SM5009 NPC | Alldatasheet

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NIPPON PRECISION CIRCUITS INC.—1 Crystal Oscillator Module ICs OVERVIEW The SM5009 series are crystal oscillator module ICs that incorporate low crystal current type oscillating circuit to limit oscillator-stage current, so that they can reduce crystal current lower than the existing products. Since the oscillating circuit has oscillator capacitors with excellent frequency response and feedback resistor built-in, just connecting crystal realizes stable fundamental oscillation responding up to 40MHz. The SM5009 series are ideal for SMD type crystal oscillator using a strip-shaped crystal blank.

FEATURES

I Low crystal current oscillator I Up to 40MHz operating frequency range (funda- mental oscillation) I Operating supply voltage range

  • 3V operation: 2.7 to 3.6V
  • 5V operation: 4.5 to 5.5V I –40 to 85 C operating temperature range I Oscillation capacitors C G , C D built-in I Inverter amplifier feedback resistor built-in I Standby function
  • Oscillator stops (AL series), high impedance in standby mode I Low standby current
  • Power-save pull-up resistor built-in (AL series) I Frequency divider built-in (f O , f O /2, f O /4, f O /8, f O /16, f O /32 determined by internal connection) I Output drive capability
  • A L , AN , AK , CN : 16mA (V DD 4.5V)
  • A H : 4mA (V DD 4.5V) I Output load: C L = 50pF max. I Output duty level
  • CMOS level (1/2 VDD): AL , AN , AH , CN
  • TTL level (1.4V): AK I Molybdenum-gate CMOS process I 8-pin SOP (SM5009 ××× I Chip form (CF5009 ××× SERIES CONFIGURATION

APPLICATIONS

I SMD type crystal oscillator module

ORDERING INFORMATION

  1. Package devices (8-pin SOP) have designation SM5009 ××× 3V operation 5V operation Output duty level Output frequency INH Input level Standby mode Recommended operating frequency range [MHz] 2. The recommended operating frequency is a yardstick value derived from the crystal used for NPC characteristics authenticatio n. However, the oscil- lator frequency band is not guaranteed. Specifically, the characteristics can vary greatly due to crystal characteristics and mo unting conditions, so the oscillation characteristics of components must be carefully evaluated. Output load (max) [pF] 3. Output load value is the maximum load capacitance that allows drive. Recommended operating frequency range [MHz] Output load (max) [pF] Oscillator stop function Output state CF5009AL1 Up to 40 50 Up to 40 50 CMOS f O CMOS Y es Hi-Z CF5009AL2 f O CF5009AL3 f O CF5009AL4 f O CF5009AL5 f O /16 CF5009AL6 f O /32 CF5009AN1 Up to 40 30 Up to 40 50 CMOS f O TTL No Hi-Z CF5009AN2 f O CF5009AN3 CMOS/TTL f O CF5009AN4 f O CF5009AN5 f O /16 CF5009AN6 f O /32 CF5009CN1 Up to 30 15 Up to 30 50 CMOS f O TTL No Hi-ZCF5009CN2 f O CF5009AK1 – – Up to 40 15 TTL f O TTL No Hi-ZCF5009AK2 f O CF5009AH1 Up to 16 15 Up to 30 15 CMOS f O TTL No Hi-ZCF5009AH2 f O CF5009AH3 f O CF5009AH4 f O Device Package SM5009 ××× S 8-pin SOP CF5009 ××× –1 Chip form

NIPPON PRECISION CIRCUITS INC.—2 PAD LAYOUT (Unit: µ PINOUT (Top view) PIN DESCRIPTION and PAD DIMENSIONS Chip size: 0.92 1.22 mm Chip thickness: 300 ± 30 µm Chip base: V DD level QVDD XT VSS(0,0) (920,1220) X Y HA5009 INH XT XT VSS Q VDD 3 NC NC XT INH Number Name I/O Description Pad dimensions [µm] XY 1I N H I Output state control input. Standby mode when LOW, pull-up resistor built-in. In the case of the CF5009AL , the oscillator stops and power-save pull-up resistor built in to reduce current consumption at standby mode. 195 212 2 XT I Amplifier input. Crystal oscillator connection pins. Crystal oscillator connected between XT and XT 385 212 3X T O Amplifier output. 575 212

