Part Number Hot Search : 
NM27C010 001000 0402C CP23017 MBR3015 0160B TB7102AF CP23017
Product Description
Full Text Search
 

To Download IL494A Datasheet File

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


  Datasheet File OCR Text:
 TECHNICAL DATA
PWM Control Circuit
The IL494 incorporates on a single monolithic chip all the functions required in the construction of a pulse-width-modulation control circuit. Designed primarily for power supply control, the IL494 contains an onchip 5-volt regulator, two error amplifiers, adjustable oscillator, deadtime control comparator, pulse-steering flip-flop, and output-control circuitry. The uncommitted output transistors provide either commonemitter or emitter-follower output capability. Push-pull or single-ended output operation may be selected through the output-control function. The architecture of the IL494 prohibits the possibility of either output being pulsed twice during push-pull operation. * * * * * * Complete PWM Power Control Circuitry Uncommitted Outputs for 200 mA Sink or Source Output Control Selects Single-Ended or Push-Pull Operation Internal Circuitry Prohibits Double Pulse at Either Output Internal Regulator Provides a Stable 5 V Reference Supply Variable Dead-Time Provides Control Over Total Range
IL494A
ORDERING INFORMATION IL494N Plastic IL494D SOIC TA = -20C to 85 C for all packages
PIN ASSIGNMENT FUNCTION TABLE
Output Control Grounded At Vref Output Function Single-ended or Parallel Output Normal Push-Pull Operation
LOGIC DIAGRAM
Rev. 00
IL494A
MAXIMUM RATINGS
Symbol VCC VI VO Tstg Supply Voltage Amplifier Input Voltage Collector Output Voltage Collector Output Current Storage Temperature Parameter Value 41 VCC +0.3 41 250 -65 to +150 Unit V V V mA C
RECOMMENDED OPERATING CONDITIONS
Symbol VCC VI VO Supply Voltage Amplifier Input Voltage Collector Output Voltage Collector Output Current (Each Transistor) Current Into Feed back Terminal CT RT TA Timing Capacitor Timing Resistor Oscillator Frequency Operating Free-Air Temperature 0.47 1.8 1 -20 Parameter Min 7 -0.3 Max 40 VCC - 2 40 200 0.3 10.000 500 300 +85 Unit V V V mA mA nF K KHz C
Rev. 00
IL494A
ELECTRICAL CHARACTERISTICS (Temperature -20 85C, VCC = 15 V, f=10 kHz))
Symbol Reference Section Vref Vregin Vregout Vref ISC Output Voltage Output regulation Input regulation Output Voltage change with temperature Short-circuit output current (Note 1) Frequency Standard deviation of frequency (Note 2) Frequency change with voltage Frequency change with temperature IO=1 mA VCC=7 V to 40 V, TA=25C IO=1 to 10 mA, TA=25C TA= -20C to 85C Vref=0 4.95 5.05 25 15 1 50 V mV mV % mA Parameter Test Conditions Min Max Unit
Oscillator Section fOSC fOSC fOSC(V) fOSC(T) CT=0.01 F, RT=12 k All values of VCC, CT, RT, TA Constant VCC= 7 V to 40 V, TA=25C CT=0.01 F, RT=12 k TA= -20C to 85C VI= 0 to 5.25 V VI(pin 4)=0 V Zero duty cycle Maximum duty cycle VO(pin 3)=2.5 V VO(pin 3)=2.5 V VO(pin 3)=2.5 V VCC= 7 V to 40 V LOW HIGH VO=3 V, VO=0.5 to 3.5 V -0.3 VCC - 2 70 100 VCC=40 V, TA=25C VID=-15 mV to -5 V, VO(pin 3)=0.7 V VID=15 mV to 5 V, VO(pin 3)=3.5 V 65 0.3 -2 dB kHz dB mA mA 0 10 250 1 mV nA A V 45 3.3 6 14 15 10 2 KHz % % %
Dead Time Control Section IIB(2T) DCmax VTHD Input bias current (pin 4) Maximum duty cycle, each output Input threshold voltage (pin 4) Error Amp Section VIO IIO IIB Input offset voltage Input offset current Input bias current Common-mode input voltage range Avol fb CMRR IO IO+ Open-loop voltage amplification Unity-gain bandwidth Common-mode rejection ratio Output sink current (pin 3) Output source current (pin 3) -10 A % V
Rev. 00
IL494A
ELECTRICAL CHARACTERISTICS (Temperature -20 85C, VCC = 15 V, f=10 kHz))
Symbol VTHP II trc tfc trf tff IC(off) IE(off) VSAT Parameter Input threshold voltage (pin 3) Input sink current (pin 3) Output voltage rise time Output voltage fall time Output voltage rise time Output voltage fall time Collector off-state current Emitter off-state current Collectoremitter saturation voltage IOCH ICC ICCA Total Device Standby supply current Average supply current All other inputs & outputs open V(pin 4)=2 V VCC=15 V VCC=40 V 10 15 17 mA mA Commonemitter Emitterfollower Test Conditions Zero duty cycle VO(pin 3)=0.7 V Common-emitter configuration Common-emitter configuration Emitter-follower configuration Emitter-follower configuration VCE=40 V, VCC=40 V VCC=VC=40 V, VE=0 VE=0, IC=200 mA VC=15 V, IE=-200 mA VI=Vref 0.3 200 100 200 100 100 -100 1.3 2.5 3.5 mA Min Max 4.5 Unit V mA ns ns ns ns A A V PWM Comparator Section
Switching Characteristics
Output Section
Output control input current
Notes: 1. Duration of the short circuit should not exceed one second. 2. Standard deviation is a measure of the statistical disribution about the mean as derived from the formula
N
(xn - x)2
n=1 = N-1
Rev. 00
IL494A
N SUFFIX PLASTIC DIP (MS - 001BB)
A
Dimension, mm
16 9 B
Symbol A
MIN 18.67 6.1
MAX 19.69 7.11 5.33
1
8
B C
F L
D F
0.36 1.14 2.54 7.62 0 2.92 7.62 0.2 0.38
0.56 1.78
C -T- SEATING
PLANE
G H
H J
N G D 0.25 (0.010) M T K M
J K L M N
10 3.81 8.26 0.36
NOTES: 1. Dimensions "A", "B" do not include mold flash or protrusions. Maximum mold flash or protrusions 0.25 mm (0.010) per side.
D SUFFIX SOIC (MS - 012AC) Dimension, mm
A 16 9
Symbol A
MIN 9.8 3.8 1.35 0.33 0.4 1.27 5.72 0 0.1 0.19 5.8 0.25
MAX 10 4 1.75 0.51 1.27
H
B
P
B C
1
G
8 C R x 45
D F G
-TD 0.25 (0.010) M T C M K
SEATING PLANE
J
F
M
H J K M P R
8 0.25 0.25 6.2 0.5
NOTES: 1. Dimensions A and B do not include mold flash or protrusion. 2. Maximum mold flash or protrusion 0.15 mm (0.006) per side for A; for B 0.25 mm (0.010) per side.
Rev. 00


▲Up To Search▲   

 
Price & Availability of IL494A

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