LT6000/LT6001/LT シングル/デュアル/クワッド1.8V、13µA高精度レール・トゥ・レール・オペアンプ
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- てるえ にかどり
- 7 years ago
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1 .V V µa/ DFN MSOP SSOP.µA LT LTDD µv.v V DFN MSOP DFN SSOP DFN LT/LT/LT / /.V µa LT /LT/LT/ / µa.v µv.v LT LT LT DFN LT MSOP DFN LT SSOP DFN LT LTC OXYGEN SENSOR CITY TECHNOLOGY X() V S V E Ω V E k k V S / LT TAa k / LT Ω V OUT = V IN AIR, V WITHOUT OXYGEN Ω V S =.V I SUPPLY = µa IN AIR, µa WITHOUT OXYGEN SUPPLY CURRENT PER AMPLIFIER (µa). A V = V CM =.V T A = C T A = C TOTAL SUPPLY VOLTAGE (V) TAb fa
2 LT/LT/LT V V...V... ma SHDNNote 7...V V Note... Note... Note DFN DFN... MSOP SSOP... SHDN IN IN ORDER PART NUMBER LTCDCB LTIDCB TOP VIEW V V OUT DCB PACKAGE -LEAD (mm mm) PLASTIC DFN T JMAX = C, θ JA = C/W (NOTE ) EXPOSED PAD (PIN 7) IS CONNECTED TO V (PIN ) 7 DCB PART MARKING* LCDM LCDM OUT A IN A IN A V ORDER PART NUMBER LTCMS LTIMS TOP VIEW MS PACKAGE -LEAD PLASTIC MSOP V 7 OUT B IN B IN B T JMAX = C, θ JA = C/W MS PART MARKING* LTBVD LTBVD OUT A IN A IN A V NC TOP VIEW V DD PACKAGE -LEAD (mm mm) PLASTIC DFN 9 7 OUT B IN B IN B SHDN T JMAX = C, θ JA = C/W (NOTE ) EXPOSED PAD (PIN ) IS CONNECTED TO V (PIN ) ORDER PART NUMBER LTCDD LTIDD DD PART MARKING* LBVH LBVH OUT A IN A IN A V IN B IN B OUT B NC ORDER PART NUMBER LTCGN LTIGN 7 A B TOP VIEW D C GN PACKAGE -LEAD NARROW PLASTIC SSOP T JMAX = C, θ JA = C/W 9 OUT D IN D IN D V IN C IN C OUT C GN PART MARKING I Order Options Tape and Reel: Add #TR Lead Free: Add #PBF Lead Free Tape and Reel: Add #TRPBF Lead Free Part Marking: NC OUT A IN A IN A V IN B IN B OUT B NC ORDER PART NUMBER LTCDHC LTIDHC * 7 A B TOP VIEW 7 T JMAX = C, θ JA = C/W (NOTE ) EXPOSED PAD (PIN 7) IS CONNECTED TO V (PIN ) D DHC PACKAGE -LEAD (mm mm) DFN C 9 OUT D IN D IN D V IN C IN C OUT C NC DHC PART MARKING* fa
3 LT/LT/LT T A = V S =.V V V CM = V OUT =.V LT LTDD V SHDN = V SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V OS Input Offset Voltage LTMS µv C T A 7 C µv C T A C 9 µv LTDCB, LTDD, LTGN 7 µv C T A 7 C µv C T A C µv LTDHC 9 µv C T A 7 C µv C T A C µv V CM = V LTMS µv µv V CM = V LTDCB, LTDD, LTGN µv µv V CM = V LTDHC µv 7 µv ΔV OS /ΔT Input Offset Voltage Drift (Note ) V CM =.V µv/ C I B Input Bias Current V CM =.V na V CM = V na V CM = V na I OS Input Offset Current V CM =.V. na V CM = V. na V CM = V. na Input Noise Voltage.Hz to Hz. µv P-P e n Input Voltage Noise Density f = khz 7 nv/ Hz i n Input Current Noise Density f = khz fa/ Hz R IN Input Resistance Common Mode (V CM = V to.v). GΩ Differential MΩ C IN Input Capacitance pf CMRR Common Mode Rejection Ratio V CM = V to.v, C T A 7 C 9 db V CM =.V to.v, C T A C 9 db V CM = V to.v 7 db Input Voltage Range. V PSRR Power Supply Rejection Ratio V S =.V to V db V CM = V O =.V Minimum Supply V CM = V O =.V. V A VOL Large-Signal Gain V O =.V to.v R L = k to GND V/mV R L = k to GND V/mV R L = k to GND V/mV R L = k to GND V/mV V OL Output Swing Low (Note ) Input Overdrive = mv No Load mv I SINK = µa mv V OH Output Swing High (Note ) Input Overdrive = mv No Load mv I SOURCE = µa mv R L = k to GND mv fa
4 LT/LT/LT T A = V S =.V V V CM = V OUT =.V LT LTDD V SHDN = V SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I SC Short-Circuit Current Short to GND ma C T A 7 C ma C T A C. ma Short to V.7 ma C T A 7 C. ma C T A C. ma I S Supply Current per Amplifier µa C T A 7 C µa C T A C µa Total Supply Current in Shutdown (Note 7) V SHDN =.V.. µa I SHDN SHDN Pin Current (Note 7) V SHDN =.V na V SHDN = V na Shutdown Output Leakage Current (Note 7) V SHDN =.V (V V OUT V ) na V L SHDN Pin Input Low Voltage (Note 7). V V H SHDN Pin Input High Voltage (Note 7).V V t ON Turn On Time (Note 7) V SHDN = V to.v, µs R L = k t OFF Turn Off Time (Note 7) V SHDN =.V to V, µs R L = k GBW Gain Bandwidth Product (Note ) Freq = khz khz C T A 7 C khz C T A C khz SR Slew Rate A V =, V OUT =.V to.v 9 V/ms Measure.V to.v, C T A 7 C 7 V/ms C T A C V/ms FPBW Full Power Bandwidth (Note 9) V OUT =.V P-P.. khz fa