4 VSS – Ground 766 212

5QO Output. Output frequency (f O , f O /2, f O /4, f O /8, f O /16, f O /32) determined by internal connection 765 1062

6 NC – No connection – –

7 NC – No connection – –

8 VDD – Supply voltage 162 1062

NIPPON PRECISION CIRCUITS INC.—3 PACKAGE DIMENSIONS (Unit: mm) 8-pin SOP BLOCK DIAGRAM Notes. The SM5009 series reduce crystal current by limiting driving current of oscillating-stage inverter and inhibiting oscillating amplitude. Depending on the characteristics of using crystal or the mounting condition, they may not oscillate normally. Please evaluate the oscillation start-up characteris- tics adequately with your actual device. 4.4 0.2 1.5 0.1 0.05 0.05 0.4 0.2 5.2 0.3 0.4 0.1 0.15 + 0.1− 0.05 0 to 10 6.2 0.3 0.695typ 1.27 0.12 M 0.10 XT VSSVDD Q CGp CDp Rf XT INH 1/2 1/21/2 1/2 1/2 CGn CDn

NIPPON PRECISION CIRCUITS INC.—4 FUNCTIONAL DESCRIPTION Standby Function 5009 AL series When INH goes LOW, the oscillator stops and the oscillator output on Q becomes high impedance. 5009AH , AK , AN , CN series When INH goes LOW, the output on Q becomes high impedance, but internally the oscillator does not stop. Power-save Pull-up Resistance (AL series only) The INH pull-up resistance changes in response to the input level (HIGH or LOW). When INH goes LOW (standby state), the pull-up resistance becomes large to reduce the current consumption during standby. Current consumption and Output waveform with NPC’s standard crystal Version INH Q Oscillator AL series HIGH (or open) Any f O , f O /2, f O /4, f O /8, f O /16 or f O /32 output frequency Normal operation LOW High impedance Stopped AH , AK , AN , CN series HIGH (or open) Any f O , f O /2, f O /4, f O /8, f O /16 or f O /32 output frequency Normal operation LOW High impedance Normal operation f [MHz] R [ Ω] L [mH] Ca [fF] Cb [pF] 30 17.2 4.36 6.46 2.26 40 16.8 2.90 5.47 2.08 L Ca R Cb

NIPPON PRECISION CIRCUITS INC.—5 SPECIFICATIONS Absolute Maximum Ratings V SS = 0V unless otherwise noted. Recommended Operating Conditions V SS = 0V unless otherwise noted. Parameter Symbol Condition Rating Unit Supply voltage range V DD 0.5 to +7.0 V Input voltage range V IN 0.5 to V DD + 0.5 V Output voltage range V OUT −0.5 to VDD + 0.5 V Operating temperature range T opr −40 to +85 °C Storage temperature range T stg Chip form −65 to +150 8-pin SOP −55 to +125 Output current I OUT 25 mA Power dissipation P D 8-pin SOP 500 mW Parameter Symbol Version Condition Rating Unit min typ max Supply voltage V DD AH× f ≤ 30MHz 4.5 – 5.5 V f ≤ 16MHz 2.7 – 3.3 AK× f ≤ 40MHz 4.5 – 5.5 V AN× f ≤ 40MHz 2.7 – 5.5 V CN× f ≤ 30MHz 2.7 – 5.5 V AL× Chip form f ≤ 40MHz 2.7 – 5.5 V f ≤ 30MHz 2.3 – 2.7 f ≤ 20MHz 2.25 – 2.75 8-pin SOP f ≤ 40MHz 2.7 – 5.5 f ≤ 14.4MHz 2.4 – 2.7 Input voltage V IN All version V SS –V DD V Operating temperature T OPR AH× f ≤ 30MHz, 4.5V ≤ VDD ≤ 5.5V − 40 – + 85 f ≤ 16MHz, 2.7V ≤ VDD ≤ 3.6V − 20 – + 80 AK× f ≤ 30MHz − 40 – + 85 30MHz < f ≤ 40MHz − 20 – + 80 AN× Chip form f ≤ 40MHz, 2.7V ≤ VDD < 4.5V − 20 – + 80 f ≤ 40MHz, 4.5V ≤ VDD ≤ 5.5V − 40 – + 85 8-pin SOP f ≤ 40MHz, 2.7V ≤ VDD < 4.5V − 20 – + 80 f ≤ 40MHz, 4.5V ≤ VDD ≤ 5.5V − 20 – + 80 f ≤ 30MHz, 4.5V ≤ VDD ≤ 5.5V − 40 – + 85 CN× f ≤ 30MHz, 2.7V ≤ VDD < 4.5V − 10 – + 70 f ≤ 30MHz, 4.5V ≤ VDD ≤ 5.5V − 40 – + 85 AL× Chip form f ≤ 40MHz, 2.7V ≤ VDD ≤ 5.5V − 40 – + 85 f ≤ 30MHz, 2.3V ≤ VDD ≤ 2.7V − 20 – + 80 f ≤ 20MHz, 2.25V ≤ VDD ≤ 2.75V − 20 – + 80 8-pin SOP f ≤ 40MHz, 2.7V ≤ VDD ≤ 5.5V − 20 – + 80 f ≤ 30MHz, 2.7V ≤ VDD ≤ 5.5V − 40 – + 85 f ≤ 14.4MHz, 2.4V ≤ VDD ≤ 2.7V − 20 – + 80

