| Mfr. #: | CDC706PW |
|---|---|
| 制造商: | Texas Instruments |
| 描述: | Clock Synthesizer / Jitter Cleaner Custom Prog 3-PLL Clock |
| 生命周期: | 制造商新产品。 |
| 数据表: | CDC706PW 数据表 |


Product belongs to the CDC706 series. Type: PLL Frequency Synthesizer Tube Alternate Packaging is the packaging method for this product Weight of 0.002716 oz SMD/SMT Mounting-Style TSSOP-20 Operational temperature range: -40°C ~ 85°C Surface Mount mounting type Voltage Supply Range: 3 V ~ 3.6 V Supplier device package: 20-TSSOP Input type: LVCMOS, Crystal The LVCMOS. 1 is 8. The Ratio-Input:Output for this product is 1899/12/30 1:06:00. Differential input and output are both available: Yes/No Maximum frequency of 300MHz Yes/Yes Divider-Multiplier Number-of-Outputs: 6 Output Maximum operating temperature of + 85 C Minimum operating temperature: - 40 C 90 mA is 92 nA. Maximum supply voltage of 3.6 V Minimum supply voltage is 3 V Maximum-Input-Frequency: 200 MHz Maximum output frequency is 300 MHz. LVCMOS is the output level. This product has an Crystal LVCMOS Differential for easy integration with other devices.

Image shown is a representation only. Exact specifications should be obtained from the product data sheet.

CDC706PW Specifications
A: At what frequency does the Series?
Q: The product Series is CDC706.
A: What is the Type of the product?
Q: The Type of the product is PLL Frequency Synthesizer.
A: What is the Packaging of the product?
Q: The Packaging of the product is Tube Alternate Packaging.
A: At what frequency does the Unit-Weight?
Q: The product Unit-Weight is 0.002716 oz.
A: Is the cutoff frequency of the product Mounting-Style?
Q: Yes, the product's Mounting-Style is indeed SMD/SMT
A: Is the cutoff frequency of the product Package-Case?
Q: Yes, the product's Package-Case is indeed TSSOP-20
A: At what frequency does the Operating-Temperature?
Q: The product Operating-Temperature is -40°C ~ 85°C.
A: Is the cutoff frequency of the product Mounting-Type?
Q: Yes, the product's Mounting-Type is indeed Surface Mount
A: Is the cutoff frequency of the product Voltage-Supply?
Q: Yes, the product's Voltage-Supply is indeed 3 V ~ 3.6 V
A: At what frequency does the Supplier-Device-Package?
Q: The product Supplier-Device-Package is 20-TSSOP.
A: At what frequency does the Input?
Q: The product Input is LVCMOS, Crystal.
A: Is the cutoff frequency of the product Output?
Q: Yes, the product's Output is indeed LVCMOS
A: At what frequency does the Number-of-Circuits?
Q: The product Number-of-Circuits is 1.
A: At what frequency does the Ratio-InputOutput?
Q: The product Ratio-InputOutput is 1899/12/30 1:06:00.
A: At what frequency does the Differential-InputOutput?
Q: The product Differential-InputOutput is Yes/No.
A: Is the cutoff frequency of the product Frequency-Max?
Q: Yes, the product's Frequency-Max is indeed 300MHz
A: At what frequency does the Divider-Multiplier?
Q: The product Divider-Multiplier is Yes/Yes.
A: Is the cutoff frequency of the product Number-of-Outputs?
Q: Yes, the product's Number-of-Outputs is indeed 6 Output
A: At what frequency does the Maximum-Operating-Temperature?
Q: The product Maximum-Operating-Temperature is + 85 C.
A: Is the cutoff frequency of the product Minimum-Operating-Temperature?
Q: Yes, the product's Minimum-Operating-Temperature is indeed - 40 C
A: Is the cutoff frequency of the product Operating-Supply-Current?
Q: Yes, the product's Operating-Supply-Current is indeed 90 mA
A: At what frequency does the Supply-Voltage-Max?
Q: The product Supply-Voltage-Max is 3.6 V.
A: Is the cutoff frequency of the product Supply-Voltage-Min?
Q: Yes, the product's Supply-Voltage-Min is indeed 3 V
A: Is the cutoff frequency of the product Maximum-Input-Frequency?
Q: Yes, the product's Maximum-Input-Frequency is indeed 200 MHz
A: Is the cutoff frequency of the product Max-Output-Freq?
Q: Yes, the product's Max-Output-Freq is indeed 300 MHz
A: At what frequency does the Output-Level?
Q: The product Output-Level is LVCMOS.
A: Is the cutoff frequency of the product Input-Level?
Q: Yes, the product's Input-Level is indeed Crystal LVCMOS Differential