UPC844 NEC | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 12
Technical content
SINGLE SUPPLY VOLTAGE, HIGH SPEED, WIDE BAND, QUAD OPERATIONAL AMPLIFIERS DESCRIPTION FEATURES The uPC844 is quad high speed, wide band opera- + High slew rate: 8.5 V/us TYP. (V* = +5 V, V- = GND) tional amplifier designed for single supply operation from + Wide gain band width product: 3.5 MHz TYP. +3 V to +32 V with low supply current drain. By using high (Vt = +5 V, V- = GND) speed PNP transistors for input and output circuits, the + Wide supply voltage range: +3 V to +32 V excellent AC performance is achieved without degrading + Wide output voltage swing capacitive load drive capability. + Common mode input voltage range includes V~ With no crossover distortion and wide output voltage + Internal frequency compensation range characteristics, the uPC844 is optimum choice for + Output short circuit protection single supply AC amplifier, and active filters. PIN CONFIGURATION EQUIVALENT CIRCUIT (1/4 Circuit) (Top View) yo uPCB44C, 844G2 a . oa . ho 7 | Wwe Ino Qu | ‘Qeo bldl ie Te raAae mca Qs Qi OUT {8 ] OUTs v-o
ORDERING INFORMATION
HPC844C 14-pin plastic DIP (300 mil) uPC844G2 14-pin plastic SOP (225 mil) The information in this document is subject to change without notice. De No. G10525EJ5VODS00 (Sth edition) i i (Previous No. 1c-1902) edition) The mark * shows major revised points. Date Published April 1997 N i Printed in Japan mn © NEC Comoration 1987
ABSOLUTE MAXIMUM RATINGS (Ta = 25 °C) ee ce ee [ama Sa cram ouaion News| [asta ie | Notes 1. Reverse connection of supply voltage can cause destruction. 2. The input voltage should be allowed to input without damage or destruction independent of the magnitude of V*. Either input signal should not be allowed to go negative by more than 0.3 V. The normal operation will establish when the both inputs are within the Common Mode Input Voltage Range of electrical characteristics. 3. This specification is the voltage which should be allowed to supply to the output terminal from external without damage or destructive. Even during the transition period of supply voltage, power on/off etc., this specification should be kept. The output voltage of normal operation will be the Output Voltage Swing of electrical characteristics. 4, Thermal derating factor is -7.6 mW/°C when operating ambient temperature is higher than 50 °C. 5. Thermal derating factor is -5.5 mW/°C when operating ambient temperature is higher than 25 °C. 6. Pay careful attention to the total power dissipation not to exceed the absolute maximum ratings, Note 4 and Note 5. RECOMMENDED OPERATING CONDITIONS [__FeansesdStot [me [Seorvonoeon Pf ss | se [sip vomge r= ck)p Pe Y fowucwen Pe [capemetneswomcom fa | || om |_|
ELECTRICAL CHARACTERISTICS (Ta = 25 °C, V* = +15 V) [Parameters | Symbot [___Conatons [win [WP | wa | Un | [ew ormevowse | ve [Si 0 | ss | oe | To [rowoas Coren wow] ke | SSS oo |e | [sce Sona vorseGan | W[RSemvensov | @ | a |_| vmv | [sieovcwren | me [non atanoiios |__| 7s | w| ma | [Connon ose Reeenrase [owe | SC*d | | | | [sires voc opewneato [sve | SCS |? | dd | pevwewe fe eee st -14.3 [Sapiens Sore | va [asa «dws | i [ceonen ie veoh | ver [i | i [sewrae is [sh [acumsem ffs |_| vm | a ELECTRICAL CHARACTERISTICS (Ta = 25 °C, V+ = 5 V, V- = GND) fieaoevete [ve [SiS to | = [rewotercwen fe | SS—~d Si Pe [nets Coven now? | ke | oa | [tae Sarl vouceGan | A [Reem ———~«dt | soo | | [Ssenvciren | ke [e=0AatAmeiins | | so | oo | ma | [conmeneseFopcinaie | owe | Cid | | | [Sipps vooe epconrato [sve | ——SSSSSCSC~i fw | perme | [sewcrweoe Tete] | [Geonen screamo [ve [Sid | me [owe conan S0uRGE [bone [Vwnaivvecov | w |» | | mm | [api coven any [tam [vnzov.vaoviv | | || ma | [sewrueise | _at _[anuarem | | es | vm | Notes 7. Input bias currents flow out from IC. Because each currents are base current of PNP-transistor on input stage.