NIPPON PRECISION CIRCUITS INC.—6

Electrical Characteristics

5009AL× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 8mA 2.2 – – V LOW-level output voltage V OL Q: Measurement cct 1, IOL = 8mA – – 0.4 V HIGH-level input voltage V IH INH 0.7VDD ––V LOW-level input voltage V IL INH – – 0.3V DD V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator CF5009AL1 – 8 17 mA CF5009AL2 – 5 11 CF5009AL3 – 4 9 CF5009AL4 – 3 7 CF5009AL5 – 3 6 CF5009AL6 – 2 5 INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator, Ta = –20 to +80°C SM5009AL1S – 8 17 SM5009AL2S – 5 11 SM5009AL3S – 4 9 SM5009AL4S – 3 7 SM5009AL5S – 3 6 SM5009AL6S – 2 5 Standby current I ST INH = VSS, Measurement cct 3 – 2 5 µA INH pull-up resistance RUP1 Measurement cct 4, VDD = 3V, INH = VSS 0.6 – 12 M Ω RUP2 Measurement cct 4, VDD = 3V, INH = 2.1V 40 – 200 k Ω Negative resistance −RL VDD = 3V, Ta = 25°C, 40MHz – –200 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—7 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 16mA 4.0 – – V LOW-level output voltage V OL Q: Measurement cct 1, IOL = 16mA – – 0.4 V HIGH-level input voltage V IH INH 0.7VDD ––V LOW-level input voltage V IL INH – – 0.3V DD V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator CF5009AL1 – 12 26 mA CF5009AL2 – 8 17 CF5009AL3 – 6 13 CF5009AL4 – 5 11 CF5009AL5 – 5 10 CF5009AL6 – 4 9 INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator, Ta = –20 to +80°C SM5009AL1S – 12 26 SM5009AL2S – 8 17 SM5009AL3S – 6 13 SM5009AL4S – 5 11 SM5009AL5S – 5 10 SM5009AL6S – 4 9 Standby current I ST INH = VSS, Measurement cct 3 – 6 15 µA INH pull-up resistance RUP1 Measurement cct 4, VDD = 5V, INH = VSS 0.3 – 6 M Ω RUP2 Measurement cct 4, VDD = 5V, INH = 3.5V 40 – 200 k Ω Negative resistance −RL VDD = 5V, Ta = 25°C, 40MHz – –400 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—8 5009AN×/CN× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −20 to 80°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 8mA SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 2.2 – – V SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 2.1 – – LOW-level output voltage V OL Q: Measurement cct 1, IOL = 8mA – – 0.4 V HIGH-level input voltage V IH INH 2.0 – – V LOW-level input voltage V IL INH – – 0.3 V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator SM5009AN1S, CF5009AN1 – 8 17 mA SM5009AN2S, CF5009AN2 – 5 11 SM5009AN3S, CF5009AN3 – 4 9 SM5009AN4S, CF5009AN4 – 3 7 SM5009AN5S, CF5009AN5 – 3 6 SM5009AN6S, CF5009AN6 – 2 5 INH = open, Measurement cct 3, load cct 2, CL = 15pF , 30MHz crystal oscillator, Ta = –10 to +70°C SM5009CN1S, CF5009CN1 – 7 15 SM5009CN2S, CF5009CN2 – 4 9 INH pull-up resistance R UP Measurement cct 4, VDD = 3V, INH = VSS 40 – 200 k Ω Negative resistance −RL VDD = 3V, Ta = 25°C, 40MHz – –100 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—9 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 16mA SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 4.0 – – V SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 3.9 – – LOW-level output voltage V OL Q: Measurement