5 LT/LT/LT T A = V S = V V V CM = V OUT = / LT LTDD V SHDN = V SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V OS Input Offset Voltage LTMS µv C T A 7 C µv C T A C 9 µv LTDCB, LTDD, LTGN 7 µv C T A 7 C µv C T A C µv LTDHC 9 µv C T A 7 C µv C T A C µv V CM = V LTMS µv µv V CM = V LTDCB, LTDD, LTGN µv µv V CM = V LTDHC µv 7 µv ΔV OS /ΔT Input Offset Voltage Drift (Note ) V CM = V S / µv/ C I B Input Bias Current V CM = V S / na V CM = V na V CM = V na I OS Input Offset Current V CM = V S /.. na V CM = V.. na V CM = V.. na Input Noise Voltage.Hz to Hz. µv P-P e n Input Voltage Noise Density f = khz 7 nv/ Hz i n Input Current Noise Density f = khz fa/ Hz R IN Input Resistance Common Mode (V CM = V to.v). GΩ Differential. MΩ C IN Input Capacitance pf CMRR Common Mode Rejection Ratio V CM = V to.v, C T A 7 C 9 db V CM =.V to.v, C T A C 9 db V CM = V to V db Input Voltage Range V PSRR Power Supply Rejection Ratio V S =.V to V db V CM = V O =.V Minimum Supply. V A VOL Large-Signal Gain V O =.V to.v R L = k to V S / V/mV R L = k to V S / V/mV R L = k to V S / V/mV R L = k to V S / V/mV R L = k to GND V/mV R L = k to GND V/mV V OL Output Swing Low (Note ) Input Overdrive = mv No Load mv I SINK = µa mv I SINK = µa mv fa
6 LT/LT/LT T A = V S = V V V CM = V OUT = / LT LTDD V SHDN = V SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V OH Output Swing High (Note ) Input Overdrive = mv No Load mv I SOURCE = µa mv R L = k to GND mv I SC Short-Circuit Current Short to GND ma C T A 7 C ma C T A C ma Short to V. 7. ma C T A 7 C. ma C T A C. ma I S Supply Current per Amplifier µa C T A 7 C µa C T A C 7 µa V S = ±V µa µa Total Supply Current in Shutdown (Note 7) V SHDN =.V µa I SHDN SHDN Pin Current (Note 7) V SHDN = V na V SHDN = V na Shutdown Output Leakage Current (Note 7) V SHDN =.V (V V OUT V ) na V L SHDN Pin Input Low Voltage (Note 7). V V H SHDN Pin Input High Voltage (Note 7).7 V t ON Turn On Time (Note 7) V SHDN = V to V, R L = k µs t OFF Turn Off Time (Note 7) V SHDN = V to V, R L = k µs GBW Gain Bandwidth Product Freq = khz khz C T A 7 C khz C T A C khz SR Slew Rate A V =, V OUT =.V to.v V/ms Measure V to V, C T A 7 C V/ms C T A C V/ms FPBW Full Power Bandwidth (Note 9) V OUT = V P-P.7. khz Note Note DDDHC θ JA PCB Note LTC/LTI/LTC/LTI LTC/LTI Note LTC/LTC/LTC 7 QA LTI/LTI/ LTI Note Note Note 7 LT LTDD Note V S =.VV S = V GBW Note 9 FPBW = SR/πV P-P fa
7 LT/LT/LT PERCENT OF UNITS (%) V OS V S = V, V V CM =.V MS PACKAGE PERCENT OF UNITS (%) TC V OS V S = V, V V CM =.V MS, GN, DD PACKAGES C TO C SUPPLY CURRENT PER AMPLIFIER (µa) V CM =.V T A = C T A = C INPUT OFFSET VOLTAGE (µv) DISTRIBUTION (µv/ C) TOTAL SUPPLY VOLTAGE (V) G G G CHANGE IN OFFSET VOLTAGE (µv) T A = C T A = C V CM =.V OFFSET VOLTAGE (µv) T A = C T A = C V CM =.V TYPICAL PART OFFSET VOLTAGE (µv) V S = V, V TYPICAL PART T A = C T A = C.. TOTAL SUPPLY VOLTAGE (V) TOTAL SUPPLY VOLTAGE (V)..... INPUT COMMON MODE VOLTAGE (V) G G G INPUT BIAS CURRENT (na). V S = V, V. 7. T A = C.. T A = C COMMON MODE VOLTAGE (V) G7 OUTPUT HIGH SATURATION VOLTAGE (V) H. V S = V, V INPUT OVERDRIVE = mv... T A = C T A = C.. SOURCING LOAD CURRENT (ma) G OUTPUT LOW SATURATION VOLTAGE (V) L. V S = V, V INPUT OVERDRIVE = mv... T A = C T A = C.. SINKING LOAD CURRENT (ma) G fa 7
