany the sale of the product.
Rev. 0.2 Jan 19, 2005 1/6
AH266
High Voltage Hall Effect Latch Block Diagram
VCC 1 DO
REG.
Hall Plate Amp
DOB
Typical Application Circuit
266
coil1
coil2
1 Vcc
2
3
4
Brush-less DC Fan
Note: This application circuit can't protect reverse coil current if power is connecting reverse.
Anachip Corp. www.anachip.com.tw 2/6
Rev 0.2 Jan 19, 2005
AH266
High Voltage Hall Effect Latch Absolute Maximum Ratings (at Ta = 250C )
Parameter Supply voltage Output "OFF " voltage Output "ON" current Magnetic flux density Operating temperature range Storage temperature range Power dissipation (Note 2) Thermal Resistance
Note 1: Io(con) is 150 mA at 85C 2: See Performance Characteristic for other conditions
Symbol VCC Vout (off) Io (con) Io (hold) Io (peak) B Top Tstg PD jc
Rating 28 28 400 (Note 1) 500 700 Unlimited -20~+85 -65~+150 550 227
Unit V V mA mA mA Gauss C C mW C/W
Electrical Characteristics ( Ta = 25C )
Characteristic Supply Voltage Output Zener Breakdown Output Saturation Voltage Output Leakage Current Supply Current Output Rise Time Output Falling Time Switch Time Differential Symbol Vcc Vz Vce(sat) Icex Icc tr tf t Conditions Output Turn off Vcc=24V, Ic=400mA Vce=24V, Vcc=24V Vcc=24V, Output Open Vcc=24V, RL=820, CL=20pF Vcc=24V, RL=820, CL=20pF Vcc=24V, RL=820, CL=20pF Min 4 54 Typ 62 1.1 < 0.1 5 1.0 1.0 3.0 Max 28 70 1.5 10 10 5 1.5 10 Unit V V V A mA s s s
Test Circuit
24V
266
Vout1(DO)
RL1
Vout2(DOB)
RL2 RL1=RL2=820 Ohm CL1=CL2=20 pF CL1 CL2
Anachip Corp. www.anachip.com.tw 3/6
Rev 0.2 Jan 19, 2005
AH266
High Voltage Hall Effect Latch Magnetic Characteristics (Ta=+25oC)
(1mT = 10 Gauss) A grade Characteristic Operate Point Release Point Hysteresis B grade Characteristic Operate Point Release Point Hysteresis Symbol Bop Brp Bhy Symbol Bop Brp Bhy Min. 10 -70 Min. -100 Typ. 80 Typ. 80 Max. 70 -10 Max. 100 Unit Gauss Gauss Gauss Unit Gauss Gauss Gauss
DOB
Output Voltage in Volts Output Voltage in Volts
DO
Turn on
Bhy
Turn off
Turn off
Bhy
Turn on
Vsat Brp 0 Bop Magnetic Flux Density in Gauss
Vsat Brp 0 Bop Magnetic Flux Density in Gauss
Performance Characteristics (SIP-4L)
Ta (C) Pd (mW) Ta (C) Pd (mW)
Pd (mW ) 600 500 400 300 200 100 0 0 15 30 45 60 75
25 550 105 198
50 440 110 176
60 396 115 154
70 352 120 132
80 308 125 110
85 286 130 88
90 264 135 66
95 242 140 44
100 220 150 0
Power Dissipation Curve
85 90
105
120
135
150 Ta (C)
Anachip Corp. www.anachip.com.tw 4/6
Rev 0.2 Jan 19, 2005
AH266
High Voltage Hall Effect Latch Operation Characteristics
DO ( Output Voltage ) S
Marking side
Vcc
High
Vd Bhy
Low
N ( SIP4 ) N
Vsat Brp 0 Bop S
( Magnetic flux density )
Marking Information
( Front View ) Part Number
266
X XX X X
Blank: normal L: Lead Free Package ID Code: A ~ Z Nth week: 01~52 Year: "1" = 2001 "2" = 2002
Anachip Corp. www.anachip.com.tw 5/6
Rev 0.2 Jan 19, 2005
AH266
High Voltage Hall Effect Latch Package Information
Active Area Depth
Marking side
1.046mm
Package Sensor Location
1.971mm
0.7mm
1
2
3
4
Package Dimension
5 -7 1.55mm +/-0.1mm 1.03mm +/-0.1 0.30mm +/-0.1mm 3 -5
o
o
o
14.25mm +/-1.25mm 0.38mm +/-0.03mm
o
3.65mm +/-0.1mm
0.46mm +/-0.03mm
0.41mm +/-0.03mm 3.81mm +/-0.03mm
5 -7
o
o
3 -5
o
o
5.22mm +/-0.1mm 4.20mm +/-0.1mm
0.2mm Max. 1.42mm+/-0.1mm
1.27mm +/-0.03mm
Anachip Corp. www.anachip.com.tw 6/6
Rev 0.2 Jan 19, 2005


▲Up To Search▲   

 
Price & Availability of AP13120YA

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X