cct 1, IOL = 16mA – – 0.4 V HIGH-level input voltage V IH INH 2.0 – – V LOW-level input voltage V IL INH – – 0.8 V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator CF5009AN1 – 12 26 mA CF5009AN2 – 8 17 CF5009AN3 – 6 13 CF5009AN4 – 5 11 CF5009AN5 – 5 10 CF5009AN6 – 4 9 INH = open, Measurement cct 3, load cct 2, CL = 15pF , 40MHz crystal oscillator, Ta = –20 to +80°C SM5009AN1S – 12 26 SM5009AN2S – 8 17 SM5009AN3S – 6 13 SM5009AN4S – 5 11 SM5009AN5S – 5 10 SM5009AN6S – 4 9 INH = open, Measurement cct 3, load cct 2, CL = 15pF , 30MHz crystal oscillator SM5009CN1S, CF5009CN1 – 10 22 SM5009CN2S, CF5009CN2 – 7 15 INH pull-up resistance R UP Measurement cct 4, VDD = 5V, INH = VSS 40 – 200 k Ω Negative resistance −RL VDD = 5V, Ta = 25°C, 40MHz – –210 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—10 5009AK× series VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 16mA 4.0 – – V LOW-level output voltage V OL Q: Measurement cct 1, IOL = 16mA – – 0.4 V HIGH-level input voltage V IH INH 2.0 – – V LOW-level input voltage V IL INH – – 0.8 V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 1, CL = 15pF , 40MHz crystal oscillator, Ta = –20 to +80°C SM5009AK1S – 12 26 mA CF5009AK1 – 12 26 SM5009AK2S – 8 17 CF5009AK2 – 8 17 INH pull-up resistance R UP Measurement cct 4, VDD = 5V, INH = VSS 40 – 200 k Ω Negative resistance −RL VDD = 5V, Ta = 25°C, 40MHz – –210 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—11 5009AH× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −20 to 80°C unless otherwise noted. 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 2mA 2.2 – – V LOW-level output voltage V OL Q: Measurement cct 1, IOL = 2mA – – 0.4 V HIGH-level input voltage V IH INH 2.0 – – V LOW-level input voltage V IL INH – – 0.3 V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 16MHz crystal oscillator SM5009AH1S CF5009AH1 – 4.5 10 mA SM5009AH2S CF5009AH2 –37 SM5009AH3S CF5009AH3 SM5009AH4S CF5009AH4 – 1.5 3.5 INH pull-up resistance R UP Measurement cct 4, VDD = 3V, INH = VSS 40 – 200 k Ω Negative resistance −RL VDD = 3V, Ta = 25°C, 16MHz – –450 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF Parameter Symbol Condition Rating Unit min typ max HIGH-level output voltage V OH Q: Measurement cct 1, IOH = 4mA 4.0 – – V LOW-level output voltage V OL Q: Measurement cct 1, IOL = 4mA – – 0.4 V HIGH-level input voltage V IH INH 2.0 – – V LOW-level input voltage V IL INH – – 0.8 V Output leakage current I Z Q: Measurement cct 2, INH = LOW, VOH = VDD –– 1 0 µA Q: Measurement cct 2, INH = LOW, VOL = VSS –– 1 0 Current consumption I DD INH = open, Measurement cct 3, load cct 2, CL = 15pF , 30MHz crystal oscillator SM5009AH1S CF5009AH1 –9 2 0 mA SM5009AH2S CF5009AH2 –6 1 3 SM5009AH3S CF5009AH3 SM5009AH4S CF5009AH4 –49 INH pull-up resistance R UP Measurement cct 4, VDD = 5V, INH = VSS 40 – 200 k Ω Negative resistance −RL VDD = 5V, Ta = 25°C, 30MHz – –340 – Ω Feedback resistance R f Measurement cct 5 0.4 – 1.1 M Ω Built-in capacitance CG Design value. A monitor pattern on a wafer is tested. 5.58 6 6.42 pF CD 9.3 10 10.7 pF