8 LT/LT/LT OUTPUT SATURATION VOLTAGE (mv) 9 7 OUTPUT HIGH OUTPUT LOW V S = V, V NO LOAD OUTPUT SHORT-CIRCUIT CURRENT (ma) V CM =.V OUTPUT SHORTED TO V T A = C T A = C OUTPUT SHORT-CIRCIUT CURRENT (ma) V CM =.V OUTPUT SHORTED TO V T A = C T A = C INPUT OVERDRIVE (mv) TOTAL SUPPLY VOLTAGE (V) TOTAL SUPPLY VOLTAGE (V) G G G NOISE VOLTAGE (nv/div).hz Hz V S = ±.V 7 9 TIME (SECONDS) G NOISE VOLTAGE (nv/ Hz) 9 7 V S = V, V V CM =.V V CM =.V FREQUENCY (Hz) G INPUT NOISE CURRENT DENSITY (fa/ Hz) V S = V, V V CM =.V V CM =.V FREQUENCY (Hz) G CHANGE IN INPUT OFFSET VOLTAGE (µv) R L = k R L = k...9. OUTPUT VOLTAGE (V) V S =.V, V V CM =.V.. G CHANGE IN INPUT OFFSET VOLTAGE (µv) R L = k R L = k OUTPUT VOLTAGE (V) V S = V, V V CM =.V G7 CHANGE IN INPUT OFFSET VOLTAGE (µv) R L = k R L = k OUTPUT VOLTAGE (V) V S = ±.V G fa
9 LT/LT/LT GAIN BANDWIDTH (khz) f = khz V S = V, V V CM =.V PHASE MARGIN V S =.V, V V CM =.V 7 7 V S = V, V 7 V CM =.V V S =.V, V V CM =.V GAIN BANDWIDTH 7 TEMPERATURE ( C) G PHASE MARGIN (DEG) SLEW RATE (V/ms) A V = R F = R G = k RISING V S =.V, V RISING V S = V, V FALLING V S = V, V 7 TEMPERATURE ( C) FALLING V S =.V, V G GAIN (db) 7 PHASE V CM =.V V CM =.V V CM =.V V CM =.V GAIN V S = V, V R F = R G = k A V =. FREQUENCY (khz) G9 PHASE (DEG) GAIN BANDWIDTH (khz) 7 R F = R G = k A V = f = khz PHASE MARGIN GAIN BANDWIDTH TOTAL SUPPLY VOLTAGE (V) 7 PHASE MARGIN (DEG) OVERSHOOT (%) V S = V, V V CM =.V A V = A V = A V = CAPACITIVE LOAD (pf) COMMON MODE REJECTION RATIO (db) 9 7. FREQUENCY (khz) V S = ±.V G G G COMMON MODE REJECTION RATIO (db) 9 7 NEGATIVE SUPPLY V S = ±.V POSITIVE SUPPLY.. FREQUENCY (khz) G V S = ±.V OUTPUT IMPEDANCE (Ω) A V = A V =... FREQUENCY (khz) G OUTPUT IMPEDANCE (kω) LT/LTDD V S = ±.V V PIN(SHDN) =.V.. FREQUENCY (khz) G7 fa 9
10 LT/LT/LT.V.V mv/div.v.v A V = V S = V, V C L = pf R L = k µs/div G A V = V S =.V, V C L = pf R L = k µs/div G9 A V = V S = ±.V C L = pf R L = k µs/div G SUPPLY CURRENT BOTH AMPLIFIERS (µa) SHDN LTDD V S =.V, V T A = C T A = C SHDN PIN VOLTAGE (V) SUPPLY CURRENT BOTH AMPLIFIERS (µa) SHDN LTDD V S = ±V T A = C T A = C SHDN PIN VOLTAGE (V) V SHDN V V OUT LT/LTDD V V IN = V A V = V S =.V, V R L = k µs/div G G G SHDNLT VS =.V, V SHDNLT V S = ±V T A = C SUPPLY CURRENT (µa) T A = C T A = C SUPPLY CURRENT (µa) T A = C SHDN PIN VOLTAGE (V) SHDN PIN VOLTAGE (V) G7 G fa
11 LT/LT/LT V Q Q7 Q R Q R Q R 7M CM V SHDN R Q7 IN IN V V R k R k D Q Q Q Q Q Q C Q Q COMPLEMENTARY DRIVE GENERATOR V OUT Q Q9 Q Q Q9 Q R R7 V LT/LT/LT.µF.7µF LT/LT/LT PNP Q/ Q NPN Q/Q PNP V V CM V CM Q7 Q Q/Q9NPN PNP C PNP NPN fa
12 LT/LT/LT PNP µv CMRR µv LT/LT/LT V k V ma LT/LT/LT mv mv mv mv LT/LT/LT VmA.V ma V V ma LT/ LT/LT H L / SUPPLY CURRENT PER AMPLIFIER (µa) OUTPUT AT V S / OUTPUT LOW OUTPUT HIGH..... SUPPLY VOLTAGE (V) F. VS VS VS mv V S / mv F. fa
13 LT/LT/LT LT/LT/LT mv LT LT V OUT (V) COMPETITIVE PART LT V S = ±.V, A V = V IN SUPPLY CURRENT PER AMPLIFIER V OUT V IN (V) F. V OUT I CC 7 ICC (µa) LTLT SHDN V.V SHDN V.V.µA na V V OUT V SHDN V SHDN SHDNµA fa
14 LT/LT/LT µagbw khz.9v (NiMH) V IN / LT.9V (NiMH) / LT 7 OUT 9.9k 9.9k TAa k k GAIN (db) k k k M FREQUENCY (Hz) TAb fa
15 LT/LT/LT DCB DFN mm mm (Reference LTC DWG # --7).7 ±.. ±.. ±. ( SIDES). ±. PACKAGE OUTLINE. ±.. BSC. ±. ( SIDES) RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS. ±. ( SIDES) R =. TYP R =. TYP. ±.. ±. ( SIDES). ±. ( SIDES) PIN BAR TOP MARK NOTE (SEE NOTE ). REF.7 ±... PIN NOTCH R. OR. CHAMFER (DCB) DFN. ±.. BSC. ±. ( SIDES) BOTTOM VIEW EXPOSED PAD NOTE NOTE:. JEDEC MO-9 DRAWING TO BE MADE A PACKAGE OUTLINE M-9 VARIATION OF (TBD). DRAWING NOT TO SCALE. ALL DIMENSIONS ARE IN MILLIMETERS. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE.mm MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED.mm ON ANY SIDE. EXPOSED PAD SHALL BE SOLDER PLATED. SHADED AREA IS ONLY A REFERENCE FOR PIN LOCATION ON THE TOP AND BOTTOM OF PACKAGE fa
