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PAL16R6-35 Datasheet

\WV(V.DC) 25 (1E) 35 (1V) 50 (1H) 63 (1J)
Cap(ccF Size Ripple Size Ripple Size Ripple Size Ripple
0.1 4x7 1.3 4x7 1.3
0.22 4x7 3.0 4x7 3.0
0.33 4x7 4.4 4x7 4.4
0.47 4x7 6.3 4x7 6.3
1 4x7 12 4x7 12
2.2 4x7 16 4x7 16
3.3 4x7 18 4x7 19 5x7 24
4.7 4x7 21 4x7 22 4x7 24 6.3x7 33
10 4x7 31 5x7 32 5x7 42 6.3x7 45
22 5x7 55 6.3x7 60 6.3x7 64
33 6.3x7 66 6.3x7 73 8x7 75
47 6.3x7 80 8x7 95 8x7 85
100 8x7 115 8x7 115


PAL16R6-35 Price

Features: . Hermetically sealed . High output, 940nm . Small package . PC board mountable . Spectrally matched to the 61055 series detector Applications * Incremental encoding . Reflective sensors . Position sensors * Level sensors


PAL16R6-35 on stock
I Anyone purchasing an:i products described or contained herein for an above-mentioned use shall: Accept full respons+bilitli and indemnify and defend SANYO ELECTRIC CO., LTD., itS affiliates, subsidiaries and distributors and all their officers and employees, jointly and severally, against any and all claims and l,tigation and all damages. cost and expenses associated with such use: Not impose anlt responsibility for any fault or negligence which may be cited in any such claim or litigation on SANYO ELECTRIC CO., LTD., its affiliates, subsidiaries and distributors or any of their officers and employees jointly or several:y. _lnformation <inCluding circuit diagrams and'circuit parameters) herein is for example only; it is not guarant eed for volume production. SAN'(O believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intelle.Ctual property rights or other rights of third parties.

PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
GENERAL RECEIVER
Minimum Input RF Power to Produce 20mVP_P (Differential) at land Q Baseband Outputs PMIN IF AGC is set at maximum gain, bit HPF = 0 (Note 4) -91 -84 dBm
Maximum Input RF Power to Produce 400mVP_P (Differential) at I and Q Baseband Outputs PMAX RF AGC threshold: RF_AGC_TRIP = -17dBm; IF AGC is set at minimum gain, bit HPF = 0 +3 dBm
PLK_H LO-related spurious > 2GHz -66
LO to RF Input Leakage PLK_L LO-related spurious < 2GHz -38 dBm
Noise Figure (Notes 3, 5) NF RF AGC is at maximum gain, IF AGC is at reference gain 8.5 10.4 dB
In-Band Input lP3 (Notes 5, 6) lIIP3 RF AGC is at maximum gain, IF AGC is at reference gain -32 dBm
Out-of-Band Input lP3 (Notes 5, 7) O IlP3 RF AGC is at maximum gain, IF AGC is at reference gain 9 dBm
In-Band Input lP2 (Notes 5, 6) lIIP2 RF AGC is at maximum gain, IF AGC is at reference gain +1 dBm
Out-of-Band Input lP2 (Notes 5, 7) O IlP2 RF AGC is at maximum gain, IF AGC is at reference gain +38 dBm
Opposite Sideband Rejection OSR Baseband frequencies = 100kHz (Note 4) 32 39 dB
Image Rejection IRej At fLO - fIF 54 dB
Half IF Rejection HRej At fLO + 0.5 x fIF 53 dB
RF AGC LOOP
LNA Gain Reduction RFAGC_ Range (Note 4) 30 42 dB
Minimum RF AGC Trip Point RFAGC mi Bits RF4/3/2/1/0 = 00000 (BIN) -35 dBm
RF AGC Trip Point RFAGC int Bits RF4/3/2/1/0 = 00010 (BIN) (Note 4) -37 -33 -29 dBm
Maximum RF AGC Trip Point RFAGC m Bits RF4/3/2/1/0 = 10100 (BIN) -15 dBm
FRONT-END (FE) PROGRAMMABLE GAIN
FE Programmable Gain Range FE_Rg e (Note 4) 19 22 26 dB
FE Programmable Gain Step FE Step 2 dB
IF FILTER INTERFACE
IF Outp ut Differential Ad mittance Yout, IF Between pins IFOUT+, IFOUT-, fIF = 259MHz and 467MHz 1/900 + j0 S
Input Differential Impedance Presented by the lC to the IF Filter Output Zin, IF Between pins IFOUT+, IFOUT-, fIF = 259MHz and 467MHz 150 + j0 Q