NIPPON PRECISION CIRCUITS INC.—12 Switching Characteristics 5009AL× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max Output rise time tr1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , CL = 15pF – 3.5 9 ns Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , VDD = 2.3 to 2.7V, Ta = –20 to +80°C, CL = 15pF –4 1 3 tr2 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , CL = 30pF – 5 12 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , VDD = 2.4 to 2.7V, Ta = –20 to +80°C, CL = 30pF – 5.5 16 tr3 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , VDD = 3.0 to 3.6V, f ≤ 30MHz, CL = 50pF –5 1 2 Measurement cct 3, load cct 2, 0.2VDD to 0.8VDD , VDD = 3.0 to 3.6V, f ≤ 40MHz, CL = 50pF – 3.5 12 Output fall time tf1 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , CL = 15pF – 3.5 9 ns Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , VDD = 2.3 to 2.7V, Ta = –20 to +80°C, CL = 15pF –4 1 3 tf2 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , CL = 30pF – 5 12 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , VDD = 2.4 to 2.7V, Ta = –20 to +80°C, CL = 30pF – 5.5 16 tf3 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , VDD = 3.0 to 3.6V, f ≤ 30MHz, CL = 50pF –5 1 2 Measurement cct 3, load cct 2, 0.8VDD to 0.2VDD , VDD = 3.0 to 3.6V, f ≤ 40MHz, CL = 50pF – 3.5 12 Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty1 Measurement cct 3, load cct 2, VDD = 3V, f ≤ 40MHz, Ta = 25°C, CL = 30pF 4 5–5 5 Measurement cct 3, load cct 2, VDD = 2.4V, f ≤ 14.4MHz, Ta = 25°C, CL = 30pF 4 0–6 0 CF5009AL× only, Measurement cct 3, load cct 2, VDD = 2.5V, f ≤ 30MHz, Ta = 25°C, CL = 15pF 4 0–6 0 Duty2 CF5009AL× only, Measurement cct 3, load cct 2, VDD = 3.3V, f ≤ 30MHz, Ta = 25°C, CL = 50pF 4 5–5 5 CF5009AL× only, Measurement cct 3, load cct 2, VDD = 3.3V, f ≤ 40MHz, Ta = 25°C, CL = 50pF 4 0–6 0 Output disable delay time2 2. Oscillator stop function is built-in. When INH goes LOW, normal output stops. When INH goes HIGH, normal output is not resumed until after the oscillator start-up time has elapsed. tPLZ Measurement cct 6, load cct 2, VDD = 3V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time2 tPZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 CF5009AL× 40 – – MHz SM5009AL×S3 0 – – Measurement cct 3, Ta = –20 to +80°C SM5009AL ×S4 0 – – Measurement cct 3, Ta = –20 to +80°C VDD = 2.4 to 2.7V, SM5009AL×S 14.4 – – VDD = 2.3 to 2.7V, CF5009AL× 30 – – VDD = 2.25 to 2.75V, CF5009AL× 20 – –

NIPPON PRECISION CIRCUITS INC.—13 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max Output rise time tr1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD CL = 15pF – 2 4 nstr2 CL = 30pF – 3.5 7 tr3 CL = 50pF – 4 8 Output fall time tf1 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD CL = 15pF – 2 4 nstf2 CL = 30pF – 3.5 7 tf3 CL = 50pF – 4 8 Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 2, V DD = 5V, Ta = 25°C, CL = 50pF 45 – 55 % Output disable delay time2 2. Oscillator stop function is built-in. When INH goes LOW, normal output stops. When INH goes HIGH, normal output is not resumed until after the oscillator start-up time has elapsed. tPLZ Measurement cct 6, load cct 2, VDD = 5V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time2 tPZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 CF5009AL× 40 – – MHzSM5009AL×S3 0 – – Measurement cct 3, Ta = –20 to +80°C SM5009AL ×S4 0 – –