16 LT/LT/LT MS MSOP (Reference LTC DWG # --).9 ±.7 (. ±.). (.) MIN.. (..). ±. (. ±.) TYP. (.) BSC. ±. (. ±.) (NOTE ) 7. (.) REF RECOMMENDED SOLDER PAD LAYOUT GAUGE PLANE. (.7). (.) DETAIL A TYP. ±. (. ±.) DETAIL A SEATING PLANE.9 ±. (.9 ±.). (.) MAX.. (.9.) TYP. (.) NOTE NOTE: BSC. / DIMENSIONS IN MILLIMETER/(INCH). DRAWING NOT TO SCALE. DIMENSION DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS..mm." MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED (.") PER SIDE. DIMENSION DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSIONS..mm." INTERLEAD FLASH OR PROTRUSIONS SHALL NOT EXCEED.mm (.") PER SIDE..mm." LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING) SHALL BE.mm (.") MAX. ±. (. ±.) (NOTE ). (.) REF.7 ±.7 (. ±.) MSOP (MS) fa
17 LT/LT/LT DD mm mm DFN (Reference LTC DWG # --99).7 ±.. ±.. ±.. ±. ( SIDES) PACKAGE OUTLINE. ±.. BSC. ±. ( SIDES) RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS R =. TYP. ±. PIN TOP MARK NOTE (SEE NOTE ). REF. ±. ( SIDES).7 ±.... ±. ( SIDES). ±. ( SIDES). ±.. BSC BOTTOM VIEW EXPOSED PAD (DD) DFN NOTE NOTE:. JEDEC MO-9 WEED- DRAWING TO BE MADE A PACKAGE OUTLINE M-9 VARIATION OF (WEED-). LTC Web CHECK THE WEBSITE DATA SHEET FOR CURRENT STATUS OF VARIATION ASSIGNMENT. DRAWING NOT TO SCALE. ALL DIMENSIONS ARE IN MILLIMETERS. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE.mm MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED.mm ON ANY SIDE. EXPOSED PAD SHALL BE SOLDER PLATED. SHADED AREA IS ONLY A REFERENCE FOR PIN LOCATION ON THE TOP AND BOTTOM OF PACKAGE fa 7
18 LT/LT/LT GN SSOP (Reference LTC DWG # --). ±..9.9* (..97) 9.9 (.9) REF. MIN...9. (.7.9)..7** (..9). ±.. BSC RECOMMENDED SOLDER PAD LAYOUT (.7.9). ±. (. ±.) TYP.. (..7)..9 (..9).. (..7) NOTE NOTE:. CONTROLLING DIMENSION: INCHES. INCHES DIMENSIONS ARE IN (MILLIMETERS).. DRAWING NOT TO SCALE * *DIMENSION.".mm DOES NOT INCLUDE MOLD FLASH. MOLD FLASH ** SHALL NOT EXCEED." (.mm) PER SIDE **DIMENSION.".mm DOES NOT INCLUDE INTERLEAD FLASH. INTERLEAD FLASH SHALL NOT EXCEED." (.mm) PER SIDE.. (..) TYP. (.) BSC GN (SSOP) fa
19 LT/LT/LT DHC mm mm DFN (Reference LTC DWG # --7). ±.. ±.. ±.. ±. ( SIDES) PACKAGE OUTLINE. ±. ( SIDES). ±.. BSC RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS. ±. ( SIDES) R =. TYP 9 R =. TYP. ±. PIN TOP MARK NOTE (SEE NOTE ). REF. ±. ( SIDES).7 ±.. ±. ( SIDES).. NOTE NOTE:. JEDECMO-9 WJED- DRAWING PROPOSED TO BE MADE VARIATION OF VERSION (WJED-) IN PACKAGE OUTLINE MO-9. DRAWING NOT TO SCALE. ALL DIMENSIONS ARE IN MILLIMETERS. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE.mm MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED.mm ON ANY SIDE. EXPOSED PAD SHALL BE SOLDER PLATED. SHADED AREA IS ONLY A REFERENCE FOR PIN LOCATION ON THE TOP AND BOTTOM OF PACKAGE. ±. ( SIDES). ±.. BSC BOTTOM VIEW EXPOSED PAD PIN NOTCH (DHC) DFN fa 9
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特長 概要 LT0/LT0 マイクロパワー デュアル コンパレータ 最大オフセット電圧 : 最大バイアス電流 :na 標準出力ドライブ :0mA.V~0V で動作 内部プルアップ電流 出力は V 以上の負荷をドライブ可能 消費電流 :0μA(lT0) 0μA(lT0) ピン PDIP ピン プラスチック SO および ピン プラスチック SO パッケージ アプリケーション 電源モニタ リレー駆動 発振器
LT1638/LT1639 - 1.2MHZ、0.4V/μs Over-The-Topマイクロパワーレール・トゥ・レール入力/出力オペアンプ
特 長 / 3μA 利 得 帯 域 幅 積 :.MHz スルーレート:.4/μs 高 出 力 電 流 :5mA 最 小 3 5 および±5 電 源 で 仕 様 を 規 定 までの 逆 バッテリ 保 護 電 源 シーケンスの 問 題 なし 高 電 圧 利 得 :5/m 単 一 電 源 入 力 範 囲 :.4~44 高 CMRR:9dB 位 相 反 転 なし 4ピンSO ピンMSOPおよびDFNパッケージ
