Part Number Hot Search : 
A1526 MIC52 2SC30 BR201 D2382 BSS145 SST5485 0831516
Product Description
Full Text Search
 

To Download TAF4453G Datasheet File

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


  Datasheet File OCR Text:
 Quad PNP-Operational Amplifier
TAE 4453 TAF 4453
Bipolar IC Features
q q q q q q q q q q
Supply voltage range between 3 V and 36 V Low current consumption, 1.6 mA typ. Extremely large control range Low output saturation voltage, almost independent of load current Output current up to 70 mA (100 mA max.) Output virtually short-circuit proof Wide common-mode range Wide temperature range (TAF 4453 G) Pin-compatible to LM 324 The typical characteristics of the electric parameters correspond to those of the TAE 1453 G
P-DSO-14-1
Applications
q q q q q
Amplifier Level converter Driver Offset voltage switch Comparator Ordering Code Q67000-A2152 Q67000-A2213 Package P-DSO-14-1 (SMD) P-DSO-14-1 (SMD)
Type TAE 4453 G TAF 4453 G
The TAE 4453 / TAF 4453 consists of four independent, frequency-compensated op amps, each having a PNP-input differential stage and an open collector output. The integrated regulator provides for all parameters a large degree of independence of the supply voltage.
Semiconductor Group
1
01.96
TAE 4453 TAF 4453
Pin Configurations (top view) TAE 4453 G TAF 4453 G
RL = load resistance (collector resistance)
Connection Diagram
Semiconductor Group
2
TAE 4453 TAF 4453
Circuit Diagram of One Op Amp
Semiconductor Group
3
TAE 4453 TAF 4453
Absolute Maximum Ratings (TAE 4453 G) Parameter Supply voltage Output current Differential input voltage Junction temperature Storage temperature range Thermal resistance system - air TAE 4453 G Operating Range (TAE 4453 G) Supply voltage Symbol Limit Values 18 100 VS 150 - 55 to 125 120 Unit V mA V C C K/W
VS IQ VID Tj Tstg Rth SA
VS
2 to 18 ( 1.5 V with slightly increased offset voltage) - 25 to 85
V
Ambient temperature
TA
C
Characteristics (TAE 4453 G) VS = 5 V to 15 V; RL = 10 k, unless otherwise specified Parameter Symbol Limit Values TA = 25 C min. Open-loop supply current consumption, total Input offset voltage, RG = 50 Input offset current Input current Control range RL = 2 k, VS = 15 V RL = 620 , VS = 15 V typ. 1.6 - 5.5 - 15 40 14.9 14.9 max. 3.0 5.5 15 150 - 14.7 - 14.5 -7 - 25 Limit Values Unit TA = - 25 to 85 C min. max. 3.6 7 25 200 - 14.7 - 14.4 mA mV nA nA V V
IS VIO IIO II VQ pp VQ pp
14.9 14.9
Semiconductor Group
4
TAE 4453 TAF 4453
Characteristics (TAE 4453 G) (cont'd) VS = 5 V to 15 V; RL = 10 k, unless otherwise specified Parameter Symbol Limit Values TA = 25 C min. Input impedance, f = 1 kHz Open-loop voltage gain RL = 2 k Output reverse current Common-mode input voltage range RL = 2 k Common-mode rejection RL = 2 k Supply voltage rejection GV = 100 Temperature coefficient of IIO RG = 50 Temperature coefficient of VIO RG = 50 Slew rate for non-inverting operation Slew rate for inverting operation typ. 200 80 85 10 - VS - 0.2 75 80 25 0.1 6 100 + VS - 1.8 - VS 80 20 + VS - 2.0 max. Limit Values Unit TA = - 25 to 85 C min. max. k dB A V
ZI GV0 IQR VIC
kCMR kSVR
IIO VIO
75 100
dB V/V nA/K V/K
SR SR
0.65 1.1
0.25 0.5
1.0 1.6
V/s V/s
Semiconductor Group
5
TAE 4453 TAF 4453
Characteristics (TAE 4453 G) VS = 2 V Parameter Symbol Limit Values TA = 25 C min. Input offset voltage, RG = 50 Input offset current Input current Open-loop voltage gain; RL = 2 k typ. max. 6 15 150 Limit Values TA = - 25 to 85 C min. - 7.5 - 100 70 max. 7.5 100 200 mV nA nA dB Unit
VIO IIO II GV0
-6 - 15 40 70
Absolute Maximum Ratings (TAF 4453 G) Parameter Supply voltage Output current Differential input voltage Junction temperature Storage temperature range Thermal resistance system - air TAF 4453 G Operating Range (TAF 4453 G) Supply voltage Symbol Limit Values 18 100 VS 150 - 55 to 125 120 Unit V mA V C C K/W
VS IQ VID Tj Tstg Rth SA
VS
2 to 18 ( 1.5 V with slightly increased offset voltage) - 55 to 125
V
Ambient temperature
TA
C
Semiconductor Group
6
TAE 4453 TAF 4453
Characteristics (TAF 4453 G) VS = 5 V to 15 V; RL = 10 k, unless otherwise specified Parameter Symbol Limit Values TA = 25 C min. Open-loop supply current consumption, total Input offset voltage, RG = 50 Input offset current Input current Control range typ. 1.6 -4 - 10 40 14.9 14.9 200 85 87 1 - VS - 0.2 80 85 25 100 + VS - 1.5 - VS + 0.2 75 100 80 5 + VS - 1.8 max. 3.0 4 10 100 - 14.7 - 14.5 -6 - 15 Limit Values Unit TA = - 55 to 125 C min. max. mA 3.6 6 15 150 - 14.7 - 14.4 mV nA nA V V k dB A V
IS VIO IIO II VQ pp VQ pp ZI GV0 IQR VIC
RL = 2 k, VS = 15 V RL = 620 , VS = 15 V
Input impedance, f = 1 kHz Open-loop voltage gain RL = 2 k Output reverse current Common-mode input voltage range RL = 2 k Common-mode rejection, RL = 2 k Supply voltage rejection, GV = 100
14.8 14.8
kCMR kSVR
dB V/V
Semiconductor Group
7
TAE 4453 TAF 4453
Characteristics (TAF 4453 G) (cont'd) VS = 5 V to 15 V; RL = 10 k, unless otherwise specified Parameter Symbol Limit Values TA = 25 C min. Temperature coefficient of IIO RG = 50 Temperature coefficient of VIO RG = 50 Slew rate for non-inverting operation Slew rate for inverting operation IIO VIO typ. 0.1 6 max. 0.8 25 Limit Values Unit TA = - 55 to 125 C min. max. 0.8 25 nA/K V/K
SR SR
0.65 1.1
0.2 0.4
0.65 1.7
V/s V/s
Characteristics (TAF 4453 G) VS = 2 V Parameter Symbol Limit Values TA = 25 C min. Input offset voltage, RG = 50 Input offset current Input current Open-loop voltage gain RL = 2 k typ. max. 4 50 100 Limit Values Unit TA = - 55 to 125 C min. -6 - 75 70 max. 6 75 150 mV nA nA dB
VIO IIO II GV0
-4 - 50 40 75
Note: For typical performance curves, please refer to the data sheets of TAE 1453 and TAF 1453.
Semiconductor Group
8


▲Up To Search▲   

 
Price & Availability of TAF4453G

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