NIPPON PRECISION CIRCUITS INC.—14 5009AN×/CN× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −20 to 80°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max Output rise time tr1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD ,CL = 15pF SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 – 3.5 9 ns SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 –5 1 3 t Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD ,CL = 30pF SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 –5 1 2 SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 –7 1 6 Output fall time t Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD ,CL = 15pF SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 – 3.5 9 ns SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 –5 1 3 t Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD ,CL = 30pF SM5009AN1S, CF5009AN1 SM5009AN2S, CF5009AN2 –5 1 2 SM5009AN3S, CF5009AN3 SM5009AN4S, CF5009AN4 SM5009AN5S, CF5009AN5 SM5009AN6S, CF5009AN6 SM5009CN1S, CF5009CN1 SM5009CN2S, CF5009CN2 –7 1 6 Output duty cycle 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 2, VDD = 3V, Ta = 25°C CL = 30 pF , SM5009AN×S, CF5009AN× 4 5–5 5 CL = 15 pF , SM5009CN×S, CF5009CN× 4 0–6 0 Output disable delay time t PLZ Measurement cct 6, load cct 2, VDD = 3V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time t PZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 SM5009AN×S, CF5009AN× 40 – – MHzTa = –10 to +70°C, SM5009CN×S, CF5009CN× 30 – –

NIPPON PRECISION CIRCUITS INC.—15 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. 5009AK× series VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max Output rise time tr1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD CL = 15pF – 2 4 nstr2 CL = 30pF – 3.5 7 tr3 CL = 50pF – 4 8 Output fall time tf1 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD CL = 15pF – 2 4 nstf2 CL = 30pF – 3.5 7 tf3 CL = 50pF – 4 8 Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 2, V DD = 5V, Ta = 25°C, CL = 50pF 45 – 55 % Output disable delay time t PLZ Measurement cct 6, load cct 2, VDD = 5V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time t PZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 SM5009AN×S, CF5009AN× 40 – – MHz SM5009CN×S, CF5009CN× 30 – – Parameter Symbol Condition Rating Unit min typ max Output rise time t r Measurement cct 3, load cct 1, 0.4V to 2.4V, CL = 15pF – 2 6 ns Output fall time t f Measurement cct 3, load cct 1, 2.4V to 0.4V, CL = 15pF – 2 6 ns Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 1, V DD = 5V, Ta = 25°C, CL = 15pF 45 – 55 % Output disable delay time t PLZ Measurement cct 6, load cct 1, VDD = 5V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time t PZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 Ta = –20 to +80°C4 0 – – MHz Ta = –40 to +85°C3 0 – –

NIPPON PRECISION CIRCUITS INC.—16 5009AH× series 3V operation: VDD = 2.7 to 3.3V , VSS = 0V , Ta = −20 to 80°C unless otherwise noted. 5V operation: VDD = 4.5 to 5.5V , VSS = 0V , Ta = −40 to 85°C unless otherwise noted. Parameter Symbol Condition Rating Unit min typ max Output rise time t r1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , CL = 15pF – 6 18 ns Output fall time t f1 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , CL = 15pF – 6 18 ns Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 2, V DD = 3V, Ta = 25°C, CL = 15pF 45 – 55 % Output disable delay time t PLZ Measurement cct 6, load cct 2, VDD = 3V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time t PZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 16 – – MHz Parameter Symbol Condition Rating Unit min typ max Output rise time t r1 Measurement cct 3, load cct 2, 0.1VDD to 0.9VDD , CL = 15pF – 4 12 ns Output fall time t f1 Measurement cct 3, load cct 2, 0.9VDD to 0.1VDD , CL = 15pF – 4 12 ns Output duty cycle1 1. The duty cycle characteristic is checked the sample chips of each production lot. Duty Measurement cct 3, load cct 2, V DD = 5V, Ta = 25°C, CL = 15pF 45 – 55 % Output disable delay time t PLZ Measurement cct 6, load cct 2, VDD = 5V, Ta = 25°C, CL ≤ 15pF – – 100 ns Output enable delay time t PZL – – 100 ns Maximum operating frequency fmax Measurement cct 3 30 – – MHz