Unidirectional Measurement Current-Shunt Monitor with Dual Comparators (Rev. B
www.tij.co.jp INA206 INA207 INA208 INA206-INA208 INA206-INA208 V S 1 14 V IN+ V S 1 10 V IN+ OUT CMP1 IN /0.6V REF 2 3 1.2V REF 13 12 V IN 1.2V REF OUT OUT CMP1 IN+ 2 3 9 8 V IN CMP1 OUT CMP1 IN+ 4 11
LT1366/LT1367/LT1368/LT デュアル/クワッド高精度レール・トゥ・レール入力/出力オペアンプ
特長 概要 デュアル / クワッド高精度レール トゥ レール入力 / 出力オペアンプ 5μ 高同相除去比 :9 高 A OL :/μ( 最小 k 負荷ドライブ時 ) 低入力バイアス電流 : 広い電源範囲 :.8から ±5 低電源電流 :375μA/ アンプ 高出力ドライブ :3mA 利得 バンド幅積 :4kHz スルーレート :.3/µs 最大 pfの容量性負荷で安定動作 アプリケーション レール
LM7171 高速、高出力電流、電圧帰還型オペアンプ
Very High Speed, High Output Current, Voltage Feedback Amplifier Literature Number: JAJS842 2 1 6.5mA 4100V/ s 200MHz HDSL 100mA 15V S/N ADC/DAC SFDR THD 5V VIP III (Vertically integrated PNP) 19850223
LM193/LM293/LM393/LM 回路入り低動作電圧低オフセット電圧コンパレータ
LM193,LM2903,LM293,LM393 LM193/ Low Power Low Offset Voltage Dual Comparators Literature Number: JAJSB74 2 LM293 2.0mV 2 A/D VCO MOS LM293 TTL CMOS LM293 MOS LM393 LM2903 Micro SMD 8 ( 0.3mm) Squarewave
Triple 2:1 High-Speed Video Multiplexer (Rev. C
www.tij.co.jp OPA3875 µ ± +5V µ RGB Channel OPA3875 OPA3875 (Patented) RGB Out SELECT ENABLE RED OUT GREEN OUT BLUE OUT 1 R G B RGB Channel 1 R1 G1 B1 X 1 Off Off Off 5V Channel Select EN OPA875 OPA4872
LP3470 Tiny Power On Reset Circuit (jp)
Tiny Power On Reset Circuit Literature Number: JAJS547 IC ( C) CMOS IC 2.63V 2.93V 3.08V 3.65V 4.00V 4.38V 4.63V 6 (V RTH ) 2.4V 5.0V V CC (L ow ) ( ) V CC ( ) IC SOT23-5 1 : 2.63V 2.93V 3.08V 3.65V 4.00V
LM3886
Overture 68W ( ) 0.1 (THD N) 20Hz 20kHz 4 68W 8 38W SPiKe TM (Self Peak Instantaneous Temperature ( Ke)) SOA (Safe Operating Area) SPiKe 2.0 V ( ) 92dB (min) SN 0.03 THD N IMD (SMTPE) 0.004 V CC 28V 4
LTC 自己給電絶縁型コンパレータ
AC 120V TECCOR 4008L4 OR EUIVALENT NEUTRAL 2N2222 HEATER 25Ω 150Ω 1k 1N4004 2.5k 5W 5.6V R1 680k 390Ω 100µF LE 47k C1 0.01µF ZC ZC COMPARISON > R = R O e B (1/T 1/T O ) B = 3807 1µF THERM 30k YSI 44008
LT 定電流/定電圧、入力電流制限付き 2Aバッテリ・チャージャ
* µ ** µ D1 MBRS13LT3 C2.47µF L1** 22µH D2 4148 2pF NOTE: COMPLETE LITHIUM-ION CHARGER, NO TERMINATION REQUIRED. R S4, R7 AND C1 ARE OPTIONAL FOR I IN LIMITING *TOKIN OR UNITED CHEMI-CON/MARCON CERAMIC
LTC 高効率同期整流式降圧スイッチング・レギュレータ
µ LTC1735-1 C OSC 47pF C C2 330pF 47pF PGOOD 1 C OSC TG C SS 0.1µF 2 RUN/SS BOOST R C1 33k 3 I TH LTC1735-1 SW C C1 47pF 4 5 PGOOD SENSE V IN 1000pF 6 7 8 SENSE V OSENSE SGND BG PGND EXTV CC 10Ω 10Ω 16
HA17458シリーズ データシート
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ADC121S Bit, ksps, Diff Input, Micro Pwr Sampling ADC (jp)
ADC121S625 ADC121S625 12-Bit, 50 ksps to 200 ksps, Differential Input, Micro Power Sampling A/D Converter Literature Number: JAJSAB8 ADC121S625 12 50kSPS 200kSPS A/D ADC121S625 50kSPS 200kSPS 12 A/D 500mV
LM150/LM350A/LM350 3A 可変型レギュレータ
LM150,LM350,LM350A LM150/LM350A/LM350 3-Amp Adjustable Regulators Literature Number: JAJSBC0 LM350A/LM350 3A LM350 1.2V 33V 3A 3 IC 2 & IC ADJ 6 ADJ LM350 100V ADJ LM350 ADJ 1.2V 3A LM350A 3A LM350 3A
Plastic Package (Note 12) Note 1: ( ) Top View Order Number T or TF See NS Package Number TA11B for Staggered Lead Non-Isolated Package or TF11B for S
Overture 68W ( ) 0.1 (THD N) 20Hz 20kHz 4 68W 8 38W SPiKe (Self Peak Instantaneous Temperature ( Ke)) SOA (Safe Operating Area) SPiKe 2.0 V ( ) 92dB (min) SN 0.03 THD N IMD (SMTPE) 0.004 V CC 28V 4 68W
LTC ホット・スワップ・コントローラ
LTC / GND CNECTOR CNECTOR R Q 0.00Ω MTB0N0V SENSE LTC GND C 0.µF R 0Ω FB C 0.µF.k % R.k % µp C 00µF V BACKPLANE PLUG-IN CARD TA0 LTC GND N PACKAGE -LEAD PDIP TOP VIEW SENSE FB S PACKAGE -LEAD PLASTIC SO
????????????MUX ????????????????????