TYPICAL CHARACTERISTICS (Ta = 25 °C, TYP.) POWER DISSIPATION SUPPLY CURRENT 1000 20 = PP ee EE = eco 6 ORS | {| i [| CREE S95 ecole # cee LL to one faseee =o : 3 e« SN a HON > Eas te Mt ame PTT eee fy 20 40 60 BO 700 O +5 +10 +15 +20 Ta~ Operating Ambient Temperature - °C V* - Supply Voltage - V ‘& INPUT OFFSET VOLTAGE COMMON MODE INPUT VOLTAGE RANGE
5 FEE] “
(AEE LET ETT tt rete oF PTT PTT > SCR SStrerrreerre ey Lo * of TPT esp Perr 8 / eet PL fore eT TT TALL §o-FRRee eet CE 7 oy | P| tL iA de eliZ7l tt | Ss 3 -FFFETTT Pry 5 a PiIZ7A LL LE po a 3 7 PSE EEE) LE De $55 [) 50 100 0 10 20 30 40 ‘Ta- Operating Ambient Temperature - °C V" - Supply Voltage - V (V- = GND) INPUT BIAS CURRENT %* INPUT BIAS CURRENT 200 200 Rae PT TT Ty ; EET Ty TTT] WT PCE to brat E B LTT | gop + tii} tt) s.0 0a LETT Tt | ¢ HY POPP] } eae PETE TT PT este TT 0 10 20 30 40 -50 0 50 100 V" - Supply Voltage - V (V- = GND) ‘Ta~ Operating Ambient Temperature - °C
OUTPUT SINK CURRENT LIMIT OUTPUT SOURCE CURRENT LIMIT Vr =15V. ov Vie j > 4 AVo| yg losounce ® [| 2 s | 7 33 g : : F | Avo e : P| | fl £ ’ 3 3 ‘ A 36 Fa vie losin 2. % 04 a = fo} ] s Vo ay mi 2, Z| es es The dotted line shows a characteristic of Ri = 1 kQ 0.01 0 lo sna - Output Sink Current - mA losouace - Output Source Current - mA OPEN LOOP FREQUENCY RESPONSE LARGE SIGNAL FREQUENCY RESPONSE =r [| |] Vie d15V & \\ 2 20 So 80 NI é Z \\ 2 = 60 S 2 \\ = 8 \\ z = 4 3 10 g* \\ % 3 \\ $ <= 20 NI 0 10 100 1k 10k 100k 1M 10M 100 1k 10k 100 k 1M 10M f+ Frequency - Hz f-Frequenoy - Hz VOLTAGE FOLLOWER PULSE RESPONSE %* SLEW RATE > (CTT es PH eoLL If TT | [ye Ears i Arte a ee |]
341 S$ gt Poorer
eo tti itt tt og. g 2 5 et Tey ty ai FLT Tet ? oa) Vi=2t5V > TTT TE ETT TT R=2ko 0 1 2 3 -50 i) 50 100 Time - ys Ta - Operating Ambient Temperature - °C
14PIN PLASTIC DIP (300 mil) 14 8 , 4 7 A | L i re if | MV 6 il 7 Ts ofeLn & ™ NOTES ITEM MILLIMETERS INCHES 2) Item "K" to center of leads when formed parallel. —C 2.54 (TP) 0-100 (T-P.) D —0.8040.10 0.0204 8-804 F 1.1 MIN, 0.043 MIN. _G 3540.3 0.13820.012 _ 1 4.31 MAX. 0.170 MAX. J 5.08 MAX. 0.200 MAX. C65 0.256 m_ 0252838 001029885 N 0.25 0.01 R_ 0-15" 0-15" P14C-100-300B2-1
14 PIN PLASTIC SOP (225 mil)
oo Da. HHHHAHHEH a OOoOoWdoO oo oO 1 7 A H i oO J wl | Oy De | w T B aL eT ofel al NOTE ITEM MILLIMETERS INCHES dD ~— 0.404222 0.016.004 E 0.1401 0.004:0.004 F 1.8 MAX. 0.071 MAX. G 1.49 0.059 I 44 0.173 J iA 0.043 kK 0.152849 o.0089-898 0.008 L 0.60.2 0.02475 508 M012 0.005 N_ 0.10 0.004 247° e472 Pp getf: eth ‘S14GM-50-225B, C-4
RECOMMENDED SOLDERING CONDITIONS When soldering this product, it is highly recommended to observe the conditions as shown below. If other soldering processes are used, or if the soldering is performed under different conditions, please make sure to consult with our sales offices. For more details, refer to our document “Semiconductor Device Mounting Technology Manual” (C10535E). Type of Surface Mount Device uPC844G2: 14-pin plastic SOP (225 mil) Infrared Ray Reflow Peak temperature: 230 °C or below (Package surface temperature), 1R30-00-1 Reflow time: 30 seconds or less (at 210 °C or higher), Maximum number of reflow processes: 1 time. Vapor Phase Soldering Peak temperature: 215 °C or below (Package surface temperature), VP15-00-1 Reflow time: 