NIPPON PRECISION CIRCUITS INC.—17 MEASUREMENT CIRCUITS Measurement cct 1

  • 5009AK×, AL×, AN1, AN2 R1: 50Ω R2: 250Ω(VDD = 4.5V), 275Ω(VDD = 2.7V) R3: 256Ω(VDD = 4.5V), 288Ω(VDD = 2.7V)
  • 5009AN3 to AN6, CN× R1: 50Ω R2: 245Ω(VDD = 4.5V), 262Ω(VDD = 2.7V) R3: 256Ω(VDD = 4.5V), 288Ω(VDD = 2.7V)
  • 5009AH× R1: 50Ω R2: 1000Ω(VDD = 4.5V), 1100Ω(VDD = 2.7V) R3: 1025Ω(VDD = 4.5V), 1150Ω(VDD = 2.7V) Measurement cct 2 Measurement cct 3 Signal Generator VDD VSS XT Q VDD XT input waveform (10MHz) VOH Q output VDD VDD VOLQ output When measuring VOL When measuring VOH VDD VSS Q IZ VOH VOL V A IZ VDD VSS XT QX'tal XT INH IDD ISTA Measurement cct 4 Measurement cct 5 Measurement cct 6 R1: 50Ω VDD VSS IPRA 3.0V or 5.0V INH V VIH VIL VDD IPR (VIL = 0V) RUP2 = IPR VIH : 2.1V(V DD = 3.0V) VIH : 3.5V(V DD = 5.0V) VDD VIH RUP RUP1 VDD VSS IRf Rf = XT VDD IRf XT A Signal Generator VSS XT Q VDD INH

NIPPON PRECISION CIRCUITS INC.—18 Load cct 1 Load cct 2 Switching Time Measurement Waveform Output duty level (CMOS) Output duty level (TTL) Output duty cycle (CMOS) Output duty cycle (TTL) CL = 15pF: DUTY , IDD, tr, tf R = 400Ω Q output (Including probe capacitance) R CL CL = 15pF: DUTY , IDD, tr1, tf1 CL = 30pF: tr2, tf2 CL = 50pF: tr3, tf3 Q output (Including probe capacitance) CL 0.9VDD 0.1VDD 0.9VDD 0.1VDD tr tf Q output DUTY measurement voltage (0.5VDD) TW 2.4V 0.4V 2.4V 0.4V tr tf Q output DUTY measurement voltage (1.4V) TW DUTY measurement voltage (0.5VDD)Q output TW T DUTY= TW/ T 100 (%) DUTY measurement voltage (1.4V) Q output TW T DUTY= TW/ T 100 (%)

NIPPON PRECISION CIRCUITS INC.—19 Output Enable/Disable Delay Note (AL× series only): when the device is in standby, the oscillator stops. When standby is released, the oscil- lator starts and stable oscillator output occurs after a short delay. Q output INH VIH VIL tPLZ tPZL INH input waveform tr = tf 10ns

NIPPON PRECISION CIRCUITS INC.—20 NC9801GE 2003.07 Please pay your attention to the following points at time of using the products shown in this document. The products shown in this document (hereinafter “Products”) are not intended to be used for the apparatus that exerts harmful influence on human lives due to the defects, failure or malfunction of the Products. Customers are requested to obtain prior written agreement for such use from NIPPON PRECISION CIRCUITS INC. (hereinafter “NPC”). Customers shall be solely responsible for, and indemnify and hold NPC free and harmless from, any and all claims, damages, losses, expenses or lawsuits, due to such use without such agreement. NPC reserves the right to change the specifications of the Products in order to improve the characteristic or reliability thereof. NPC makes no claim or warranty that the contents described in this document dose not infringe any intellectual property right or other similar right owned by third parties. Therefore, NPC shall not be responsible for such problems, even if the use is in accordance with the descriptions provided in this document. Any descriptions including applications, circuits, and the parameters of the Products in this document are for reference to use the Products, and shall not be guaranteed free from defect, inapplicability to the design for the mass-production products without further testing or modification. Customers are requested not to export or re-export, directly or indirectly, the Products to any country or any entity not in compliance with or in violation of the national export administration laws, treaties, orders and regulations. Customers are req uested appropriately take steps to obtain required permissions or approvals from appropriate government agencies. NIPPON PRECISION CIRCUITS INC. 4-3, Fukuzumi 2-chome, Koto-ku, Tokyo 135-8430, Japan Telephone: +81-3-3642-6661 Facsimile: +81-3-3642-6698 http://www.npc.co.jp/ Email: sales @npc.co.jp