PGA116 PGA112 PGA113 PGA117 PGA112, PGA113 PGA116, PGA117 www.tij.co.jp µµ µµ ± µ +5V +3V AV DD 1 C BYPASS.1µF DV DD C BYPASS.1µF C BYPASS.1µF V CAL/CH CH1 3 2 1kΩ MUX CAL1 PGA112 PGA113 R F 1 Output Stage
LM2940
1A 3 1A 3 0.5V 1V 1A 3V 1A 5V 30mA (V IN V OUT 3V) 2 (60V) * C Converted to nat2000 DTD updated with tape and reel with the new package name. SN Mil-Aero: Order Info table - moved J-15 part from WG row
DS90LV011A 3V LVDS 1 回路入り高速差動出力ドライバ
3V LVDS Single High Speed Differential Driver Literature Number: JAJS962 Single High Speed Differential Driver 19961015 23685 ds200149 Input Voltage changed to 3.6V from 5V Updated DC and AC typs basic
?????????????????NMOS?250mA????????????????
TPS732xx µ µ µ µ µ DBV PACKAGE SOT23 (TOP VIEW) DCQ PACKAGE SOT223 (TOP VIEW) TAB IS GND 1 5 GND 2 1 2 3 4 5 EN 3 4 NR/FB Optional Optional GND EN NR/FB V TPS732xx DRB PACKAGE 3mm x 3mm SON (TOP VIEW)
LM35 高精度・摂氏直読温度センサIC
Precision Centigrade Temperature Sensors Literature Number: JAJSB56 IC A IC D IC IC ( ) IC ( K) 1/4 55 150 3/4 60 A 0.1 55 150 C 40 110 ( 10 ) TO-46 C CA D TO-92 C IC CA IC 19831026 24120 11800 ds005516
LT3022/LT LT /LT – 0.9V~10Vで動作する1A VLDOリニア・レギュレータ
LT322/LT322-1.2 LT322-1.5/LT322-1.8.V~1V で動作する 1A VLDO リニア レギュレータ 特長.V 1V 145 1A V REF = V OUT MIN = 2 : 1.2V 1.5V 1.8V 低 ESRセラミック出力コンデンサ ( 最小 1μF) で安定 1mA~1Aの範囲で標準.5% の負荷レギュレーションを実現 消費電流 : 標準 4μA シャットダウン時の消費電流
LT 高信号レベル・アップコンバーティング・ミキサ
LT 高信号レベルアップコンバーティング ミキサ 特長 MHz RF RF IF IP 7dBm 9MHz dbm IF db RF LO dbm LO 二重平衡ミキサ イネーブル機能.V~.Vの単一電源電圧範囲 露出パッド付き ピン TSSOPパッケージ アプリケーション CATV ダウンリンク インフラストラクチャ ワイヤレス インフラストラクチャ 高直線性ミキサ アプリケーション 概要 LT
High-Voltage (100V
www.tij.co.jp ± ± ± ± ± IN +IN Status Flag Enable/Disable (E/D) V O Enable/Disable Common (E/D Com) PRODUCT DESCRIPTION OPA445 (1) 8V, 15mA OPA452 8V, 5mA OPA547 6V, 75mA OPA548 6V, 3A OPA549 6V, 9A OPA551
AD8515: 1.8 V 低電力 CMOS レール to レール入力/出力オペアンプ
REV. REVISION 15-6891 1-16-1 3 542 82 532-3 3-5-36 MT 2 6 635 6868 AD8515 1.8V CMOS to 1.8 5V 6mV SOT23 2.7V/µs 5MH to 2pA 1.8V 45µA PCMCIA PDA AD8515 1.8Vto SOT23-5L AD8515 5MHz 1.8V1mV to 2.7V/µs ASIC
LM117/LM317A/LM317 可変型3 端子レギュレータ
LM117,LM317 LM117/LM317A/LM317 3-Terminal Adjustable Regulator Literature Number: JAJSBC1 LM317A/LM317 3 3 LM317A 3 LM317 1.2 37V 1.5A 3 IC 2 / IC AC IC 6 3 LM317 3-Terminal Adjustable Regulator LM117
LT 単一セル・マイクロパワー600kHz PWM DC/DCコンバータ
µ µ µ µ µ µ µ 1.5V CELL C1 SHUTDOWN L1 1µH D1 1k 68pF R2 6k 1% C1: MURATA-ERIE GRM235Y5V15Z1 MARCON THCS5E1E15Z TOKIN 1E15ZY5U-C13-F C2: MURATA-ERIE GRM235Y5V16Z1 MARCON THCS5E1E15Z TOKIN 1E16ZY5U-C3-F
LTC PCI Express用デュアルスロット・ホットスワップ・コントローラ
PCI Express 2PCI Express 1220 0.25Ω AUX 1μs Force On Test N MOSFET 38 QFN 36 SSOP PCI Express PC LTC4242 PCI Express LTC 4242 PCI Express 2 N 12 3.3 3.3 12 3.3 LTC4242 CC EN PCI Express FAULT AUXFAULT
16-Bit, Serial Input Multiplying Digital-to-Analog Converter (Rev. B
DAC8811 www.tij.co.jp ± ± µ ± µ ± V REF CS Power-On Reset DAC8811 D/A Converter 16 DAC Register 16 R FB I OUT CLK SDI Shift Register GND DAC8811C ±1 ±1 MSOP-8 (DGK) 4to 85 D11 DAC8811ICDGKT DAC8811C ±1
LM4040.fm
SC70 SOT-23 2.048V 2.500V 3.000V 4.096V 5.000V 8.192V 10.000V -2.5 60 A - 10.0 100 A 15mA 25 0.1 (A ) 1.2V 2 LM4041 LM4041 Precision Micropower Shunt Voltage Reference 19911220 24180 DS011323 Converted