40 seconds or less (at 200 °C or higher), Maximum number of reflow processes: 1 time. Wave Soldering Solder temperature: 260 °C or below, Flow time: 10 seconds or less, WS60-00-1 Maximum number of flow processes: 1 time, Pre-heating temperature: 120 °C or below (Package surface temperature). Partial Heating Method Pin temperature: 300 °C or below, Heat time: 3 seconds or less (Per each side of the device). Caution Apply only one kind of soldering condition to a device, except for “partial heating method”, or the device will be damaged by heat stress. Type of Through-hole Device uPC844C: 14-pin plastic DIP (300 mil) Wave Soldering Solder temperature: 260 °C or below, {only to leads) Flow time: 10 seconds or less. * | Partial Heating Method Pin temperature: 300 °C or below, Heat time: 3 seconds or less (per each lead). Caution For through-hole device, the wave soldering process must be applied only to leads, and make sure that the package body does not get jet soldered.
QUALITY GRADES ON NEC SEMICONDUCTOR DEVICES C11531E SEMICONDUCTOR DEVICE MOUNTING TECHNOLOGY MANUAL C10535E IC PACKAGE MANUAL C10943X GUIDE TO QUALITY ASSUARANCE FOR SEMICONDUCTOR DEVICES MEI-1202 SEMICONDUCTORS SELECTION GUIDE X10679E NEC SEMICONDUCTOR DEVICE RELIABILITY/ 1E1-1212 QUALITY CONTROL SYSTEM - STANDARD LINEAR IC
[MEMO]
[MEMO]
[MEMO] No part of this document may be copied or reproduced in any form or by any means without the prior written consent of NEC Corporation. NEC Corporation assumes no responsibility for any errors which may appear in this document. NEC Corporation does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a device described herein or any other liability arising from use of such device. No license, either express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Corporation or others. While NEC Corporation has been making continuous effort to enhance the reliability of its semiconductor devices, the possibility of defects cannot be eliminated entirely. To minimize risks of damage or injury to persons or property arising from a defect in an NEC semiconductor device, customers must incorporate sufficient safety measures in its design, such as redundancy, fire-containment, and anti-failure features. NEC devices are classified into the following three quality grades: "Standard", "Special", and "Specific". The Specific quality grade applies only to devices developed based on a customer designated "quality assurance program" for a specific application. The recommended applications of adevice depend on its quality grade, as indicated below. Customers must check the quality grade of each device before using it in a particular application. Standard: Computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots Special: Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support) Specific: Aircrafts, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems or medical equipment for life support, etc. The quality grade of NEC devices is "Standard" unless otherwise specified in NEC's Data Sheets or Data Books. If customers intend to use NEC devices for applications other than those specified for Standard quality grade, they should contact an NEC sales representative in advance. Anti-radioactive design is not implemented in this product. M4 96.5