DAC121S101/DAC121S101Q 12-Bit Micro Power, RRO Digital-to-Analog Converter (jp)
DAC121S101 DAC121S101/DAC121S101Q 12-Bit Micro Power, RRO Digital-to-Analog Converter Literature Number: JAJSA89 DAC121S101 12 D/A DAC121S101 12 D/A (DAC) 2.7V 5.5V 3.6V 177 A 30MHz 3 SPI TM QSPI MICROWIRE
MAX985-994 DS.J
9-9; Rev ; 7/97 µ MAX98 Push/Pull MAX986 Open-Drain MAX989 Push/Pull MAX990 Open-Drain MAX99 Push/Pull MAX99 Open-Drain 8 SO/ SOT- 8 SO/ SOT- 8 SO/µMAX 8 SO/µMAX SO SO µ µ µ PART MAX98EUK-T MAX98ESA MAX986EUK-T
R1EV5801MBシリーズ データシート
1M EEPROM (128-kword 8-bit) Ready/Busy and function R10DS0209JJ0100 Rev.1.00 131072 8 EEPROM ROM MONOS CMOS 128 2.7V 5.5V 150ns (max) @ Vcc=4.5V 5.5V 250ns(max) @ Vcc=2.7V 5.5V 20mW/MHz (typ) 110µW (max)
LM mA 低ドロップアウト・リニア・レギュレータ
800mA 800mA LM1117I 800mA LM1117 Chris Russell LM1117 800mA 1.2V LM1117 LM317 LM1117 2 1.25V 13.8V 1.8V 2.5V 2.85V 3.3V 5V 5 LM1117 1 LM1117 LLP TO-263 SOT-223 TO-220 TO-252 10 F 19970801 23900 DS100919
LP2985 マイクロパワー150mA 低ノイズ、超低ドロップアウト・レギュレータ(SOT-23 およびmicro SMD パッケージ) 超低ESR 出力コンデンサが使用可能
VIP 150mA ESR 2985 LP 19980108 24060 DS100140 Sgm file from Marcom and made addition and changes. lm New datasheet from Chester Simpson; RRD to key in text added titles for all the new curves and some
DS90LV V or 5V LVDS Driver/Receiver (jp)
DS90LV019 DS90LV019 3.3V or 5V LVDS Driver/Receiver Literature Number: JAJS563 DS90LV019 LVDS 1 / DS90LV019 Low Voltage Differential Signaling (LVDS) 1 CMOS / DS90LV019 EIA-644 IEEE1596.3 (SCI LVDS) 2
TO-92 Plastic Package (Z) TO-252 (D-Pak) Bottom View Dual-In-Line Packages (N) Surface-Mount Package (M, MM) Front View 8-Lead LLP Top View 4 DAP Top
2951 LP 2950 LP 19850603 33200 24060 LP2950 LP2951 ( 75 A) ( 40mV 100mA 380mV) LP2950-5.0 D-Pak 3 TO-92 5V LP2951 8 (DIP) LLP 8 1 1 / 3V 3.3V 5V ( ) 1.24V 29V ( 0.5%) ( 0.05%) 11800 DS008546 fixed the
ADC082S021 2 Channel, 50 ksps to 200 ksps, 8-Bit A/D Converter (jp)
2 Channel, 50 ksps to 200 ksps, 8-Bit A/D Converter Literature Number: JAJSAA2 2 200KSPS 8 A/D 2 8 CMOS A/D 50kSPS 200kSPS / IN1 IN2 1 2 SPI QSPI MICROWIRE DSP 2.7V 5.25V 3V 1.6mW 5V 5.8mW 3V 0.12 W 5V
DS90LV047A
3V LVDS 4 CMOS 4 CMOS Low Voltage Differential Signaling (LVDS) 400Mbps (200MHz) TLL/CMOS 350mV TRI-STATE 13mW ( ) PCB ENABLE ENABLE* AND TRI- STATE 4 DS90LV04 A (DS90LV048A ) ECL 1 1 Dual-In-Line 3V LVDS
LM2940/LM2940C 1A 低ドロップアウト3 端子レギュレータ
LM2940,LM2940C LM2940/LM2940C 1A Low Dropout Regulator Literature Number: JAJSBB5 LM2940/LM2940C 1A 3 LM2940/LM2940C 0.5V 1V 1A 3V 1A 5V 30mA (V IN V OUT 3V) LM2940 * 1A Low Dropout Regulator LM2940C 1A
M51995AP/AFP データシート
お客様各位 カタログ等資料中の旧社名の扱いについて 21 年 4 月 1 日を以って NEC エレクトロニクス株式会社及び株式会社ルネサステクノロジが合併し 両社の全ての事業が当社に承継されております 従いまして 本資料中には旧社名での表記が残っておりますが 当社の資料として有効ですので ご理解の程宜しくお願い申し上げます ルネサスエレクトロニクスホームページ (http://www.renesas.com)
pc725v0nszxf_j
PC725NSZXF PC725NSZXF PC725NSZXF PC725 DE file PC725 Date Jun. 3. 25 SHARP Corporation PC725NSZXF 2 6 5 2 3 4 Anode Cathode NC Emitter 3 4 5 Collector 6 Base PC725NSZXF PC725YSZXF.6 ±.2.2 ±.3 SHARP "S"
LT3420/LT 自動リフレッシュ付きフォトフラッシュ・コンデンサ・チャージャ
特長 自動リフレッシュ付きフォトフラッシュ コンデンサ チャージャ 概要 5V 0μF 3. 30V LT30 5V 00μF 3.5 30V LT30- AA.V V.A LT30.0A LT30-0mA LT30 50mA LT30-5% 可変出力 自動リフレッシュ 充電終了インジケータ 高電圧のツェナー ダイオードが不要 出力電圧分割器が不要 小型 0ピン MSOPパッケージ 小型 0ピン (3mm
R1LV0416Dシリーズ データシート
Wide Temperature Range Version 4M SRAM (256-kword 16-bit) RJJ03C0237-0100 Rev. 1.00 2007.05.24 262,144 16 4M RAM TFT 44 TSOP II 48 CSP 0.75mm 3.0V 2.7V 3.6V 55/70ns max 3µW typ V CC =3.0V 2CS 40 +85 C
untitled
NJM88/A ma.µf SOT-89- TO--(NJM88ADL) ESON6-H(NJM88AKH) NJM88U NJM88ADL NJM88AKH (...97mm) 7dB typ. (f=khz, Vo=V ) Vno=µVrms typ..µf (Vo.7V) Io(max.)=mA Vo±.%.8V typ. (Io=mA ) ON/OFF SOT-89-(NJM88U) / TO--(NJM88ADL)
LTC4307-1 - 高精細マルチメディア・インターフェイス(HDMI)レベルシフト2線バス・バッファ
HDMI 2 DDC HDMI 1.3 DDC 3.3V 5V 5kV ESD 60mV V OL I 2 C SDA SCL I 2 C I 2 C Fast Mode SMBus READY V CC = 0VSDA SCL 8(3mm 3mm ) DFN 8MSOP HDMI 3.3V/5V / LTC4307-12 HDMIDDC 50pF LTC4307-1 10pF HDMI 50pF
LT GHz~3.8GHz高直線性アップコンバーティング・ミキサ
1.5GHz~3.GHz 高直線性アップコンバーティング ミキサ 特長 IP3.1GHz 7.3m m/hz (P OUT = 5m).1GHz. 1.5GHz 3.GHz* LO RFLO LO 1m 単一 3.3V 電源 5mm 5mm QFN パッケージ アプリケーション GSM/EDGE W-CDMA UMTS LTE および TD-SCDMA の基地局.GHz~3.5GHz の WiMAX
LT1720/LT レール・トゥ・レール出力3V/5V単一電源、4.5nsデュアル/クワッド・コンパレータ
特長 2mV 4.5ns 5mV 7ns 1 4mA 3Vおよび 動作に最適 高速用の使いやすいピン配置 入力電圧範囲は負電源レール以下 1mV まで TTL/CMOS 互換のレール トゥ レール出力 リミットが規定された内部ヒステリシス 少ない動作時流出電流 :15μA/(V-MHz) ほとんどの回路において負荷で決定 3mm 3mm.75mm の小型 DFN パッケージ (LT172) アプリケーション
AD8250 :ゲイン設定可能(G=1、2、5、10)な 10MHz、20V/μsのiCMOS®計装アンプ
G 2 5 MHz 2V/µs icmos AD825 MSOP 2 5 5 5V DC CMRR 98dB G ppm/.7µv/ G AC.% 65ns 2V/µs khz THD db CMRR 5kHz 8dB 8nV/ Hz G ma IN +IN DGD A A 2 6 5 LOGIC AD825 8 3 9 7 OUT 6288-25 2 5 G = G = 5 AD825 GΩ PGIA
HN58V256Aシリーズ/HN58V257Aシリーズ データシート
HN58V256A HN58V257A 256k EEPROM (32-kword 8-bit) Ready/Busy and RES function (HN58V257A) RJJ03C0132-0600 Rev. 6.00 2007. 05. 24 HN58V256A HN58V257A 32768 8 EEPROM ROM MNOS CMOS 64 3V 2.7 5.5V 120ns (max)
HN58C256A シリーズ/HN58C257A シリーズ データシート
HN58C256A HN58C257A 256k EEPROM (32-kword 8-bit) Ready/Busy and RES function (HN58C257A) RJJ03C0133-0600Z Rev. 6.00 2006. 10. 26 HN58C256A HN58C257A 32768 8 EEPROM ROM MNOS CMOS 64 5V±10% 85ns/100ns (max)
R1LV1616H-I シリーズ
お客様各位 カタログ等資料中の旧社名の扱いについて 2010 年 4 月 1 日を以って NEC エレクトロニクス株式会社及び株式会社ルネサステクノロジが合併し 両社の全ての事業が当社に承継されております 従いまして 本資料中には旧社名での表記が残っておりますが 当社の資料として有効ですので ご理解の程宜しくお願い申し上げます ルネサスエレクトロニクスホームページ (http://www.renesas.com)
LMC555 CMOSタイマ
CMOS 555 CMOS (SOIC MSOP MDIP) micro SMD (8 micro SMD) LM555 2 1 LMCMOS TM CMOS 19850925 24100 ds008669 Converted to nat2000 DTD added title to the 2 avos on the first page Edited for 2001 Databook fixed
LM2831 高周波数動作 1.5A 負荷 降圧型DC/DCレギュレータ
High Frequency 1.5A Load - Step-Down DC-DC Regulator Literature Number: JAJSAH7 1.5A DC/DC 5 SOT23 6 LLP PWM DC/DC DC/DC PCB 0.5 m BiCMOS 1.5A 130m PMOS 30ns 3V 5.5V 0.6V 550 khz 1.6MHz 3.0MHz 93% 30nA
LM4663 2 Watt Stereo Class D Audio Pwr Amp w/Stereo Headphone Amplifier (jp)
2 Watt Stereo Class D Audio Power Amplifier with Stereo Headphone Amplifier Literature Number: JAJS693 Boomer 2006 4 A very minor text edit (typo). (MC) Converted to nat2000 DTD. Few edits on Table 1 and
MAX4832 DS.J
19-3372; Rev ; 7/4 FLAG RESET FLAG RESET µ µ TOP VIEW IN GND 1 2 6 OUT 5 SS µ µ PART TEMP RANGE PIN-PACKAGE MAX4832EUTxy_-T* -4 C to +85 C 6 SOT23-6 MAX4832ETTxy_-T -4 C to +85 C 6 TDFN-6 MAX4833EUTxy_dd-T*
